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A mathematical model of the rotor profile of the single-screw compressor

机译:单螺杆压缩机转子轮廓的数学模型

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摘要

This paper presents a method for determining the basic profile of a single-screw compressor including a gate rotor and a screw rotor. The inverse envelope concept for determining the cutting-edge curve of the gate rotor is presented. Based on this concept, the required cutter for machining the screw rotor can be obtained by an envelope of the one-parameter family of obtained screw rotors. The obtained screw rotor is an envelope of the family of gate rotor surfaces. Let the obtained envelope of the one-parameter family of gate rotor surfaces become the generating surface. The inverse envelope can be used to obtain the envelope of the family of generating surfaces. Then, the profile of the gate rotor with the cutting-edge curve can be easily obtained. The proposed method shows that the gate rotor and the screw rotor are engaged along the contact line at every instant. This is essential to reduce the effect of leakage on compressor performance. In this paper, a mathematical model of the meshing principle of the screw rotor with the gate rotor is established. As an example, the single-screw compressor for a compressor ratio of 11: 6 is determined with the aid of the proposed mathematical model. Results from these mathematical models should have applications in the design of single-screw compressors.
机译:本文提出了一种确定单螺杆压缩机基本轮廓的方法,该压缩机包括闸转子和螺杆转子。提出了用于确定门转子尖端曲线的逆包络概念。基于该概念,可以通过所获得的螺杆转子的一参数系列的外壳来获得用于加工螺杆转子的所需刀具。所获得的螺杆转子是闸转子表面系列的外壳。让获得的门转子表面一参数系列的包络成为生成表面。逆包络可用于获取生成曲面族的包络。然后,可以容易地获得具有尖端曲线的闸转子的轮廓。所提出的方法表明,闸转子和螺杆转子在每个时刻都沿着接触线接合。这对于减少泄漏对压缩机性能的影响至关重要。建立了螺旋转子与闸转子啮合原理的数学模型。例如,借助建议的数学模型确定压缩机比为11:6的单螺杆压缩机。这些数学模型的结果应在单螺杆压缩机的设计中得到应用。

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