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- Influence of Cathodic Hydrogen Charging on Plastic Deformation Behaviour at Crack Tip of Structure Steel 阴极充氢对结构钢裂尖形变行为的影响
- cathodic hydrogen charging 阴极充氢
- The results show that the existence of tungstate has great restraint action on cathodic hydrogen evolution. 结果表明,钨酸盐的存在对阴极析氢过程具有明显的阻化作用。
- The cracking of hydrogen-induced disbonding was studied through a series of electro1ytic hydrogen charging tests. 本文通过一系列电解充氢试验研究了不锈钢堆焊层的氢致剥离断裂。
- It is found that the fracture toughness in fusion area decreased with the increasing of hydrogen charging time. 发现不锈钢堆焊层熔合区的断裂韧性随着充氢时间的增加而下降。
- The influence of PWHT conditions on hydrogen-induced disbonding were studied through a series of electrolytic hydrogen charging tests. 通过一系列电解充氢试验比较了不同焊后热处理条件对不锈钢堆焊层氢致剥离的影响。
- The factors influencing hydrogen-induced disbonding were studied through a series of electrolytic hydrogen charging tests. 通过电解充氢试验研究了不锈钢堆焊层剥离断裂的影响因素,并着重分析了这一断裂问题的金属学本质。
- When fatigue-tested in hydrogen charging environment, the FCP rate was accelerated as compared by that tested in air, regardless of types of amplitude. 本研究初期,成功地设立一完善的随机负荷疲劳试验系统。充氢环境中疲劳裂缝成长速率明显比空气中提升不少。
- electrochemical hydrogen charging 电解充氢
- Water contains hydrogen and oxygen. 水含有氢和氧。
- Charging tanks put the infantry to rout. 进攻的坦克使步兵溃不成军。
- The formation and aggravation of hydrogen damage in Fe-3wt-%Si alloy during cathodic charging were studied by means of Lange transmission X-ray topography. 采用Lange式透射X射线形貌照相法研究了电解充氢导致Fe-3wt-%25Si单晶中氢损伤的规律。
- Water is composed of hydrogen and oxygen. 水由氢和氧组成。
- An error made by a judge in charging a jury. 错误指示法官给陪审团的错误指示
- Did you see Percy charging the ball down just then? 你们看见了没有,珀西当时用身体挡住了球?
- Water is composed of the elements hydrogen and oxygen. 水是由氢元素和氧元素组成的。
- Impressed current cathodic protection system for s. 船体外加电流阴极保护系统。
- Fallen riders were trampled underfoot by the charging horses. 摔下来的骑手遭飞奔马群践踏。
- Change the Zink block of cathodic Protection. 换阴极保液用的锌棒。
- Keywords hydrogen charging;positron annihilation;polycrystalline nickel;micro defect; 氢;正电子湮没技术;多品纯镍;微观缺陷;