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1)  cave corrosion mechanism
穴蚀机理
2)  Punching mechanism
成穴机理
3)  cavitation erosion
穴蚀
1.
Microstructure,cavitation erosion resistance and surface morphology after cavitation erosion of the untreated sample,the remelted by plasma jet and the treated by nitriding were observed and measured by optical microscope,scanning electron microscope,ultrasonic oscillation magnetostriction strain gage and analytical balance etc.
借助光学显微镜、扫描电子显微镜、超声振荡磁致伸缩仪、电子分析天平等设备观察和测试了熔凝、渗氮及未处理试样的表层组织结构、耐穴蚀性能和穴蚀后形貌。
2.
The conclution shows that the cause for damage is cavitation erosion.
文章采用金相显微镜和冷场发射扫描电镜对轴瓦损坏部位进行磨损形貌观察分析,对连杆大端轴承进行系统的轴心轨迹、油膜压力计算,重点分析运行过程中轴承各部位滑油压力分布及其在0°~720°曲轴转角范围内滑油压力的变化,最终得出损坏的原因是穴蚀。
3.
In the article, the reasons for cavitation erosion in cylinder sleeve of 135s diesel engine are analyzed, and several suggestions to against cavitation erosion are given.
文章在分析135系列柴油机缸套穴蚀原因的基础上,给出了消除穴蚀的方案。
4)  cavitation [英][,kævi'teiʃən]  [美][,kævə'teʃən]
穴蚀
1.
Study on the anti-cavitation property of shape memory alloys;
形状记忆合金的抗穴蚀能力试验研究
2.
Cavitation Prevention of the Fuel Injection System for a Highly-uprated Diesel Engine;
高强化柴油机燃油喷射系统防穴蚀研究
3.
Diesel engine cylinder liner cavitation causes and preventive measures
柴油机气缸套穴蚀的成因以及预防措施
5)  Cavitations
穴蚀
1.
Based on the PW2000 fuel injection pump,by fuel injection pump performance testing and comparing,the influences of delivery valve s opening pressure,diameter of fuel returning hole and seat angle of returning valve on injection pump pressure,nozzle pressure,residual pressure,injection pattern,secondary injection and cavitations were discussed in this paper.
以PW 2000喷油泵为基础,通过喷油泵性能测试对比研究与分析,研究在高喷射压力强化条件下,等压出油阀偶件回油阀开启压力、回油孔直径、回油阀座面角度对喷油泵泵端压力、嘴端压力、残余压力、喷油规律综合性能及燃油液力系统穴蚀、二次喷射的影响规律与程度。
6)  corrosion mechanism
侵蚀机理
1.
Corrosion mechanism of MgO-CaO brick for AOD furnace;
AOD炉衬MgO-CaO砖的侵蚀机理
2.
Corrosion mechanism of lining of vanadium-extracting converter and improving measures;
提钒转炉炉衬侵蚀机理及改进措施
3.
Study on corrosion mechanism of RH immersion tube castable
RH浸渍管浇注料侵蚀机理的研究
补充资料:缓蚀机理
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性质: 缓蚀作用本质的说明。可概括为电化学机理和物理化学机理两种。前者是基于腐蚀电化学过程中的某一步骤或两个步骤受到阻滞而减缓腐蚀速度的。后者是基于金属表面生成吸附的或成相的膜而减缓腐蚀速度的。每种缓蚀剂的作用机理取决于其种类、化学结构、金属种类和环境条件等因素。

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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