ASTM D6110-2004e1
塑料凹口样品耐摆锤冲击性测定的标准试验方法

Standard Test Methods for Determining the Charpy Impact Resistance of Notched Specimens of Plastics


ASTM D6110-2004e1 发布历史

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 18212;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 28212;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 38212;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 fabrication, including but not limited to processing technology, molding conditions, mold design, and thermal treatment; method of notching; speed of notching tool; design of notching apparatus; quality of the notch; time between notching and test; test specimen thickness; test specimen width under notch; and environmental conditioning.

1.2 This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use.

Note 48212;This standard resembles ISO 179 in title only. The content is significantly different.

ASTM D6110-2004e1由美国材料与试验协会 US-ASTM 发布于 2004。

ASTM D6110-2004e1 在中国标准分类中归属于: G31 合成树脂、塑料基础标准与通用方法。

ASTM D6110-2004e1的历代版本如下:

  • 2002年08月10日 ASTM D6110-02 塑料缺口试样夏比冲击阻力测定的标准试验方法
  • 2004年03月01日 ASTM D6110-04 塑料缺口试样夏比冲击阻力测定的标准试验方法
  • 2004年03月01日 ASTM D6110-04e1 塑料缺口试样夏比冲击阻力测定的标准试验方法
  • 2005年07月01日 ASTM D6110-05 塑料缺口试样夏比冲击阻力测定的标准试验方法
  • 2005年11月01日 ASTM D6110-05a 测定塑料缺口试样夏氏冲击强度的标准试验方法
  • 2006年03月15日 ASTM D6110-06 测定塑料缺口试样夏氏冲击强度的标准试验方法
  • 2008年08月01日 ASTM D6110-08 测定塑料缺口试样夏氏冲击强度的标准试验方法
  • 2010年04月01日 ASTM D6110-10 测定塑料缺口试样夏氏冲击强度的标准试验方法
  • 2017年12月01日 ASTM D6110-17 测定塑料缺口试样夏氏冲击强度的标准试验方法
  • 2018年04月01日 ASTM D6110-18 测定塑料缺口试样夏氏冲击强度的标准试验方法
  • 1997年 ASTM D6110-1997 塑料凹口样品耐摆锤冲击性测定的标准试验方法
  • 2002年 ASTM D6110-2002 测定塑料凹口样品耐摆锤冲击力的标准试验方法
  • 2004年 ASTM D6110-2004 塑料凹口样品耐摆锤冲击性测定的标准试验方法
  • 2004年 ASTM D6110-2004e1 塑料凹口样品耐摆锤冲击性测定的标准试验方法
  • 2005年 ASTM D6110-2005 塑料凹口样品耐摆锤冲击性测定的标准试验方法
  • 2005年 ASTM D6110-2005a 塑料凹口样品耐摆锤冲击性测定的标准试验方法
  • 2006年 ASTM D6110-2006 测定塑料凹口试样耐摆锤冲击力的标准试验方法
  • 2008年 ASTM D6110-2008
  • 2010年 ASTM D6110-2010 测定塑料切口试样的抗夏氏冲击性能的标准试验方法
  • 1997年07月10日 ASTM D6110-97 塑料缺口试样夏比冲击阻力测定的标准试验方法

 

 

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标准号
ASTM D6110-2004e1
发布日期
2004年
实施日期
废止日期
中国标准分类号
G31
国际标准分类号
83.140.01 (Rubber and plastic products in general)
发布单位
US-ASTM
适用范围

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 18212;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 28212;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 38212;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 fabrication, including but not limited to processing technology, molding conditions, mold design, and thermal treatment; method of notching; speed of notching tool; design of notching apparatus; quality of the notch; time between notching and test; test specimen thickness; test specimen width under notch; and environmental conditioning.

1.2 This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use.

Note 48212;This standard resembles ISO 179 in title only. The content is significantly different.





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