一区二区福利-欧美经典影片视频网站-爱搞国产精品-日韩成人影院-欧美日本在线-国产亚洲欧美日韩在线观看一区二区

常熟國強和茂管材有限公司

Sinupower Heat Transfer Tubes Changshu Ltd.
CN EN

400-100-7068

+ 微信號:WEIXINHAOMA

Your location : Home > News > Company Dynamics

Research and Development of Processing Technology for Civil Aluminum Alloy Materials

Source:www.qinfeng021.com      Release date: 2025-01-13
Information summary:The production capacity and output of China's aluminum processing industry have developed into rapidly growing fields, including civilian ordinary aluminum and aluminum alloy plate, strip, foil, aluminum profiles for construction and rail transit, canning materials, and aluminum plate substrates for printing. The incremental part is mainly composed of private enterprises. China is a major country
      The production capacity and output of China's aluminum processing industry have developed into rapidly growing fields, including civilian ordinary aluminum and aluminum alloy plate, strip, foil, aluminum profiles for construction and rail transit, canning materials, and aluminum plate substrates for printing. The incremental part is mainly composed of private enterprises. China is a major country in the aluminum processing industry.  
      In recent years, the material development of aluminum and aluminum alloys has mainly focused on two directions: (1) developing new high-strength and high toughness aluminum alloy materials to meet the needs of special fields such as aerospace, transportation, and military facilities; (2) Develop civil aluminum alloys with different properties and functions to meet new materials for different conditions and applications. The widespread application of aluminum alloys has promoted the development of aluminum alloy processing and preparation technology, but with the continuous improvement of performance requirements for aluminum alloy products, new requirements have also been put forward for aluminum alloy processing technology. Valuing and strengthening the research on the basic characteristics of aluminum alloys and the construction of systematic theories, further improving the understanding of the processing characteristics of aluminum alloys, is the only way to achieve technological innovation in aluminum alloy processing.
1. Research on the basic characteristics of aluminum alloy materials
      A systematic and in-depth study of the fundamental characteristics of aluminum alloys is the foundation for innovation in aluminum alloy processing technology. On the basis of the existing aluminum alloy processing theory, excellent instruments and equipment such as computers and high-speed high-definition cameras are used to study the heat and mass transfer behavior of aluminum alloy melt solidification process, the evolution law of aluminum alloy solid deformation and precipitation phase during heat treatment process, and the constitutive relationship between multiphase microstructure interface comprehensive performance. A self owned and systematic theoretical system of aluminum alloy processing technology is formed. At the same time, combining current aluminum alloy processing equipment and production preparation technology to guide and optimize the current aluminum alloy production and processing technology, in order to achieve innovation in aluminum processing technology and materials.
     (1) Research on the basic characteristics of aluminum alloy melting and casting. Study the distribution of thermal field during the solidification process of different types of aluminum melts under different cooling rates and the initial shape of the solidification front of the melt, explore the evolution law of its shape during the advancement of the solidification front, and the influence law on the internal thermal stress field of the billet; Study the redistribution of solutes during the solidification process, understand the types, thermodynamic and kinetic mechanisms of formation and growth of primary solidification precipitates, as well as the distribution patterns of different types of primary solidification precipitates and the formation mechanisms of various defects during the solidification process.
     (2) Research on the basic characteristics of plastic deformation of aluminum alloy. Study the influence mechanism of external deformation force on the fragmentation of primary solidification precipitates of different sizes/types; Study the intrinsic relationship between external deformation force deformation velocity deformation variable deformation temperature distribution deformation resistance material cracking limit residual internal stress; Study the types of deformation precipitates, the thermodynamic and kinetic mechanisms of their formation and growth.
     (3) Research on the basic characteristics of aluminum alloy heat treatment. Study the thermodynamic and kinetic mechanisms of the dissolution of different types of primary solidification precipitates/deformation precipitates during the solid solution heat treatment of aluminum alloys; Study the heat transfer mechanism and residual internal stress variation law of aluminum alloy during rapid quenching treatment; During the aging heat treatment process, explore the thermodynamic and kinetic mechanisms of the formation and growth of different types of precipitation phases, and grasp the distribution patterns of different types of precipitation phases; Study the interaction mechanism between different types/sizes of precipitate phases and interfaces with point/line defects, the influence of particle spacing and grain boundaries of different types/sizes of precipitate phases on the motion of line defects, and the initiation and propagation of cracks; Conduct in-depth research on the influence of precipitation phase types/sizes/distributions on the static/dynamic mechanical properties and corrosion resistance of materials, as well as the corresponding relationship between the static/dynamic mechanical properties of materials and their resistance to high-speed impact damage.
