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1)  impulsive sound
冲击声
2)  ultrasonic impact treatment
超声冲击
1.
Effect of ultrasonic impact treatment on residual stress of welded structure;
超声冲击对焊接结构残余应力的影响
2.
Analysis of strengthening mechanism of ultrasonic impact treatment of 2A12 aluminum alloy weld joint;
2A12铝合金焊接接头超声冲击强化机理分析
3.
Specimens of 22SiMn2TiB armor plate are treated by ultrasonic impact treatment(UIT).
采用超声冲击处理工艺对22SiMn2TiB装甲钢试样进行了表面冲击强化,采用四点弯曲加载装置将处理和未处理的试样在3。
3)  Ultrasonic peening
超声冲击
1.
Improvement of fatigue properties of welded joints for titanium alloy by ultrasonic peening method;
超声冲击法对钛合金焊接接头疲劳性能的改善
2.
Fatigue properties improvement of welded joints for LF21 aluminum alloy by ultrasonic peening method;
超声冲击法改善LF21铝合金焊接接头的疲劳性能
3.
Ultrasonic peening method is proved for improving the fatigue strength the welded joints by previous examinations.
采用Q2 35B十字接头试件 ,就改善焊接接头疲劳强度的超声冲击法与TIG熔修法进行了全面对比。
4)  impact noise
冲击噪声
1.
By analysing the causes of the machinery impact noise,the authors of this paper mainlydiscuss how to analyse it by the technique of impact stimulation both in theory and practice.
本文从分析机械性冲击噪声的发生机理和影响因素入手,论述了用冲击激励技术分析机械性冲击噪声的理论和方法,并进行了实验验证。
2.
The impact noise excitation is discussed,and the time-history inputting models for impact noise excitations are founded.
讨论轮轨噪声激扰之一:冲击噪声激扰。
3.
Studied also are the noise spectrum characteristics and its relation with air pressure and intermittency during exhaust in addition to ways of eliminating impact noise.
分析了间歇排气噪声及其产生机理,并对其频谱特性、与气压的关系以及其中的冲击噪声特性和噪声消除进行了全面深入的研究。
5)  impulsive noise
冲击噪声
1.
Speech enhancement approach based on signal subspace with multi-input in impulsive noise;
冲击噪声环境下基于信号子空间的多通道语音增强算法
2.
Joint diagonalization DOA matrix method in impulsive noise environments;
冲击噪声环境中的联合对角化波达方向矩阵法
3.
Fast DOA estimation in an impulsive noise environment;
冲击噪声环境下的快速DOA估计
6)  Impulse noise
冲击噪声
1.
Impulse,vibration and noise are ordinary troubles in hydraulic system,which is an available measure to reduce impulse noise while wave attenuator is used in the system.
液压系统的冲击、振动和噪声是系统中常见的弊端 ,采用消波器是减小系统冲击噪声的有效方法。
补充资料:标准操作冲击电压波形(见冲击电压发生器)


标准操作冲击电压波形(见冲击电压发生器)
standard switching impulse voltage waveform

  b .oozhun CooZuo ChongJld,onyo boxlng标准操作冲击电压波形(standard switchingimpulse voltage waveform)见冲击电压发生器。
  
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