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Prediction of Grinding Force by an Electroplated Grinding Wheel with Orderly-Micro-Grooves
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作者 Cong Mao Jiali Wang +7 位作者 Mingjun Zhang Xincheng Wang yuanqiang luo Weidong Tang Kun Tang Zhuming Bi Yongle Hu Zhenheng Lin 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2023年第4期56-66,共11页
The ability to predict a grinding force is important to control,monitor,and optimize the grinding process.Few theoretical models were developed to predict grinding forces when a structured wheel was used in a grinding... The ability to predict a grinding force is important to control,monitor,and optimize the grinding process.Few theoretical models were developed to predict grinding forces when a structured wheel was used in a grinding process.This paper aimed to establish a single-grit cutting force model to predict the ploughing,friction and cutting forces in a grinding process.It took into the consideration of actual topography of the grinding wheel,and a theoretical grinding force model for grinding hardened AISI 52100 by the wheel with orderly-micro-grooves was proposed.The model was innovative in the sense that it represented the random thickness of undeformed chips by a probabilistic expression,and it reflected the microstructure characteristics of the structured wheel explicitly.Note that the microstructure depended on the randomness of the protruding heights and distribution density of the grits over the wheel.The proposed force prediction model was validated by surface grinding experiments,and the results showed(1)a good agreement of the predicted and measured forces and(2)a good agreement of the changes of the grinding forces along with the changes of grinding parameters in the prediction model and experiments.This research proposed a theoretical grinding force model of an electroplated grinding wheel with orderly-micro-grooves which is accurate,reliable and effective in predicting grinding forces. 展开更多
关键词 Electroplated grinding wheel Orderly-micro-grooves Grinding force Force prediction Undeformed chip thickness Experimental validation
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Cutting Behavior of Cortical Bone in Different Bone Osteon Cutting Angles and Depths of Cut
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作者 yuanqiang luo Yinghui Ren +3 位作者 Yang Shu Cong Mao Zhixiong Zhou Z.M.Bi 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2022年第3期80-91,共12页
Cortical bone is semi-brittle and anisotropic,that brings a challenge to suppress vibration and avoid undesired fracture in precise cutting process in surgeries.In this paper,a novel analytical model is proposed to re... Cortical bone is semi-brittle and anisotropic,that brings a challenge to suppress vibration and avoid undesired fracture in precise cutting process in surgeries.In this paper,a novel analytical model is proposed to represent cortical bone cutting processes.The model is utilized to predict the chip formations,material removal behavior and cracks propagation under varying bone osteon cutting angles and depths.Series of orthogonal cutting experiments were conducted on cortical bone to investigate the impact of bone osteon cutting angle and depth of cut on cutting force,crack initialization and propagation.The observed chip morphology highly agreed with the prediction of chip formation based on the analytical model.The curly,serrated,grainy and powdery chips formed when the cutting angle was set as 0°,60°,90°,and 120°,respectively.Cortical bone were removed dominantly by shearing at a small depth of cut from 10 to 50μm,and by a mixture of pealing,shearing,fracture and crushing at a large depth of cut over 100μm at different bone osteon angles.Moreover,its fracture toughness was calculated based on measured cutting force.It is found that the fluctuation of cutting force is suppressed and the bone material becomes easy to remove,which attributes to lower fracture toughness at bone osteon cutting angle 0°.When the cutting direction develops a certain angle to bone osteon,the fracture toughness increases then the crack propagation is inhibited to some extent and the fluctuation of cutting force comparatively decreases.There is a theoretical and practical significance for tools design and operational parameters choice in surgeries. 展开更多
关键词 Bone cutting surgery Orthogonal cutting models Anisotropic materials Chip formation Crack initialization and propagation Fracture toughness
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Multiscale Simulation of a Novel Leaf-vein-inspired Gradient Porous Wick Structure 被引量:3
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作者 yuanqiang luo Wangyu Liu Jingren Gou 《Journal of Bionic Engineering》 SCIE EI CSCD 2019年第5期828-841,共14页
With the rapid development of photoelectric products,their miniaturization and high integration have intensified the problem of heat dissipation.Vapor chamber is a special type of heat pipe that is a particularly effe... With the rapid development of photoelectric products,their miniaturization and high integration have intensified the problem of heat dissipation.Vapor chamber is a special type of heat pipe that is a particularly effective heat spreader for electronics.In this paper,a novel Leaf-vein-inspired Gradient Porous(LGP)wick structure is designed macroscopically and the LGP design is verified using a general model.After that,the gradient porous design Model IGis selected for the subsequent mesoscopic modeling.Then a connected 2D random LGP wick model presenting porosity gradient is generated by the expanded quartet structure generation set method.Using the mesoscopic Lattice Boltzmann Method(LBM),the flow and heat transfer in the LGP wick model is analyzed.For verification,FLUENT based on the macroscopic finite volume method is used as a benchmark.Finally,the microscopic flow behaviors in the 2D random LGP wick model are analyzed using the LBM developed.Observing the entire flowing process from the inlet to outlet,it is possible to explain the mesoscopic and macroscopic phenomena well based on the microscopic flow behaviors. 展开更多
关键词 vapor chamber leaf-vein-inspired GRADIENT porous WICK STRUCTURE lattice BOLTZMANN method multiscale simulation bionic cooling
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