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Apparatus and method for preparing medium-plastic high-energy-absorbing magnesium alloy and deep cold-bending pipe

A magnesium alloy, high suction technology, applied in the direction of metal extrusion dies, etc., can solve the problems of poor secondary processing formability, unable to maintain the uniformity of the aperture at the bending deformation, and achieve reduced extrusion force and good deep cold forming. Good effect of sex and tube shape

Active Publication Date: 2019-10-01
NORTHEASTERN UNIV LIAONING
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Problems solved by technology

Aiming at the current problems of magnesium alloys and their pipes, and overcoming the poor formability of secondary processing of existing magnesium alloy pipes, the small-diameter thin-walled pipes cannot maintain the uniformity of the aperture at the bending deformation without adding a mandrel, and the like. The present invention provides a medium A plastic high-energy-absorbing magnesium alloy and a deep cold-bending pipe preparation device and method, the method provides a high-energy-absorbing magnesium alloy with medium plasticity, and provides a deep cold-bending pipe corresponding to the magnesium alloy Preparation device and method

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  • Apparatus and method for preparing medium-plastic high-energy-absorbing magnesium alloy and deep cold-bending pipe
  • Apparatus and method for preparing medium-plastic high-energy-absorbing magnesium alloy and deep cold-bending pipe
  • Apparatus and method for preparing medium-plastic high-energy-absorbing magnesium alloy and deep cold-bending pipe

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Abstract

The invention discloses medium-plasticity high energy absorption magnesium alloy and a deeply cold-bending tubular product preparation device and method and belongs to the technical field of metallicmaterial technology and metallurgy. The medium-plasticity high energy absorption magnesium alloy comprises the following components in percent by mass: 1.5%-2.2% of Zn, 0.2%-0.7% of Ce, 0.1%-0.2% of La, 0.3%-0.9% of Mn, 0.06%-0.6% of Zr, 0.1%-0.3% of Ca and the balance of Mg and impurities, wherein the mass ratio of Ce to La is (2-7):1; the mass ratio of Mn to Zr is (1.5-5):1; and the mass percentof the impurity Fe is less than 0.003%. The deeply cold-bending tubular product preparation device comprises a hollow extruding rod, a flow distribution extruding upper die, a flow distribution extruding lower die, an extruding cylinder, an extruding gasket and a turbocharging cooling system. The magnesium alloy tubular product preparation method comprises the following steps: 1, smelting the rawmaterial and carrying out purification treatment on the melt; 2, lowering the temperature of the melt to 680-700 DEG C and then carrying out semicontinuous casting; and 3, carrying out flow distribution extrusion on a magnesium alloy bar subjected to homogenization treatment and pretreatment to obtain a deeply cold-bending high energy absorption magnesium alloy tubular product.

Description

technical field The invention belongs to the field of metal material technology and metallurgy technology, and in particular relates to a medium-plastic high-energy-absorbing magnesium alloy and a deep cold-bending pipe preparation device and method. Background technique Magnesium alloy has the advantages of low density, high specific strength, vibration damping, electromagnetic shielding and machining performance, and is an ideal material for lightweight structures. Magnesium alloy extruded pipe is an important bulk product form for the production of wrought magnesium alloy structural parts. It can be widely used in civil fields such as bicycles, wheelchairs, beach chairs, outdoor furniture, and sports equipment, as well as aerospace and military industries. However, the production of pipe components often involves secondary plastic forming processes such as bending and diameter reduction (diameter expansion or diameter reduction) of extruded pipes. Metal magnesium and it...

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C22C23/04C22C1/03C22F1/06B22D11/00B21C37/06B21C25/02B21C29/00
Inventor 乐启炽胡克李春雨赵大志贾永辉宝磊
Owner NORTHEASTERN UNIV LIAONING