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1)  thermal-processing stability
热加工稳定性
1.
The effect of low-molecule polyethylene wax,white oil,sheet paraffin and PEG on the thermal-processing stability of phenolic injection molding material was studied.
讨论了低相对分子质量聚乙烯蜡、白油、切片石蜡及聚乙二醇4种稳定剂对酚醛注塑料热加工稳定性的影响,重点利用转矩流变仪研究了聚乙二醇加入前后酚醛注塑料的流变行为。
2)  thermal stability
加热稳定性
1.
Effect of hydrophilic colloid on thermal stability of low fat meat emulsion products;
亲水胶体对低脂肉糜加热稳定性的影响
3)  processing stability
加工稳定性
1.
Under the thermal and oxygen-containing conditions, the influence of theirs processing stability, resin homogeneity, process condition and properties on BOPP film formability are analyzed.
研究和对比了几种BOPP膜料的加工性能 ,分析了热氧环境中BOPP膜料的加工稳定性、膜料均化程度、加工工艺条件以及膜料性能对BOPP膜成膜性的影
2.
The results showed that the BR containing antioxidant 2246 had higher oxidation temperature, longer oxidation induction period,more stable processing stability and better ability of thermal-oxidative aging and weathering resistance in contrasted with those Of BR containing the same amount of antioxidant 264.
结果表明,抗氧剂2246和抗氧剂264用量相同时,前者使BR的氧化诱导期延长,氧化温度提高,热氧老化性能改善,且耐候性、加工稳定性都明显变好。
4)  machining stability
加工稳定性
1.
In this case, the influencing rules of frequency, voltage and electrolyte concentrations on machining gap as well as the section of electrode on machining stability were studied through experiment analysis in high frequency short pulse electrochemical micromachining.
加工间隙是电解加工的核心工艺参数,利用在45钢薄片上打微细孔,通过实验分析来探索高频、窄脉冲微细电解加工中频率、电压和电解液浓度对加工间隙及电极截面和加工稳定性的影响规律。
5)  thermal stability additives
热稳定性添加剂
1.
The origin of inflammation or explosion and the functionary mechanisms of thermal stability additives for Li-ion battery are introduced.
介绍了锂离子电池燃烧或爆炸的起因和热稳定性添加剂的作用机制,综述了锂离子电池热稳定性添加剂的研究进展,探讨了解决热稳定性添加剂对锂离子电池负面影响的方法,同时展望了其研究开发方向。
6)  stable condensation heating
稳定性凝结加热
1.
The stable condensation heating is the most important factor to the maintenance of the storm rainfall during this period.
在诸强迫项中,稳定性凝结加热对这一时段梅雨锋暴雨的贡献最大,而对流凝结加热的作用很小。
补充资料:催化剂热加工
分子式:
CAS号:

性质:又称催化剂热加工。指催化剂制备过程中的热处理步骤,如滤饼或浸渍了活性组分的载体的烘干、热分解、焙烧等,也指催化剂使用过程中活化、再生等热处理步骤。如碱性催化剂在使用前需加热脱气,以排除吸附的水分和二氧化碳等。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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