By Tian Huang; et al

This booklet includes chosen papers from the 14th foreign production convention, IMCC2011, held in China. The papers divulge the most recent advancements within the box of fabrics production expertise: from basics to new applied sciences and purposes. specifically, those papers disguise the themes of complicated production expertise and kit, materials-forming technology and expertise, digital Read more...


comprises chosen papers from 14th overseas production convention, IMCC2011, held in China. This identify covers the subjects of complicated production expertise and gear, materials-forming Read more...

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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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39 Finite Element Modeling of the Broaching Process of Inconel718 Y. L. Y. cn Keywords: Finite element modeling, Inconel718, Cutting forces, Chip curling process, Gullet-to-chip area ratio Abstract. 2D finite element modeling of the broaching process of Inconel718 was conducted by using the commercial software. Models between cutting forces and cutting parameters were obtained. In addition, a general understanding of the effects of two machining variables rake angle and rising per tooth on chip curling process and gullet-to-chip area ratio, was also obtained.

4, for wheel peripheral velocity is higher than the fluid jet flow velocity, the fluid can be accelerated and enter into the contact area with the rotary air layer. The turbulent flow is formed on the wheel surface with wheel taking air into the fluid, air backflow emerges with fluid being near the contact area and the fluid energy loses tensely. The pressure and the air backflow intensity are increased with the enhancement of the wheel velocity and it makes the turbulent flow intensive. 3, the air backflow function is stronger and the impeding function of the air flow to the grinding fluid increases evidently due to the smaller clearance.

The heat flux is time-variant in actual process. The paper uses experiment result of grinding force to calculate out the time variation heat flux. The grinding temperature is simulated based on time variation heat flux by ANSYS software. The variation tendencies for the grinding force and the simulated surface top temperature will be discussed. Introduction Grinding hardening technology integrates the surface hardening into grinding process and uses the grinding heat to get surface hardening [1].

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