程序员宋文军是谁,你能给我介绍一下吗? 
时间: 2023-05-23 15:01:52 浏览: 42
宋文军,1982年出生,是一名知名程序员、开源社区贡献者和技术顾问。他是国内知名的Ruby on Rails框架专家,早期参加了Ruby on Rails开源项目的翻译工作,并在国内推广Ruby on Rails开发技术。他还是多个开源项目的贡献者,包括Linux内核、Ruby、MacRuby、Rails等。同时,他也是一位优秀的技术博客作者。
相关问题
linux查找文军
如果您想在Linux系统中查找文件名为"文军"的文件,您可以使用以下命令:
```
find / -name "文军"
```
该命令将在整个文件系统中搜索名为"文军"的文件,并将搜索结果输出到终端。请注意,这可能需要一些时间,具体取决于您的系统和文件系统大小。
Good morning all teachers and students, my name is liangwenjun The topic of my report is Influence of molten salt potential on stress corrosion cracking behavior of 316 stainless steel. Stress corrosion cracking (SCC) is the cracking of sensitive materials resulting from the combined action of a fixed tensile stress and some specific corrosive medium.As shown in the picture on the right, Stress corrosion cracking is also one of the main causes of reactor structural material failure。 Structural materials for molten salt reactors must have good resistance to fluoride corrosion, excellent mechanical properties, good resistance to high temperature oxidation and irradiation Stainless steels such as 316 have ASME certification for high-temperature pile materials andare very economical.Therefore, many companies are considering 316 stainless steel as a structural material when designing molten salt reactors。Such as Kairos power and Terra power. 316 showed good corrosion resistance in purified molt en fluoride salt, and in Chen's study 316 did not crack with or without Cr addition under the synergistic effect of stress. Therefore, we accelerate corrosion by adding europium ion, and in the study to quantify the molten salt potential and stress magnitude, and finally determine the effect of molten salt potential on stress corrosion cracking of 316 stainless steel.
早上好,各位老师和同学们,我的名学是梁文军。我的报告的主题是:熔盐电位对316不锈钢应力腐蚀开裂行为的影响。
应力腐蚀开裂(SCC)是指敏感材料由固定的拉应力和某些特定腐蚀介质的结合作用导致的裂纹。如右图所示,应力腐蚀开裂也是反应堆结构材料失效的主要原因之一。
熔盐反应堆的结构材料必须具有良好的抗氟腐蚀性,优良的机械性能,良好的抗高温氧化和辐照抗性。316不锈钢具有高温堆材料的ASME认证,并且非常经济实惠。因此,许多公司在设计熔盐反应堆时考虑使用316不锈钢作为结构材料,例如Kairos power和Terra power。
316在纯化熔盐氟盐中表现出良好的抗腐蚀性,并且在陈的研究中,316在应力和腐蚀的协同作用下不会开裂,无论是否加入Cr。因此,我们通过添加欧拉金属离子来加速腐蚀,并在研究中量化熔盐电位和应力的大小,最终确定熔盐电位对316不锈钢应力腐蚀开裂的影响。