The structural parameter for austenitic phasetransformation has a great effect on the characteristic of martensitic transformation.
发现奥氏体相变结构参数对马氏体相变特性有很大影响。
The structural parameter for austenitic phasetransformation has a great effect on the characteristic of martensitic transformation.
发现奥氏体相变结构参数对马氏体相变特性有很大影响。
The high wearing resistance of the samples after hydrocooling and air cooling was partially attributed to martensite transformation and work-hardening.
经水冷和空冷具有高耐磨性
重要原因
其在磨损过程中诱发了马氏体相变,出现加工
化现象。
It holds that main causes promoting crack on martensite stainless steel are gross martensite and crystal boundary carburet and secondary phase distributed along crystal boundary.
文章认为,粗大马氏体
、晶界碳化物以及沿晶界分布
“第二相”
促使马氏体不锈钢产生裂纹
主要原因。
The crack initiates at stress concentration point in the root of weld, where has much more martenite, carbide and inclusion, and the serious hydrogen segregation.
裂纹均在焊缝根部应力集中处萌生,该处马氏体含量比较大,碳化物及夹杂物较多,氢偏聚现象严重。
声明:以上例句、词性分类均由互联网资源自动生成,部分未经过人工审核,其表达内容亦不代表本软件观点;若发现问题,欢迎向我们指正。
The structural parameter for austenitic phasetransformation has a great effect on the characteristic of martensitic transformation.
发现奥氏体相变结构参数对马氏体相变特性有响。
The high wearing resistance of the samples after hydrocooling and air cooling was partially attributed to martensite transformation and work-hardening.
经水冷和空冷的试样具有高耐磨性的重要原因是其在磨损过程中诱发了马氏体相变,出现加工化现象。
It holds that main causes promoting crack on martensite stainless steel are gross martensite and crystal boundary carburet and secondary phase distributed along crystal boundary.
文章认为,粗的马氏体组织、晶界碳化物以及沿晶界分布的“第二相”组织是促使马氏体不锈
裂纹的主要原因。
The crack initiates at stress concentration point in the root of weld, where has much more martenite, carbide and inclusion, and the serious hydrogen segregation.
裂纹均在焊缝根部应力集中处萌,该处马氏体含量比较
,碳化物及夹杂物较多,氢的偏聚现象严重。
声明:以上例句、词性分类均由互联网资源自动成,部分未经过人工审核,其表达内容亦不代表本软件的观点;若发现问题,欢迎向我们指正。
The structural parameter for austenitic phasetransformation has a great effect on the characteristic of martensitic transformation.
发现奥氏体相变结构参氏体相变特性有很大影响。
The high wearing resistance of the samples after hydrocooling and air cooling was partially attributed to martensite transformation and work-hardening.
经水冷和空冷的试样具有高耐磨性的重要原因是其在磨损过程中诱发了氏体相变,出现加工
化现象。
It holds that main causes promoting crack on martensite stainless steel are gross martensite and crystal boundary carburet and secondary phase distributed along crystal boundary.
文章认为,粗大的氏体组织、晶界碳化物以及沿晶界分布的“第二相”组织是促使
氏体不锈钢产生
的主要原因。
The crack initiates at stress concentration point in the root of weld, where has much more martenite, carbide and inclusion, and the serious hydrogen segregation.
在焊缝根部应力集中处萌生,该处
氏体含量比较大,碳化物及夹杂物较多,氢的偏聚现象严重。
声明:以上例句、词性分类由互联网资源自动生成,部分未经过人工审核,其表达内容亦不代表本软件的观点;若发现问题,欢迎向我们指正。
The structural parameter for austenitic phasetransformation has a great effect on the characteristic of martensitic transformation.
发现奥氏体相变结构参数对马氏体相变特性有很大影响。
The high wearing resistance of the samples after hydrocooling and air cooling was partially attributed to martensite transformation and work-hardening.
经水冷和空冷试样具有
性
重要原因是其在
损过程中诱发了马氏体相变,出现加工
化现象。
It holds that main causes promoting crack on martensite stainless steel are gross martensite and crystal boundary carburet and secondary phase distributed along crystal boundary.
文章认为,粗大马氏体组织、晶界碳化物以及沿晶界分
“
二相”组织是促使马氏体不锈钢产生裂纹
主要原因。
The crack initiates at stress concentration point in the root of weld, where has much more martenite, carbide and inclusion, and the serious hydrogen segregation.
裂纹均在焊缝根部应力集中处萌生,该处马氏体含量比较大,碳化物及夹杂物较多,氢偏聚现象严重。
声明:以上例句、词性分类均由互联网资源自动生成,部分未经过人工审核,其表达内容亦不代表本软件观点;若发现问题,欢迎向我们指正。
The structural parameter for austenitic phasetransformation has a great effect on the characteristic of martensitic transformation.
发现奥氏体相变结构参数对马氏体相变特性有很大影响。
The high wearing resistance of the samples after hydrocooling and air cooling was partially attributed to martensite transformation and work-hardening.
经水冷和空冷的试样具有高耐磨性的因是其在磨损过程中诱发了马氏体相变,出现加工
化现象。
It holds that main causes promoting crack on martensite stainless steel are gross martensite and crystal boundary carburet and secondary phase distributed along crystal boundary.
