Tag Archives: roll paper machine

China Professional Low Price Paper Roll Production Line/Kitchen Paper Making Machine/Toilet Tissue Paper Making Machine From Wood Pulp wholesaler

Product Description

Product parameters

Model

 tissue paper rewinding machine

Roll paper width

1750mm

Diameter of paper roll

Φ60~150 mm (tightness is adjustable)

Inner diameter of paper roll

Φ 20~50 mm

Diameter of raw paper

≤Φ 1100 mm (custom is available )

Inner diameter of raw paper

3″(76.2 mm) (custom is available)

Distance of punching

90~160mm (adjustable)

Working speed

180-200 meter/min

Parameter setting

 Touch screen

PLC control

LG 

Transmission

Stepless gearbox ensures precise length of the pitch and finished

Embossing roller

Point to point( four),Steel to wool,Steel to rubber(custom)

Feeding paper holder

1-3 layers (custom is available)

Air pump

Buyer prepare

Motor power

4.5KW(without embossing),7.5KW(with embossing)

Overall size
(L×W×H)

6200×3000×1800mm

Total weight

4000kg

Product display

Factory Photos

Certifications

Company information

HangZhou YiDaFa International Trade CO.,LTD is located in Free Trade Zone,HangZhou city, ZheJiang Province,China. Our company registered capital of 5 million yuan,has rich paper machine design and experience. Our company can provide tissue paper machine, office copy,A4 paper machine, toilet paper making machine, kraft paper making machine, white board paper machine with different types, high quality,energy conservation and environmental protection and various pulping equipment, paper processing equipments and various accessories, spare parts,consumables. 

Packing & Delivery

FAQ:

1.How long it will take to get the quotation?
we usually give reply within 24hours after getting your inquiry. If you are urgent to get the quotation,please feel free to call me or tell us by email,then we can reply you as the first priority.

2.Can you make paper mill design for us?
Yes,we have professional team with rich experience of paper mill design by CAD software.you only need to tell us your open land dimension,we will make your future paper mill design.

3.How about your machine quality,we are worry about the quality
Cailun is a mature brand in China,more than 30 years manufacuturing experience of different kinds of paper machines.We strictly manufacture and manage according to IOS9001:2008 System.and can match all the CE standard or more strict standard.our paper machine is running well in more than 20 countries.we are gold supplier on alibaba already 4 years.

4.Your machine price is high, is there any discount?
we always provide high quality paper machines,we are paying more attention on oversea market,because of communication time after sales,and also it need very long time to send new parts.our paper machines have enough quality standard to make sure the machine can work more than the real warranty period.our marketing style is quality=price and price=quality,the price will be acceptable for our clients and durable for our machines.anyhow,when we will negotiate the price with each other during our meeting in factory.and get a good satisfaction.

5.Could your engineer teach and train our worker and stay in our factory for long time?
Yes,we have very large engineer installation team,they can train and teach your worker to operate paper machine,but you should pay them salary. 

Screw Shaft Types and Uses

Various uses for the screw shaft are numerous. Its major diameter is the most significant characteristic, while other aspects include material and function are important. Let us explore these topics in more detail. There are many different types of screw shafts, which include bronze, brass, titanium, and stainless steel. Read on to learn about the most common types. Listed below are some of the most common uses for a screw shaft. These include: C-clamps, screw jacks, vises, and more.
screwshaft

