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Enhanced cooling channel efficiency of high-pressure die-casting molds with pure copper linings in cooling channels via explosive bonding

机译:通过爆炸粘合,通过纯铜衬里提高高压压铸模具的冷却通道效率,在冷却通道中用纯铜衬里

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摘要

The cooling efficiency of aluminum die-casting molds is critical to prevent soldering, extend mold life and manufacture high quality castings. In this paper, we discuss a method of inserting a pure copper (Cu) lining using explosive expansion bonding process. A pure Cu bush was inserted into a cooling channel of die casting mold and bonded to the inner surface of the cooling channel through explosive bonding technology to form a copper lining in the cooling channel to improve the cooling performance of high pressure die casting (HPDC) mold fabricated from SKD61 material. Furthermore, the microstructure and mechanical properties of the bonding zone between the SKD61 tool steel and pure Cu lining were analyzed. By changing the thickness of the Cu bush, stand-off distance between the Cu bush and the predrilled cooling hole, and mold heat treatment sequence, the optimal explosive bonding process parameters were established for these cases. A high-frequency induction heatingcooling system was used to examine, the performance of the cooling channel sample bonded with pure copper lining, and it was confirmed that the cooling rate was improved by 12 %. After inserting the pure copper lining into the cooling channel for a practical die casting application, it was confirmed that the mold temperature was lowered, and soldering was prevented. The explosive bonding technology used in this study is an effective method to bond pure copper lining onto the inner surface of a cooling channel, thereby providing an alternative approach to increasing the cooling efficiency.
机译:铝压铸模具的冷却效率对于防止焊接、延长模具寿命和制造高质量铸件至关重要。在本文中,我们讨论了一种方法,插入一个纯铜(铜)衬里使用爆炸膨胀键合过程。在压铸模具的冷却通道中插入纯铜衬套,并通过爆炸粘结技术将其粘结到冷却通道的内表面,在冷却通道中形成铜内衬,以改善由SKD61材料制成的高压压铸(HPDC)模具的冷却性能。此外,还对SKD61工具钢与纯铜衬里结合区的组织和力学性能进行了分析。通过改变铜衬套的厚度、铜衬套与预钻孔冷却孔的间距以及模具热处理顺序,确定了这些情况下的最佳爆炸焊接工艺参数。采用高频感应加热冷却系统对采用纯铜内衬的冷却通道试样进行了性能测试,结果表明,冷却速度提高了12%。在将纯铜衬里插入实际压铸应用的冷却通道后,确认模具温度降低,并防止了焊接。本研究中使用的爆炸粘结技术是将纯铜衬里粘结到冷却通道内表面的有效方法,从而为提高冷却效率提供了另一种途径。

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