2. Research and Proposal on Civil Aluminum Alloy Materials
       Aluminum alloy materials have been widely used in the fields of civil aviation, transportation, 3C electronics, new energy, sports, and construction. The fierce market competition has promoted the improvement of quality and performance requirements for civilian aluminum alloy products. Therefore, only by further exploring the potential of aluminum alloys, researching and developing excellent civilian aluminum alloy materials and processing technologies, can we better meet market demand.
2.1. High performance aluminum alloy for civil aviation
      (1) Engineering preparation technology for new high-performance rare earth aluminum alloy materials for civil aviation. Conduct in-depth basic research on the application of rare earth elements in high-performance rare earth aluminum alloys for civil aviation, reveal the influence mechanism of rare earth elements in aluminum alloys, systematically study the microstructure evolution law under thermal mechanical conditions, and the relationship with performance, and form a basic theoretical system for the composition design, preparation and processing of high-performance rare earth aluminum alloys; Further research will be conducted on the engineering preparation and application of new high-performance rare earth aluminum alloy materials, forming a complete set of production processes and application technologies for new high-performance rare earth aluminum alloy deformation materials, with stable batch production capacity, achieving installation and application on civil aviation aircraft, and meeting the batch production needs of civil aviation aircraft.
     (2) New high-strength, corrosion-resistant, heat-resistant aluminum alloy. Breakthrough key technologies such as composition design and correct control technology for high-strength and heat-resistant aluminum alloys, casting and forming control technology for high alloy content heat-resistant alloys, multi-stage homogenization treatment technology, and high-temperature stability thermal strength phase structure and performance control technology for rare earth Sc, Er, etc., to form a quality stability control preparation technology for high alloying ingots, and develop new materials for high-strength and heat-resistant aluminum alloys containing rare earth elements; Carry out engineering research on high-strength and heat-resistant aluminum alloy materials to provide technical reserves for typical components applied in the civil aviation field.
     (3) High strength, tough, corrosion-resistant, damage tolerant aluminum alloy. In response to the design requirements for durability damage tolerance and corrosion resistance of civil aviation aircraft, the development of 700 MPa strength grade high corrosion resistance and high toughness aluminum alloy sheets is an inevitable trend. Through research on new alloy composition design and optimization, multi-level homogenization treatment of dispersed phase particles, deformation microstructure control during rolling process, and plate shape control, we plan to develop 700 MPa strength grade high corrosion resistance and high toughness aluminum alloy pre stretched medium thick plates with excellent strength fracture toughness corrosion resistance matching, providing technical reserves for key structural components in civil aviation applications.
     (4) In situ self generated nanoparticles enhance high-performance aluminum based composites. This material has the advantages of high specific strength, specific modulus, good fatigue resistance, good heat resistance, corrosion resistance, and relatively low preparation cost. It is currently a breakthrough aluminum alloy new material. Master the control techniques for the morphology and size of in-situ self generated nanoparticles, and use high-frequency pulse magnetic field and high-energy ultrasonic field control techniques to control the aggregation and distribution of nanoparticles, optimize the in-situ self generated nanoparticle reinforced high-performance aluminum based composite DC casting technology. While improving the alloy structure, achieving uniform distribution of nanoparticles within the alloy grains and grain boundaries significantly enhances the strength, plasticity, and fatigue resistance of aluminum alloy materials, enabling large-scale production and market application of industrial ingots and aluminum products.
     (5) Key technologies and application research for high-quality preparation and processing of aviation aluminum alloys. For high-quality aluminum alloy materials used in aviation, in-depth research is conducted on the intrinsic relationship between alloy composition, microstructure, properties, preparation and processing, as well as the strengthening and toughening mechanisms and other scientific issues, as well as detailed control technologies. Organizational control principles and safety service guidelines are established, and a basic data platform is constructed to break through the key technical bottlenecks of high reliability, high stability, and high homogeneity preparation of large aluminum alloy structural materials. This provides theoretical basis and key technical support for the complete independent and controllable production of aviation aluminum alloy structural materials.
