首页> 外文期刊>塑性と加工 >Influence of die-wall friction and internal energy dissipation on final mean density in multilayer powder compaction - multishock compaction of a copper powder medium in a die by punch impact Ⅶ
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Influence of die-wall friction and internal energy dissipation on final mean density in multilayer powder compaction - multishock compaction of a copper powder medium in a die by punch impact Ⅶ

机译:模壁摩擦和内部能量耗散对多层粉末压实中最终平均密度的影响 - 通过冲压冲击铜粉介质铜粉介质的多体压实

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摘要

For the compaction of copper powder media of 2-12 layers impacted by a punch with velocities of 20, 35, and 50 m/s, where lower (L) and higher (H) initial densities are arranged alternately, the influences of die-wall friction, internal energy dissipation, separation-reimpingement of the punch and medium on the final mean density are examined. The influence of die-wall friction is the most conspicuous. It has less effect in the L-H-type arrangement where an L layer is impacted by a punch than in the H-L-type arrangement for a given number of layers, because energy loss due to wall friction is smaller in the former. The influence of the energy dissipation and separation-reimpingement is negligibly small.
机译:对于由冲头冲击的2-12层的铜粉介质的压实,其中速度为20,35和50m / s,其中较低(1)和更高(H)初始密度交替排列,模具的影响 检查了壁式摩擦,内部能量耗散,冲头分离和介质在最终平均密度上进行。 模壁摩擦的影响是最显着的。 它在L-H型布置中的效果较小,其中L层受到冲头的影响而不是给定数量的层的H-L型布置,因为前者在壁摩擦引起的能量损失较小。 能量耗散和分离 - 再处的影响是可忽略的小。

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