沉积路径对等离子弧快速成形Inconel625合金组织及性能的影响
Effect of deposition path on microstructure and mechanical properties of plasma arc rapid prototyping of Inconel 625 alloy
-
摘要: 研究了沉积路径对等离子弧快速成形Inconel625合金组织及性能的影响,分析了不同沉积路径条件下沉积态组织的生长机制.结果表明,沉积路径对组织特征的影响机理主要表现为不同的热输入和散热方向,导致了不同温度梯度,从而影响组织生长的延续性,正反交替路径获得最佳的成形质量和力学性能,交叉路径虽然导致了组织的交替生长,促进了层内区域细小的枝晶的生成和Laves相的弥散析出,但在层与层边界处,严重的元素偏析,大量脆性相的析出以及枝晶的粗化使力学性能没有大幅度提高.Abstract: In order to optimize the microstructure and mechanical properties of plasma arc rapid prototyped Inconel625 alloy, the alternating and cross paths were applied to forming the rectangular block sample. The effects of the two paths on the structure and properties of block samples were investigated, and the growth mechanisms of the as-deposited structures under the two conditions were analyzed. The results show that different heat input and heat dissipation directions result in different temperature gradient, and have an influence on the continuity of structure growth. The optimal forming quality and mechanical properties were obtained under the condition of alternating path. Although using the cross path can lead to the alternating structure growth, the formation of small dendrite and the disperse precipitation of Laves phase, the mechanical properties were not increased drastically because of serious element segregation, precipitation of brittleness phase and the coarsening of dendrite.
-
-
[1] Shankar V, Rao K B S, Mannan S L. Microstructure and mechanical properties of inconel 625 superalloy[J]. Journal of Nuclear Materials, 2001, 288(2-3):222-232. [2] 徐富家, 吕耀辉, 刘玉欣, 等. 脉冲PAW快速成形焊缝尺寸的预测模型[J]. 焊接学报. 2012, 33(1):49-52. Xu Fujia, LÜ Yaohui, Liu Yuxin, et al. Prediction model of bead geometry shaped by rapid prototyping based on pulsed PAW[J]. Transactions of the China Welding Institution, 2012, 33(1):49-52. [3] 马瑞, 董志波, 魏艳红, 等. 镍基合金焊缝凝固组织演变过程模拟和仿真[J]. 焊接学报, 2010, 31(7):43-46. Ma Rui, Dong Zhibo, Wei Yanhong, et al. Simulation of solidification microstructure evolution in molten pool of nickel base alloy[J]. Transactions of the China Welding Institution, 2010, 31(7):43-46. [4] 董志波,马瑞, 王勇, 等. 镍基合金焊缝凝固组织演变过程模拟[J]. 焊接学报, 2010, 31(7):43-46. Dong Zhibo, Ma Rui, Wang Yong, et al. Simulation of solidification microstructure in molten pool of nickel-base alloy[J]. Transactions of the China Welding Institution, 2010, 31(10):27-30. [5] Thivillon L, Bertrand P, Laget B, et al. Potential of direct metal deposition technology for manufacturing thick functionally graded coatings and parts for reactors components[J]. Journal of Nuclear Materials, 2009, 385(2):236-241. [6] Paul C P, Ganesh P, Mishra S K, et al. Investigating laser rapid manufacturing for inconel-625 components[J]. Optics & Laser Technology, 2007, 39(4):800-805. [7] Ganesh P, Kaul R, Paul C P, et al. Fatigue and fracture toughness characteristics of laser rapid manufactured inconel625 structures[J]. Materials Science and Engineering A, 2010, 527(29-30):7490-7497. [8] Theriault A, Xue L, Dryden J R. Fatigue behavior of laser consolidated IN-625 at room and elevated temperatures[J]. Materials Science and Engineering A, 2009, 516(1-2):217-225. [9] Liu F C, Lin X, Huang C P, et al. The effect of laser scanning path on microstructures and mechanical properties of laser solid formed nickel-base superalloy inconel 718[J]. Optics & Laser Technology, 2011, 509(13):4505-4509. -
期刊类型引用(13)
1. 董会,甘少明,杜永祺,白佳鑫,程煜辰,李明,朱朝璇. 激光扫描速率对NiCr/Cr_3C_2涂层微结构与耐磨性的影响. 金属热处理. 2023(11): 282-287 . 百度学术
2. 皮智敏,周鸿凯,黄志武,陈枭. WC-Cr_3C_2基金属陶瓷涂层的研究现状. 热加工工艺. 2021(02): 6-9 . 百度学术
3. 胡登文,刘艳,陈辉,王梦超. Q960E钢激光熔覆Ni基WC涂层组织及性能. 中国激光. 2021(06): 239-245 . 百度学术
4. 陆琪琪,叶林,陆海峰,张学峰,阮新宇,覃恩伟,吴树辉. 适用于垃圾焚烧炉的激光熔覆技术研究. 热处理. 2021(02): 31-35+39 . 百度学术
5. 张敏,王刚,张立胜,许桓瑞,张云龙,许帅. 40Cr钢表面激光熔覆Fe, Ni基涂层组织性能研究. 稀有金属. 2021(08): 928-935 . 百度学术
6. 王冬春,杜锦涛,刘辉,栾程群. 碳化钨耐磨材料激光熔覆关键问题. 电焊机. 2021(08): 146-152+182 . 百度学术
7. 杨宁,李立凯. 激光功率和粉末含量对(V_2O_5+B_2O_3+C)镍基涂层硬度的影响. 热加工工艺. 2021(24): 103-105 . 百度学术
8. 钱绍祥. 激光熔覆铁基合金涂层的组织及耐蚀性能. 铸造技术. 2019(06): 613-616 . 百度学术
9. 杨宁,李立凯. 激光熔覆(V_2O_5+WO_3+C)/Ni60涂层的磨损性能研究. 稀有金属与硬质合金. 2019(04): 54-57+64 . 百度学术
10. 杨宁,李立凯. 激光功率和粉末含量对(B_2O_3+WO_3+C)镍基熔覆层硬度的影响. 应用激光. 2019(04): 574-579 . 百度学术
11. 李美艳,韩彬,林学强. 基于“学研创”交叉融合的激光加工实验室建设与安全管理实践. 实验技术与管理. 2018(12): 242-245 . 百度学术
12. 马群双,李亚江,王娟,段虎明,徐广源. 宽束激光熔覆Ni60/WC复合层显微组织及抗剪强度. 焊接学报. 2016(12): 49-52+131 . 本站查看
13. 李正秋,石玗,曹驰,苏艳文. 半导体激光熔覆Ni基合金堆焊层组织及性能的研究. 应用激光. 2016(05): 547-552 . 百度学术
其他类型引用(12)
计量
- 文章访问数: 276
- HTML全文浏览量: 1
- PDF下载量: 127
- 被引次数: 25