High Temperature Resistance and Chemical Resistance Polyphenylene Sulfide PPS Mesh

Product Details
Customization: Available
Material: PPS Monofilament
Layers: Single
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Registered Capital
6000000 RMB
Plant Area
1001~2000 square meters
  • High Temperature Resistance and Chemical Resistance Polyphenylene Sulfide PPS Mesh
  • High Temperature Resistance and Chemical Resistance Polyphenylene Sulfide PPS Mesh
  • High Temperature Resistance and Chemical Resistance Polyphenylene Sulfide PPS Mesh
  • High Temperature Resistance and Chemical Resistance Polyphenylene Sulfide PPS Mesh
  • High Temperature Resistance and Chemical Resistance Polyphenylene Sulfide PPS Mesh
  • High Temperature Resistance and Chemical Resistance Polyphenylene Sulfide PPS Mesh
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  • Overview
  • Product Description
  • Product Parameters
  • Production Procedure
  • Packaging & Shipping
  • FAQ
Overview

Basic Info.

Model NO.
SG-FD-FS-10
Usage
Liquid Filter, Air Filter, Solid Filter
Type
Filter Disc
Hole Shape
Square
Structure
Single Network
Shape
Roll, Belt, Shape or Tailored
Performance
High Performance Material
Feature
High Temperature Resistance. up to 190c
Transport Package
PE Bags and Standard Export Cartons
Specification
100% Polyphenylene sulfide
Trademark
SHARE FILTERS
Origin
Zhejiang, China
HS Code
59112000
Production Capacity
100, 000 Pieces/Day

Product Description

Product Description

Established in 1983, Taizhou Share Filters Co. Ltd. has been specializing in the production of standard precision mesh fabrics in polyamide, polyester, polypropylene, polyethylene and stainless steel. In addition, SHARE develop and produce high performance materials like Polyphenylenesulfide (PPS), Polyarylate(PAR), Polyetheretherketone(PEEK), Etylenetetrafluorethylene (ETFE) and Tungsten. 

With years of hard research and development, SHARE have developed a new type of material- PPS Mesh, which is unique in China until 2017. 

PPS (Polyphenylene sulfide) mesh is part of a new generation of high-tech mesh materials. It is specially developed for applications which require a high resistance against temperature and chemicals.
Owing to its high temperature resistance, high toughness, good dimensional stability and good rigidity, PPS provides a perfect solution for applications where other polymers are not able to work, an ideal alternative to metallic media.
 

High Temperature Resistance and Chemical Resistance Polyphenylene Sulfide PPS Mesh
High Temperature Resistance and Chemical Resistance Polyphenylene Sulfide PPS Mesh
High Temperature Resistance and Chemical Resistance Polyphenylene Sulfide PPS Mesh
High Temperature Resistance and Chemical Resistance Polyphenylene Sulfide PPS Mesh

 

SHARE Typical PPS Filter Mesh Technical Datasheet
Material Item No. Specification Thread Diameter Mesh Opening Open Area Mesh Thickness Weight Tensile Breaking Strength Tensile Elongation
      μm μm % μm g/m2 (N/5CM) (warp/weft) (%) (warp/weft)
PPS 20T-140 350/51PW 140 350 51 260 86 660/643 29.5/27.8
PPS 20T-150 340/48PW 150 340 48 280 100 766/755 29.5/28.4
PPS 47T-55 156/55PW 55 156 55 100 34 246/253 26.4/30
PPS
(Toray yarn)
20T-150 340/48PW 150 340 48 287 100 810/780 24/24
PPS
(Toray yarn)
59T-45 125/54PW 45 125 54 80 27 210/210 17.7/17.7
 

Product Parameters

Item Name High Temperature Resistance And Chemical Resistance Polyphenylene Sulfide PPS Mesh
Manufacturer Taizhou Share Filters Co. Ltd.
Brand SHARE FILTERS
Material Polyphenylene Sulfide(PPS)
Color Slightly Yellow
Weave type Plain woven, twill woven
Common width 100cm, 200cm, 300cm or customized
Roll length 30-100 mester or customized
Mesh Count/inch 25 mesh/inch-420 mesh/inch
Thread diameter 30um to 250um
Mesh Opening 30um to 800um
Thickness 56um to 508um
Certificate ISO19001 SGS ROHS REACH
Features 1. High temperature resistance: 190° C in continuous operation
2. Excellent hydrolysis and electrolysis resistance
3. Excellent alkali / acid and solvent resistance
4. Excellent mechanical resistance
5. Good flame resistance
6. Less strength loss
7. Highest fineness
8. Recyclable

9. Alternative for PEEK
Quality Control Visual inspection, optical or pressure sensitive equipment and automated 3D image-inspection equipment
Scope of applications High temperatures and strong chemical environments
  • ion exchange processes
  • alkaline water electrolysis for hydrogen production 
  • feed and food drying
  • filter for food, semiconductor and chemical applications
  • chemical catalyst substrates
  • oil-water separation
  • gas filtration and purification
  • wastewater treatment
  • air pollution control
  • desalination
  • and more…


