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Tool surface with a supporting plateau of hard particles for deep drawing of high alloy steel

机译:带有硬质合金支撑平台的工具表面,用于高合金钢的深冲

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Sheet metal forming normally requires the application of lubricants to protect the tool and the sheet against wear. The parts must be cleaned to remove the lubricants before joining and coating. This process step wastes energy and water resources. In the case of non-lubricated sheet metal forming, cleaning processes would not be necessary anymore and the process chain could be optimized regarding ecological and economical aspects. However, forming without lubrication leads to an intensive contact between the tool and the sheet. Thus, higher wear occurs and process reliability cannot be ensured for industrial mass production. High alloy steels are applied for mass-market products e.g. for appliances. Because of the higher strength, strain hardening and galling effects the austenitic steels are comparatively difficult to form. For dry metal forming of high alloy steels new tool concept must be developed to withstand the higher loads. In this work, a laser generated tool surface with a supporting plateau of hard particles (metal matrix composite (MMC-surface)) is presented. Spherical fused tungsten carbides were injected into the surface by laser melt injection. The metallic matrix of the composite was rejected by applying laser ablation. In consequence, the hard particles stood out of the matrix and were in direct contact with the sheet material. The surface of hard particles had a high hardness about 3000 HV and less metallic character. Cold working steel and aluminium bronze were tested as reference tool materials. Dry and lubricated forming experiments were carried out by strip drawing with bending and deep drawing of cups. Dry deep drawing of cups was not possible by using cold work tool steel. This can be traced back to the occurrence of wrinkles and cup base fracture at the same time. Applying aluminium bronze as tool material for dry metal forming resulted in high adhesive wear. Within this work the feasibility of dry metal forming of high alloy steel could be demonstrated by applying the MMC-surface whereby adhesive wear could be reduced.
机译:钣金成形通常需要使用润滑剂,以保护工具和钣金免受磨损。在连接和涂覆之前,必须清洁零件以清除润滑剂。该处理步骤浪费了能量和水资源。在非润滑金属板成形的情况下,不再需要清洁工艺,并且可以在生态和经济方面优化工艺链。但是,不加润滑的成型会导致工具和板材之间的紧密接触。因此,发生更高的磨损并且不能为工业批量生产确保过程可靠性。高合金钢用于大众市场产品,例如用于电器。由于较高的强度,应变硬化和磨损效应,奥氏体钢相对难以成形。对于高合金钢的干金属成形,必须开发新的工具概念以承受更高的载荷。在这项工作中,介绍了一种激光生成的具有硬质颗粒支撑平台的刀具表面(金属基复合材料(MMC表面))。通过激光熔体注入将球形熔融碳化钨注入表面。通过施加激光烧蚀排斥复合材料的金属基质。结果,硬颗粒从基质中脱出并与片材直接接触。硬质颗粒的表面具有约3000 HV的高硬度和较少的金属特性。测试了冷作钢和铝青铜作为参考工具材料。干式和润滑成型实验是通过对杯进行弯曲和深冲的带材拉伸进行的。使用冷作工具钢无法对杯子进行干式深冲。这可以追溯到同时发生皱纹和杯底断裂的情况。将铝青铜用作干金属成形的工具材料会导致很高的粘合剂磨损。在这项工作中,可以通过应用MMC表面来证明可以降低粘合剂的磨损,从而证明高合金钢干法金属成形的可行性。

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