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直接金属选区激光多道烧结温度场有限元模拟 被引量:18
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作者 沈显峰 王洋 +1 位作者 姚进 杨家林 《四川大学学报(工程科学版)》 EI CAS CSCD 北大核心 2005年第1期47-51,共5页
局部输入的集中移动激光热源势必造成直接金属选区激光烧结过程中温度场分布不均匀、不稳定。研究多道激光烧结对掌握烧结过程中温度场动态分布及不同烧结道的相互影响规律具有重要意义。在考虑随温度变化而变化的热传导、比热容等热物... 局部输入的集中移动激光热源势必造成直接金属选区激光烧结过程中温度场分布不均匀、不稳定。研究多道激光烧结对掌握烧结过程中温度场动态分布及不同烧结道的相互影响规律具有重要意义。在考虑随温度变化而变化的热传导、比热容等热物性参数的作用下,建立直接金属多道烧结的三维温度场有限元模型。采用AN SYS参数化设计语言模拟多道烧结的热源移动,用焓处理相变潜热的影响。模拟结果显示:随着烧结过程的进行,随后的烧结道具有越来越大的热影响区域,且热影响区域的不均衡性越来越明显;极大的温度梯度发生在激光束扫描方向改变时的烧结件边沿区域。模拟结果的最高温度、平均温度与先前的实验结果一致。 展开更多
关键词 快速原型/制造 选区激光烧结 数值模拟 有限元分析 温度场 潜热
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金属粉末选区激光熔化单道扫描热应力场的数值模拟 被引量:8
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作者 任忠 王东东 +1 位作者 白培康 马国云 《热加工工艺》 CSCD 北大核心 2010年第15期173-175,共3页
针对选区激光熔化工艺输入的局部集中的移动激光热源造成选区激光烧结过程中应力场分布不均匀、不稳定的问题,以316钢粉末为烧结材料利用有限元分析软件ANSYS对激光烧结应力场进行了数值模拟,通过改变单元属性的方法,解决材料的熔化、... 针对选区激光熔化工艺输入的局部集中的移动激光热源造成选区激光烧结过程中应力场分布不均匀、不稳定的问题,以316钢粉末为烧结材料利用有限元分析软件ANSYS对激光烧结应力场进行了数值模拟,通过改变单元属性的方法,解决材料的熔化、凝固问题并对模拟结果进行了实验验证。结果表明,激光烧结过程中,在光斑中心的前端存在着极大的热应力,这与实验结果基本一致。 展开更多
关键词 选区激光熔化 有限元模拟 快速原型/制造 热应力场
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SOFTWARE SYSTEM FOR SELECTIVE LASER SINTERING
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作者 高立群 朱力群 +2 位作者 唐亚新 黄因慧 余承业 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI 1997年第1期53-57,共5页
The advent of rapid prototyping & manufacturing techniques represents a major breakthrough in production engineering. This paper is concerned with the software system aspects of the selective laser sintering (SL... The advent of rapid prototyping & manufacturing techniques represents a major breakthrough in production engineering. This paper is concerned with the software system aspects of the selective laser sintering (SLS),i.e.the issues that deal with an external geometric CAD model to automatically control the physical layering fabrication process as directly as possible ,regardless of the source of the model. The general issues are described and some key methods are given in this paper. 展开更多
关键词 CAD program systems rapid prototyping & manufacturing selective laser sintering
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Principle and Feasibility of Electric or Magnetic Field Deflection-Projection Based Rapid Prototyping Technique
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作者 张连洪 李双义 +1 位作者 张宝峰 熊晓明 《Transactions of Tianjin University》 EI CAS 2003年第1期41-44,共4页
Rapid prototype manufacturing(RPM) is a new advanced manufacturing technology, which is based on the philosophy of materials increasing of lay by lay forming. Zero adventure rapid design/manufacturing can be realized ... Rapid prototype manufacturing(RPM) is a new advanced manufacturing technology, which is based on the philosophy of materials increasing of lay by lay forming. Zero adventure rapid design/manufacturing can be realized with rapid prototypes of 3D CAD of products. Rapid prototyping has been an effective tool of R&D of new products. A novel rapid prototyping and manufacturing (RP&M) technique is brought forward. The principle of the process is to form layered sections and to make the prototype or part layer by layer by deflection projection of electric charged powder granules passing through electric or magnetic field and by controllable line and field scan of the powder granule beam. The feasibility issue of the process is theoretically and experimentally investigated.It shows that deflection projection of electric charged powder granules beam passing through electric field can be significant and feasible to the rapid prototyping technique. 展开更多
关键词 rapid prototyping and manufacturing (RP&M) electric charging of powder granules deflection projection electric field magnetic field
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The step-by-step CFD design method of pressure-compensating emitter
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作者 Wei Zhengying 《Engineering Sciences》 EI 2013年第1期62-67,77,共7页
In order to improve the design and research and development (R & D) efficiency of the pressure- compensating drip irrigation emitter,a step-by-step computational fluid dynamics (CFD) design method was proposed bas... In order to improve the design and research and development (R & D) efficiency of the pressure- compensating drip irrigation emitter,a step-by-step computational fluid dynamics (CFD) design method was proposed based on CFD theory combined with the finite element method. By analyzing its hydraulic performance through the step-by-step CFD method,the prediction pressure-flow curve(p-Q curve) of the pressure-compensating emitter was obtained. Then the test samples were fabricated using rapid prototype and manufacturing(RP & M) technology. The emitters' hydraulic performance experiment was carried out and the experimental p-Q curve was obtained. The step-by-step CFD design method was verified by comparing the experimental p-Q curve with the prediction values,which showed that the prediction values met the experimental results well within the normal range of the emitter's working pressure. On this basis,the effect of the emitter structure on its pressure-compensating performance was studied,which showed that the height of the pressure-compensating region had significant effects on the emitter's pressure-compensating performance. Series products of the pressure-compensating emitter could be designed by changing the region's height. 展开更多
关键词 pressure-compensating drip irrigation emitter step-by-step CFD hydraulic performance experiment
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Study on the Manufacturing Technology of Directly Metal Forming based on Overlay Welding
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作者 Limin Zhang 《International Journal of Technology Management》 2014年第7期16-17,共2页
Rapid prototyping technology can greatly improve the actual processing industrial prototype; this paper introduces the main principle, characteristics and technology of rapid prototype manufacturing. The current rapid... Rapid prototyping technology can greatly improve the actual processing industrial prototype; this paper introduces the main principle, characteristics and technology of rapid prototype manufacturing. The current rapid prototype manufacturing products and production problems are analyzed. Because of the direct metal forming process have the characteristic of point by point, surfacing with stack molding manufacturing layer by layer, so it is suitable for complex shape parts two-dimensional or three-dimensional functionally gradient materials manufacturing. 展开更多
关键词 Layer accumulation model gradient material direct metal forming
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