Major diameter of a screw shaft

A screw’s major diameter is measured in fractions of an inch. This measurement is commonly found on the screw label. A screw with a major diameter less than 1/4″ is labeled #0 to #14; those with a larger diameter are labeled fractions of an inch in a corresponding decimal scale. The length of a screw, also known as the shaft, is another measure used for the screw.
The major diameter of a screw shaft is the greater of its 2 outer diameters. When determining the major diameter of a screw, use a caliper, micrometer, or steel rule to make an accurate measurement. Generally, the first number in the thread designation refers to the major diameter. Therefore, if a screw has a thread of 1/2-10 Acme, the major diameter of the thread is.500 inches. The major diameter of the screw shaft will be smaller or larger than the original diameter, so it’s a good idea to measure the section of the screw that’s least used.
Another important measurement is the pitch. This measures the distance between 1 thread’s tip and the next thread’s corresponding point. Pitch is an important measurement because it refers to the distance a screw will advance in 1 turn. While lead and pitch are 2 separate concepts, they are often used interchangeably. As such, it’s important to know how to use them properly. This will make it easier to understand how to select the correct screw.
There are 3 different types of threads. The UTS and ISO metric threads are similar, but their common values for Dmaj and Pmaj are different. A screw’s major diameter is the largest diameter, while the minor diameter is the lowest. A nut’s major diameter, or the minor diameter, is also called the nut’s inside diameter. A bolt’s major diameter and minor diameter are measured with go/no-go gauges or by using an optical comparator.
The British Association and American Society of Mechanical Engineers standardized screw threads in the 1840s. A standard named “British Standard Whitworth” became a common standard for screw threads in the United States through the 1860s. In 1864, William Sellers proposed a new standard that simplified the Whitworth thread and had a 55 degree angle at the tip. Both standards were widely accepted. The major diameter of a screw shaft can vary from 1 manufacturer to another, so it’s important to know what size screw you’re looking for.
In addition to the thread angle, a screw’s major diameter determines the features it has and how it should be used. A screw’s point, or “thread”, is usually spiky and used to drill into an object. A flat tipped screw, on the other hand, is flat and requires a pre-drilled hole for installation. Finally, the diameter of a screw bolt is determined by the major and minor diameters.
screwshaft

Material of a screw shaft

A screw shaft is a piece of machine equipment used to move raw materials. The screw shaft typically comprises a raw material w. For a particular screw to function correctly, the raw material must be sized properly. In general, screw shafts should have an axial-direction length L equal to the moving amount k per 1/2 rotation of the screw. The screw shaft must also have a proper contact angle ph1 in order to prevent raw material from penetrating the screw shaft.
The material used for the shaft depends on its application. A screw with a ball bearing will work better with a steel shaft than 1 made of aluminum. Aluminum screw shafts are the most commonly used for this application. Other materials include titanium. Some manufacturers also prefer stainless steel. However, if you want a screw with a more modern appearance, a titanium shaft is the way to go. In addition to that, screws with a chromium finish have better wear resistance.
The material of a screw shaft is important for a variety of applications. It needs to have high precision threads and ridges to perform its function. Manufacturers often use high-precision CNC machines and lathes to create screw shafts. Different screw shafts can have varying sizes and shapes, and each 1 will have different applications. Listed below are the different materials used for screw shafts. If you’re looking for a high-quality screw shaft, you should shop around.
A lead screw has an inverse relationship between contact surface pressure and sliding velocity. For heavier axial loads, a reduced rotation speed is needed. This curve will vary depending on the material used for the screw shaft and its lubrication conditions. Another important factor is end fixity. The material of a screw shaft can be either fixed or free, so make sure to consider this factor when choosing the material of your screw. The latter can also influence the critical speed and rigidity of the screw.
A screw shaft’s major diameter is the distance between the outer edge of the thread and the inner smooth part. Screw shafts are typically between 2 and 16 millimeters in diameter. They feature a cylindrical shape, a pointy tip, and a wider head and drive than the former. There are 2 basic types of screw heads: threaded and non-threaded. These have different properties and purposes.
Lead screws are a cost-effective alternative to ball screws, and are used for low power and light to medium-duty applications. They offer some advantages, but are not recommended for continuous power transmission. But lead screws are often quieter and smaller, which make them useful for many applications. Besides, they are often used in a kinematic pair with a nut object. They are also used to position objects.
screwshaft

