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1)  soundproof door
隔声门
1.
It achieved sound result on controling of vibration and noise by comprehensive technologies and mesns sucha as installing vibrtion deadener, configuring vibration deadener and applying soundproof door.
以某一商场制冷机组为对象,通过安装减振台,加装消声器、使用隔声门等综合治理技术手段进行振 动和噪声治理,取得了较好的效果。
2)  special large sound insulation door
特隔声大门
3)  sound insulation
隔声
1.
Effect of glass fiber fineness on the sound insulation property of glass fabric/PVC composite material;
玻纤细度对玻纤/PVC复合材料隔声性能的影响
2.
The inversed prediction of each member area in composite wall under the sound insulation requirement;
按隔声要求的组合墙体各构件面积反演
3.
Sound insulation character of three-layer panels one with elastic porous material;
多孔弹性介质三层夹心板的隔声性能研究
4)  sound isolation
隔声
1.
And the sound isolation of composite structures consisting of multilayer Pb-soft rubber and steel-butadience acrylnitrile rubber(NBR) is presented.
分析计算了由多层铅/软橡胶声子晶体与多层钢/丁腈橡胶构成的声子晶体复合结构的隔声性能。
2.
The paper analyzes and takes the gauge of the main factors of the paranormal noise from the workshops, and introduces the synthesizing measures of reducing the noise by using the noise control techniques such as sound isolation, sound absorb, installing of the cover for isolating noise and so on.
本文对该制钢车间厂界噪声超标的主要原因做出了分析和评估,介绍了噪声治理综合方案的设计,分别采用了隔声、消声、设置隔声罩等噪声控制技术,从而使制钢车间厂界噪声符合国家标准。
3.
The reinforced steel sheet rigidity,damping,sound isolation and sound absorption,different vibration absorber structure and other technologies were comprehensively applied to design the engine sound isolation cover.
为了减少装载机振动和噪声造成的危害,对装载机的主要噪声源进行分析,并综合运用加强薄板刚度、阻尼、隔声、吸声和不同减振器结构型式等技术设计发动机隔声罩,通过对驾驶室和不同位置的减振器进行降噪来控制装载机噪声。
5)  acoustic insulation
隔声
1.
Effect of glass fiber fabric structural parameters on its acoustic insulation property
玻璃纤维织物结构参数对隔声性能的影响
2.
Experimental study on effects of arrangement of reinforcements on acoustic insulation property of composites;
增强材料的排列形式对复合材料隔声性能影响的实验研究
3.
The analysis methods of acoustic insulation performance for intake and exhaust system were summarized.
总结了进排气系统隔声性能分析方法,对比了混响室法和阻抗管法测量隔声性能的适用范围,指出测量过程中产生误差的主要原因,为隔声性能测量方法的选择提供依据;同时,指出一维解析法和三维数值法都可用来分析消声器的传递损失,一维方法的使用受制于结构形状以及截止频率,三维数值方法更为实用,总结了穿孔板、吸声材料等关键部分的模拟方法,指出了目前仿真分析中存在的问题。
6)  Sound insulation for partition
隔墙隔声
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