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1)  high-temperature wear mechanism
高温磨损机理
2)  high temperature wear
高温磨损
1.
High temperature wear tests for 3Cr2W8V steel were performed by a pin-on-disk high temperature wear apparatus.
采用销盘式高温磨损试验机对3Cr2W8V钢进行高温磨损试验,研究了淬火温度对3Cr2W8V钢磨损性能的影响,采用SEM、EDS、XRD分析磨损表层成分、形貌和结构,探讨高温磨损机制。
2.
The surface roughness, microhardness and high temperature wear loss were measured.
采用三种爆炸喷涂工艺在SCH19耐热钢基体上制备CoNiCrAlYAl2O3高温耐磨涂层,借助XRD、SEM和EDS等技术对涂层的组织结构进行分析,并检测涂层的表面粗糙度、显微硬度和高温磨损失重。
3.
Thehigh temperature wear mechanism of the steel is oxide fat.
研究了不同wV/wC对Cr-Mo-V精铸热锻模具钢的高温磨损性能的影响,并探讨了其磨损机理。
3)  high-temperature wear
高温磨损
1.
Study and analysis is made of the effect of the high-temperature wear test parameters on high-temperature wear resistance of WC/steel composites material under different heat-treatment condition.
研究了在不同热处理条件下,高温磨损试验参数对WC/钢复合材料(GJH—2合金)高温抗磨损性能的影响。
2.
The high-temperature wear property of a new type precision cast hot-forging die steel was apparently affected by the alloy elements Mo.
合金元素Mo能明显影响新型精铸热锻模具钢高温磨损性能,分析了铸钢硬度及高温磨损后表面形貌。
4)  SRV wear tester
SRV高温摩擦磨损实验机
1.
The tribological behavior of a bio-additive and its modification additive,was compared by SRV wear tester under the 280 ℃ and normal temperature environment.
在SRV高温摩擦磨损实验机上,在280℃高温和常温条件下,对比研究了一种市售生物基添加剂及改性后的生物基添加剂作为润滑剂的摩擦磨损性能。
2.
This paper introduces the tribological behavior of bio -additive and modification additive, using the SRV wear tester, under the 280℃ and normal temperature environment.
介绍了在SRV高温摩擦磨损实验机上,对比了在280℃高温和常温条件下。
5)  friction and wear mechanism
磨损机理
1.
And the friction and wear mechanisms were also discussed.
采用粉末冶金方法制备了SiC颗粒增强铁基复合材料,考察了SiC颗粒含量与铁基粉末冶金复合材料的显微组织、相对密度、力学性能及磨损性能之间的关系,并探讨了其摩擦磨损机理。
6)  wear mechanisms
磨损机理
1.
The wear mechanisms of 45 are mainly abrasive wear and adhesive wear.
磨损机理主要为磨粒磨损和粘着磨损。
2.
In this paper,category ization\,tribology properties and wear mechanisms of heat resistance polymer composites are reviewed.
本文综述了耐温聚合物基复合材料的种类、摩擦学性能和磨损机理。
补充资料:表面磨损
分子式:
CAS号:

性质:两表面接触并作相对运动所产生的微弱摩擦导致了缓慢的材料消耗。根据相对运动的特点,分成滑动磨损,转动磨损,冲击磨损三种。通常认为接触压力较小,表面材料消耗不大的属表面磨损,相反的情况,可归入表面磨耗。

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