1. <del id="qugnx"><dfn id="qugnx"></dfn></del>

      <blockquote id="qugnx"></blockquote>

    2. 亚洲粉嫩av一区二区黑人,日本一区二区三区久久久,亚洲男人的天堂视频,国产成人精品午夜日本亚洲18,国产成人精品手机在线观看,强奷乱码中文字幕,久久er热在这里只有精品66 ,亚洲成人av高清在线
      HOT LINE: +86-510-80628100
      2024-04-10 The heat treatment furnace is put into use, and the technical upgrade enters a new stage. 2019-05-15 MetalForm China 2019 (Shanghai Show)

      Technical Article

      Technical Article

      Current Location: HOME > Technical Article

      The Effect of High Temperature Normalization on the Microstructure of H13 Steel after Forging

      H13 steel has high hardenability, good wear resistance, and heat resistance. It has relatively high hardness and strength below 600 ℃, good resistance to cold and hot fatigue, and high resistance to tempering stability. It is widely used in die-casting molds for aluminum, copper, and their alloys, and has achieved good economic benefits. During the trial production, the H13 module experienced surface cracking, incomplete spheroidization, and uneven microstructure after forging. This article proposes a high-temperature normalizing+spheroidizing annealing process to improve module quality and homogenize the structure.

      In this experiment, H13 steel with severe network carbide segregation was subjected to high-temperature normalizing and isothermal spheroidization annealing treatment to study the improvement of its microstructure by high-temperature normalizing.

      Experimental materials and methods

      Divide the modules into three groups and normalize them at 970 for 5, 7, and 10 hours respectively. The heat treatment process includes high-temperature normalizing (air cooling) and isothermal spheroidization annealing. The isothermal spheroidization annealing process parameters are: high temperature section 870 ℃× 8 h, low temperature section 730 ℃× 14 h. Based on the effect of high temperature normalizing time on the module structure, a new heat treatment process is developed.

      Experimental results and analysis

      With the extension of the normalizing insulation time, the degree of carbide network segregation gradually decreases, and the small carbide network gradually dissolves.

      After 5 hours of high-temperature normalizing, the degree of segregation significantly improved, but segregation still exists. When the normalizing insulation time is extended to 7 hours, segregation is basically eliminated, but the carbide network is still relatively clear. The small secondary carbide network dissolves smoothly into the matrix during austenitization, but the coarse carbide network is not dissolved. When the insulation time is extended to 10 hours, the carbide network is basically eliminated, and only the particularly coarse carbide network in the early stage remains. After spheroidization annealing in the later stage, the spheroidized structure is also relatively uniform. From the above analysis, it can be concluded that high-temperature normalizing can eliminate segregation in the organization and improve the shape and distribution of network carbides. With the extension of high-temperature normalizing insulation time, carbide particles gradually dissolve, segregation and carbide network are gradually eliminated, and the organization is significantly improved.

      Conclusion

      1) Slow cooling of H13 steel after forging will result in the precipitation of carbides in a network like pattern. The slower the cooling rate, the more severe the carbide network. Although it can be improved by later normalizing, some abnormal structures still remain in the matrix and are difficult to eliminate. In addition, slow cooling after forging will cause abnormally coarse grains, which are hereditary and difficult to refine in the later stage.

      2) High temperature normalizing can improve the segregation and network carbides in the microstructure of H13 steel after forging. Within a certain time range, the improvement in microstructure becomes more significant with the extension of normalizing insulation time.

      3) After forging H13 steel, it is air-cooled above the Ms point and then subjected to high-temperature normalizing to obtain a more uniform and dispersed spheroidized structure with better spheroidization effect.


      return
      Copyright ? 2024 Jiangyin Eternal Heavy Industry Co.,Ltd. 
      主站蜘蛛池模板: 日本VA欧美VA精品发布| 九九热在线免费播放视频| 国产精品呻吟一区二区三区| AV免费网站| 国产?亚洲?在线| 精品综合久久久久久8888| 亚洲欧美日韩在线码| 亚洲精品麻豆一二三区| 成在线人免费视频播放| 天天肏屄| 久久综合国产精品一区二区 | 精品久久久久久中文字幕| 97精品一区二区三区免费| 永久免费AV无码网站YY| 亚洲中文字幕人妻系列| 蜜臀久久精品亚洲一区| 国产高清在线精品一区二区三区| 亚洲欧美综合精品成人网站| 成人区人妻精品一区二| 日韩a一级欧美一级| 亚洲精品一区二区动漫| 四虎国产精品成人免费久久| 久艹视频在线观看| 六间房9.1隐藏入口6.1.0.7更新内容在线| 久久精品免费国产一区| 无码熟妇人妻AV在线影片最多| 亚洲久草网| 精品人妻一二| 久久99热只有视精品6国产| 天天操天天干视频| 韩国 日本 亚洲 国产 不卡| 中文字幕丰满乱子无码视频| 性色高清xxxxx厕所偷窥| 人妻av中文字幕无码专区| 亚洲人妻系列| https://17630364268551281430832.nx37lbnqvd.com/column/all/show? | 69福利区| 超碰人人超碰人人| 久久精品久久电影免费理论片| 一本一道av无码中文字幕﹣百度| 蒲城县|