Front cover of car air conditioner compressor FS170C and casting method of front cover

A technology of FS170C and automobile air conditioner, which is applied in the direction of casting molding equipment, casting molds, mechanical equipment, etc., can solve the problems of different process methods, and achieve the effect of good finish, high surface quality and high product quality

Inactive Publication Date: 2013-01-30
GUANGZHOU KINBON NON FERROUS ALLOY METALS CO LTD +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, for different auto parts, due to the different shapes, sizes, and technical requirements of the castings, the specific process methods used are different, which require a lot of experiments and creative labor by those skilled in the art; and so far , there is no relevant report on the use of squeeze casting technology to produce the front cover of automotive air-conditioning compressor FS170C

Method used

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  • Front cover of car air conditioner compressor FS170C and casting method of front cover
  • Front cover of car air conditioner compressor FS170C and casting method of front cover
  • Front cover of car air conditioner compressor FS170C and casting method of front cover

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0029] A FS170C front cover of an automobile air-conditioning compressor and a casting method thereof, adopting a squeeze casting process, mainly including the following steps: melting, mold closing, feeding, injection, extrusion, mold opening, ejection, product taking, and spraying;

[0030] The melting step mainly includes degassing and slag removal;

[0031] The specific operation process is as follows:

[0032] Fuel furnace melting → transfer to tilting resistance holding furnace for sampling → qualified spectral analysis results → degassing and slag removal → standing → macro scraping test → sampling in resistance holding furnace;

[0033] The chemical composition of aluminum water after alloying treatment in the melting process is: Si 10.2wt%, Fe 0.98wt%, Mn 0.41wt%, Mg 0.25wt%, Zn 0.9wt%, Pb 0.038wt%, Cu 2.9wt%, Ni 0.37wt%, Sn 0.19wt%, and the rest are Al and unavoidable impurities.

[0034] The degassing and slag removal step in the melting process, first degassing: ...

Embodiment 2

[0042] A FS170C front cover of an automobile air-conditioning compressor and a casting method thereof, adopting a squeeze casting process, mainly including the following steps: melting, mold closing, feeding, injection, extrusion, mold opening, ejection, product taking, and spraying;

[0043] The melting step mainly includes degassing and slag removal;

[0044] The specific operation process is as follows:

[0045] Fuel furnace melting → transfer to tilting resistance holding furnace for sampling → qualified spectral analysis results → degassing and slag removal → standing → macro scraping test → sampling in resistance holding furnace;

[0046] The chemical composition of aluminum water after melting and alloying treatment is: Si 11.4wt%, Fe 0.96wt%, Mn 0.39wt%, Mg 0.29wt%, Zn 0.91wt%, Pb 0.042wt%, Cu 2.93wt%, Ni 0.41wt%, Sn 0.18wt%, and the rest are Al and unavoidable impurities.

[0047] The degassing and slag removal step in the melting process, first degassing: when the te...

Embodiment 3

[0056] A FS170C front cover of an automobile air-conditioning compressor and a casting method thereof, adopting a squeeze casting process, mainly including the following steps: melting, mold closing, feeding, injection, extrusion, mold opening, ejection, product taking, and spraying;

[0057] The melting step mainly includes degassing and slag removal;

[0058] The specific operation process is as follows:

[0059] Fuel furnace melting → transfer to a tilting resistance holding furnace for sampling → qualified spectral analysis results → degassing and refinement, slag removal → standing → macroscopic scraping test → sampling in resistance holding furnace;

[0060] The chemical composition of aluminum water after melting and alloying treatment is: Si 10.2wt%, Fe 0.98wt%, Mn 0.41wt%, Mg 0.25wt%, Zn 0.9wt%, Pb 0.038wt%, Cu 2.9wt%, Ni 0.37wt%, Sn 0.19wt%, and the rest are Al and unavoidable impurities.

[0061] The degassing and slag removal step in the melting process, first de...

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Abstract

The invention discloses a front cover of a car air conditioner compressor FS170C and a casting method of the front cover. An extrusion casting process is adopted and mainly comprises the following steps of: melting, closing a mould, feeding, injecting, extruding, opening the mould, ejecting, taking a product and spraying. The degassing and deslagging process in a melting step comprises the concrete sub-steps as follows: when a molten aluminum temperature is 690-730 DEG C, pressing a degassing agent into a position with a distance of 10-20cm from the bottom of a crucible, and mixing until no bubbles come up; and standing for 5-12min, adding a deslagging agent, and when the molten aluminum temperature is 680-700 DEG C, preparing to close the mould. Before the mould closing step, a demoulding agent needs to be sprayed to the surface of the mould; dwell time is 6-10s and injection time is 5-9s in an injecting step; and a temperature of a mould temperature controller is 220-240 DEG C in the extruding step. The front cover of the car air conditioner compressor FS170C cast by the casting method has the advantages of compact cast structure, refined grains and high mechanical performance; and a leakage problem of the front cover of the car air conditioner compressor FS170C is better solved.

Description

technical field [0001] The invention relates to the technical field of aluminum alloy squeeze casting production, in particular to a FS170C front cover of an automobile air-conditioning compressor and a casting method thereof. Background technique [0002] Automobile air-conditioning compressor is the heart of automobile air-conditioning refrigeration system, which plays the role of compressing and transporting refrigerant vapor. The front cover of the automobile air-conditioning compressor FS170C has a circular structure, and the front part is a stepped cylinder with a circular opening for leading out the main shaft; there are front cover screw holes on both sides of the circular sealing end surface at the rear of the front cover; the front cover is from It is a vertical surface from bottom to top, and there are 4 raised ribs on the side wall of the inner cavity on average. The bottom of each rib is connected to the sealing end surface of the front cover. The periphery of t...

Claims

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Application Information

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Patent Type & AuthorityApplications(China)
IPC IPC(8): B22D17/00C22C21/02C22C1/02B22C3/00F04B39/12
Inventor苏东陈学文范卫忠高伟全丘圣东孙珏
OwnerGUANGZHOU KINBON NON FERROUS ALLOY METALS CO LTD