Showing posts with label DuPont. Show all posts
Showing posts with label DuPont. Show all posts

Wednesday, February 3, 2021

Vespel SP-1 Rods & Plaque
DuPont Vespel® polyimide shapes (Sheets, Rods, Tubes, Parts) are produced from advanced polymers developed by DuPont. Vespel® polyimide combines High-Temperature Performance, Natural Lubricity, Dimensional Stability, Chemical Resistance, Creep Resistance, and more.   

Vespel® does not outgas or melt at any temperature & performs well in vacuum applications, even in extremely low cryogenic temperatures.


Vespel® polyimide is available in five standard grades: 

Vespel® SP-1 - Unfilled. Maximum strength & elongation. Lowest modulus & thermal conductivity. Optimum electrical properties. 
Vespel® SP-21 - 15% graphite (by weight). Enhances inherent wear resistance, improves long term thermal stability. 
Vespel® SP-22 - 40% graphite (by weight). Gives low coefficient of thermal expansion. Maximum creep resistance. 
Vespel® SP-211 - 15% graphite and 10% TEFLON® fluorocarbon resin (by weight). Lowest static friction. 
Vespel® SP-3 - 15% MoS2 (by weight). Best wear performance in dry environments. 

For the full-range of Vespel products, visit https://www.professionalplastics.com/Vespel  or call (888) 995-7767.

Thursday, August 2, 2012

Polyimide - The Ultimate High-Performance Thermoplastic Material

Thermosetting Polyimides (PI) are known for thermal stability, good chemical resistance & excellent mechanical properties. They exhibit very low creep & high tensile strength. These properties are maintained during continuous use to temperatures of 450°F (232°C) and for short excursions, as high as 900°F (482°C).   Professional Plastics offers the widest range of polyimide materials in the industry from Meldin® Shapes, Vespel® Shapes, Kapton® Film, Kaptrex® Film, Cirlex® Laminate, Kaptolam® laminate, Solimide® foam,and Protomid® microbore tubing.

Molded polyimide parts & laminates have very good heat resistance. Normal operating temperatures for such parts and laminates range from cryogenic to those exceeding 500°F (260°C). Polyimides are also inherently resistant to flame combustion and do not usually need to be mixed with flame retardants. Most carry a UL rating of VTM-0.

Polyimide laminates have a flexural strength half life at 480°F (249°C) of 400 hours. Typical polyimide parts are not affected by commonly used solvents & oils — including hydrocarbons, esters, ethers, alcohols and freons. They also resist weak acids but are not recommended for use in environments that contain alkalis or inorganic acids.

Polyimide parts and shapes such as Meldin®, Vespel® are produced via Isostatic Molding, Compression Molding or Direct-Forming.

For more details visit our polyimides webpage at:
http://www.professionalplastics.com/Polyimide_RodPlateFilmTube

Grades of Meldin Polyimide:
MELDIN® 7001, Unfilled Grade
A thermosetting polyimide, MELDIN® 7001 is our unfilled base resin. This grade offers the maximum mechanical properties and high chemical resistance. The MELDIN® 7001 grade is ideal for electrical and thermal insulating applications. More ductile than ceramics, and lighter weight than metals, MELDIN® 7001 is a popular choice for structural parts in aerospace and other applications where metal replacement is desirable.

MELDIN® 7021, 15% by Weight Graphite Filler
Our self-lubricating grade, MELDIN® 7021, has 15% by weight graphite fillers, encapsulated by the base polyimide resin. With its low coefficient of friction and high heat resistance, MELDIN® 7021 provides our customers the best all-around choice for high temperature bearings, seals, and other low-wear applications.

MELDIN® 7211 - 15% Graphite + 10% PTFE Fillers by Weight
MELDIN® 7211 is 15% by weight graphite and 10% by weight PTFE fillers. It has the lowest coefficient of friction of all the MELDIN® 7000 grades. However, above 300°F, we typically use MELDIN® 7021, which has a very similar coefficient of friction to 7211 at temperatures above 300°F, and the wear factor of 7021 is lower than 7211 at temperatures above 300°F.

MELDIN® 7022 - 40% by weight graphite filler
MELDIN® 7022 is 40% by weight graphite filler. It is similar to the 7021 for wear and friction, but it has the best overall dimensional stability (thermally), and the 7022 has the lowest coefficient of thermal expansion – due to the relatively high graphite filler content.

MELDIN® 7003 - 15% molybdenum disulfide lubricating filler
Meldin® 7003 includes 15% molybdenum disulfide lubricating filler for wear applications that operate in a vacuum or in very dry conditions where graphite actually becomes abrasive. Typical applications of Meldin 7003 include seals, bushings, bearings, gears, and other wear surfaces in outer space, ultra-high vacuum or dry gas applications.