Function of a screw shaft

When choosing a screw for a linear motion system, there are many factors that should be considered, such as the position of the actuator and the screw and nut selection. Other considerations include the overall length of travel, the fastest move profile, the duty cycle, and the repeatability of the system. As a result, screw technology plays a critical role in the overall performance of a system. Here are the key factors to consider when choosing a screw.
Screws are designed with an external threading that digs out material from a surface or object. Not all screw shafts have complete threading, however. These are known as partially threaded screws. Fully threaded screws feature complete external threading on the shaft and a pointed tip. In addition to their use as fasteners, they can be used to secure and tighten many different types of objects and appliances.
Another factor to consider is axial force. The higher the force, the bigger the screw needs to be. Moreover, screws are similar to columns that are subject to both tension and compression loads. During the compression load, bowing or deflection is not desirable, so the integrity of the screw is important. So, consider the design considerations of your screw shaft and choose accordingly. You can also increase the torque by using different shaft sizes.
Shaft collars are also an important consideration. These are used to secure and position components on the shaft. They also act as stroke limiters and to retain sprocket hubs, bearings, and shaft protectors. They are available in several different styles. In addition to single and double split shaft collars, they can be threaded or set screw. To ensure that a screw collar will fit tightly to the shaft, the cap must not be overtightened.
Screws can be cylindrical or conical and vary in length and diameter. They feature a thread that mates with a complementary helix in the material being screwed into. A self-tapping screw will create a complementary helix during driving, creating a complementary helix that allows the screw to work with the material. A screw head is also an essential part of a screw, providing gripping power and compression to the screw.
A screw’s pitch and lead are also important parameters to consider. The pitch of the screw is the distance between the crests of the threads, which increases mechanical advantage. If the pitch is too small, vibrations will occur. If the pitch is too small, the screw may cause excessive wear and tear on the machine and void its intended purpose. The screw will be useless if it can’t be adjusted. And if it can’t fit a shaft with the required diameter, then it isn’t a good choice.
Despite being the most common type, there are various types of screws that differ in their functions. For example, a machine screw has a round head, while a truss head has a lower-profile dome. An oval-its point screw is a good choice for situations where the screw needs to be adjusted frequently. Another type is a soft nylon tip, which looks like a Half-dog point. It is used to grip textured or curved surfaces.

China Professional Low Price Paper Roll Production Line/Kitchen Paper Making Machine/Toilet Tissue Paper Making Machine From Wood Pulp   wholesaler China Professional Low Price Paper Roll Production Line/Kitchen Paper Making Machine/Toilet Tissue Paper Making Machine From Wood Pulp   wholesaler

China Custom Small Toilet Paper Roll Making Machine Production Line with high quality

Product Description

Small Toilet Paper Roll Making Machine Production Line

Brief Introduction:

GM-1092mm 1-3T/D Toilet Tissue Paper Making Machinery:
This production line can recycle waste paper to make toilet paper, finished product is paper roll, it include following section:
1.Pulp making production line;
2.Paper making production line;
3.Paper converting section;
4.Boiler section ;

Finished Paper Product:

Technical Data:

Output paper

top quality toilet paper,tissue paper

Raw material

Waste paper, virgin pulp;

Output weight

13-40g/m²

Net width

1092mm(adjust according to clients’ requirement).

Wire width

1450mm

Capacity

1-3tons per day

Rail gauge

1800mm

Design speed

150-180m/min

Working speed

120-150m/min

Drives

AC converter frequency conversion, adjustable speed, drive step by step 

 

Main Frame of The Equipment:

 Part Name

Equipment

Specification

Qty(set)

Mesh cylinder Part

cylinder mould

Φ1500mm×1800mm

1

 

couch roll

Φ400mm×1800mm

1

 

Shore hardness is HS-38°±2.

Dryer part

dryer can

Φ2000mm×1800mm

1

 

touch roll

Φ450mm×1800mm

1

 

Equipped with a group scraper, the shore hardness is HS-90º±2,pneumatic pressurizing device.

Drives and controlling part

AC frequency converting speed regulation, drive part by part.

CAD Drawing of 1092mm 1t/d paper making machine:

Packaging:
1.Fixed all the movable parts with plastic films.
2.Polystyrene foam plate wrapped around.
3.Wrapped with tighted plastic films several circles.
4.Fixed machine on the fumigated plywood pallet with iron wire.
5.Wrapped with wooden board around and nailed on.
Shipments;
1 sea transportation is from HangZhou seaports or other ports.
2 the delivery time is decided by your needed machines or machine parts.But it also follows your needs.

