SAE J 2275-2010
内燃机活塞涨圈槽

Internal Combustion Engines Piston Ring-Grooves


SAE J 2275-2010 发布历史

There is no ISO standard equivalent to this SAE Standard. This SAE standard identifies and defines the most commonly used terms for piston ring-goove charactersitics, specifies dimensioning for groove widths, and demonstrates the methodology for calculation of piston groove root diameter. The requirements of this document apply to pistons and rings of reciprocating internal combustion engines and compressors working under analogous conditions, up to and including 200 mm diameter and 4.5 mm width for compression rings and 8.0 mm width for oil rings. The specifications in this document assume that components are measured at an ambient temperature of 20 °C (68 °F). Tolerances specified in this document represent practical functional limits and not imply process capabilities.

SAE J 2275-2010由美国机动车工程师协会 US-SAE 发布于 2010-01-19。

SAE J 2275-2010 在中国标准分类中归属于: T11 发动机与附属装置。

SAE J 2275-2010 发布之时,引用了标准

SAE J 2275-2010的历代版本如下:

 

 

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标准号
SAE J 2275-2010
发布日期
2010年01月19日
实施日期
废止日期
中国标准分类号
T11
国际标准分类号
43.060.01
发布单位
US-SAE
引用标准
ISO 6507-3-2005 ISO 6621-1-2007 ISO 6621-2-2003 ISO 6621-3-2000 ISO 6621-4-2003 ISO 6621-5-2005 ISO 6622-1-2003 ISO/TR 6622-2-1988 ISO 6623-2004 ISO 6624-1-2001 ISO/TR 6624-2-1988 ISO 6625-1986 ISO 6626-1989 ISO/TR 6627-1992
被代替标准
SAE J 2275-2007
适用范围
There is no ISO standard equivalent to this SAE Standard. This SAE standard identifies and defines the most commonly used terms for piston ring-goove charactersitics, specifies dimensioning for groove widths, and demonstrates the methodology for calculation of piston groove root diameter. The requirements of this document apply to pistons and rings of reciprocating internal combustion engines and compressors working under analogous conditions, up to and including 200 mm diameter and 4.5 mm width for compression rings and 8.0 mm width for oil rings. The specifications in this document assume that components are measured at an ambient temperature of 20 °C (68 °F). Tolerances specified in this document represent practical functional limits and not imply process capabilities.




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