2.2. Lightweight aluminum alloy for transportation
     (1) Research and development of automotive grade deformed aluminum materials that balance lightweight and safety, and high-quality industrial production. China is the world's largest automobile consumer market, and the design and manufacturing of traditional fuel vehicles and new energy vehicles will further increase the application of aluminum materials, including all aluminum body and battery cases for new energy vehicles. There is an urgent need for the design, research and development, and high-quality industrialization of deformed aluminum alloy materials. Taking enterprises as the main body, through the close integration of "research, production, and application", joint research and development are carried out to address the problem links in the entire process, refine and quantify the system details and standardized parameters in the production and preparation process, establish a traceable production management system and system, and achieve high-quality and stable production and application of typical deformed aluminum materials for vehicles.
    (2) Basic research on the application of the correlation between aluminum design and "process structure performance". Based on the application performance requirements of 6 XXXXX series aluminum materials (plates and profiles) for automobile body structure and 3 XXXXX series aluminum materials for battery shell, and relying on quantitative characterization techniques of multidimensional and multi-scale microstructure, alloy design and process research based on comprehensive performance requirements, alloy design and process research based on single excellent performance, and application performance (forming, connection, etc.) research and evaluation are carried out. Aluminum alloy materials for automobile body and its structure, battery shell are developed, and low-cost and high stability production and preparation are achieved.
    (3) High formability and high-strength aluminum alloy. By optimizing the chemical composition and processing technology of aluminum alloy, a high-strength aluminum alloy material with equivalent deep drawing performance (T4P state) to the current automotive aluminum 6016 alloy and equivalent strength to 2024-T351 state after short-term baking has been developed, which meets the performance requirements of impact resistant dent covers for automotive lightweighting.
    (4) Large size high-strength foam aluminum alloy. Foam aluminum has the characteristics of both porous structure and metal, and has many excellent properties such as light weight, high specific strength, energy absorption, shock absorption, damping, sound absorption, heat dissipation, electromagnetic shielding, etc. The simulation technology is used to deeply and systematically study the interaction between foam aluminum structure and material properties, optimize the process parameters of industrial production, simplify the production process, reduce production costs, and realize the market application of high-strength and large specification foam aluminum alloy materials in the field of transportation lightweight.
2.3 3C electronic aluminum and other aluminum alloys
    (1) Development and industrialization of rare earth aluminum alloys. China has abundant rare earth resources, and the aluminum alloy industry has a large scale. Previous studies have shown that the combination of some rare earth elements (RE) with aluminum alloys can effectively improve their performance. However, China has not yet developed stable rare earth aluminum alloys for application, nor has it developed rare earth aluminum alloys with Chinese characteristics internationally. Therefore, it is necessary to continue to increase efforts in related research and industrialization processes. By closely combining research, learning, and application, further research on the basic application of rare earth elements in aluminum alloys is carried out, and the influence mechanism of rare earth elements in aluminum alloys is deeply understood. Several rare earth aluminum alloys with practical value are developed and promoted for application.
     (2) 5G high surface, high strength, and high thermal conductivity aluminum alloy. By optimizing the chemical composition of the alloy and regulating the material structure reasonably, studying the effects of alloy composition, deformation processing, and heat treatment processes on the strength, thermal conductivity, and anodizing performance of the alloy, the control of alloy grains and second phase compounds can be achieved; Through organizational regulation and research on anodizing and electrolytic coloring processes, an anodized film with uniform coating, no color difference, and no defects such as black spots and black lines has been obtained. High surface, high thermal conductivity, and high strength aluminum alloy materials have been developed to meet market demand for 5G mobile phone cases, mobile phone middle plates, extruded aluminum materials, and rolled sheets.
     (3) Efficient and low-cost aluminum alloy anode for aluminum air batteries. Thoroughly and systematically study the unique alloying elements of aluminum alloy anodes, such as low melting point metal elements, deformation processing, and heat treatment processes, and their effects on the electrochemical activity and self corrosion resistance of aluminum anodes. Conduct basic research on the activation and passivation characteristics of aluminum alloy anode materials, develop aluminum alloy anode materials that meet the requirements of aluminum air batteries, and realize the market-oriented application of aluminum air batteries in automotive lightweighting, emergency power supply, and other fields.
     (4) 800 MPa strength aluminum alloy. Breaking through the existing design range of high-strength aluminum alloy components, we have developed a new type of aluminum alloy material with a strength of 800 MPa in the 7XX series. We will focus on conducting research on key technologies such as industrial composition design and correct control of 800 MPa grade high-strength aluminum alloy, forming of high alloy ingots and preparation of high metallurgical quality ingots, regulating the uniformity of microstructure during hot processing, and controlling precision heat treatment processes. We will develop quality stability control technologies for batch production of high alloy ingots and establish detailed control technologies for the evolution and structure of microstructure during processing and heat treatment; Complete the development of typical components and verify their application under simulated service conditions, preliminarily achieve the lightweight replacement of high-strength structural materials for ships, and provide technical reserves for the lightweight design and preparation of typical structural components for applications in aerospace, aviation, transportation, and other fields.