Perfect service :
1.We can supply technical consulting and feasibility report according to client’s current condition ;
2.We can make detail design of workshop and whole factory ;
3.We supply complete installation and test machine ;
4.We train client’s engineer and worker for free ;
5.We supply spare part with best price ;

Company Information:
HangZhou Guangmao machinery manufacturing co.,ltd has developed into a much more competitive company since establishment in 1982.Our complete paper production line sells well in international market, such as Russia,Indonesia,Uzbekistan,Tajikistan,Nigeria,Uganda,Pakistan,Egypt,Bhutan,Fiji,
Brazil,Paraguay,Syria,Libya etc.We also establish good strategic cooperation with local distributor.Mainlymanufactures all kinds of paper machines, toilet paper production line, Kraft paper production line, copy/writing paper production line.We have 4 paper machine producing workshops and more than 110 workers and more than 20 engineers.Our factory total area is 20,000 square meters.We sincerely welcome clients from all over the world visit our factory, any requirement, please contact via email, we will reply you as the first priority.We have passed CE, SGS, ISO quality system certification and all manufacture processes are conducted by the standard strictly.

FAQ:
1.Why we choose your company, what could you do for me?
We have established for 10 years and have the stable production experience.
We use the best steel to guarantee the products’ quality
Warranty:We make our machines 1 year warranty.
We will always give you heart to heart service
We always speak with facts and quality

2.How we visit your factory and what will be the procedure?
Our company located in HangZhou city,ZheJiang province, if you take plane, it needs about 2 hours from HangZhou city, 1.5hours from ZheJiang city and 1 hour from ZheJiang .We will pick you up from airport as well as the train station.We will take you to see our machine running in our Chinese clients’ paper mill.Welcome you and your team to visit us at any time!

3.Could your engineer teach and train our worker and stay in our factory for long time?
Yes, we have very large engineer installation team,they can train and teach your worker to operate paper machine,but you should pay them salary.

4.How much water, electricity should I prepare for producing 1 ton finished paper?
(1) Clean water:5M3
(2) Electricity:250kw/h

5.Which kind of chemical I should prepare:
(1) Deinking agent
(2) Dispersing agent
(3) Bleaching agent

6.How about your company orders?
(1)One set of paper machine line or part is supported by us
(2) If we have urgent needs, we’ll do it for you.

Analytical Approaches to Estimating Contact Pressures in Spline Couplings

A spline coupling is a type of mechanical connection between 2 rotating shafts. It consists of 2 parts – a coupler and a coupling. Both parts have teeth which engage and transfer loads. However, spline couplings are typically over-dimensioned, which makes them susceptible to fatigue and static behavior. Wear phenomena can also cause the coupling to fail. For this reason, proper spline coupling design is essential for achieving optimum performance.
splineshaft

Modeling a spline coupling

Spline couplings are becoming increasingly popular in the aerospace industry, but they operate in a slightly misaligned state, causing both vibrations and damage to the contact surfaces. To solve this problem, this article offers analytical approaches for estimating the contact pressures in a spline coupling. Specifically, this article compares analytical approaches with pure numerical approaches to demonstrate the benefits of an analytical approach.
To model a spline coupling, first you create the knowledge base for the spline coupling. The knowledge base includes a large number of possible specification values, which are related to each other. If you modify 1 specification, it may lead to a warning for violating another. To make the design valid, you must create a spline coupling model that meets the specified specification values.
After you have modeled the geometry, you must enter the contact pressures of the 2 spline couplings. Then, you need to determine the position of the pitch circle of the spline. In Figure 2, the centre of the male coupling is superposed to that of the female spline. Then, you need to make sure that the alignment meshing distance of the 2 splines is the same.
Once you have the data you need to create a spline coupling model, you can begin by entering the specifications for the interface design. Once you have this data, you need to choose whether to optimize the internal spline or the external spline. You’ll also need to specify the tooth friction coefficient, which is used to determine the stresses in the spline coupling model 20. You should also enter the pilot clearance, which is the clearance between the tip 186 of a tooth 32 on 1 spline and the feature on the mating spline.
After you have entered the desired specifications for the external spline, you can enter the parameters for the internal spline. For example, you can enter the outer diameter limit 154 of the major snap 54 and the minor snap 56 of the internal spline. The values of these parameters are displayed in color-coded boxes on the Spline Inputs and Configuration GUI screen 80. Once the parameters are entered, you’ll be presented with a geometric representation of the spline coupling model 20.

