第8卓 高性能精确成形制造科学'芬落譲囂魚囂鑫飜瞄器”談N8「识癘与胃芬噹震鷲成形制造科学与技术,是高性能精确成形制造前沿奴域赢 1丄研究鶯的英语翻译

第8卓 高性能精确成形制造科学'芬落譲囂魚囂鑫飜瞄器”談N8「识癘与胃

第8卓 高性能精确成形制造科学'芬落譲囂魚囂鑫飜瞄器”談N8「识癘与胃芬噹震鷲成形制造科学与技术,是高性能精确成形制造前沿奴域赢 1丄研究鶯 価[命大科学问题—' 大型复杂高性能构件成形成性一体化制造 '和集成性, /)轻质高强材料大型复杂高性能构件成形制造过程中宏观尺寸 性能性很高性能 編织演化关联关系与成形成性调控。 性能变而且是先 多场耦合多尺度效应下大型复杂高性能构件的局部加載(省力、尚形升的关键 崩与成形成性_体化控制理论。 以[頂刀)成形、5々震蠢議|蓊耕材料及异神材料的连)接的非平二联关系' "(4)高性能轻合金超薄精密件凝固成形规律,大型构件多场耦合下超常凝体模具 碱莎行为'瞬态高功率密度能场对材料的作用机理,激光精确成形与修复过程成形规 匕)重大科学问题二:高性能精确成形制造过程的多场多尺度全过程建模仿t程中 讲化⑴大型复杂高性能构件成形成性全过程多场耦合多尺度建模与模拟仿真下的 撼介观尺度下微成形过程建模仿真方法。..(2)多场下大型复杂高性能金属零部件凝固与塑性成形成性规律 超澈务加载 样樱与高效焊接行为的多尺度全过程模拟仿真与分析。 、工 2基鷲笋艺尊过程模拟仿真的大型复杂高性能构件成形成性过程工 够鎚、多目标、多约束优化设计、稳健控制与及数字化精确成形⑷零件性能与材料制备成形工艺的一体化设计、数字化与智方化包括M 藉计、制备、成形与热处理全过程组织、形状、尺寸和质量的*成意万聲08.5未来5〜10年的发展规划针对未来5〜10年的高性能精确成形制造领域的研究前沿与重大科学问题,斂优先资助方向为:高性能凝固精确成形、轻质高强板材复杂件精确成形、髙嫡離精确体积成形、超常条件下焊接与高效焊接、特大型构件成形成性一体湖I、低成本批量微成形,以及高性能精确成形过程建模仿真与优化等。发展翩胳线图如图8.3所示,具体表现在如下7个方面。
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The 8th High-Performance Precision Forming Manufacturing <br>Science'Fen Luojun Biao Yu Chong Xin Boom Sight' Talk about N8 <br>"Knowledge and Stomach Fen when the Shaw Eagle Forming Manufacturing Science and Technology is a frontier slave in high-performance precision forming manufacturing. Win 1 <br>丄Study Yingying [Life Science Issues-'Integrated Manufacturing of Large, Complex and High-Performance Components' <br>and Integration, /) Lightweight, High-Strength Materials, Macro-Dimensional Performance, <br>and High-Performance Braiding Evolution in the Forming and Manufacturing of Large, Complex, and High-Performance Components Correlation and formation control. The performance change <br>is the local loading of large complex high-performance components under the multi-field coupling and multi-scale effect ( <br>the key collapse of labor saving and shape improvement and formation formation_body control theory. To [Top Knife) forming, <br>5 々 shock stupidity | non-flat dual <br>connection of the connection between the cultivating material and the alien material ' "(4) Solidification forming law of high-performance light alloy ultra-thin precision parts, multi-field coupling of large components Extraordinary condensate <br>mold alkalinity behavior' mechanism of transient high power density energy field on material, laser precision forming and repair process <br>forming regulations) Major scientific problem two: multi-field multi-scale whole process construction of high-performance precision forming manufacturing process Imitate the <br>process of the t-process. ( <br>1) Large complex high-performance components are formative full-process multi-field coupling and multi-scale modeling and simulation <br>under the mesoscopic scale micro-forming process modeling and simulation method. .. <br>(2) <br>Multiscale full-process simulation and analysis of large-scale, complex and high-performance metal parts solidification and plasticity under multi-fields, multi-scale full process simulation and analysis of ultra-clear loading samples and efficient welding behavior. 、<br>Gong 2 based eagle bamboo shoots process simulation simulation of large complex high-performance components into formative process <br>, multi-objective, multi-constrained optimization design, robust control and digital precision forming <br>⑷ integration of part performance and material preparation forming process Design, digitization, and intellectualization include<br>M Organization, shape, size and quality of the entire process of borrowing, preparation, forming and heat treatment * <br>Wansheng 0 0 <br>8.5 Development plan <br>for the next 5 to 10 years Forefront of research in the field of high-performance precision forming manufacturing for the next 5 to 10 years and major scientific problems, <br>the convergence direction of funding priorities: high performance coagulation precisely shaped, high-strength lightweight sheet metal complex precisely shaped member, Gao <br>entropy precise volume from forming, welding and under extraordinary conditions efficient welding, integrally forming into a large member <br>Lake I , Low-cost batch micro-forming, and modeling simulation and optimization of high-performance accurate forming process. The development <br>chart is shown in Figure 8.3, which is specifically expressed in the following seven aspects.
