发布时间:2024-05-27 17:49:26 - 更新时间:2024年06月29日 15:22
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GB/T 22159 的本部分规定了应用 GB/T 22159.2,GB/T 22159.3,GB/T 22159.4 和GB/T 22159.5在实验室测量弹性元件传递特性的原理,并为选择合适的标准提供帮助、本部分适用于用来降低下列振动传递的弹性元件:a) 音频振动(20 Hz~20 kHz的结构
Acoustics and vibration.Laboratory measurement of vibro-acoustic transfer properties of resilient elements.Part 1:Principles and guidelines
Acoustics and vibration―Laboratory measurement of vibro-acoustic transfer properties of resilient elements―Part 4: Dynamic stiffness of elements other than resilient supports for translatory motion
GB/T 22159的本部分规定了给定预负载下弹性支撑件平动动刚度的测定方法、该方法涉及输入端振动和阻滞输出力的实验室测量,被称为"直接测量方法"、本部分的方法适用于具有平行法兰的测试元件(见图1)、本部分所针对的弹性元件主要用于降低:a) 可听声低频段(典型值位于20 Hz~500 Hz之间)的
Acoustics and vibration.Laboratory measurement of vibro-acoustic transfer properties of resilient elements.Part 2:Direct method for determination of the dynamic stiffness of resilient supports for translatory motion
Acoustics and vibration—Laboratory measurement of vibro-acoustic transfer properties of resilient elements—Part 5: Driving point method for determination of the low-frequency transfer stiffness of resilient supports for translatory motion
本部分详细介绍了一种在给定预载条件下,弹性支撑件平动动刚度的测量方法。该方法主要涉及振动传递率的实验室测量,称为简介测量法。该方法适用于具有平行连接件的测试部件。 该测量方法所适用于的频率范围是 采用本部分方法所获得的f2~f3。f2与f3的值取决于测试装置和待测
Acoustics and vibration.Laboratory measurement of vibro-acoustic transfer properties of resilient element.Part 3:Indirect method for determination of the dynamic stiffness of resilient supports for translatory motion
Railway Applications - Acoustics - Determination of the dynamic stiffness of elastic track components related to noise and vibration - Rail pads and rail fastening assemblies
Railway Applications - Acoustics - Determination of the dynamic stiffness of elastic track components related to noise and vibration - Rail pads and rail fastening assemblies; German version EN 17495:2022
Railway Applications - Acoustics - Determination of the dynamic stiffness of elastic track components related to noise and vibration: Rail pads and rail fastening assemblies
Railway Applications - Acoustics - Determination of the dynamic stiffness of elastic track components related to noise and vibration: Rail pads and rail fastening assemblies
Railway Applications - Acoustics - Determination of the dynamic stiffness of elastic track components related to noise and vibration - Rail pads and rail fastening assemblies
1 Scope This document specifies laboratory test procedures to determine a high-frequency dynamic stiffness, “ acoustic stiffness
Railway Applications. Acoustics. Determination of the dynamic stiffness of elastic track components related to noise and vibration: Rail pads and rail fastening assemblies
BS EN 17495. Railway Applications. Acoustics. Determination of the dynamic stiffness of elastic track components related to noise and vibration. Rail pads and track fastener assemblies
This International Standard specifies reference values used in acoustics, in order to establish a uniform basis for the expression of acoustical
Acoustics - Preferred reference values for acoustical and vibratory levels
Acoustics - Preferred reference values for acoustical and vibratory levels
Acoustics - Preferred reference values for acoustical and vibratory levels.
GB/T 22159 的本部分规定了应用 GB/T 22159.2,GB/T 22159.3,GB/T 22159.4 和GB/T 22159.5在实验室测量弹性元件传递特性的原理,并为选择合适的标准提供帮助、本部分适用于用来降低下列振动传递的弹性元件:a) 音频振动(20 Hz~20 kHz的结构
Acoustics and vibration.Laboratory measurement of vibro-acoustic transfer properties of resilient elements.Part 1:Principles and guidelines
Acoustics and vibration―Laboratory measurement of vibro-acoustic transfer properties of resilient elements―Part 4: Dynamic stiffness of elements other than resilient supports for translatory motion
GB/T 22159的本部分规定了给定预负载下弹性支撑件平动动刚度的测定方法、该方法涉及输入端振动和阻滞输出力的实验室测量,被称为"直接测量方法"、本部分的方法适用于具有平行法兰的测试元件(见图1)、本部分所针对的弹性元件主要用于降低:a) 可听声低频段(典型值位于20 Hz~500 Hz之间)的
Acoustics and vibration.Laboratory measurement of vibro-acoustic transfer properties of resilient elements.Part 2:Direct method for determination of the dynamic stiffness of resilient supports for translatory motion
Acoustics and vibration—Laboratory measurement of vibro-acoustic transfer properties of resilient elements—Part 5: Driving point method for determination of the low-frequency transfer stiffness of resilient supports for translatory motion
本部分详细介绍了一种在给定预载条件下,弹性支撑件平动动刚度的测量方法。该方法主要涉及振动传递率的实验室测量,称为简介测量法。该方法适用于具有平行连接件的测试部件。 该测量方法所适用于的频率范围是 采用本部分方法所获得的f2~f3。f2与f3的值取决于测试装置和待测
Acoustics and vibration.Laboratory measurement of vibro-acoustic transfer properties of resilient element.Part 3:Indirect method for determination of the dynamic stiffness of resilient supports for translatory motion
Railway Applications - Acoustics - Determination of the dynamic stiffness of elastic track components related to noise and vibration - Rail pads and rail fastening assemblies
Railway Applications - Acoustics - Determination of the dynamic stiffness of elastic track components related to noise and vibration - Rail pads and rail fastening assemblies; German version EN 17495:2022
Railway Applications - Acoustics - Determination of the dynamic stiffness of elastic track components related to noise and vibration: Rail pads and rail fastening assemblies
Railway Applications - Acoustics - Determination of the dynamic stiffness of elastic track components related to noise and vibration: Rail pads and rail fastening assemblies
Railway Applications - Acoustics - Determination of the dynamic stiffness of elastic track components related to noise and vibration - Rail pads and rail fastening assemblies
1 Scope This document specifies laboratory test procedures to determine a high-frequency dynamic stiffness, “ acoustic stiffness
Railway Applications. Acoustics. Determination of the dynamic stiffness of elastic track components related to noise and vibration: Rail pads and rail fastening assemblies
BS EN 17495. Railway Applications. Acoustics. Determination of the dynamic stiffness of elastic track components related to noise and vibration. Rail pads and track fastener assemblies
This International Standard specifies reference values used in acoustics, in order to establish a uniform basis for the expression of acoustical
Acoustics - Preferred reference values for acoustical and vibratory levels
Acoustics - Preferred reference values for acoustical and vibratory levels
Acoustics - Preferred reference values for acoustical and vibratory levels.