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1)  shock isolation effect
隔冲效果
1.
Research on evaluation of shock isolation effect of impact energy-absorption of ship equipment
舰船设备冲击吸能器隔冲效果评估研究
2)  thermal insulation effect
隔热效果
1.
The results show that the thermal insulation effect of the coating with sepiolite ball-milled is 5℃ higher than that of natural sepiolite.
结果表明:以适当球磨工艺制备的海泡石微粉为隔热添加剂的隔热涂料,与以一般加工方法制备的海泡石矿粉为隔热添加剂的隔热涂料相比,隔热效果可提高5℃。
3)  thermal barrier effect
隔热效果
1.
Experimental and theoretical analysis shows that the thermal barrier effect having a near linear relation to the ceramic coating thickness is proportional to environment temperature difference.
通过理论公式推导和试验测量 ,得出 :热障涂层的隔热效果与环境温差成正比 ,但同等环境温差下涂层在更高的温度工作时 ,由于涂层材料导热系数的增大 ,其隔热效果减小。
4)  heat-insulating effect
隔热效果
1.
Calculating formulas of heat-insulating effect on indium tin oxide film have been derived,and calculating results have been given.
利用MATLAB高级计算机语言,拟合了大气层外的太阳辐射光谱,给出了氧化铟锡薄膜隔热效果的计算公式与结果。
5)  heat insulation effect
隔热效果
1.
The heat insulation effectiveness and practice of the roof insulation in south areas are summarized,and the features of different heat insulation roofs are analyzed and compared.
总结了南方地区屋面隔热层的做法和隔热效果 ,并分析和比较了不同隔热屋面的特点。
6)  vibration isolation effect
隔振效果
1.
Analytical approach of vibration isolation effect for floating raft system;
浮筏系统隔振效果评估方法
2.
This paper computes the natural vibration character?the vibration isolation effect and the shock resistance of a floating raft,using ANSYS software.
本文采用ANSYS软件对一船用辅机浮筏的固有振动特性、隔振效果和抗冲击性能进行了数值分析。
3.
The calculations of vibration isolation effect of the reconstructed foundation and the discontimuous barriers are discussed,and the feasigility of the method is discussed as well.
通过重型锻造车间的环境振动测试 ,对重型锻锤激励可引起的地基振动信号进行分析 ,并讨论了已有锻锤隔振基础的改造和非连续屏障的隔振效果的计算及其可行性。
补充资料:高铝隔热砖
分子式:
CAS号:

性质:又称高铝隔热砖(high-aluminium heat insulating brick)。氧化铝含量在48%以上、主要由莫来石和玻璃相或刚玉共同组成的轻质耐火材料。体积密度0.4~1.35g/cm3。气孔率66%~73%,耐压强度1~8MPa。抗热震性能较好。通常采用高铝矾土熟料加少量黏土,经磨细后用气体发生法或泡沫法以泥浆形式浇注、成形,经1300~1500℃烧成。有时也可用工业氧化铝代替部分矾土熟料。用于砌筑窑炉的内衬和隔热层,以及无强烈高温熔融物料侵蚀及冲刷作用的部位。直接与火焰接触时,表面接触温度不得高于1350℃。

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