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A Software Based Test-Stand for Hydraulic Circuits

机译:基于软件的液压回路测试台

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Designing hydraulic systems involves creating hydraulic circuits, sourcing components for the circuits, fabricating the system and the manifolds and finally testing the system to validate the design. This could take a couple of months and cost a couple of thousand dollars. If errors are found during final testing, the whole system may have to be scrapped, causing large delays and financial losses. This risk could be mitigated if the circuit designed could be tested and validated using software simulation. Although simulation tools are available, they have three common drawbacks: 1) they are complex to use, requiring mathematical skill to model and simulate hydraulic systems, 2) ready-made component behavioral data is not available with them, and 3) they are not integrated with the circuit design software that the designer uses.rnThe present work is an attempt to solve the above problems. The intent is to 1) build a software tool that requires no mathematical or simulation skills so that any technician can use it, 2) provide extensive libraries of valve behavioral data built from performance graphs available in manufacturer data sheets, along with a mechanism to transfer performance charts in data sheets into the software and 3) integrate the software with commonly used circuit design software like Microsoft Visio and Autocad. We discuss the challenges of developing such software and also some results of this attempt.
机译:液压系统的设计涉及创建液压回路,为回路采购零件,制造系统和歧管,最后对系统进行测试以验证设计。这可能要花几个月的时间,并且要花费数千美元。如果在最终测试期间发现错误,则可能必须废弃整个系统,从而造成较大的延迟和财务损失。如果可以使用软件仿真来测试和验证设计的电路,则可以减轻这种风险。尽管可以使用仿真工具,但它们具有三个常见的缺点:1)使用起来很复杂,需要数学技能来对液压系统进行建模和仿真; 2)无法使用现成的组件行为数据,以及3)不能使用。集成了设计人员使用的电路设计软件。本工作旨在解决上述问题。目的是:1)建立不需要任何数学或模拟技能的软件工具,以便任何技术人员都可以使用它; 2)提供大量的阀门行为数据库,这些数据是根据制造商数据表中的性能图表构建的,并提供了一种传输机制数据表中的性能图表插入软件中; 3)将软件与常用的电路设计软件(例如Microsoft Visio和Autocad)集成在一起。我们讨论了开发此类软件的挑战以及此尝试的一些结果。

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