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首页> 外文期刊>Journal of Materials Processing Technology >Effect of centrifugal rotational speed on wedge castability of titanium
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Effect of centrifugal rotational speed on wedge castability of titanium

机译:离心转速对钛楔形铸造性能的影响

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摘要

This study examined the effects of the speed and force in centrifugal casting on the wedge castability of Ti-5 mass%Cu (Ti-5Cu) alloy and commercially pure titanium (CP-Ti). The Ti-5Cu alloy was prepared by argon-arc melting. Whole wedge-shaped acrylic patterns were prepared with either 15° or 30° angles and invested with a MgO-based material. The wedge specimens were cast using a centrifugal casting machine at rotational speeds of 600, 1000, 1250, 1500 and 3000 rpm. Mold filling, an index for a measure of castability, was determined as the missing length between the edge of the cast wedge and the theoretical acute tip of the triangle. CP-Ti was used as a control. An analytical model was developed to relate the mold-filling index to the surface energy and rotational speed. The experimental results indicate that the means of the mold-filling index of the 30° wedge angle were lower than those of the 15° wedge angle when compared for each corresponding metal and rotational speed. In each angle for CP-Ti, the means tended to reduce with increase in the rotational speed. The mold-filling index of 5% Cu titanium was found to be similar to that of CP-Ti, even for 15° wedge when the rotational speed was higher than 1250 rpm. The results suggest that dental prosthesis, which has narrow cross sections containing very narrow regions (for example, clasps of a denture), can be cast successfully by utilizing high rotational speed during centrifugal casting. The complex dependence of mold-filling index on wedge angle and rotational speed is explained on the basis of the analytical model and the dependence of the apparent surface energy on rotation speed.
机译:这项研究研究了离心铸造中速度和力对Ti-5质量%Cu(Ti-5Cu)合金和商业纯钛(CP-Ti)的楔形铸造性能的影响。 Ti-5Cu合金是通过氩弧熔化制备的。制备具有15°或30°角的整个楔形丙烯酸图案,并使用基于MgO的材料进行喷涂。使用离心铸造机以600、1000、1250、1500和3000 rpm的转速铸造楔形样品。铸模填充是衡量可铸性的指标,确定为铸楔边缘和三角形理论尖锐尖端之间的缺失长度。 CP-Ti用作对照。建立了一个分析模型,将模具填充指数与表面能和转速相关联。实验结果表明,与每种相应的金属和转速相比,30°楔角的充模指数均低于15°楔角的充模指数。在CP-Ti的每个角度中,均值会随着转速的增加而减小。发现当转速高于1250 rpm时,即使对于15°的楔形,5%Cu钛的模具填充指数与CP-Ti相似。结果表明,通过在离心铸造过程中利用高旋转速度,可以成功地铸造出具有狭窄横截面且包含非常狭窄区域(例如义齿扣)的假牙。基于解析模型以及表观表面能对转速的依赖关系,解释了充型指数对楔角和转速的复杂关系。

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