     (5) High strength, tough, corrosion-resistant, heat-resistant aluminum alloy drill rods for petroleum exploration. Compared with steel drill pipes, aluminum alloy drill pipes have the advantages of low specific density, high strength, low bending stress, and resistance to acidic gases such as H2S and CO2 corrosion. They also have greater drilling depth capability and stronger shock absorption ability. Therefore, aluminum alloy drill pipes have obvious advantages in the exploration and development of deep wells, ultra deep wells, and acidic gas wells. Research and optimize the heat treatment process of alloys in high solute states to control the microstructure, in order to achieve a better combination of MPt, GBP, and PFZ, and to optimize the matching of high strength, high toughness, corrosion resistance, and heat resistance of alloys; Study the deformation behavior of alloys and establish an alloy microstructure evolution model; Understand the relationship between factors such as composition, microstructure, and macroscopic properties, establish models for time hardening, stress corrosion, and fracture toughness, achieve correct control of microstructure, and develop and produce high-strength, tough, corrosion-resistant, heat-resistant aluminum alloy drill rods for petroleum exploration that meet market demand.
     (6) Development and industrialization of green processing technology for aluminum alloy materials. In the face of resource and energy shortages, the comprehensive utilization of resources and technological innovation are particularly important. The system conducts basic research on the application of recycled aluminum alloys, deeply understands the coupling effects of multiple elements in aluminum alloys and their impact mechanisms on material structure and properties, establishes an aluminum alloy recycling and reuse system, develops low-energy, low-cost, high-performance green preparation and processing technologies for aluminum alloy materials, and provides theoretical and technical support for the preparation of low-cost green and environmentally friendly aluminum alloys and "one aluminum multi energy" with application value, achieving China's strict energy-saving and emission reduction goals year by year and the green upgrading of the aluminum industry.
3. Conclusion and outlook
       High performance, high quality, high uniformity, low cost, and low-carbon environmental protection are still the main directions for the development of new materials for civil aluminum alloys and aluminum processing technology. One is to develop excellent casting technology, continuously improve energy utilization efficiency, reduce emissions, and enhance the control level of metallurgical quality, chemical composition, and microstructure of ingots; The second is to integrate and apply contemporary excellent technological achievements, develop high-precision automation, specialization, and large-scale technical equipment, improve efficiency, and ensure the large-scale production of high-quality and highly uniform products; The third is to fully utilize the application of computer simulation technology in the fields of new material research and development, processing, processing technology, and mold design and optimization, significantly shorten the development cycle, reduce development risks, improve production efficiency, and reduce costs.
    At present, aluminum alloy processing materials are developing towards multi alloy, large width, high strength and toughness, high purity, high precision, high stability, superplasticity and superconductivity. This inevitably requires a lot of detailed work in technological innovation research, from material mechanism research to process element control, processing influencing factors, reasonable process line parameter formulation, strict quality tracking and supervision, etc., to establish aluminum alloy basic characteristic characterization, processing technology database and product quality inspection and evaluation system, and achieve innovative development of excellent civil aluminum alloy material processing technology.
