A New Test Method for Determining Environmental Stress-Crack Resistance of Ethylene Based Plastics

A New Test Method for Determining Environmental Stress-Crack Resistance of Ethylene Based Plastics
Author: JM. Crissman
Publisher:
Total Pages: 6
Release: 1983
Genre: Examinations
ISBN:

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A new test method is proposed for the determination of the environmental stress-crack resistance of ethylene based plastics. The method incorporates features of both ASTM Test for Environmental Stress-Cracking of Ethylene Plastics (D 1693) and Test for Environmental Stress Rupture of Type III Polyethylenes Under Constant Tensile Load (D 2552). The specimen is constrained in a fixed geometry by bending it around a cylindrical metallic form, and it is subjected to a constant applied stress. Statistical data are presented which indicate that the coefficients of variation that can be expected from the new test are at least comparable to those reported earlier in round robin tests carried out using ASTM D 2552. The principle advantage of the proposed new test over both ASTM D 1693 and D 2552 is a substantial savings in the time required to collect the data.

NBS Special Publication

NBS Special Publication
Author:
Publisher:
Total Pages: 476
Release: 1968
Genre: Weights and measures
ISBN:

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Plastics. Determination of Resistance to Environmental Stress Cracking (ESC). Constant Tensile Deformation Method

Plastics. Determination of Resistance to Environmental Stress Cracking (ESC). Constant Tensile Deformation Method
Author: British Standards Institute Staff
Publisher:
Total Pages: 16
Release: 2009-07-31
Genre:
ISBN: 9780580571220

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Plastics, Plastics and rubber technology, Cracking, Fracture, Plastic deformation, Stress corrosion, Environmental testing, Tensile testing, Corrosion tests, Chemical-resistance tests, Test specimens, Testing conditions

Plastics. Determination of Resistance to Environmental Stress Cracking (ESC). Ball Or Pin Impression Method

Plastics. Determination of Resistance to Environmental Stress Cracking (ESC). Ball Or Pin Impression Method
Author: British Standards Institute Staff
Publisher:
Total Pages: 22
Release: 2006-09-29
Genre:
ISBN: 9780580487651

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Plastics, Plastics and rubber technology, Cracking, Fracture, Stress corrosion, Environmental testing, Splitting tests, Corrosion tests, Tensile testing, Tensile splitting tests, Chemical-resistance tests, Test specimens, Testing conditions