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JW Latex Consultants (and Rubber Consultants,乳胶顾问) offer solutions to your problems in Natural Rubber latex and Synthetic Rubber latex processing and the manufacturing of latex products (condoms, catheters, medical gloves, baby teats and soothers, toy balloons etc) Quick answers through e-mails are possible at reasonable cost.

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Send Your Enquiry and Orders To: woonsungliang@yahoo.com.sg

Problem Solving Through E-Mails with John Woon Latex Consultants Is Possible
可以通过电子邮件与JW乳胶顾问来解决问题

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Tuesday, September 09, 2008

What Makes Rubber Stretch and Snap Back?

College Students: We are a group of students from college arguing among ourselves as to why rubber stretches and snaps back. We would love to hear your explanation in the simplest terms.

John Woon (Senior Latex Consultant): Sometimes it is difficult to explain how things behave in simple ways. But I'd try. There are more than one ways to explain this. Here is one:

All rubbers or rather elastomers, either natural or man-made (i.e.synthetic) have something in common - that is the ability to stretch (or elongate) and the ability to recover after the force in stretching is removed. The reason why they do so relates to the term "entropy". This is the Second Law of Thermodynamics (part of the study of physics) which states that a system would move from a state of order to a state of disorder. Entropy is "disorder". Rubbers are long chain polymer molecules and when you leave them alone, the molecules tends to tangle up in a random disordered mass like a plate of noodles. We describe the molecules as having a high degree of entropy. When the rubber is stretched, the molecules align and pack themselves together forming crystals, hence the term, crystallization of rubber. In other words the rubber molecules are "ordered" and have low degree of entropy when stretched.

When you let go of the rubber, it snaps back to its original shape (or close to it) because the Second Law of Thermodynamics says the molecules must "move from a state of order to a state of disorder."

You are at the site for answers and solutions to all your problems in natural rubber latex processing and manufacturing of industrial, household and medical gloves, condoms, catheters, baby teats and baby pacifiers, toy balloons, latex foam products, latex threads etc.

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What has the bouncing ball to do with tyres?

Latex Gloves Educational Articles from the Malaysian Rubber Export Promotion Council

How do you select your medical gloves?

Rubber Chemicals: Carcinogenicity, Mutagenicity, Clastogenicity.

Why is Compression Set measurement important?

Assessment of Latex Stability

Joule Effect

Poor Flocking Quality Of Household Gloves

Creaming of Latex

What is Vulcanization?

History of Latex Dipped Products

Applications of Prevulcanized Latex

Defoamer Creating Havoc in Glove Factory

Problems With Milling Rubber Chemicals

Medical Gloves From Guayule Latex

Introduction to SMG Gloves

 

 

Click on The Following Links to Read More Articles:

[Advantages of Vulcanization] [Applications of PV Latex] [Bacteria and Latex] [Chemical Toxicity] [Cross-Linking Density] [Biodegradability] [Black Articles] [Blooming] [Bouncing Ball] [Compression Set] [Condoms] [Creaming] [Defoamer] [FDA] [Fatty Acid Soaps] [Flame Retardant] [Flocking] [Food Packaging] [Glove Demand] [Glove Selection] [Guayule Latex] [History of Gloves] [Joul Effect] [Latex Stability] [Latex Thread] [Milling Problem] [MREPC Articles] [Nano Polymer Particles] [Nano ZnO] [Polychloroprene] [REACH] [SMG] [Storage Hardening] [Vulcanization] [Vytex] [Yulex]

Disclaimer:
The information and data contained in this site are believed to be accurate and reliable. However it is the responsibility of the visitors and readers to satisfy themselves that the information is workable under their own processing conditions. Hence the owners of this site make no warranties concerning the suitability of the information given in this site.

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