Creating a spline coupling model 20

The spline coupling model 20 is created by a product model software program 10. The software validates the spline coupling model against a knowledge base of configuration-dependent specification constraints and relationships. This report is then input to the ANSYS stress analyzer program. It lists the spline coupling model 20’s geometric configurations and specification values for each feature. The spline coupling model 20 is automatically recreated every time the configuration or performance specifications of the spline coupling model 20 are modified.
The spline coupling model 20 can be configured using the product model software program 10. A user specifies the axial length of the spline stack, which may be zero, or a fixed length. The user also enters a radial mating face 148, if any, and selects a pilot clearance specification value of 14.5 degrees or 30 degrees.
A user can then use the mouse 110 to modify the spline coupling model 20. The spline coupling knowledge base contains a large number of possible specification values and the spline coupling design rule. If the user tries to change a spline coupling model, the model will show a warning about a violation of another specification. In some cases, the modification may invalidate the design.
In the spline coupling model 20, the user enters additional performance requirement specifications. The user chooses the locations where maximum torque is transferred for the internal and external splines 38 and 40. The maximum torque transfer location is determined by the attachment configuration of the hardware to the shafts. Once this is selected, the user can click “Next” to save the model. A preview of the spline coupling model 20 is displayed.
The model 20 is a representation of a spline coupling. The spline specifications are entered in the order and arrangement as specified on the spline coupling model 20 GUI screen. Once the spline coupling specifications are entered, the product model software program 10 will incorporate them into the spline coupling model 20. This is the last step in spline coupling model creation.
splineshaft

Analysing a spline coupling model 20

An analysis of a spline coupling model consists of inputting its configuration and performance specifications. These specifications may be generated from another computer program. The product model software program 10 then uses its internal knowledge base of configuration dependent specification relationships and constraints to create a valid three-dimensional parametric model 20. This model contains information describing the number and types of spline teeth 32, snaps 34, and shoulder 36.
When you are analysing a spline coupling, the software program 10 will include default values for various specifications. The spline coupling model 20 comprises an internal spline 38 and an external spline 40. Each of the splines includes its own set of parameters, such as its depth, width, length, and radii. The external spline 40 will also contain its own set of parameters, such as its orientation.
Upon selecting these parameters, the software program will perform various analyses on the spline coupling model 20. The software program 10 calculates the nominal and maximal tooth bearing stresses and fatigue life of a spline coupling. It will also determine the difference in torsional windup between an internal and an external spline. The output file from the analysis will be a report file containing model configuration and specification data. The output file may also be used by other computer programs for further analysis.
Once these parameters are set, the user enters the design criteria for the spline coupling model 20. In this step, the user specifies the locations of maximum torque transfer for both the external and internal spline 38. The maximum torque transfer location depends on the configuration of the hardware attached to the shafts. The user may enter up to 4 different performance requirement specifications for each spline.
The results of the analysis show that there are 2 phases of spline coupling. The first phase shows a large increase in stress and vibration. The second phase shows a decline in both stress and vibration levels. The third stage shows a constant meshing force between 300N and 320N. This behavior continues for a longer period of time, until the final stage engages with the surface.
splineshaft

Misalignment of a spline coupling

A study aimed to investigate the position of the resultant contact force in a spline coupling engaging teeth under a steady torque and rotating misalignment. The study used numerical methods based on Finite Element Method (FEM) models. It produced numerical results for nominal conditions and parallel offset misalignment. The study considered 2 levels of misalignment – 0.02 mm and 0.08 mm – with different loading levels.
The results showed that the misalignment between the splines and rotors causes a change in the meshing force of the spline-rotor coupling system. Its dynamics is governed by the meshing force of splines. The meshing force of a misaligned spline coupling is related to the rotor-spline coupling system parameters, the transmitting torque, and the dynamic vibration displacement.
Despite the lack of precise measurements, the misalignment of splines is a common problem. This problem is compounded by the fact that splines usually feature backlash. This backlash is the result of the misaligned spline. The authors analyzed several splines, varying pitch diameters, and length/diameter ratios.
A spline coupling is a two-dimensional mechanical system, which has positive backlash. The spline coupling is comprised of a hub and shaft, and has tip-to-root clearances that are larger than the backlash. A form-clearance is sufficient to prevent tip-to-root fillet contact. The torque on the splines is transmitted via friction.
When a spline coupling is misaligned, a torque-biased thrust force is generated. In such a situation, the force can exceed the torque, causing the component to lose its alignment. The two-way transmission of torque and thrust is modeled analytically in the present study. The analytical approach provides solutions that can be integrated into the design process. So, the next time you are faced with a misaligned spline coupling problem, make sure to use an analytical approach!
In this study, the spline coupling is analyzed under nominal conditions without a parallel offset misalignment. The stiffness values obtained are the percentage difference between the nominal pitch diameter and load application diameter. Moreover, the maximum percentage difference in the measured pitch diameter is 1.60% under a torque of 5000 N*m. The other parameter, the pitch angle, is taken into consideration in the calculation.