文章认为,粗大的马氏体组织、界碳化物以
界分布的“第二相”组织是促使马氏体不锈钢产生裂纹的主
因。
The crack initiates at stress concentration point in the root of weld, where has much more martenite, carbide and inclusion, and the serious hydrogen segregation.
裂纹均在焊缝根部应力集中处萌生,该处马氏体含量比较大,碳化物夹杂物较多,氢的偏聚现象严
。
声明:以上例句、词性分类均由互联网资源自动生成,部分未经过人工审核,其表达内容亦不代表本软件的观点;若发现问题,欢迎向我们指正。
The structural parameter for austenitic phasetransformation has a great effect on the characteristic of martensitic transformation.
发现奥氏体相变结构参数对马氏体相变特性有很大。
The high wearing resistance of the samples after hydrocooling and air cooling was partially attributed to martensite transformation and work-hardening.
水冷和空冷的试样具有高耐磨性的重要原因是其在磨损过程中诱发了马氏体相变,出现加工
化现象。
It holds that main causes promoting crack on martensite stainless steel are gross martensite and crystal boundary carburet and secondary phase distributed along crystal boundary.
文章认为,粗大的马氏体组织、晶界碳化物以及沿晶界分布的“第二相”组织是促使马氏体产生裂纹的主要原因。
The crack initiates at stress concentration point in the root of weld, where has much more martenite, carbide and inclusion, and the serious hydrogen segregation.
裂纹均在焊缝根部应力集中处萌生,该处马氏体含量比较大,碳化物及夹杂物较多,氢的偏聚现象严重。
声明:以上例句、词性分类均由互联网资源自动生成,部分未过人工审核,其表达内容亦
代表本软件的观点;若发现问题,欢迎向我们指正。
The structural parameter for austenitic phasetransformation has a great effect on the characteristic of martensitic transformation.
发现奥氏体相变结构参数对马氏体相变特性有很。
The high wearing resistance of the samples after hydrocooling and air cooling was partially attributed to martensite transformation and work-hardening.
经水冷和空冷的试样具有高耐磨性的重要原因是其在磨损过程中诱发了马氏体相变,出现加工化现象。
It holds that main causes promoting crack on martensite stainless steel are gross martensite and crystal boundary carburet and secondary phase distributed along crystal boundary.
文章认为,粗的马氏体组织、晶界碳化物以及沿晶界分布的“第二相”组织是促使马氏体不
生裂纹的主要原因。
The crack initiates at stress concentration point in the root of weld, where has much more martenite, carbide and inclusion, and the serious hydrogen segregation.
裂纹均在焊缝根部应力集中处萌生,该处马氏体含量比较,碳化物及夹杂物较多,氢的偏聚现象严重。
声明:以上例句、词性分类均由互联网资源自动生成,部分未经过人工审核,其表达内容亦不代表本软件的观点;若发现问题,欢迎向我们指正。
The structural parameter for austenitic phasetransformation has a great effect on the characteristic of martensitic transformation.
发现奥氏结构参数对马氏
特性有很大影响。
The high wearing resistance of the samples after hydrocooling and air cooling was partially attributed to martensite transformation and work-hardening.
经水冷和空冷的试样具有高耐磨性的重因是其在磨损过程中诱发了马氏
,出现加工
化现象。
It holds that main causes promoting crack on martensite stainless steel are gross martensite and crystal boundary carburet and secondary phase distributed along crystal boundary.
文章认为,粗大的马氏组织、晶界碳化物以及沿晶界分布的“第二
”组织是促使马氏
不锈钢产生裂纹的
因。
The crack initiates at stress concentration point in the root of weld, where has much more martenite, carbide and inclusion, and the serious hydrogen segregation.
裂纹均在焊缝根部应力集中处萌生,该处马氏含量比较大,碳化物及夹杂物较多,氢的偏聚现象严重。
声明:以上例句、词性分类均由互联网资源自动生成,部分未经过人工审核,其表达内容亦不代表本软件的观点;若发现问题,欢迎向我们指正。
The structural parameter for austenitic phasetransformation has a great effect on the characteristic of martensitic transformation.
发现奥氏体相变结构参数对马氏体相变特性有很大影响。
The high wearing resistance of the samples after hydrocooling and air cooling was partially attributed to martensite transformation and work-hardening.
经水冷和空冷的试样具有高耐磨性的重要原在磨损过程中诱发了马氏体相变,出现加工
现象。
It holds that main causes promoting crack on martensite stainless steel are gross martensite and crystal boundary carburet and secondary phase distributed along crystal boundary.
文章认为,粗大的马氏体组织、晶界碳及沿晶界分布的“第二相”组织
促使马氏体不锈钢产生裂纹的主要原
。
The crack initiates at stress concentration point in the root of weld, where has much more martenite, carbide and inclusion, and the serious hydrogen segregation.
裂纹均在焊缝根部应力集中处萌生,该处马氏体含量比较大,碳及夹杂
较多,氢的偏聚现象严重。
声明:上例句、词性分类均由互联网资源自动生成,部分未经过人工审核,
表达内容亦不代表本软件的观点;若发现问题,欢迎向我们指正。