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| Application of advanced mechanical manufacturing technology in performance optimization of mine intelligent special equipment |
| Zang Meng, Zhao Xiang, Xu Hui |
| Shandong Wanshouyuan Technology Development Co., Ltd., Tai an 271200, China |
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Abstract Aiming at the comprehensive performance bottlenecks of mining intelligent special equipment under extreme working conditions, such as insufficient structural reliability, low operating energy efficiency and dynamic response hysteresis, the application of advanced mechanical manufacturing technology in equipment performance optimization is carried out. The matrix-reinforced phase in-situ metallurgical bonding is realized by laser cladding gradient functional materials, and the cross-scale regulation of the interface performance between the wear-resistant layer and the high-toughness matrix is completed. Based on the integration of variable density topology optimization and selective laser melting additive manufacturing process, the integrated net forming manufacturing of lightweight lattice structure and special-shaped flow channel is realized. The closed-loop control of process parameter chain based on digital twin and the active compensation strategy of assembly error are adopted to improve the manufacturing accuracy and realize the collaborative optimization goal of equipment performance. Comparative experiments show that the optimized equipment prototype has significant advantages in ultimate bearing capacity and operational stability, which verifies the core enabling value of modern advanced manufacturing technology in promoting the high-end process of mining equipment.
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| [ 1 ] 党梦宇. 基于全生命周期视角的煤矿机电设备性能优化[ J ]. 电力设备管理,2025( 2 ):210 - 212.
[ 2 ] 王世斌,乔少波,贺 华,等. ZY10000/22/45D型液压支架护帮板性能优化研究[ J ]. 矿山机械,2023,51( 3 ):64 - 66.
[ 3 ] 杨 晓,侯晨光. 煤矿井下机械设备的安全性能优化探讨[ J ]. 汽车博览,2024( 6 ):10 - 12.
[ 4 ] 赵燕军. 煤矿机电设备的安全性能评估及其优化策略研究[ J ]. 仪器仪表用户,2024,31( 6 ):92 - 94.
[ 5 ] 杨恭利,孔宁宁,丁小龙,等. 煤矿离心式压风机性能优化与能效分析[ J ]. 能源与节能,2025( 9 ):79 - 81. |
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