China Custom Small Toilet Paper Roll Making Machine Production Line   with high qualityChina Custom Small Toilet Paper Roll Making Machine Production Line   with high quality

China Good quality 2800mm 150t Single Wire Single Cylinder Toilet Paper Machine for Small Roll Factory wholesaler

Product Description

2800mm 250t/D Single Wire Single Cylinder Toilet Paper Machine For Small Roll Factory

1.Buying Xihu (West Lake) Dis.:

In order to recommend tissue paper making machine  and make detailed technical proposal for you as soon as possible, please tell us the following technical parameters:

(1)What kind of paper do you want to produce?
(2)What kind of raw material you will use?
(3)How many tons do you want to produce per day(24hours)?
(4)What is the output paper width of jumbo roll?–mm;
(5)What is the output paper weight(thickness)?–gsm.

2.Technical Requirement
 

 

 

Paper grade Toilet paper
Basis weight range 13-22g/m²
Net paper width 2800mm
Working speed 200m/min
Design speed 250m/min
Drive speed 250m/min
Balancing speed 250m/min
Reeling drum roll balance 250m/min
Crawling speed 25m/min
Capacity 10t/d
Rail gauge 3700mm
Layout type A layer floor layout, sub-left, right hand arrangement
Banner quantitative difference ±1.5%
Wrinkle rate 25-35%
Drive type Segment drive, AC variable speed control.

3.Main Equipments

Pulp Making Equipments
High contentration hydrapulper, Vibrating screen, Pressure Screen,Double disc pulp refiner, Pulp pump, Low concertration cleaner,Impeller, High concentration cleaner, High speed washer, Decker thickener, Fiber separator, Rejector separator

Paper Making Equipments
Headbox, Cylinder mold, Cylinder vat, Touch roll, Press roll, Leading roll, Dryer, Sizing machine, Calender machine, Winding machine, Rewinder, Foundation frame.

4.Raw material

1.Waste paper and virgin pulp
2.Wood , rice straw, cotton, bagasse, bamboo etc.
There will be different structures of pulp making line with different raw materials . So please make it clear in your requirements. Then we will recommend suitable machine to you.

5.Flow Chart

6.Final Product

7.Company Profile

HangZhou City HangZhou Paper Making machinery Co.,Ltd has developed into a much more competitive company since
establishment in 1999. We mainly manufactures all kinds of paper machines, toilet paper production line, Kraft paper production line, copy/writing paper production line. We have 4 paper machine producing workshops and 1 international trade department, and more than 110 workers and more than 20 engineers. Our factory total area is 20,000(96000)square meters. We sincerely welcome clients from all over the world visit our factory, any requirement, please contact via email, we will reply you as the first priority.

A.Business scope:
1.various pulp making machine;
2.various paper making machine;
3.various paper processing machine;
4.various spare parts;
5.Technical service,such as installation,improve old paper machine.

B.Technology Strength:
1.1 professional technician team of 116 engineers and 12 experts;
2.35 years rich practice experience;
3.1 innovative research team,always follow the advanced technology of Finland,Denmark and Italy;
4.skilled and careful installation team.

C. Our market:
Our machine sells well in more than 30 countries and regions, such as Moscow, USA, Canada, Brazil, Paraguay, Australia, Uzbekistan, Kazakhstan, Kyrghyzstan, Tajikhstan, Mogolia, Nigeria, Uganda, Egypt, Ethiopia, Bangladesh, Pakistan, Bhutan, Indonesia, Fiji Island, Saudi Arabia, Oman, Algeria, Syria, Libya,etc.
High quality and perfect service have reserved customer’s praise and more orders,we also establish good strategic cooperation with our client.

