This application claims the benefit of priority to Chinese Patent Application No. 201410255788.0 titled “METHOD FOR MANUFACTURING PISTON WITH RE-MOLTEN REINFORCED COMBUSTION CHAMBER THROAT”, filed with the Chinese State Intellectual Property Office on Jun. 10, 2014, the entire disclosure of which is incorporated herein by reference.
The present application relates to a method for manufacturing a piston with a re-molten reinforced combustion chamber throat.
Currently, engines of heavy trucks, engineering machinery, railway locomotives and marine are all developed towards high power and high load, and the reinforcement degree is continuously improved, and emission requirements are more and more stringent. That a ceramic composite material is added into a head of a piston of an engine can improve thermal fatigue property of a throat of the piston, however, the ceramic composite material has a relatively high cost, which is not suitable for large-scale production and application. Traditional TIG welding technique, which is tungsten inert gas welding with an English abbreviation of TIG (Tungsten Inert Gas Welding) welding, cannot meet requirements for manufacturing a piston with a re-molten reinforced combustion chamber throat.
An object of the present application is to overcome the above deficiencies in the conventional technology, which provides a method for manufacturing a piston with a re-molten reinforced combustion chamber throat for reinforcing weak parts such as a combustion chamber throat and a combustion chamber bottom of the piston.
To achieve the above objects, a following technical solution is employed in the present application.
A method for manufacturing a piston with a re-molten reinforced combustion chamber throat is provided, and the material of the piston is an aluminum alloy or a magnesium alloy. The method includes following manufacturing steps:
TiO2 1-30%, SiO2 1-30%, CuCl2 1-40%, and MnCl2 1-50%,
d) re-melting the piston by A-TIG welding; and
In step d), a specific structure of the piston re-molten by A-TIG welding includes two re-molten welding seams formed at the piston combustion chamber throat and the piston combustion chamber bottom.
In step d), a specific structure of the piston re-molten by A-TIG welding includes more than two re-molten welding seams formed at the piston combustion chamber throat and the piston combustion chamber bottom.
A re-molten reinforced structure of a piston combustion chamber throat (combustion chamber aperture) is disclosed according to the present application, in which a combustion chamber throat area is locally processed by re-molten using A-TIG argon arc welding.
An A-TIG method is a new efficient welding method, which refers to coating a thin surfactant on a surface of a sheet to be welded in order to greatly deepen the weld penetration. The re-melting is to melt an aluminum matrix by high temperature at the instant of the A-TIG argon arc welding, and the speed of the air cooling in the re-melting may just be thousands of times of the speed of cooling and solidifying in casting.
More refinement texture of alloy can be obtained by re-melting through A-TIG welding, and the microstructure of the alloy has changed significantly. Si in aluminum alloy is converted from relatively large primary crystal silicon blocks and primary crystal silicon rods into refinement primary crystal silicon blocks and eutectic crystalline silicon particles, and the refinement primary crystal silicon blocks and the eutectic crystalline silicon particles are uniformly dispersed into the Al matrix. Alloy phase in the aluminum alloy is also significantly refined. The coarser primary crystal silicon is an important factor that causes failure of the piston combustion chamber throat. In another aspect, the Al matrix is deformed by the stress effect generated in the condensation process, thus dislocation density is increased, and a cellular network structure is formed, thereby advantageously improving anti-fatigue properties of the aluminum alloy material. The micro-hardness of the re-molten zone is approximately 1.2 times to 2 times of the hardness of the body of the piston. Further, a heat affected zone (metallurgical bonding layer) exists between the reinforced layer and the matrix material, thereby a graded hardness distribution is formed between the matrix material and the reinforced layer, which facilitates improving anti-fatigue capability of the aluminum alloy material, i.e., the throat portion, and achieving the purpose of improving the fatigue life of the overall piston.
1. combustion chamber throat, and 2. combustion chamber bottom.
The present application is further described with reference to drawings and embodiments
A method for manufacturing a piston with a re-molten reinforced combustion chamber throat is provided. The material of the piston is an aluminum alloy or a magnesium alloy. The method includes the following manufacturing steps:
formulation of first embodiment
formulation of second embodiment
formulation of third embodiment
formulation of fourth embodiment
formulation of fifth embodiment
formulation of sixth embodiment
after the above four components are uniformly mixed, forming a suspension of the mixture using acetone as a solvent in a mass ratio of 1: (3-8).
d) re-melting the piston by A-TIG welding.
in step d), a specific structure of the piston re-molten by A-TIG welding includes two re-molten welding seams formed at the piston combustion chamber throat 1 and the piston combustion chamber bottom 2; or
in step d), a specific structure of the piston re-molten by A-TIG welding includes more than two re-molten welding seams formed at the piston combustion chamber throat 1 and the piston combustion chamber bottom 2.
f) processing the piston into a finished product after the re-melting.
Only representative embodiments of the present application are described and presented herein, in addition to those embodiments, various variations and modifications can be made to the present application without departing from the concept and scope of the present application. For example, the method according to the present application can be utilized to make a combined piston with a head and a skirt portion separated with each other, and the head can be re-molten by A-TIG welding at the combustion chamber throat and the combustion chamber bottom.
Number | Date | Country | Kind |
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201410255788.0 | Jun 2014 | CN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/CN2015/071805 | 1/29/2015 | WO | 00 |