1) altering temperature carburizing
变温渗碳
1.
The analysis and calculation about carburizing quality are given,and the organism state of carburizing is predicted ,so the feasibility of altering temperature carburizing is demonstrated theoretically.
以20CrMnTi钢为例,建立了连续冷却渗碳模型;对变温渗碳质量进行了分析计算;对渗碳后的组织情况进行预测,从而对变温渗碳的可行性进行了理论论证。
2) altering temperature and low pressure carburization
变温低压渗碳
1.
New technology that altering temperature and low pressure carburization is put forward in allusion to low quality and high cost of gears.
针对耐磨构件,尤其是齿轮等机械构件质量低和生产成本高的现状,提出变温低压渗碳新工艺。
3) Low temperature carburizing
低温渗碳
1.
Low temperature carburizing process tests on 20~#、20Cr、20CrMnTi、20MnVB steels;
20~#20Cr、20CrMnTi、20MnVB钢的低温渗碳工艺试验
2.
In this paper a fast developing method is made comprehensive review for hardening surface of austenite stainless steels without any reduction of corrosion resistance,which is called austenite stainless steels low temperature carburizing.
本文综合评述了一种近年来发展较快的不影响奥氏体不锈钢耐蚀性能的表面强化工艺--奥氏体不锈钢低温渗碳技术,论述了该技术的工艺特点,探讨了该技术的强化原理,并预测了它的发展前景。
4) carburizing temperature
渗碳温度
1.
Influence of plasma carburizing temperature on microstructure and properties of carburized layer for AISI 316L stainless steel
离子渗碳温度对316L不锈钢渗层组织和性能的影响
2.
This paper concentrates its study on high temperature structure change of 20CrMnTi Carburizing Steel,determines the best carburizing temperature and applies it to Changing temperature short cycle reinforcing carburizing technology.
本文研究了20CrMnTi渗碳钢的高温组织变化,确定了最佳渗碳温度,并在变温增强短周期渗碳工艺中获得了应用。
3.
The influences of carburizing temperature, carbon potential and quenching temperature on the distortion of 20CrMnTi case-hardened steel were studied by orthogonal test.
用正交试验法研究了渗碳温度、碳势和淬火温度对汽车用20CrMnTi钢渗碳变形的影响。
5) high temperature carburizing
高温渗碳
6) steel changing temperature short cycle reinforcing carburizing
变温增强短周期渗碳
补充资料:变温吸附
利用吸附剂的平衡吸附量随温度升高而降低的特性,采用常温吸附、升温脱附的操作方法。除吸附和脱附外,整个变温吸附操作中还包括对脱附后的吸附剂进行干燥、冷却等辅助环节。变温吸附用于常压气体及空气的减湿,空气中溶剂蒸气的回收等。如果吸附质是水,可用热气体加热吸附剂进行脱附;如果吸附质是有机溶剂,吸附量高时可用水蒸气加热脱附后冷凝回收;吸附量低时则用热空气脱附后烧去,或经二次吸附后回收。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条