8.Packing & Delivery

Kraft Paper Making Machine Fixed all the movable parts with plastic films.
Polystyrene foam plate wrapped around.
Wrapped with tight plastic films several circles.
Fixed machine on the fumigated plywood pallet with iron wire.
Wrapped with wooden board around and nailed on. 

9. Design and installation:

1.We have professional team with rich experience of paper mill designed by CAD software.You only need to tell us your land dimension,we will make your future paper mill design.
2. We have very large engineer installation team,they can train and teach your worker to operate paper machine, but you should pay them salary.

10.About Our Service

Pre-sale Service
—-24 hours phone, email, trade manager online services;
—-We will supply the detailed project report, detailed general drawing, detailed flow process design, detailed layout factory drawing for you until meet your requirement;
—-we welcome you to come to our paper making machine factory and paper mill factory to have a look and check;
—-We will tell you all the necessary cost when set up a paper mill factory;
—-We will answer you all the questions within 24 hours;
—-We will send you various quality paper samples made by our paper machine for free;
—-We can supply turn key-project service.
On-purchase Service
—-We will accompany you to check all the equipment made by us, and help you to make the plan of installation;
—-We will supply paper machine assembly drawing, the foundation and foundation load diagram, transmission diagram, formal installation drawing, use and installation instructions and a full set of technical data after signing the contract.
After-sales Service
—-We will delivery the machine as soon as possible according to your requirement, within 50 days;
—-We will send rich practiced experience engineers to you to install and test the machine and train your worker for free;
—-We will give you 1 year guarantee time after the machine can run well;
—-After 1 year, we can CZPT and help you to maintain the machines;
—-Every 2 years, we can help to overhaul the complete machines for free;
—-We will send you spare part in lower price.

How to Choose the Right Worm Shaft

You might be curious to know how to choose the right Worm Shaft. In this article, you will learn about worm modules with the same pitch diameter, Double-thread worm gears, and Self-locking worm drive. Once you have chosen the proper Worm Shaft, you will find it easier to use the equipment in your home. There are many advantages to selecting the right Worm Shaft. Read on to learn more.
worm shaft

Concave shape

The concave shape of a worm’s shaft is an important characteristic for the design of a worm gearing. Worm gearings can be found in a wide range of shapes, and the basic profile parameters are available in professional and firm literature. These parameters are used in geometry calculations, and a selection of the right worm gearing for a particular application can be based on these requirements.
The thread profile of a worm is defined by the tangent to the axis of its main cylinder. The teeth are shaped in a straight line with a slightly concave shape along the sides. It resembles a helical gear, and the profile of the worm itself is straight. This type of gearing is often used when the number of teeth is greater than a certain limit.
The geometry of a worm gear depends on the type and manufacturer. In the earliest days, worms were made similar to simple screw threads, and could be chased on a lathe. During this time, the worm was often made with straight-sided tools to produce threads in the acme plane. Later, grinding techniques improved the thread finish and reduced distortions resulting from hardening.
When a worm gearing has multiple teeth, the pitch angle is a key parameter. A greater pitch angle increases efficiency. If you want to increase the pitch angle without increasing the number of teeth, you can replace a worm pair with a different number of thread starts. The helix angle must increase while the center distance remains constant. A higher pitch angle, however, is almost never used for power transmissions.
The minimum number of gear teeth depends on the angle of pressure at zero gearing correction. The diameter of the worm is d1, and is based on a known module value, mx or mn. Generally, larger values of m are assigned to larger modules. And a smaller number of teeth is called a low pitch angle. In case of a low pitch angle, spiral gearing is used. The pitch angle of the worm gear is smaller than 10 degrees.
worm shaft

