Segmental mold aluminum-titanium-boron aluminum-magnesium alloy pattern block casting material and production method thereof

The technology of an aluminum-magnesium alloy and its production method is applied in the field of radial tire movable mold casting materials, which can solve the problems of aluminum pattern block molds not being resistant to opening and closing impact and sliding, unstable shrinkage of cast aluminum alloy curved surfaces, and increased cost of tire enterprises, etc., to achieve The effect of long service life, high yield, and cost reduction

Active Publication Date: 2014-02-05
SHANDONG HENGYI MOLD
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  • Summary
  • Abstract
  • Description
  • Claims
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AI Technical Summary

Problems solved by technology

[0003] At present, the main problems of the domestically produced aluminum pattern blocks of tire molds are: the casting aluminum alloy surface is unstable in shrinkage, easy to deform, there are needle voids and casting defects, and the hardness is low. The aluminum pattern block molds are not resistant to opening and closing, impact and sliding. Short life, etc., resulting in increased costs for tire companies

Method used

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Embodiment Construction

[0010] The present invention will be further described in conjunction with embodiment:

[0011] The formula and production method of the present invention are: 1. Purchasing pure aluminum ingot (Al) 99.85% in the market; silicon (Si) 0.20%, iron (Fe) 0.10%, copper (Cu) 0.01%, manganese (Mn) 0.10%, Magnesium (Mg) 3.80%, chromium (Cr) 0.01%, nickel (Ni) 0.0050%, zinc (Zn) 0.0047%, beryllium (Be) 0.00018%, bismuth (Bi) 0.0032%, lithium (Li) 0.0108%, sodium (Na) 0.00063%, titanium alloy powder T15.2; 0.0030%, aluminum titanium boron ALTi5B1; 0.0025%. 2. Using a gas melting furnace, 3. Put 99.85% of pure aluminum ingot (Al) into a graphite crucible to heat up and melt. 4. Put 0.20% of silicon, 0.10% of iron, 0.01% of copper, and manganese into the molten pure aluminum at a temperature of 950°C. 0.10%, nickel 0.01%, nickel 0.0050%, beryllium 0.00018%, bismuth 0.0032%, lithium 0.0108%, sodium 0.00063%. 5. Cool down to 730°C and add 3.80% of magnesium (Mg), 0.0047% of zinc (Zn),...

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Abstract

The invention relates to a segmental mold aluminum-titanium-boron aluminum-magnesium alloy pattern block casting material and a production method thereof. According to the technical scheme, the casting material is prepared from the following components in parts by weight: 99.85% of pure aluminum ingots, 0.20% of silicon, 0.10% of iron, 0.10% of copper, 0.10% of manganese, 3.80% of magnesium, 0.01% of chrome, 0.0050% of nickel, 0.0047% of zinc, 0.000108% of beryllium, 0.0032% of bismuth, 0.0108% of lithium, 0.00063% of sodium, 0.0030% of titanium alloy powder T15.2, and 0.0025% of aluminum-titanium-boron ALTi5B1. The casting material has the beneficial effects that: 1, a die casting is precise in cooling shrinkage contour curved surface and good in surface precision, and has no defects such as pinholes, shrinkage porosity, cold shut, and the like; 2, pattern edges and corners are clear, and the surface smoothness is good; 3, the casting material is corrosion-resistant, does not stick scourings, and resists blast cleaning; 4, the casting material is high in strength, good in toughness, and uneasy to have plastic deformation after being machined; 5, the casting material is wear-resistant, long in service life, and resists die opening-closing impact; and 6, an aluminum-titanium-boron aluminum-magnesium alloy is taken as an independent ingredient, the element proportioning of the alloy is accurate, and the rate of finished products is high, thereby reducing the cost spending of enterprises.

Description

technical field [0001] The invention relates to a radial tire split mold casting material, in particular to a split die aluminum-titanium-boron-aluminum-magnesium alloy pattern block casting material and a manufacturing method. Background technique [0002] Radial tires are the standard to measure the technical modernization level of a country's automobile tire industry, and have become the development direction of the automobile tire industry in today's world. As a special mold for tire vulcanization, the high-end radial tire active mold is mainly a semi-steel cast aluminum alloy pattern block, which is an ideal material for the tire mold pattern block application. my country is rich in rare earth resources, ranking first in the world. It is of great significance to study the behavior of rare earths in the solidification process of aluminum alloys and carry out basic research on the application of rare earths in metals and alloys for the development of rare earth resou...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C22C21/08C22C1/03B29C33/00
Inventor 宋文松杨国栋刘浩坚
Owner SHANDONG HENGYI MOLD
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