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conventional sintering meaning in English

普通烧结法

Examples

  1. The highest sintering temperature was 900 c , and the sintering lasted 70 seconds . the conventional sintered magnets were sintered at 1000 c for 1h
    常规烧结的温度为1000 ,烧结时间为1h ,并分别在800和600各进行1h的回火。
  2. The comparison between the magnetic properties of ndfeb magnet by microwave magnetic field sintering and those of magnet by conventional sintering technology shows that the brwas improved 50 % , the hcb was improved 8 % , and the ms was improved 40 %
    将微波磁场烧结的磁体与常规烧结磁体进行磁性能比较表明:微波磁场烧结出的磁体剩磁提高了将近50 ,矫顽力提高了8 ,饱和磁化强度提高了40 。
  3. The microwave magnetic sintering can not only lower the sintering temperature and shorten the sintering time , but also decrease the micro - grain size of magnets and make intergranular phase and grain boundary of main phase distributed well . the abnormal grain growth was found in conventional sintered ndfeb magnets , which may be due to the greater particle size and uneven distribution of powder , and higher sintering temperature and longer sintering time . of course , the abnormal grain growth would deteriorate the magnetic properties
    微波磁场烧结的不但降低烧结温度,缩短烧结时间,而且使磁体整体加热,受热更均匀,因而磁体晶粒更细小,并且主相晶粒边界趋于规则化,晶间相的分布更均匀;在常规烧结的磁体中则出现了晶粒异常长大现象,造成这一现象的原因,一方面可能是烧结温度过高或烧结时间过长,另一方面可能是磨制的粉体均匀性较差,存在的大颗粒被许多细小颗粒包围,在烧结过程中,大颗粒不断吞并小颗粒,逐渐长大,而异常长大的晶粒自然会导致磁体性能的恶化。

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