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热衰退 meaning in Chinese

heat fade
heat fading

Examples

  1. Among the factors which influence traffic safety , the heat fade of drum brake is a important one
    在影响道路交通安全的诸多因素之中,车辆制动效能热衰退是引发交通事故的一个重要原因。
  2. High - performance train brake plate was developed with the polybenzoxazine ( mulitphenol type ) / vermiculite hybrid nanocomposites . it has a narrow brand strip of friction coefficient ( 0 . 35 ~ 0 . 45 ) , hig
    45人摩擦系数高,无明显的“过恢复”和“热衰退”等现象,机械性能优良等特点。
  3. It is showed that by using the phenolic resin and the fiber , the clutch friction materials could be manufactured with good properties such as stable friction coefficient , low wear rate , high fade resistance at 350 , and suitable porosity
    结果表明,采用三组份酚醛树脂和混杂纤维可以制备出摩擦性能良好, 350不发生热衰退的离合器摩擦材料,且材料具有合适的孔隙率。
  4. After analyzing the principle and reason of heat fade of drum brake , it is necessary to improve a practical and accurate calculating method to figure out the rise of the drum brake temperature , which will be useful to further study on the preventive measures for heat fade
    本文在对鼓式制动器热衰退现象产生的机理和原因进行分析后认为,有必要提出一种实用、准确的鼓式制动器温升计算方法,为进一步研究鼓式制动器热衰退预防措施提供依据。
  5. And another brake material formula also can be achieved in which the carbon fiber was replaced by the wood fiber based on the researching of the effect of fibre , resin and filler in multi - fibres hybrid composite test result shows that the formula material have a relatively suitable friction coefficient ( ranging around 0 . 35 ) , good fade resistance and recovery as well as low wear ratio . by comparing the formula material with the product of national and abroad sold in the market , its low cost and excellent properties make a bright prospect
    在研究各种纤维、树脂和填料对混杂纤维复合摩擦材料摩擦学性能影响的基础上,本文研制开发出分别适用于中重型车与中小型车用的刹车摩擦材料的最佳配方和一种含木纤维的多种纤维混杂复合摩擦材料的最佳配方。将所选配方的刹车材料与市售的国内外品牌刹车片进行对比,结果表明本课题所开发研制的摩擦材料的摩擦系数都在0 . 35左右,具有很好的摩擦系数稳定性和抗热衰退性,磨损率也较小,综合考虑到配方试样原料成本较低,在性价比上具有一定的优势。
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Related Words

  1. 衰退市场
  2. 市场衰退
  3. 衰退常数
  4. 衰退因素
  5. 衰退膨胀
  6. 水衰退
  7. 周期性衰退
  8. 使衰退
  9. 衰退后退
  10. 衰退过程
  11. 热衰减
  12. 热衰竭
  13. 热衰退试验
  14. 热双金属
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