国产av新搬来的白领女邻居-国产av亚洲aⅴ一区二区-国产av亚洲第一女人av-国产av亚洲精品久久久久-国产av亚洲精品久久久久久-国产av亚洲精品久久久久久小说

常州精密鋼管博客網

純金屬的塑性變形



  Stress-strain curve of mild steel

Plastic deformation is a permanent unrecoverable deformation. When the load that caused the deformation is removed, the material will not return to its original shape but will maintain its newly deformed shape.

Plastic deformation and the following heat treatment have significant effects on the microstructures and properties of materials, especially metal materials.

Therefore, it is important to understand the mechanism of plastic deformation and the effect of plastic deformation on the microstructures.

(1) Plastic Deformation of Single Crystals and Strain Strengthening單晶體的塑性變形及應變強化

Plastic deformation of a single crystal metal. (a) schematic illustration of normal and shear stresses on a plane when a pure tensile force is applied. (b) schematic illustration of plastic deformation due to the shear stress τ. (c) a photography of a plastically deformed zinc single crystal. 


A single crystal can be deformed by the application of a tensile force F

Tensile stress σ (正應力):may cause elastic deformation and cleavage fracture

Shear stress τ (切應力):may result in slip, and consequently plastic deformation



               The mechanism of plastic deformation for most metals is slip and twinning. 


Slip takes place only under shear stress. 

The slip deformation forms small steps on the surface of the single crystal, which is termed slip band


The slip planes are usually the most densely packed planes(密排面); the slip directions are usually close-packed directions(密排方向).

A combination of the slip plane and the slip direction is termed the slip system. 

The slip system depends on the crystal structure.

                                       Slip systems for FCC,BCC and HCP structures

     The figure shows schematically an edge dislocation moves in response to a shear stress and produce a unit of slip under a low shear stress.  It can be seen that only a small group of atoms slip over each other at any particular instant.



Twinning occurs in a specific direction called the twinning direction. The displacement magnitude within the twin region is proportional to the distance from the twin plane.




Comparing with slip, twinning requires relatively large shear stress, and the deformation by twinning is very fast.

Twinning easily takes place in HCP crystal structures because there are few operable slip systems. In FCC structure, there is generally no twinning deformation. The twin structure observed in FCC structure usually is the result of phase transformation during an annealing heat treatment, which is called annealing twin(退火孿晶).

(2)  Plastic Deformation of Polycrystalline Metals 多晶體金屬的塑性變形


There are grain boundaries between the grains. Moreover, because the orientations of the grains are different from each other, the direction of slip varies from one grain to another. For each grain, dislocation motion occurs along the slip system.

During plastic deformation under an external force, dislocations move to grain boundaries. If dislocations cannot traverse the grain boundaries, they tend to pile up at the grain boundaries.

Plastic deformation cannot occur in all the grains at the same time. Polycrystalline metals are stronger than their single crystal equivalents.

The procedure of plastic deformation of a polycrystalline metal

When an external force is applied on a polycrystalline metal and plastic deformation occurs, slip first takes place in the grains, in which the angle between the slip system and the external force direction is close to 45°. The dislocation pileups introduce stress concentrations ahead of the slip planes.

When this stress increases to a certain level, the dislocations in adjacent grains begin to glide. When slip occurs in a large amount of grains, the specimen of polycrystalline metal shows plastic deformation in macro scale.

(本平臺"常州精密鋼管博客網"的部分圖文來自網絡轉載,轉載目的在于傳遞更多技術信息。我們尊重原創,版權歸原作者所有,若未能找到作者和出處望請諒解,敬請聯系主編微信號:steel_tube,進行刪除或付稿費,多謝!)
收藏文章
表情删除后不可恢复,是否删除
取消
确定
图片正在上传,请稍后...
评论内容为空!
还没有评论,快来抢沙发吧!

热评话题

搜索本站鋼鐵技術
★↓在此搜索查找鋼鐵材料知識↓★↘

互聯網 www.senlake.cn


鋼鐵行業熱點文章推薦

常州精密鋼管博客網主辦單位:
常州仁成金屬制品有限公司 是 專業的 精密鋼管 生產廠家,汽車鋼管,電機殼鋼管 生產單位。


常州精密鋼管博客網推薦您訪問:

常州精密鋼管博客網
(常州仁成金屬鋼管制品生產廠家博客網站)
www.senlake.cn?2006-2021
蘇ICP備08003692號

【關于本站】【提問】網站地圖【搜索】【知識星球】電腦端

主站蜘蛛池模板: 免费在线看a | 91久久老司机福利精品网 | 美女国产精品福利视频 | 老熟女五十路乱子交尾中出一区 | 国产第一浮力 | 麻豆亚洲av永久无码精品久久 | 天天操 夜夜操 | 奇米第九色 | 欧美精品v欧洲高清 | 亚洲男人精品 | 人人爱天天做夜夜爽毛片 | 日韩一道本 | 精品久久一区二区三区 | 韩国在线精品福利视频在线观看 | 东京热tokyo综合久久精品 | 日韩一区二区三区四区不卡 | 国产综合亚洲精品一区 | 久久精品国产99精品国产亚洲性色 | 婷婷色国产 | 亚洲2022国产成人精品无码区 | 久久久久久国产精品无码超碰动画 | 欧美成人影院在线观看三级 | 色狠狠色狠狠综合天天 | 137肉体摄影日本裸交 | 国产最新精品精品视频 | 欧美成人性视频播放 | 日本高清乱理伦片中文字幕啊 | mitun视频在线播放 | 性欧美精品久久久久久久 | 999久久久免费精品国产 | 日本va欧美va欧美va精品 | 国产美女口爆吞精普通话 | 久久久久久久尹人综合网亚洲 | 国产精品成人无码A片免费网址 | 精品一区二区三区在线播放视频 | 久久久久久久综合色一本 | 三级视频在线播放 | 精品久久久久久久久久久 | 男女无遮挡一进一出全程视频 | 久久亚洲一区二区三区四区 | 午夜视频免费看 |