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带底深孔空心件热成形工艺改进分析 |
Improvement Analysis of Thermoforming Technology for Bottomed Hollow Part with Deep Hole |
Received:November 10, 2013 Revised:November 10, 2013 |
DOI:10.3969/j.issn.1674-6457.2014.01.005 |
中文关键词: 带底深孔空心件 热成形 冲孔 拔伸 润滑 冲头 模具寿命 |
英文关键词: bottomed hollow part with deep hole thermoforming punching drawing lubrication punch mould life |
基金项目:国防基础科研重点项目( A1020110004) |
Author Name | Affiliation | HUANG Shao-dong | Southwest Technology and Engineering Research Institute, Chongqing 400039, China | ZHANG Zhi-ming | Southwest Technology and Engineering Research Institute, Chongqing 400039, China | PANG Dan | Liaoshen Industry Group Co. , Ltd. , Shenyang 110045, China | SUN Feng | Liaoshen Industry Group Co. , Ltd. , Shenyang 110045, China | YAN Feng | Liaoshen Industry Group Co. , Ltd. , Shenyang 110045, China | ZHAO Zhi-xiang | Southwest Technology and Engineering Research Institute, Chongqing 400039, China | ZHAO Zu-de | Southwest Technology and Engineering Research Institute, Chongqing 400039, China |
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中文摘要: |
目的 研究带底深孔空心件热成形工艺现状与改进措施。 方法 介绍分析了目前国内外所采用的新工艺、模具结构,新型润滑剂、强制润滑方法,新型模具材料、制造工艺及应用情况。 结果 采用压型、预冲孔、冲孔、拔伸工艺及模口导向的效果良好,通过高压将润滑剂从冲头内部流向冲孔冲头前端,可实现冲孔强制润滑,模具材料可用 3 Cr3Mo3 VNb,4 Cr2MoVNi,3 Cr3Mo3W2 V 等,并采用表面强化等工艺。 结论 应用表明,上述改进措施可降低壁厚差,改进产品质量,并减小摩擦,降低成形力,比传统材料及工艺显著提高了模具寿命。 最后指出了还需进一步解决的问题。 |
英文摘要: |
Objective The current status and improvement of thermoforming technology for bottomed hollow part with deep hole have been introduced in some papers and patents. Methods New technology and mould structure, new lubricants and forced lubrication, new mould materials as well as manufacturing processes and applications were introduced and analyzed in this paper. Results The results showed that the technology of pressing, pre-pierce, pierce, drawing and installing guiding assembly had good effect on the die orifice. Forced lubrication could be realized by communicating pressurized lubricant to the exterior of a piercing punch. Mould materials of 3Cr3Mo3VNb, 4Cr2MoVNi, 3Cr3Mo3W2V etc. and surface strengthening techniques could be utilized. Conclusion Applications showed that the measures could be used to reduce wall thickness variation, improve product quality, reduce friction and forming load, and improve the mould life compared with the conventional materials and processes. Some problems remaining to be solved were introduced at the end. |
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