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航空航天及国防行业
航空航天及国防企业正在以卓越性能为目标开发前沿的平台和系统。 政府针对全新的飞机和技术正大力推进基础设施和安全系统转型。 创新是其推动力,而在整个航空航天及国防产品生命周期和价值链中实施同步的协同式项目管理则可以促进创新。
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电子和半导体行业
电子和半导体企业需要基于行业典范做法的预配置软件解决方案来实现新产品开发和推广 (NPDI) 的卓越表现。 通过缩短创新和开发周期,实现整个供应链的协作,创建闭环、智能和集成的制造环境
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工业机械和重型装备工业
重型装备与工业机械已经具备了前所未有的复杂性。 在竞争日益激烈的市场当中,各公司不但要确保不断创新,还要应对复杂性挑战。 Siemens PLM Software 能够助您打造出适当的产品,还能让产品满足需求。
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- NX
- Polarion
- Teamcenter
- Simcenter
- Manufacturing Operations Center
- Tecnomatix
- MindSphere
- PLM Components
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Siemens 制造运营管理 (MOM) 软件是一套完整的解决方案,用于实施有助于制造运营实现全面数字化的战略。
Manufacturing Operation Center
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MindSphere
MindSphere is the cloud-based, open IoT operating system from Siemens that connects your products, plants, systems, and machines, enabling you to harness the wealth of data generated by the Internet of Things (IoT) with advanced analytics.
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PLM Components
PLM Components are 3D software development toolkits that increase the value of CAD, CAM, CAE and related PLM applications by reducing the time, cost and risk of delivering 3D software innovation to your customers.
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- Mechanical Design
- Electrical & Electronics
- Software Engineering
- Simulation & Test
- Manufacturing Planning
- Factory Automation
- Manufacturing Operations Center
- Performance
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Simcenter
Siemens NX 软件是一款既灵活又功能强大的集成式解决方案,有助于您更快更高效地提供更优质的产品。 NX 提供了下一代的设计、仿真和制造解决方案,支持公司实现数字孪生的价值。
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Motion simulation
Motion simulation
了解错综机械系统(例如复印机、滑动天窗或襟翼)的运作环境是一件棘手的事情。运动仿真将计算机械系统的反作用力、扭矩、速度、加速度等。您可以直接将 CAD 几何体和装配限制转换到准确的运动模型当中,也可以从头开始创建您自己的运动模型。通过嵌入式运动解算器和强大的后处理功能,对大量产品行为进行研究。 |
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Co-simulation with Control Systems
Today’s products often have various controllers that include electronics, hydraulics and software components. The behavior of the control system impacts the hardware mechanical system, and vice-versa, and so it’s critical for mechanical and controls engineers to understand these effects as they develop their systems. You can increase engineering productivity by simulating and optimizing both the mechanical and control systems concurrently. Simcenter gives you the ability to co-simulate mechanical designs coupled with control systems to verify whether the control system design is robust enough to control the dynamic mechanism, and help eliminate costly changes later in development. |
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Flexible Bodies
Typical motion simulation represents mechanisms using rigid bodies. While this approach is acceptable for general design, in many cases, rigid bodies do not accurately represent all the parts and assemblies involved. However, by including the motion of flexible bodies, you can analyze elastic deformation and rigid body motion together. This facilitates a more accurate understanding of part and mechanism performance. |
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Rigid Bodies
Basic multibody dynamics begins with rigid body motion, which is the fastest way to develop a critical understanding of your product’s motion characteristics. Simcenter gives you the right tools to perform detailed rigid body dynamics analyses. It’s easy to create your motion model directly from your CAD assembly through an automated conversion process based on your assembly constraints, or you can create your own model by scratch. You can also easily model and simulate contact between your rigid bodies. |