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HB 8108-2002 金属氟塑料衬套规范

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基本信息
标准名称:金属氟塑料衬套规范
英文名称:Specification for metal fluoroplastics bush
中标分类: 航空、航天 >> 航空器与航天器零部件 >> 管件、卡箍、密封件
发布日期:2003-02-24
实施日期:2003-02-24
首发日期:1900-01-01
作废日期:1900-01-01
出版日期:1900-01-01
页数:9页
适用范围

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前言

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目录

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引用标准

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所属分类: 航空 航天 航空器与航天器零部件 管件 卡箍 密封件
基本信息
标准名称:渔船消防设备安装技术要求
中标分类:
替代情况:SC 132-85
发布部门:中华人民共和国农业部
发布日期:1994-10-01
实施日期:1995-01-01
首发日期:
作废日期:
提出单位:中国渔船标准化技术委员会
起草单位:上海渔轮厂
起草人:戎中杰、孙忠伟
出版社:中国标准出版社
出版日期:
页数:4页
适用范围

本标准规定了渔船水灭火系统及消防用品的安装技术要求。
本标准适用于渔船消防设备的安装及验收。

前言

没有内容

目录

没有内容

引用标准

GB 3033 船用管路和识别符号的油漆颜色
SC 77 管系试验方法
SC 81 辅机船上安装技术要求
SC 89 管系制作和安装技术要求
CB 638 消防桶架
CB 639 消防斧架
CB 642 灭火机架

所属分类:
Product Code:SAE J2883
Title:Laboratory Measurement of Random Incidence Sound Absorption Tests Using a Small Reverberation Room
Issuing Committee:Acoustical Materials Committee
Scope: This SAE Recommended Practice describes a laboratory test procedure for measuring the random incidence sound absorption coefficient of a material in a small size reverberant sound field by measuring decay rates. Materials for absorption treatments may include homogeneous materials, nonhomogeneous materials, or a combination of homogeneous, nonhomogeneous, and/or inelastic impervious materials. These materials are commonly installed in transportation systems such as ground vehicles, marine products, and aircraft to reduce reverberant sound build-up and thus reduce the noise level in the environment by minimizing reflections off of hard surfaces. The test method described herein was developed also to describe a way to measure the absorption performance of a part or a sound package system that will relate to an application. to rank order materials for application on panels using general automotive steel but also may be applicable to other situations or conditions.The absorption performance for most materials and systems varies as a function of frequency. Accordingly, this test procedure includes provisions for measuring absorption over a frequency range found applicable to many transportation systems. Samples that are used typically in transportation industry are not thick enough to provide any significant absorptive properties below 250 Hz. Combining the size of the sample and the frequency range of interest for automotive and related applications, this test method has been developed for conducting measurements using a small reverberation room where the frequency range of interest would be from approximately 250 to 8000 Hz 1/3rd octave band frequency.
Rationale: This SAE Recommended Practice describes a laboratory test procedure for measuring the random incidence sound absorption coefficient of a material in a small size reverberant sound field by measuring decay rates. Materials for absorption treatments may include homogeneous materials, nonhomogeneous materials, or a combination of homogeneous, nonhomogeneous, and/or inelastic impervious materials. These materials are commonly installed in transportation systems such as ground vehicles, marine products, and aircraft to reduce reverberant sound build-up and thus reduce the noise level in the environment by minimizing reflections off of hard surfaces. The test method described herein was developed also to describe a way to measure the absorption performance of a part or a sound package system that will relate to an application. to rank order materials for application on panels using general automotive steel but also may be applicable to other situations or conditions.The absorption performance for most materials and systems varies as a function of frequency. Accordingly, this test procedure includes provisions for measuring absorption over a frequency range found applicable to many transportation systems. Samples that are used typically in transportation industry are not thick enough to provide any significant absorptive properties below 250 Hz. Combining the size of the sample and the frequency range of interest for automotive and related applications, this test method has been developed for conducting measurements using a small reverberation room where the frequency range of interest would be from approximately 250 to 8000 Hz 1/3rd octave band frequency.