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By Tian Huang; et al

This publication comprises chosen papers from the 14th foreign production convention, IMCC2011, held in China. The papers reveal the most recent advancements within the box of fabrics production expertise: from basics to new applied sciences and purposes. particularly, those papers conceal the themes of complex production expertise and gear, materials-forming technology and know-how, digital Read more...


includes chosen papers from 14th overseas production convention, IMCC2011, held in China. This identify covers the subjects of complicated production know-how and kit, materials-forming Read more...

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Read Online or Download Advances in materials manufacturing science and technology XIV : selected, peer reviewed papers from the 14th International Manufacturing Conference in China (IMCC2011), October 13-15, 2011, Tianjin, China PDF

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Additional resources for Advances in materials manufacturing science and technology XIV : selected, peer reviewed papers from the 14th International Manufacturing Conference in China (IMCC2011), October 13-15, 2011, Tianjin, China

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Conclusions (1) When the fluid jet flow meets the wheel outside grinding area, there will be complex interaction between the airflow layer and the fluid , and the air backflow will cause great energy loss. (2) The ratio of grinding fluid injected into the grinding area directly is very small. The fluid breaks through the airflow layer and enters into the grinding area with wheel motion, then breaks away the grinding area with wheel rotation. The effect of the fluid under bottom jet flow condition is weaker than that under central jet flow condition (3) Under the condition of the same minimum clearance, the higher is the wheel peripheral speed, the stronger is the hinder effect of airflow layer on grinding fluid, so the lower is the ratio of effective grinding fluid.

The grinding force has similar tendency in other grinding conditions in the experiment. The reason for grinding force variation includes: (1) Machine deformation and grinding wheel deformation. (2) Workpiece deformation, including thermal deformation and mechanical deformation (3) The change for working condition Temperature Simulation and Result Discussion It is proved to be more accurate to calculate grinding temperature by numerical simulation through ANSYS FE software. Moving heat flux is loaded on the workpiece surface model in simulation[5,6].

In this grinding technique, the abrasives can be restricted and their moving traces can be controlled by external magnetic field which improves removal rate efficiency [4-5]. In this polishing technique, some magnetic bodies are arranged regularly in the grinding disc, then carbonyl iron particles in the grinding fluid are induced to form the magnetic chains by the external magnetic field, and the abrasive particles are restricted by the chains. Moreover, the distribution density and dwelling time of abrasive particles can be controlled effectively.

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