亚洲美女网站| 国内精品久久久久久久97牛牛 | 伊人久久视频| 久久激情综合网| 久久99视频| 女优一区二区三区| 日韩一区二区三区免费播放| 亚洲国产激情| 亚洲三区欧美一区国产二区| 亚洲免费黄色| 日本免费一区二区三区等视频| 国产精品自拍区| 成人短片线上看| 精品123区| 亚洲午夜国产成人| 国精品一区二区| 黄色成人在线视频| 偷窥自拍亚洲色图精选| 羞羞色午夜精品一区二区三区| 日韩一区电影| 日韩av不卡在线观看| 亚洲综合丁香| 一区二区三区日本视频| 国产精品99免费看| 亚洲精品tv| 欧美激情网址| www.成人在线视频| 福利在线一区| 在线观看涩涩| 免费观看亚洲视频大全| 蜜臀av性久久久久蜜臀aⅴ流畅| 日本视频中文字幕一区二区三区| 中日韩免视频上线全都免费| 色网在线免费观看| 91免费精品国偷自产在线在线| 国产精品论坛| 日韩中文字幕视频网| 国产不卡人人| 91成人午夜| 日韩电影在线视频| 国内精品免费| 青娱乐极品盛宴一区二区| 9999久久久久| 97精品国产99久久久久久免费| 国产乱人伦丫前精品视频| 日韩久久久久| 久久久久久久久久久妇女| 美女久久久久久| 免费欧美一区| 一区二区三区国产精华| 99热在线精品观看| 亚欧洲精品视频在线观看| a国产在线视频| 亚洲性视频在线| 婷婷精品久久久久久久久久不卡| 国产主播精品| 国产亚洲一区二区三区啪| 在线观看涩涩| 999国产精品999久久久久久| 亚洲欧美网站在线观看| 午夜影院日韩| 免费精品一区| 久久精品国产999大香线蕉| 国产一区二区三区四区老人| 中文无码久久精品| 欧美国产一区二区三区激情无套| 亚洲一区二区免费在线观看| 久久国产人妖系列| 日韩午夜黄色| 日韩精品一区二区三区免费视频| 福利视频亚洲| 媚黑女一区二区| 福利在线一区| 久久久免费毛片| 在线中文字幕播放| 性欧美69xoxoxoxo| 国产美女亚洲精品7777| 老司机精品视频网| 91影院成人| 激情久久五月| 日韩一级淫片| 日本午夜精品视频在线观看| 欧美激情理论| 欧美综合在线视频观看| 日韩av一级片| 国产九九精品| 日韩伦理福利| 日韩中文字幕av电影| 色爱综合av| 欧美极品中文字幕| 日韩国产精品91| 吉吉日韩欧美| 亚洲欧美高清| 久久麻豆精品| 视频一区国产| 国内精品视频| 亚久久调教视频| 国模套图日韩精品一区二区| 91久久黄色| 久久久亚洲人| 亚洲国产视频二区| 国产精品一在线观看| 老司机午夜精品| 日韩欧美2区| 色在线视频观看| 日韩亚洲一区在线| 欧美成人aaa| 精品午夜视频| 日韩精品一二三| 欧美日韩网站| 国产精品欧美三级在线观看| 玖玖精品在线| 伊人久久av| 免费不卡在线观看| 国产深夜精品| 91精品成人| 香蕉大人久久国产成人av| 亚洲一级一区| 麻豆精品av| 成人午夜网址| 日韩极品在线| 天堂俺去俺来也www久久婷婷| 欧美日一区二区三区在线观看国产免| 国产91在线播放精品| 精品免费av在线| 三级在线看中文字幕完整版| 国产极品在线观看| 欧美aaaa视频| 极品在线视频| 亚洲人成午夜免电影费观看| 麻豆国产在线| 日韩大片在线| 国产精品字幕| 久久婷婷五月综合色丁香| 男女啪啪999亚洲精品| 日本欧美一区| 久久精品国产福利| 免费亚洲一区| 亚洲精品韩国| 91国产一区| 亚洲小说图片视频| 日韩成人一区二区| 日韩成人午夜精品| 国产毛片精品| 久久久蜜桃一区二区人| 免费黄色成人| 日韩在线a电影| 婷婷午夜社区一区| 国产日韩免费| 国产精品亚洲欧美一级在线| 亚洲小说图片视频| 久久久成人网| 欧美女人交a| 欧美国产一级| 久久精品资源| 国产一区二区三区免费观看在线| 日韩精品视频一区二区三区| 久久激情中文| 最新国产拍偷乱拍精品| 蜜桃视频在线观看一区二区| av在线一区不卡| 欧美一区影院| 国产日产精品一区二区三区四区的观看方式 | 福利一区和二区| 麻豆精品视频在线| 无码日韩精品一区二区免费| 在线精品视频一区| 欧美福利影院| 多野结衣av一区| 欧美在线精品一区| 国产一区2区| 欧美肉体xxxx裸体137大胆| 免费看亚洲片| 91大神在线观看线路一区| 久久影院资源站| 精品久久久久久久久久久下田| 欧美理论视频| 成人av观看| 综合久久婷婷| 精品一二三区| 婷婷综合社区| 亚洲十八**毛片| 亚洲人成777| 精品一区二区三区的国产在线观看 | 久久久久蜜桃| 色婷婷色综合| 麻豆一区二区三| 黑色丝袜福利片av久久| 国产精品毛片在线看| 久久久久伊人| 免费观看亚洲天堂| 免费日韩视频| 日韩精品免费视频人成| 99香蕉久久| 美女爽到呻吟久久久久| 欧美日韩ab| 久久久影院免费| 天堂久久一区| 国产乱论精品| 日韩久久精品网|