李宝阁,王进,张会,等.基于响应面法的无芯模成形精度研究[J].精密成形工程,2022,14(3):34-39. LI Bao-ge,WANG Jin,ZHANG Hui,et al.Forming Accuracy of Mandreless Die Based on Response Surface Method[J].Journal of Netshape Forming Engineering,2022,14(3):34-39. |
基于响应面法的无芯模成形精度研究 |
Forming Accuracy of Mandreless Die Based on Response Surface Method |
投稿时间:2021-07-06 |
DOI:10.3969/j.issn.1674-6457.2022.03.005 |
中文关键词: 无芯模旋压 锥形件 响应面法 尺寸精度 预测模型 |
英文关键词: mandreless die spinning tapered parts response surface method dimensional accuracy prediction model |
基金项目:山东省重点研发计划(2019GGX102023) |
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中文摘要: |
目的 提高无芯模旋压零件的尺寸精度。方法 利用双旋轮旋压机床,采用响应面实验优化设计方法,对铝合金零件分别从旋轮进给速度、芯模转速、锥形件的成形角度、坯料与成形件最大开口直径比等方面进行研究,建立其与尺寸精度的预测模型,采用Design-Expert软件对尺寸精度进行回归系数及方差分析,并对此工艺参数进行优化,得到最优化工艺参数。结果 在选取的工艺参数范围内,直径比影响最大,成形角度、进给速度、芯模转速无明显影响。当进给速度为50 mm/min、转速为575 r/min、成形角度为30°、直径比为1.2时,尺寸精度偏差达到最小值0.5125 mm。结论 旋轮进给速度、锥形件的成形角度和坯料与成形件最大开口直径比对零件的尺寸精度有非常显著的影响,均与尺寸精度偏差呈正相关。芯模转速对尺寸精度无明显影响。最大尺寸精度偏差出现在芯模过渡圆角处和法兰方面。 |
英文摘要: |
The work aims to improve the dimensional accuracy of mandreless die spinning parts. The twin-wheel spinning machine was used to study the aluminum alloy parts by the response surface experiment optimization design method from the feed speed of the wheel, the core die speed, the forming angle of the cone, the billet and the forming part of the maximum opening diameter ratio. The prediction model of aluminum alloy parts and dimensional accuracy was established. The regression coefficient and variance analysis of dimensional accuracy were carried out with Design-Expert software, and the process parameters were optimized to get the optimal values. Within the selected process parameters, diameter ratio had the greatest effect and forming angle, feed speed and core die speed had no obvious effect. When the feed speed was 50 mm/min, the rotation speed was 575 r/min, the forming angle was 30°, and the diameter ratio was 1.2, the dimensional accuracy deviation reached the minimum value of 0.5125 mm. The feed speed of the wheel, the forming angle of the cone and the ratio of the maximum opening diameter between the blank and the forming part have significant effects on the dimensional accuracy of the part, all of which are positively correlated with the dimensional accuracy deviation. However, the rotation speed of the core die has no obvious effect on dimensional accuracy. The maximum dimensional accuracy deviation occurs at the transition fillet of the core die and the flange edge. |
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