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Bionic Design and Parameter Optimization of Rotating and Fixed Stem- and Leaf-Cutting Devices for Carrot Combine Harvesters

机译:胡萝卜组合收割机旋转和固定茎和叶切割装置的仿生设计和参数优化

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To solve the problems of the high rhizome damage and low net cutting during carrot combine harvesting, the following research was performed. The designed carrot stem- and leaf-cutting device was taken as the research object, and a bionic design idea was adopted. MATLAB software was used to extract and optimize the tibial curve of the mantis forelimb, and its shape was applied to the cutting edges of a single-disc rotating cutter and a straight fixed cutter, whose key structural parameters were determined. The kinematic and dynamic models of the cutter, stems, and leaves were established to explore the critical conditions of smooth cutting. A single-factor experiment was performed. The results show that the rhizome damage and the stems and leaf net cutting increased when the rotation speed of the clamping conveyor pulley increased. The flatness of the cutting surface first increased and subsequently decreased. At a speed of 102 r/min, the rhizome damage was 2.86%, the net cutting of stems and leaves was 92.82%, and the flatness of the cutting surface was 85.39%. The net cutting of stems and leaves and the flatness of the cutting surface increased as the disc cutter speed increased, while the rhizome damage decreased. When the rotation speed reached 165 r/min, the rhizome damage, the net cutting of stems and leaves, and the flatness of the cutting surface were 1.97%, 89.59%, and 91.48%, respectively. The bench test and field experiment results showed that the cutting performance of the optimized bionic cutter group is significantly better than that of the conventional knife group. The rhizome damage, net cutting of stems and leaves, and flatness of the cutting surface were 4.01%, 92.05%, and 84.05%, respectively, which meet the agronomic requirements for carrot harvesting.
机译:为了解决胡萝卜组合收获期间,解决了高根茎损伤和低净切割问题,进行了以下研究。设计的胡萝卜茎和叶切割装置作为研究对象,采用了仿生设计理念。 MATLAB软件用于提取和优化螳螂前列脚钉的胫骨曲线,并且其形状被施加到单盘旋转切割器的切削刃和直固定切割器,其键结构参数被确定为键结构参数。建立了刀具,茎和叶子的运动和动态模型,以探讨平滑切割的临界条件。进行单因素实验。结果表明,当夹紧输送机皮带轮的旋转速度增加时,根茎损伤和茎净净切割增加。切割表面的平坦度首先增加并随后降低。在102转/分钟的速度,根茎损害是2.86%,茎的净切割和树叶为92.82%,并且切割表面的平整度为85.39%。随着盘式切割机速度的增加,切割表面的净切割和切割表面的平坦度增加,而根茎损伤降低。当旋转速度达到165升/分钟时,根茎损伤,茎叶的净切割,切割表面的平整度分别为1.97%,89.59%和91.48%。台面试验和现场实验结果表明,优化的仿生刀具组的切割性能明显优于传统刀具组的切割性能。切根损伤,茎叶和叶片的净切割,切割表面的平坦度分别为4.01%,92.05%和84.05%,符合胡萝卜收割的农艺要求。

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