Meldin 7000 meets the following specifications :
  • Mil-P-46198 Military Specification (now obsoleted)
  • ASTM D6456-99 Standard Specification
  • SAE AMS 3644G Aerospace Material Specification
  • CPW411 Rev. H Pratt & Whitney Specification
  • MCS 5016 Honeywell Specification
  • UL V0-5VA flammability rating
  • Wednesday, May 16, 2012

    8 Everyday Uses For Teflon

    Considering the fact that plastic products seem to find their way into several aspects of one's everyday life, it should come as no surprise that Teflon, created by DuPont research scientist Dr. Roy Plunkeet in 1938, seems to appear time and time again on the list of essential ingredients to many products. Take for example the list below:

    8 Everyday Uses For Teflon

    Cooking:  non-stick pots and pans
    Beauty Products: nail polish remover and curling and flat irons
    Automotive: windshield wiper blades
    Apparel and Home: fabric and upholstery protection
    Manufacturing: machines and applications which require sliding actions or require bearings, sliding plates, gears, bushings, etc.
    Medical: medical equipments and Teflon grafts and implants
    Research: laboratory equipment like containers and tubing
    Technology: Computer equipment and robotics

    To find out more interesting information about Teflon, watch this clip from The Balancing Act

      



    

    Wednesday, May 26, 2010

    Meldin Replacing Vespel in Semicon Applications

    Meldin® 7001 Polyimide Replacing Vespel® SP-1 in Semiconductor Applications


    Meldin® 7001 polyimide is replacing Vespel® SP-1 in an expanding number of semiconductor applications including Wafer Processing, Handling and IC Testing components. Meldin provides a combination of high-performance properties and superior economical performance.


    Meldin® 7001 is ideal for electrical and thermal insulating applications. In Semiconductor Wafer Processing applications, the plasma etch rate of Meldin® 7001 is lower than Vespel® SP-1 providing superior performance over time. In IC Test Sockets & Probe Test Heads, Meldin® 7001 has replaced more expensive Vespel® SP-1 while meeting the same performance standards for precision micro-drilling and long-term stability.


    Meldin® 7001 products feature operational temperatures of 500ºF (260ºF) for continuous operation and 900ºF for intermittent exposure, and tight tolerances of ±0.001 in. on both ODs and IDs. Meldin 7001 is suitable for high-temperature structural, high-purity semiconductor components.

    Click Here To Learn More: http://www.professionalplastics.com/MELDIN7001

    Meldin® 7001 Features & Benefits:
    * Ultra Clean (High-Purity)
    * Low Outgassing
    * Low Dielectric Properties
    * Easy To Machine & Very Stable
    * Does Not Melt



    PROFESSIONAL PLASTICS, INC. - Global Supplier of Polyimide Shapes 
    USA Customers, call (888) 995-7767, or e-mail us at sales@proplas.com
    Asia Customers, call +(65) 6266-6193
    All others, call (858) 637-2801


    Main E-Mail: sales@proplas.comAsia E-Mail: asia-sales@proplas.com

    Meldin® is a registered trade name of Saint Gobain Performance Products and is distributed by Professional Plastics in the United States and Southeast Asia. Vespel® is a registered trade name of E.I. DuPont DeNemours.

    Statements are based on typical properties and customer feedback, as well as, manufacturer provided descriptions and technical data. This information should not be considered as the sole basis of material specification. Customers should approve materials based on first-hand experience in each application. Professional Plastics supplies this information without liability and makes no statement of responsibility regarding the suitability of this or any other material in a specific application.

    Tuesday, December 22, 2009

    Vespel® polyimide shapes by DuPont are available online

    Vespel® polyimide shapes are produced from advanced polymers developed by DuPont. Vespel® polyimide combines High-Temperature Performance, Natural Lubricity, Dimensional Stability, Chemical Resistance, Creep Resistance, and more.


    Vespel® does not outgas or melt at any temperature & performs well in vacuum applications, even in extremely low cryogenic temperatures.

    Vespel® polyimide is available in five standard grades:

    Vespel® SP-1 - Unfilled. Maximum strength & elongation: lowest modulus & thermal conductivity: optimum electrical properties.
    Vespel® SP-21 - 15% graphite (by weight). Enhances inherent wear resistance, improves long term thermal stability.
    Vespel® SP-22 - 40% graphite (by weight). Gives low coefficient of thermal expansion. Maximum creep resistance.
    Vespel® SP-211 - 15% graphite and 10% TEFLON® fluorocarbon resin (by weight). Lowest static friction.
    Vespel® SP-3 - 15% MoS2 (by weight). Best wear performance in dry environments. Dupont Vespel®

    For more details visit Professional Plastics' Website or call (888) 995-7767.

    Monday, December 21, 2009

    Polyimide Shapes - Vespel®, Meldin® & Plavis®

    Polyimide ( PI ) is a polymer of imide monomers. Thermosetting polyimides are commercially available as stock shapes, thin sheets, laminates and machined parts. Thermosetting polyimides are known for thermal stability, good chemical resistance, and excellent mechanical properties. Thermoset polyimides exhibit very low creep and high tensile strength. These properties are maintained during continuous use to temperatures of 450°F (232°C) and for short excursions, as high as 900°F (482°C). Molded polyimide parts and laminates have very good heat resistance. Normal operating temperatures for such parts and laminates range from cryogenic to those exceeding 500°F (260°C). Polyimides are also inherently resistant to flame combustion and do not usually need to be mixed with flame retardants. Most carry a UL rating of VTM-0.


    Polyimide shapes are produced via Isostatic Molding, Compression Molding or Direct-Forming. Polyimide materials are lightweight, flexible, resistant to heat and chemicals. Therefore, they are used in the electronics industry for flexible cables, as an insulating film on magnet wire and for medical tubing. The semiconductor industry uses polyimide for components such as Clamp Rings, Screws, Seals and Wafer Handling Components.

    Professional Plastics offers a full line of polyimide shapes including:
    Vespel® Polyimide from Dupont
    Meldin® Polyimide from Saint Gobain
    Plavis® Polyimide from Daelim
    Kapton® polyimide film from DuPont

    For more information visit http://www.professionalplastics.com/ or call 1-888-995-7767