Multiple-thread worms

Multi-thread worms can be divided into sets of one, two, or 4 threads. The ratio is determined by the number of threads on each set and the number of teeth on the apparatus. The most common worm thread counts are 1,2,4, and 6. To find out how many threads you have, count the start and end of each thread and divide by two. Using this method, you will get the correct thread count every time.
The tangent plane of a worm’s pitch profile changes as the worm moves lengthwise along the thread. The lead angle is greatest at the throat, and decreases on both sides. The curvature radius r” varies proportionally with the worm’s radius, or pitch angle at the considered point. Hence, the worm leads angle, r, is increased with decreased inclination and decreases with increasing inclination.
Multi-thread worms are characterized by a constant leverage between the gear surface and the worm threads. The ratio of worm-tooth surfaces to the worm’s length varies, which enables the wormgear to be adjusted in the same direction. To optimize the gear contact between the worm and gear, the tangent relationship between the 2 surfaces is optimal.
The efficiency of worm gear drives is largely dependent on the helix angle of the worm. Multiple thread worms can improve the efficiency of the worm gear drive by as much as 25 to 50% compared to single-thread worms. Worm gears are made of bronze, which reduces friction and heat on the worm’s teeth. A specialized machine can cut the worm gears for maximum efficiency.

Double-thread worm gears

In many different applications, worm gears are used to drive a worm wheel. These gears are unique in that the worm cannot be reversed by the power applied to the worm wheel. Because of their self-locking properties, they can be used to prevent reversing motion, although this is not a dependable function. Applications for worm gears include hoisting equipment, elevators, chain blocks, fishing reels, and automotive power steering. Because of their compact size, these gears are often used in applications with limited space.
Worm sets typically exhibit more wear than other types of gears, and this means that they require more limited contact patterns in new parts. Worm wheel teeth are concave, making it difficult to measure tooth thickness with pins, balls, and gear tooth calipers. To measure tooth thickness, however, you can measure backlash, a measurement of the spacing between teeth in a gear. Backlash can vary from 1 worm gear to another, so it is important to check the backlash at several points. If the backlash is different in 2 places, this indicates that the teeth may have different spacing.
Single-thread worm gears provide high speed reduction but lower efficiency. A multi-thread worm gear can provide high efficiency and high speed, but this comes with a trade-off in terms of horsepower. However, there are many other applications for worm gears. In addition to heavy-duty applications, they are often used in light-duty gearboxes for a variety of functions. When used in conjunction with double-thread worms, they allow for a substantial speed reduction in 1 step.
Stainless-steel worm gears can be used in damp environments. The worm gear is not susceptible to rust and is ideal for wet and damp environments. The worm wheel’s smooth surfaces make cleaning them easy. However, they do require lubricants. The most common lubricant for worm gears is mineral oil. This lubricant is designed to protect the worm drive.
worm shaft

Self-locking worm drive

A self-locking worm drive prevents the platform from moving backward when the motor stops. A dynamic self-locking worm drive is also possible but does not include a holding brake. This type of self-locking worm drive is not susceptible to vibrations, but may rattle if released. In addition, it may require an additional brake to keep the platform from moving. A positive brake may be necessary for safety.
A self-locking worm drive does not allow for the interchangeability of the driven and driving gears. This is unlike spur gear trains that allow both to interchange positions. In a self-locking worm drive, the driving gear is always engaged and the driven gear remains stationary. The drive mechanism locks automatically when the worm is operated in the wrong manner. Several sources of information on self-locking worm gears include the Machinery’s Handbook.
A self-locking worm drive is not difficult to build and has a great mechanical advantage. In fact, the output of a self-locking worm drive cannot be backdriven by the input shaft. DIYers can build a self-locking worm drive by modifying threaded rods and off-the-shelf gears. However, it is easier to make a ratchet and pawl mechanism, and is significantly less expensive. However, it is important to understand that you can only drive 1 worm at a time.
Another advantage of a self-locking worm drive is the fact that it is not possible to interchange the input and output shafts. This is a major benefit of using such a mechanism, as you can achieve high gear reduction without increasing the size of the gear box. If you’re thinking about buying a self-locking worm gear for a specific application, consider the following tips to make the right choice.
An enveloping worm gear set is best for applications requiring high accuracy and efficiency, and minimum backlash. Its teeth are shaped differently, and the worm’s threads are modified to increase surface contact. They are more expensive to manufacture than their single-start counterparts, but this type is best for applications where accuracy is crucial. The worm drive is also a great option for heavy trucks because of their large size and high-torque capacity.

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