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首页> 外文期刊>International Journal of Precision Engineering and Manufacturing >Design of Roll Profile in Shape Rolling of an Irregular Angle Bar by the Modified Butterfly Method
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Design of Roll Profile in Shape Rolling of an Irregular Angle Bar by the Modified Butterfly Method

机译:改进的蝶形法设计不规则角钢异型轧制中的轧制轮廓

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摘要

The roll profile of an angle bar is generally designed by the butterfly method however, the design of the roll profile of an irregular angle bar requires a special rule to take a tapered leg or a protrusion on the leg into account. For this purpose, the butterfly method has been modified in this study to design the roll profile for an irregular angle bar by introducing the equivalent leg thickness. The thickness of the tapered leg or the leg with the protrusion is changed into the equivalent leg thickness to calculate the thickness and length of the leg for the next pass. Shape rolling processes for inverted and unequal angle bars are designed by the proposed method, and its effectiveness is verified by FE-simulation and experiments using plasticine. In addition, the design method is applied to the shape rolling of more complicated irregular angle bar, such as an automotive door hinge. The cross-sectional shapes at each pass are compared with those obtained from the experiment using steel. The results of FE-simulation and experiment show that the proposed design method effectively designs the roll profile for an irregular angle bar, leading to accurate shape and dimensions in the final product within the allowable tolerance of ±0.4 mm in thickness and ± 1.5 mm in length. Therefore, the proposed design method can be widely used to design roll profiles for variously shaped angle bars in industrial fields.
机译:角钢的侧倾轮廓通常通过蝶形法来设计,但是,不规则角钢的侧倾轮廓的设计需要特殊的规则,以考虑锥形腿或腿上的突起。为此,本研究中对蝶形方法进行了修改,通过引入等效的腿部厚度来设计不规则角钢的侧倾轮廓。将锥形腿或带有突起的腿的厚度更改为等效的腿厚度,以计算下一次通过的腿的厚度和长度。该方法设计了倒角和不等角钢的轧制工艺,并通过有限元模拟和橡皮泥实验验证了其有效性。另外,该设计方法适用于更复杂的不规则角钢,例如汽车门铰链的形状轧制。将每次通过的横截面形状与使用钢从实验中获得的横截面形状进行比较。有限元模拟和实验的结果表明,所提出的设计方法有效地设计了不规则角钢的轧辊轮廓,从而使最终产品的形状和尺寸准确无误,厚度公差为±0.4 mm,最大公差为±1.5 mm。长度。因此,所提出的设计方法可广泛用于工业领域中各种形状的角钢的轧辊轮廓设计。

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