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1)  remelting hardness
熔融硬度
2)  fusion temperature
熔融温度
1.
An in-depth study was conducted concerning the fusion temperature and fusion process dynamic characteristics of three representative pairs of ash samples taken from two units of coal water slurry (CWS)-fired boilers.
对取自2台水煤浆锅炉3对各具代表性灰的熔融温度和熔融过程动态特性进行了深入研究。
2.
Plenty of medical glass bottles which were present in medical wastes had rather low fusion temperatures.
实验结果显示,不同化学组分对熔融温度有不同的影响,SiO2能够提高医用玻璃的熔融温度,B2O3和碱金属氧化物(Na2O、K2O)会大幅降低医用玻璃的熔融温度,而碱土金属氧化物(CaO、BaO)和Al2O3会使医用玻璃的软化温度升高,却能使流动温度降低。
3)  melt viscosity
熔融粘度
4)  melting temperature
熔融温度
1.
The melting characteristics and behavior of heavy metals of fly ashes were investigated under different melting temperatures.
对城市垃圾与煤混烧飞灰进行旋风熔融试验,分析了不同熔融温度条件下熔渣的微观形貌及重金属行为。
2.
The influence of fly ash on partition characteristics of heavy metals before and after melting treatment was studied , including the melting temperature, melting time and the basicity.
研究探讨了熔融温度、熔融时间、碱基度对飞灰熔融处理前后重金属分布特性的影响。
3.
The melting temperature,melting heat,static and dynamic mechanical properties of PA6/PTFE blends and PA66/PTFE blends are experimentally investigated in this paper.
PA6/PTFE共混物的熔融温度随PTFE含量的增加而升高,熔融热却随PTFE含量的增加而降低。
5)  melting point
熔融温度
1.
As irradiation dose increases, the gel content and charpy impact strength increases, whereas crystallinity, melting point and elongation at break decreases.
结果表明 :在 0~ 30 0 k Gy的辐射剂量范围内 ,限定量的氧对 HDPE的性能并无太大的影响 ,HDPE的凝胶含量和缺口冲击强度随辐射剂量的增加而增加 ,但结晶度、熔融温度和断裂伸长率却随剂量的增加而下降。
2.
By co polymerization between a flexible co-monomer and acrylonitrile reduces the melting point or increases the decomposition temperature in order to produce melt processable resin.
8℃,而熔融温度仅为188。
6)  degree of melting
熔融程度
1.
It is shown that the degree of melting of the samples increase obviously with increasing differential stresses.
结果表明,在相同温度条件下,岩石的熔融程度随着差应力的增加明显增高,当差应力达到25MPa时,800℃条件下岩石的熔融程度与900℃静态熔融条件下岩石的熔融程度相当。
补充资料:熔融
分子式:
CAS号:

性质:温度升高时,分子的热运动能增大,导致结晶破坏,物质由晶相变为液相的过程。熔融是一级相转变,熔融有热焓、熵和体积的增大。发生熔融的温度叫熔点或熔融温度。小分子晶体的熔点温度范围很窄(一般小于1℃),而聚合物由于结晶不完全;其熔融温度往往是一个较宽的范围(一般为10~20℃)。

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