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智能裁剪设备在服装制造中的优化应用

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针对传统服装裁剪设备切割速度与设定速度不一致导致裁剪精度降低的问题,研究智能裁剪设备在服装制造中的优化与应用方法.首先,确定不同裁剪区域的单元温度场,建立设备裁剪服装的模态化运动方程.然后,针对不同裁剪区域,获取裁剪设备的工作载荷、最小单位时间内的功率消耗量和最小化后的设备体积,并以此构建智能裁剪设备的多目标优化函数.最后,引入梯度下降算法,获取优化函数的最优解,提高设备裁剪精度和切割速度.结果表明:该方法裁剪后的参数与设定基本一致,且切割速度未发生较大波动,均达到了 110 m/min以上,能够有效控制智能裁剪设备的整体应用,保证裁剪图形的准确率,具有可推广应用价值.
Optimization and application of intelligent cutting equipment in clothing manufacturing
Aiming at the problem that the cutting speed of traditional garment cutting equipment was inconsistent with the set speed,the optimization and application of intelligent cutting equipment in garment manufacturing were studied.Firstly,the unit temperature field in different cutting areas were determined,and the modal motion equation of the equipment cutting clothing was established.Then,according to different clipping areas,the working load of the clipping equipment,the power consumption in the minimum unit time and the device volume after minimization were obtained,and the multi-objective optimization function of the intelligent clipping equipment was constructed.Finally,the gradient descent algorithm was introduced to obtain the optimal solution of the optimization function,which can improve the cutting precision and cutting speed of the equipment.The results show that the parameters of the proposed method are basically consistent with the setting,and the cutting speed does not fluctuate greatly,reaching more than 110 m/min.It can effectively control the overall application of intelligent cutting equipment and ensure the accuracy of cutting graphics,and has the value of popularization and application.

intelligent cutting equipmentautomated productionclothing manufacturingcutting standardscutting accuracy

徐颖芳、郑守阳

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浙江纺织服装职业技术学院 时装学院,浙江 宁波 315211

智能裁剪设备 自动化生产 服装制造 裁剪标准 裁剪精度

2024

毛纺科技
中国纺织信息中心 北京毛纺织科学研究所

毛纺科技

北大核心
影响因子:0.3
ISSN:1003-1456
年,卷(期):2024.52(12)