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结果 (英语) 2:[复制]
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8th Zhuo High Performance Precision Forming Manufacturing Science<br>'Fin fall 譲囂 囂 Xin 飜 scanner" N8<br>"Knowledge 癘 and gastric fen噹 seismic 鷲 forming manufacturing science and technology, is a high-performance precision forming manufacturing frontier slave domain win 1<br>Research 鶯 価 the large scientific problems of life - 'large complex high-performance components into the form of integrated manufacturing'<br>And integration, /) lightweight high-strength materiallarge complex high-performance component forming manufacturing process macro-size performance<br>Very high-performance weaving evolution association and formation almost regulating. Performance changes<br>It is also the local addition of large complex high-performance components under the multiple coupling multi-scale effect (labor-saving, still-shaped)<br>the key collapse and formation of the formation of the theory of physical control. Formed with a knife,<br>5々-seismic stupidity, the connection of the cultivation material and the foreign material)<br>Association' (4) high-performance light alloy ultra-thin precision parts solidification law, large components multi-coupling under the supernormal coagulation<br>Body mold alkaloid behavior 'transient high power density energy field on the mechanism of material action, laser precision forming and repair process<br>Forming Rules) Major Scientific Problems II: Multi-scale, multi-scale construction imitation of high-performance precision forming manufacturing process<br>t-process speaking<br>(1) Large-scale complex high-performance components into the formation of the whole process of multiple coupling multi-scale modeling and simulation simulation<br>Under the rocking theme scale under the microforming process modeling simulation method:<br>(2) Large-scale complex high-performance metal components solidified and plastic into the form of the law of super-clear<br>Loading sakura and high-efficiency welding behavior of the multi-scale full-scale simulation and analysis. 、<br>Large complex high-performance components of 2-base 鷲 simulation of the process of taking the same step into the formative process<br>鎚, multi-goal, multi-constraint optimization design, robust control and digital precision forming<br>(4) Integrated design, digitization and intellectualization of part performance and material preparation and forming process include<br>M The whole tissue, shape, size and quality of the whole process of preparation, preparation, forming and heat treatment<br>Million 0<br>8.5 Development Plans for the Next 5 to 10 Years<br>For the next 5 to 10 years in the field of high-performance precision forming manufacturing research frontiers and major scientific issues,<br>斂 priority funding directions are: high-performance solidification precision forming, lightweight high-strength plate complex precision forming, 髙<br>Precise volume forming, welding and high-efficiency welding under extraordinary conditions, and forming of large components<br>Lake I, low-cost batch microforming, and high-performance precision forming process modeling simulation and optimization. Development<br>The chart shows 8.3, as shown in the following seven aspects.
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结果 (英语) 3:[复制]
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The 8th high performance precision forming manufacturing science<br>On n8<br>"Zhilan and weifendang shock vulture forming manufacturing science and technology is the leading edge of high-performance precision forming manufacturing<br>1. Research on yingyu (life science problem - "forming integrated manufacturing of large complex high-performance components"<br>And integration, /) macro dimensional performance of large-scale complex high-performance components of light-weight high-strength materials in the process of forming and manufacturing<br>The evolution relationship and formative regulation of high performance braiding. Performance change<br>It is also the local loading (labor-saving and shape preserving) of large and complex high-performance components under the effect of multi field coupling and multi-scale<br>Critical disintegration and formation of ascension_ The theory of materialized control. To form with (a jackknife)<br>5. Discussion on the connection between thick cultivation materials and materials of different gods<br>Relationship "(4) solidification forming law of high performance light alloy ultra-thin precision parts, super constant solidification of large components under multi field coupling<br>The action mechanism of the transient high power density energy field on the material, the laser precise forming and repairing process<br>The second major scientific problem: multi field, multi-scale and whole process modeling of high-performance precision forming manufacturing process<br>Talk in the middle of T<br>(1) multi field coupling multi-scale modeling and Simulation of the whole forming process of large complex high-performance components<br>Modeling and simulation method of micro forming process in mesoscopic scale. ..<br>(2) Super clear rules of solidification and plastic formation of large and complex high performance metal parts in multi field<br>Multi scale simulation and analysis of the whole process of loading sample cherry and efficient welding behavior. ,<br>Forming process of large-scale complex high-performance components in the simulation of the process of YIZUN<br>Hammer, multi-objective, multi constraint optimal design, robust control and digital precise forming<br>(4) integrated design, digitalization and intellectualization of part performance and material preparation and forming process include<br>Meaning of organization, shape, size and quality in the whole process of design, preparation, forming and heat treatment<br>Ten thousand<br>8.5 development plan for the next 5-10 years<br>Aiming at the research frontier and major scientific issues in the field of high-performance precision forming manufacturing in the next 5-10 years,<br>The priority funding direction is: high performance solidification precision forming, light high-strength plate complex parts precision forming, high<br>Precise volume forming, welding under abnormal conditions and efficient welding, forming a whole of super large components<br>Hu I, low-cost bulk microforming, high-performance precise forming process modeling, simulation and optimization, etc. development<br>As shown in Fig. 8.3, the detailed performance is shown in the following 7 aspects.<br>
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