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钢基NiMoCrFeCo-WC涂层螺杆承载应力-扭矩的有限元分析
引用本文:巴雅尔,沈承金,吉喆,陆柯龙.钢基NiMoCrFeCo-WC涂层螺杆承载应力-扭矩的有限元分析[J].稀有金属材料与工程,2022,51(1):166-173.
作者姓名:巴雅尔  沈承金  吉喆  陆柯龙
作者单位:中国矿业大学材料与物理学院 江苏徐州 221116,中国矿业大学材料与物理学院 江苏徐州 221116,中国矿业大学材料与物理学院 江苏徐州 221116,中国矿业大学材料与物理学院 江苏徐州 221116
基金项目:江苏省重点研发计划(BE2018061)
摘    要:为研究高强度塑料注射成型过程中碳化钨陶瓷涂层螺杆的承载规律,采用ANSYS有限元模拟计算不同螺棱结构的碳化钨涂层螺杆承载特征,分析钢基材对三段式碳化钨涂层螺杆承载的影响规律,模拟碳化钨涂层螺杆在扭矩载荷作用下的应力/应变变化规律,讨论碳化钨涂层螺杆的承载扭矩与最大应力和最大应变的对应关系,建立碳化钨涂层螺杆临界扭矩的判...

关 键 词:碳化钨陶瓷涂层螺杆  NiMoCrFeCo-WC涂层  有限元模拟
收稿时间:2021/1/31 0:00:00
修稿时间:2021/6/2 0:00:00

Finite element analysis of bearing stress-torque of steel-based NiMoCrFeCo-WC coating screw
Ba Yaer,Shen Chengjin,Ji Zhe and Lu Kelong.Finite element analysis of bearing stress-torque of steel-based NiMoCrFeCo-WC coating screw[J].Rare Metal Materials and Engineering,2022,51(1):166-173.
Authors:Ba Yaer  Shen Chengjin  Ji Zhe and Lu Kelong
Affiliation:School of Materials and Physics,China University of Mining and Technology,Xuzhou,School of Materials and Physics,China University of Mining and Technology,Xuzhou,School of Materials and Physics,China University of Mining and Technology,Xuzhou,School of Materials and Physics,China University of Mining and Technology,Xuzhou
Abstract:In order to study the load-bearing law of tungsten carbide ceramic-coated screws in the process of high-strength plastic injection molding, ANSYS finite element simulation was used to calculate the load-bearing characteristics of tungsten carbide-coated screws with different screw ridge structures, and the three-section tungsten carbide coating on steel substrate was analyzed The influence law of screw load, simulates the stress/strain change law of tungsten carbide coated screw under torque load, discusses the corresponding relationship between the load torque of tungsten carbide coated screw and the maximum stress and maximum strain, and establishes the critical torque of tungsten carbide coated screw The method of determination. The results show that the base material and the tungsten carbide coating at the smallest position of the screw bottom diameter bear the maximum stress and the maximum strain. Under the same loading torque condition, the smaller the screw bottom diameter, the greater its bearing stress and strain; Tungsten coating fracture strength/elongation simulation calculation method of critical torque of tungsten carbide coating screw, simulation calculation method of critical torque of tungsten carbide coating screw of unknown steel substrate based on material elastic modulus and yield strength, the calculation results of the two methods are basically verified Consistent; on this basis, the critical torques of the Cr12Mo1V1, 9Cr18MoV, and CPM420V steel base NiMoCrFeCo-WC coated screws are simulated to be 330.34, 346.87, and 363.59N·m, respectively.
Keywords:tungsten carbide ceramic screw  NiMoCrFeCo-WC coating  finite element simulation
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