与制造工程师、维修技术员,生产人员和其他有关人员协商,快速解决问题。
Confer with manufacturing engineers, maintenance technicians, production personnel, and others related to rapidly resolve problems.
同时,虚拟生产平台也是虚拟样机、快速成型等先进制造技术的基础和支持平台。
Moreover, VMP is the basic support platform for other modern advanced manufacturing technologies such as Virtual Prototyping and Fast Prototyping.
阿尔德的技术,旨在减少开发周期,并提供一种廉价和快速通道,通过产品的制造。
Alder's technology is designed to reduce development cycles and provide an inexpensive and rapid route through product manufacturing.
介绍了以快速原型技术和精密铸造技术进行进气歧管铸造模具制造的情况。
The situation of mould manufacturing for inlet manifold in rapid prototyping and investment casting was introduced.
为提高制造系统对市场和产品变化的快速适应能力,探求了制造系统可重组的理论、方法及其应用技术。
To improve rapidly the adaptation of manufacturing system to the change in market and products, the theory, method and its application of reconfigurable manufacturing system are explored.
为了能够快速响应多变的市场需求,在模具设计与制造过程中运用虚拟原型技术可以有效地降低模具制造和试模的成本,缩短制造周期。
To answer the requirement of changeable market during mould design making process the virtual prototyping technology can be cut down the cost of mould making test mould and shorten making period.
以精密模具制造技术为核心进行滴管CAD工艺设计和快速模具制造(RT)工艺模型的生成;
The CAD process model and the RT process model generation of the dropper are carried out taking manufacturing of the precision mould as the core.
为了使电机生产线能快速响应产品的批量变化和品种变化,将可重组制造技术应用于电机生产线。
Reconfigurable manufacturing technology is applied to the motor production line, because the motor line can respond to the changes of the batch production and variety of product.
介绍了在快速原型制造基础上的快速制模技术方面的一些新的研究和应用成果,并指出了制模技术的最新发展趋势。
This paper introduced some new achievements of research and application on rapid molding technology based on rapid prototyping technology, and the latest development trends of molding technology.
指出快速原型制造技术和计算机辅助设计与制造等先进制造技术是今后的发展趋势。
The paper then points out that rapid prototype manufacturing and computer-aid designing and manufacturing are the trends in the future.
方法利用先进制造方法中的快速成型技术和微压印技术构建生物反应器和三维支架结构;
Method Build bio-reactor and three-dimensional structure of the stent making use of advanced manufacturing methods of rapid prototyping technology and micro-stamping technology.
应用快速成型制造技术进行样件的制备和功能试验,完成了滴管设计的快速验证和修改;
Prototypes are built up using RP technique to complete rapid verification and the modification of the dropper design.
以上述思想为基础,本论文研究了以快速原形技术和陶瓷型精密铸造为基础的快速模具制造工艺,并将该工艺用于汽车发动机进气歧管铸造模具的快速制造。
Basing on the foregoing, we explored a rapid mould process consisting of RP and precision casting and used it to manufacture a casting mould for Changan auto-engine inhaust tube.
逆向工程是快速制造复杂产品和有主模型产品的主要方法之一,是CAD/CAM技术的重要组成部分。
Reverse engineering, an important constituent part of CAD/CAM technology, is a main method in manufacturing complex product or product with main model.
由于快速原型(RP)技术、材料和后续过程的改进,快速制造取得了长足的进步。
Improved rapid Prototyping (RP) techniques, materials and following processes support the trend towards rapid manufacturing.
基于激光熔覆的快速制造技术(LCRM)是一项近几年才兴起的快速成形技术,它是激光熔覆理论和快速成形技术的集成。
Laser cladding rapid Manufacturing (LCRM) is a new rapid shaping technology, which is the integration of laser cladding theory and rapid shaping technology.
基于激光熔覆的快速制造技术(LCRM)是一项近几年才兴起的快速成形技术,它是激光熔覆理论和快速成形技术的集成。
Laser cladding rapid Manufacturing (LCRM), which is the integration of laser cladding theory and rapid prototype technology, is a new rapid prototype technology.
相对于其他快速原型技术而言,SLS由于制造速度快、用材广泛和后处理工艺相对简单而备受关注,并且应用领域日益拓宽。
Compared with the other RP process, SLS has attracted extensive attention due to its fast building speed, wide range of materials, simple post-treatment et al.
利用LOM原型,把化学镀、电铸和电弧喷涂技术结合起来快速制造电火花加工电极,是实现模具快速制造的有效途径。
A technique of rapidly manufacturing EDM electrode based on LOM prototype through the combination of electroless plating, electroforming with wire arc spraying was investigated.
论述快速原型制造技术的特点和作为快速原型制造技术中的关键环节CAD造型,以及建立CAD模型的原则、方法和步骤。
The principle method and process of establishing a CAD model according to the characteristics and requirements of RPM technology are discussed.
等离子熔射快速模具制造是快速模具制造技术的一种,因其具有不受模具尺寸和熔射材料限制等优点而受到关注。
Plasma spray metal tooling has obtained a special attention for its advantages of fewer limits on the pattern's size and spraying materials.
提出并实现了以快速原型(RP)技术和电弧喷涂技术(ams)为核心的板料成形模具快速制造新工艺。
A rapid manufacturing process for sheet metal stamping with RP and arc spraying metal (AMS) as its key technologies, namely RP-AMS process, is developed.
面对竞争性的环境、客户需求的迅速变化和技术的快速更新,制造型企业正在认真考虑采取供应商与制造商的双赢战略。
Manufacturing firms, which face a competitive environment, should seriously consider win-win strategies, as customers 'needs vary over time and technology changes rapidly.
文章着重介绍一种最常见的快速软模――硅橡胶模的制造,以及运用硅橡胶模和真空技术制造塑料件的全过程。
This paper introduces a usual fast-molding soft mold----si-rubber mold and the whole process of manufacturing plastic work piece by si-rubber technology…
快速成形技术由于具有快速性和高度柔性的优点,在骨支架制造方面有广泛的应用前景。
Rapid prototyping has an advantage in its higher speed and flexibility, so it promises to be used widely to fabricate scaffolds.
焊接成型技术是一种非常实用且制造成本低的快速制造方法,成型零件具有优良的强度和性能。
Three dimension welding shaping is a applied and low cost rapid prototyping technology. Shaping part has a good intensity and performance.
通过具体的工程实例,验证了本文提出的快速模具制造工艺方法的可行性和可靠性,为金属电弧喷涂模具的推广应用提供了可靠的技术支持。
Feasibility and reliability of metal arc spray molding have been verified through several engineering examples, and the results will be useful for the future in-depth research on die fabrication.
基于反求工程和快速成形技术直接制造的个体化金属植入物,解决了目个体化植入物翻模制造、周期较长的问题。
The new individualized metal implant is based on reverse engineering and rapid prototyping technique, and has solved the problems of long period manufactural procedure in the traditional technique.
激光快速成型技术是集计算机辅助设计、计算机辅助制造、计算机数字控制以及精密伺服驱动和新材料等先进技术于一体的产品研制、开发技术。
Rapid prototyping is a technology for product development, which integrates different advanced technologies including CAD, CAM, CNC, accurate servo system and new materials, etc.
激光快速成型技术是集计算机辅助设计、计算机辅助制造、计算机数字控制以及精密伺服驱动和新材料等先进技术于一体的产品研制、开发技术。
Rapid prototyping is a technology for product development, which integrates different advanced technologies including CAD, CAM, CNC, accurate servo system and new materials, etc.
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