Technical Service Case
The company has established long-term partnerships with numerous universities, research institutions, and enterprises, providing them with extensive technical services. These services primarily include development planning, industry research, feasibility studies, organizational performance assessments, prototyping of new materials and processes, as well as technical support for production line planning and construction. Below are some of our key, representative service cases:
1. Key Typical Technical Service Cases
| 1 | Development Plan | Aluminum-magnesium alloy | Yuncheng Municipal Commission of Industry and Information | Implementation Plan for the Construction of Yuncheng City's National New Aluminum-Magnesium Alloy Industry Base |
| 2 | Research Report | Magnesium alloy | A company in Beijing | A Survey on the Current Status of China's Magnesium Industry |
| 3 | Feasibility Study Report | Aluminum alloy | Chinalco | Feasibility Study Report for the Foamed Aluminum Project |
| 4 | Feasibility Study Report | Aluminum alloy | Henan X Group | Feasibility Study Report for the Aluminum-Titanium-Boron Project |
| 5 | Performance Testing | Aluminum alloy | Chinese Academy of Sciences, Institute X | Creep Performance Testing |
| 6 | New Process Prototyping | Surface Treatment | A certain institute of the China Aviation Industry Group | Aluminum-lithium alloy chassis casing surface anti-corrosion treatment: Utilizing a combination of conductive oxidation, micro-arc oxidation, and spray painting, followed by an acidic salt spray test. |
| 7 | New Process Prototyping | Surface Treatment | A certain institute of the Aviation Industry Corporation of China | Aerospace pod equipment features corrosion-resistant surface treatment: Combining conductive oxidation with micro-arc oxidation, this approach meets both the requirements for corrosion resistance and electrical conductivity. |
| 8 | New Process Prototyping | Surface Treatment | A certain institute of China North Industries Group Corporation | Development of Corrosion-Resistant Technology for Head-Mounted Equipment: A specialized process has been implemented to enhance the corrosion resistance of head-mounted gear, successfully passing the national military standard salt-spray test and achieving Level 10 protection. |
| 9 | New Process Prototyping | Surface Treatment | A certain aviation support unit in Xinxiang | Aerospace seat surface treatment equipment process development: Utilizing a specialized micro-arc treatment process to meet the requirements for part color and corrosion resistance. |
| 10 | New Product Process Trial Production | Aluminum alloy | Luoyang Branch X | Using semi-continuous casting, a high-strength aluminum alloy 2A14 round bar with a diameter of Φ350mm was prepared, followed by three-pass forging and drawing deformation. A large-specification 2A14 forging has been developed, and its properties, after T6 heat treatment, meet the technical requirements of the national military standard GJB 3539-1999. |
| 11 | New Product Process Trial Production | Aluminum alloy | Henan Company X | Using continuous casting and rolling technology, and by optimizing parameters such as mold cooling water flow and emulsion temperature on-site, a Φ9.5mm 4043 aluminum alloy round bar has been developed and produced. |
| 12 | New Product Process Trial Production | Aluminum alloy | XX University | By employing a vacuum melting furnace and a rapid solidification process, the alloy's grain structure is thoroughly refined, resulting in a high-performance aluminum-lithium alloy. |
| 13 | New Product Process Trial Production | Aluminum alloy | XX University | Using a semi-continuous casting process, large-sized aluminum-tin-copper alloy ingots measuring 250×750×1500mm have been developed, intended for manufacturing highly lubricated bearing components. |
| 14 | New Product Process Trial Production | Aluminum alloy | XX University | Using a high compression ratio deformation process (100:1), a Φ3.2mm high-strength Al-Si-Cu-Mg aluminum alloy welding wire was fabricated. |
| 15 | New Product Process Trial Production | Aluminum alloy | XX University | Using a vacuum melting furnace to produce high-performance, ultra-pure aluminum-lithium alloys. |
| 16 | New Product Process Trial Production | Aluminum alloy | XX University | Building on the existing high-strength, heat-resistant aluminum alloy, the alloy composition has been optimized, and a new Φ350mm heat-resistant, high-strength aluminum alloy has been developed using a semi-continuous casting process. |
2. Implementation Status of Selected Cases
2.1 The company prepared the "Implementation Plan for Building Yuncheng City as a National New Aluminum-Magnesium Alloy Industry Base" for the Yuncheng Municipal Government and successfully passed the expert review.
The company, entrusted by Yuncheng City, prepared the "Implementation Plan for Building Yuncheng's National New Aluminum-Magnesium Alloy Industry Base" (hereafter referred to as the "Plan"), led by Dr. Xiao Yang. The Plan comprehensively covers key areas such as an overview of Yuncheng’s aluminum-magnesium alloy industry, a detailed market analysis of aluminum-magnesium alloy materials, emerging trends in material development, strategic planning for the industry base, ambitious goals for its growth, and a holistic blueprint along with actionable implementation measures. On November 13, 2017, the Yuncheng City government established an expert review panel for the Plan, with Academician He Jilin from the Chinese Academy of Engineering serving as the panel chairperson for the evaluation process. The expert panel unanimously concluded that the Plan is accurately positioned, rich in content, supported by robust data, and logically structured—thus endorsing its successful completion of the review.

2.2 The company developed a 4043 continuous casting and rolling rod production line for Zhongfu Aluminum Industry.
The company, entrusted by Zhongfu Aluminum Industry Co., Ltd., successfully developed a 4043 aluminum alloy continuous casting and rolling 9.5mm wire rod in one go, led by Dr. Xiao Yang and his technical team.
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