1)  bearing alloy
轴瓦合金
2)  pad alloy
轴瓦合金
1.
In view of the critical procedures during the casting of bearing pad alloy for main oil pump, the processes and methods for pad alloy melting and casting was presented.
针对主油泵轴瓦合金浇铸过程中的几个关键工序,论述了轴瓦合金熔炼及浇铸的工艺过程及方法。
3)  bearing alloy
轴瓦合金层
4)  Cu-Pb bearing alloy
铜铅轴瓦合金
5)  bush
轴瓦
1.
Discussion on technology of repairing truncation three oil wedges bush of 200MW turbine;
200MW汽轮机平切三油楔轴瓦修复技术探讨
2.
The worn surface of an Al-Sn alloy bush got from a locomotive engine after using the mineral additive was analyzed.
利用销盘式磨损试验机研究了一种矿物质润滑油添加剂对钢/铝锡合金摩擦副摩擦学性能的影响,并考察了这种添加剂对实际工况下铝锡合金轴瓦的作用效果。
3.
ammonia pump and its main parame-ters,analyzes the reasons for such respects as trip at low electric charge,leakage of mechanical seal,shaft vibration and displacing upward as well as the motor's bush being burnt,and puts forward somesolutions.
介绍离心式高压氨泵的密封和主要参数,分析使用过程中出现的低电负荷跳车、机封泄漏、轴振动和轴位移高、电机轴瓦烧坏的原因,并提出了解决对策,对尚存在和正在改进的问题作了介绍。
6)  bearing shell
轴瓦
1.
Through check and test,cause is found which brings to bearing shell temperature of feed water pump electromotor going up,and effective settlements are adoped to make operation effects to get the best state.
通过检查和试验,找出了导致某电厂给水泵电动机轴瓦温度升高现象的原因,并采取了有效的解决方案,使运行效果达到最佳状况。
2.
The paper discusses that the two typical bearing shell defect s analyses treatment in general repair on barrel-shaped steel ball mill;influencing the bearing shell motivity lubricate s safety factor;bearing shell oil film s safety operating condition is reduced by year after year,and must carry on restoring work to peak barrel bearing shell in 8-10 years.
对轴瓦膨胀间隙减少缺陷进行了分析,提出了预控措施和一套合理的现场处理方法。
3.
Based on the experiment and research, this paper presents the advantages of using PTFE soft belt bearing shell to substitute babbitt metal.
在实验研究基础上,提出了用 PTFE(聚四氟乙烯)软带轴瓦替代巴氏合金轴瓦的问题。
参考词条
补充资料:轴瓦合金
分子式:
CAS号:

性质:又称轴瓦合金。用于制造滑动轴承的材料。轴承合金的组织是在软相基体上均匀分布着硬相质点,或硬相基体上均匀分布着软相质点。轴承合金应具有如下性能:良好的耐磨性能和减磨性能;有一定的抗压强度和硬度,有足够的疲劳强度和承载能力;塑性和冲击韧性良好;具有良好的抗咬合性;良好的顺应性;好的嵌镶性;要有良好的导热性、耐蚀性和小的热膨胀系数。用于各类轴承材料。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。