Chemical Resistance Chart of Main Polymers

Artificial or Synthetic Fiber Chemical Resistance Comparison
Fiber Type Continuous Working Temp. Max. Working Temp. Filtration Characteristic Abrasion Resistance Hydrolysis Resistance Acid Resistance Alkalis Resistance Oxidation Resistance
PVC 75ºC 80ºC Good Excellent Excellent Excellent Excellent Good
PP 90ºC 100ºC Good Good Excellent Excellent Excellent Poor
PA 110ºC 115ºC Moderate Excellent Poort Moderate Good Moderate
PAN Copolymer 120ºC` 130ºC Good Good Good Moderate Moderate Good
PET 135ºC 150ºC Excellent Excellent Poor Moderate Poor Good
m-Aramide 180ºC 220ºC Excellent Excellent Moderate Moderate Moderate Good
PPS 190ºC 200ºC Excellent Good Excellent Excellent Excellent Moderate
Polyimide 240ºC 280ºC Excellent Moderate Good Good Moderate Excellent
Polyertrafluoroethylene 250ºC 280ºC Moderate Good Excellent Excellent Excellent Excellent
Fiberglass 250ºC 280ºC Moderate Moderate Excellent Poor Moderate Excellent
 

Production Procedure

High Temperature Resistance and Chemical Resistance Polyphenylene Sulfide PPS Mesh
High Temperature Resistance and Chemical Resistance Polyphenylene Sulfide PPS Mesh

 

At Share, from yarn to product, every phase of production is carefully monitored, employing frequent in-house testing and rigorous inspection to ensure consistent quality at every step of production. Mesh thickness, open area, mesh count and air permeability are all subject to strict controls which result in high quality final products.

Each batch of our filter meshes undergoes a meticulous process involving at least twelve distinct steps, ensuring the ultimate production of high-quality filtering products. The steps of SHARE filter mesh production procedure are: 

High Temperature Resistance and Chemical Resistance Polyphenylene Sulfide PPS Mesh
Yarn→Raw yarn inspection→Warping arranging→Drawing in heddle→Drawing in reed→Weaving→Initial survey→Washing→Heat setting treatment→Physical properties inspection→Products inspection→Product→Fabricated filter and screens if needed→Molded plastic filters if needed

 

High Temperature Resistance and Chemical Resistance Polyphenylene Sulfide PPS Mesh
Based on customer drawings or requirements, SHARE filter mesh can be further processed into various types of cut-to-size filter stamped discs, pieces, shapes, belts, ribbons, bags, tubes, molded plastic filter etc.
 

Packaging & Shipping

1. Rolled on the paper core, packed into PE bags
2. Put into standard export carton
3. Put into PP woven bag
 to prevent damage during transportation

The label contains the following standard information: 
item name, manufacturer, material, dimensions, manufacturing date, order number, batch number etc.

  Port to Port Door to Door
Express(DHL,UPS,FEDEX, EMS)   1 - 5 days
Air Freight 1 - 5 days 4 - 10 days
Sea Freight(FCL) 15 - 30 days 20 - 35 days
Sea Freight(LCL) 15 - 30 days 22 - 37 days
 

FAQ

1. Who are we?
Taizhou Share Filters Co., Ltd is a China-based factory established in 1983.
We specialize in filter media with rating from 3um to 2500um (woven filters), converting meshes filters into various sizes and shapes, and molding mesh with plastic to create different types of plastic filters.

2. Where is your factory located? How can I visit there?
We are located in Taizhou city, Zhejiang province. By train, we are one hour away from Hangzhou and two hours away from Shanghai.

3. Can I get free samples and how long can you deliver them?
We are pleased to provide you with free samples for your evaluation, which will be sent to you within 2 days. Please feel free to reach out to us for samples.

4. How long does a quotation take?
In most cases, we respond within 2 days. If something in RFQ need be confirmed, we will promptly notify you soon.

5. How quickly can I get my order finished?
The production lead time is dependent on the quantity. Typically, it takes 5 to 15 working days for us to complete mass production once you have placed the order.

6. What about your quality control?
By visual inspection, optical or pressure sensitive equipment and automated 3D image-inspection equipment, our production operators conduct self-inspections at every stage of the process. Additionally, we have spot inspections and final inspections carried out by our Quality Control (QC) team. 

7. What kind of payment terms do you accept?
T/T and LC and more.

8. What's your largest advantage?
One of our core competencies is the production of high precision injection molded plastic filters with professional technical team and quality guarantee and management for more than 30 years.

9. Can plastic molded filter specifications be customized?
Absolutely, at SHARE, the materials, dimensions, shape, construction method, mesh size, and applications of the filters are all fully customizable to meet your specific requirements.

10. Do you need drawings for production?
If you have drawing (2D, 3D both available. 2D like PDF, CAD, JPG etc. 3D like STP, IGS, STL, SAT, PRT, IPT etc.) it'll be helpful for us to proceed with the production.
However, if you don't have any drawing, don't worry. SHARE can work with you to create a drawing based on a description or image of the filters you have in mind. We can get started without any drawings initially.


11. What are the common weaving types for plastic molded filters?
The most common weaving type is plain weave mesh, but we also utilize other options like twill weave mesh. Plain weave mesh is popular and affordable.

12. What situations can be anticipated in which plastic molded filters should be selected?
Plastic molding is better for mounting in the case of sandwiching. This is because it can be made without gaps in the shape of the mounting partner.

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