首页 > 标准下载>ASTM D6110-2018 塑料切口试样耐却贝冲击性测定方法 Standard Test Method for Determining the Charpy Impact Resistance of Notched Specimens of Plastics免费下载
ASTM D6110-2018 塑料切口试样耐却贝冲击性测定方法 Standard Test Method for Determining the Charpy Impact Resistance of Notched Specimens of Plastics ASTM D6110-2018 塑料切口试样耐却贝冲击性测定方法 Standard Test Method for Determining the Charpy Impact Resistance of Notched Specimens of Plastics

ASTM D6110-2018 塑料切口试样耐却贝冲击性测定方法 Standard Test Method for Determining the Charpy Impact Resistance of Notched Specimens of Plastics

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  • 标准编号:ASTM D6110-2018
  • 标准状态:现行
  • 更新时间:2023-07-31
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标准简介

1.1 This test method is used to determine the resistance of plastics to breakage by flexural shock as indicated by the energy extracted from standardized (see Note 1) pendulum-type hammers, mounted in standardized machines, in breaking standard specimens with one pendulum swing. This test method requires specimens to be made with a milled notch (see Note 2). The notch produces a stress concentration which promotes a brittle, rather than a ductile, fracture. The results of this test method are reported in terms of energy absorbed per unit of specimen width (see Note 3). Note 1: The machines with pendulum-type hammers have been standardized in that they must comply with certain requirements including a fixed height of hammer fall, which results in a substantially fixed velocity of the hammer at the moment of impact. Hammers of different initial energies (produced by varying their effective weights), however, are recommended for use with specimens of different impact resistance. Moreover, manufacturers of the equipment are permitted to use different lengths and constructions of pendulums with possible differences in pendulum rigidities resulting (see Section 5). Be aware that other differences in machine design do exist. Note 2: The specimens are standardized in that they have a fixed length and fixed depth, however, the width of the specimens is permitted to vary between limits. One design of milled notch is allowed. The notch in the specimen serves to concentrate the stress, minimize plastic deformation, and direct the fracture to the part of the specimen behind the notch. Scatter in energy-to-break is thus reduced. Because of differences in the elastic and viscoelastic properties of plastics, however, response to a given notch varies among materials. Note 3: Caution must be exercised in interpreting the results of this test method. The following testing parameters have been shown to affect test results significantly: method of specimen f

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