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Production process of non-ferrous metal alloy casting

A technology for non-ferrous metal and alloy castings, applied in the field of alloy casting processing, can solve the problems affecting the performance and service life of the castings, the loose structure of the castings, and the uneven surface, and achieve the effects of low production cost, reduced cracking, and easy popularization and application.

Pending Publication Date: 2021-12-10
厦门冠裕金属制品有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] Traditional non-ferrous metal alloy parts have the advantages of saving metal, reducing costs, and reducing working hours. However, during the casting process, they are very prone to problems such as pores, bubbles, shrinkage, and cracks, resulting in rough surfaces and loose casting structures, which seriously affect Casting performance and service life, reducing production yield

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0035] A production process of non-ferrous metal alloy castings, comprising the steps of:

[0036] (1) Smelting into liquid:

[0037] Smelting non-ferrous metal alloys into non-ferrous metal alloy liquid for later use;

[0038] (2) Impurity removal treatment:

[0039] Performing impurity removal treatment on the non-ferrous metal alloy liquid obtained in step (1); the impurity removal treatment specifically uses fluorite for 3-4 times of impurity removal treatment;

[0040] (3) Mold treatment:

[0041] Spray a special casting agent on the inner cavity of the mold, and dry it for later use; the casting agent is made of the following substances in corresponding parts by weight:

[0042] 50 parts of yttrium oxide fine powder, 25 parts of yttrium sol, 0.5 part of butanediol, 1 part of ethyl acetate, 1 part of surfactant, 10 parts of nano powder;

[0043] The particle size of yttrium oxide micropowder is 300 mesh; the surfactant is fatty alcohol polyoxyethylene ether; Particle...

Embodiment 2

[0049] A production process of non-ferrous metal alloy castings, comprising the steps of:

[0050] (1) Smelting into liquid:

[0051] Smelting non-ferrous metal alloys into non-ferrous metal alloy liquid for later use;

[0052] (2) Impurity removal treatment:

[0053] Performing impurity removal treatment on the non-ferrous metal alloy liquid obtained in step (1); the impurity removal treatment specifically uses fluorite for 3-4 times of impurity removal treatment;

[0054] (3) Mold treatment:

[0055] Spray a special casting agent on the inner cavity of the mold, and dry it for later use; the casting agent is made of the following substances in corresponding parts by weight:

[0056] 53 parts of yttrium oxide fine powder, 28 parts of yttrium sol, 0.8 part of butanediol, 1.3 parts of ethyl acetate, 1.5 parts of surfactant, 12 parts of nano powder;

[0057] The particle size of yttrium oxide micropowder is 300 mesh; the surfactant is fatty alcohol polyoxyethylene ether; Pa...

Embodiment 3

[0063] A production process of non-ferrous metal alloy castings, comprising the steps of:

[0064](1) Smelting into liquid:

[0065] Smelting non-ferrous metal alloys into non-ferrous metal alloy liquid for later use;

[0066] (2) Impurity removal treatment:

[0067] Performing impurity removal treatment on the non-ferrous metal alloy liquid obtained in step (1); the impurity removal treatment specifically uses fluorite for 3-4 times of impurity removal treatment;

[0068] (3) Mold treatment:

[0069] Spray a special casting agent on the inner cavity of the mold, and dry it for later use; the casting agent is made of the following substances in corresponding parts by weight:

[0070] 55 parts of yttrium oxide fine powder, 30 parts of yttrium sol, 1 part of butanediol, 1.5 parts of ethyl acetate, 2 parts of surfactant, 15 parts of nano powder;

[0071] The particle size of yttrium oxide micropowder is 300 mesh; the surfactant is fatty alcohol polyoxyethylene ether; Particl...

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PUM

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Abstract

The invention discloses a production process of a non-ferrous metal alloy casting, which relates to the technical field of alloy casting processing, and comprises the following steps: (1) smelting into liquid, (2) impurity removal treatment, (3) mold treatment, (4) casting treatment, and (5) die-casting formation. According to the production process, the phenomenon that destructive stress concentration is generated in the casting can be avoided, the uniformity of all structures of the casting is guaranteed, and therefore the strength and other qualities of the casting are well guaranteed; and (3) the method disclosed by the invention is simple in overall process, easy to popularize and apply, low in overall production cost, low in energy consumption and high in percent of pass.

Description

technical field [0001] The invention relates to the technical field of alloy casting processing, more specifically, it relates to a production process of non-ferrous metal alloy castings. Background technique [0002] Casting of non-ferrous metal alloys is to fill the mold with molten metal to obtain castings of parts with various shapes. Non-ferrous metal alloy castings are more common in the manufacture of beams, gas turbine blades, pump bodies, pylons, wheel hubs and engine crankcase covers, and are also widely used in the manufacture of household appliances, such as sandwich clips, baking trays, etc. [0003] Traditional non-ferrous metal alloy parts have the advantages of saving metal, reducing costs, and reducing working hours. However, during the casting process, they are very prone to problems such as pores, bubbles, shrinkage, and cracks, resulting in rough surfaces and loose casting structures, which seriously affect The performance and service life of castings re...

Claims

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Application Information

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IPC IPC(8): B22C3/00B22D7/00C22C1/06B22D7/12
CPCB22C3/00B22D7/005C22C1/06B22D7/12
Inventor 黄维勇苏芙蓉洪朝庆
Owner 厦门冠裕金属制品有限公司
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