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消除某发动机壳体旋压裂纹的工艺改进
英文标题:Process improvement on eliminating spinning cracks for a certain engine housing
作者:廉国安1 程茜茜2 范国军1    婷1 
单位:1. 晋西工业集团有限责任公司 2. 驻太原地区第四军代表室 
关键词:发动机壳体 正向旋压 裂纹 循环球化退火 最大减薄率 
分类号:TG376.3
出版年,卷(期):页码:2022,47(1):115-118
摘要:

 薄壁、长形发动机壳体是弹箭类的关键零件,使用材料为D6AE高强度合金钢,对旋前毛坯进行球化退火处理,在强力旋压成形过程中筒体出现批量周向裂纹,裂纹呈鱼鳞状,由内腔沿壁厚向外表面延展而且裂纹位置集中。为解决该问题,基于强力旋压成形机理、成形工艺、热处理工艺等理论,对裂纹形貌、产生位置及旋压受力状态进行分析,获得了裂纹产生的根本原因,进而优选出在不增加成本的前提下通过改进旋压工艺得到的最佳解决方案:通过改善裂纹产生阶段的受力状态,使该阶段受力变小。该解决方案彻底消除了裂纹源,避免了重大经济损失,为大批量生产发动机壳体提供了良好的技术基础。

 The thin-walled and long-shaped engine housing is a key component of projectiles and arrows, and the material used is D6AE high-strength alloy steel. Before spinning, the blank is subjected to spheroidizing annealing treatment, and during the power spinning process, mass circumferential cracks appear on the cylinder body, which are fish-scale-like and extending from the inner cavity to the outer surface along the wall thickness direction, and the crack positions are concentrated. In order to solve the above problem, based on the theories of power spinning mechanism, forming process and heat treatment process, etc., the morphology, generating location and spinning stress state of cracks were analyzed to obtain the root cause of the cracks, and the best solution scheme obtained by improving the spinning process without increasing the cost was chosen, which improved the stress state in the crack generation stage to reduce the stress. Thus, the crack source was completely eliminated to avoid major economic losses in this solution scheme, which provided a good technical foundation for  mass production of engine housing.

基金项目:
作者简介:
作者简介:廉国安(1966-),男,学士,研究员级高级工程师 E-mail:1192330036@qq.com
参考文献:

 [1]   中国机械工程学会锻压学会.锻压手册[M].北京:机械工业出版社,2002.


Forging & Stamping Branch of Chinese Mechanical Engineering Society Society. Forging Manual[M].Beijing: China Machine Press,2002.

[2]   贾文铎. 筒形件强旋若干物理现象的变形机理[A].第三届全国旋压技术交流会议论文[C].北京,1986.

Jia W D. Deformation mechanism of some physical phenomena of strong rotation of cylindrical parts[A]. The Third National Spinning Society Paper[C]. Beijing,1986.

[3]   陈适先,贾文铎,曹庚顺,等.强力旋压工艺与设备[M].北京:国防工业出版社,1986.

Chen S X,Jia W D,Cao G S,et al. Powerful Spinning Process and Equipment [M]. Beijing: National Defence Industry Press,1986.

[4]   陈文耀,朱效教,丁继良,等.超高强度D6AC钢壳体、30CrMnSiA尾管旋压工艺研究[A].第三届全国旋压技术交流会议论文[A].北京,1986.

Chen W Y,Zhu X J,Ding J L,et al. Spinning technology of 30CrMnSiA liner for ultra-high strength D6AC steel shell[A]. The Third National Spinning Society Paper[C]. Beijing,1986.

[5]   赵云豪.筒形件强力旋压过程中堆积现象的浅析[A].第四届全国旋压技术交流会议论文[C]. 北京,1987.

Zhao Y H. Analysis of the stacking phenomenon in the process of strong spinning of cylindrical parts[A]. The Fourth National Spinning Society Paper[C]. Beijing,1987.

[6]   崔忠圻.金属学与热处理[M].北京:机械工业出版社,1999.

Cui Z X. Metallography & Heat Treatmen[M]. Beijing: China Machine Press,1999.

[7]   徐洪烈.强力旋压技术[M].北京:国防工业出版社,1984.

Xu H L. Powerful Spinning Technology[M]. Beijing: National Defence Industry Press,1984.

[8]   马泽恩.筒形件强力旋压的变形分析与旋压力计算[A].第一届旋压会议论文[C]. 北京,1980.

Ma Z E. Deformation analysis and spin pressure calculation of cylindrical parts under strong spinning[A]. The first Spinning Society Paper [C]. Beijing,1987.

[9]   王成和.旋压力的测定试验[A].中国机械工程学会第三届锻压年会交流论文[C].北京,1986.

Wang C H. Measurement test of rotary pressure[A].The Third National Spinning Society Paper[C]. Beijing,1986.

[10]赵云豪,李彦利.旋压技术与应用[M].北京:机械工业出版社,2007.

Zhao Y H,Li Y L. Spinning Technology and Application[M]. Beijing: China Machine Press,2007.

[11]安章荣.铝合金旋压舱的研究[A].第三届全国旋压技术交流会议论文[C].北京,1986.

An Z R. Study on aluminium alloy spinning tank[A].The Third National Spinning Society Paper[C]. Beijing,1986.

[12]日本塑形加工学会.旋压成形技术[M]. 北京:机械工业出版社,1988.

Japan Plastic Processing Society. Spinning Forming Technology[M]. Beijing: China Machine Press,1988.

[13]JB/T 5074—2007,低、中碳钢球化体评级[S].

JB/T 5074—2007,Spheroidite grade of low and medium carbon steel[S].
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