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首页> 外文期刊>International Journal of Machine Tools & Manufacture: Design, research and application >A study on the influence of the sloped cutting angle on kerfwidth and part quality in the hotwire cutting of EPS foam for the VLM-s rapid prototyping process
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A study on the influence of the sloped cutting angle on kerfwidth and part quality in the hotwire cutting of EPS foam for the VLM-s rapid prototyping process

机译:VLM-s快速成型过程中EPS泡沫热线切割中倾斜切割角度对切口宽度和零件质量的影响研究

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摘要

The VLM-s rapid prototyping process employs hotwire cutting of an EPS foam sheet using a four-axis synchronized automatic hotwire cutter. The dimensional accuracy and the quality of the cut part are highly dependent on cutting parameters such as effective heat input, and cutting angle, etc. The objective of this study is to investigate the influence of cutting angle on the kerfwidth and the part quality in hotwire cutting of EPS foam for the case of the sloped cutting including single-sloped cutting with one cutting angle and generally sloped cutting with two cutting angles. Experiments are carried out to obtain the relationship between kerfwidth and effective heat input for each cutting angle, and to find the relationship between the melted area and the cutting angle for each effective heat input. In order to investigate the influence of cutting angle on temperature distribution in EPS foam, transient heat transfer analysis using the sloped heat flux model and the conformed mesh structure is carried out. Through comparison of the results of the experiment and the transient heat transfer analysis, it has been shown that the sloped heat flux with an elliptical cross-section and the conformed mesh structure are needed to estimate the three-dimensional temperature distribution in the EPS foam in the sloped hotwire cutting.
机译:VLM的快速原型制作过程使用四轴同步自动热线切割机对EPS泡沫板进行热线切割。切割零件的尺寸精度和质量高度依赖于切割参数,例如有效热量输入和切割角度等。本研究的目的是研究切割角度对热线切割宽度和零件质量的影响。对于倾斜切割的情况,EPS泡沫的切割包括具有一个切割角的单倾斜切割和具有两个切割角的通常倾斜切割。进行实验以获得每个切割角的切口宽度和有效热输入之间的关系,并找到每个有效热输入的熔化面积与切割角之间的关系。为了研究切削角度对EPS泡沫塑料中温度分布的影响,采用倾斜热通量模型和一致的网格结构进行了瞬态传热分析。通过对实验结果和瞬态传热分析的比较,表明需要椭圆形横截面的倾斜热通量和一致的网状结构来估算EPS泡沫中的三维温度分布。倾斜的热丝切割。

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