往复叉料斗给料器数学性能分析

S. Singh, Shramana Ghosh, Anju, P. Khanna
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引用次数: 1

摘要

送料机是自动化装配线的重要组成部分。随着大量供应的进料,它们还将零件的随机性转化为几何模式的流动,并以预定的速度交付。本文对往复叉式料斗给料器进行了数学分析。该系统通过气动驱动的往复叉向输送槽提供螺栓和铆钉等垂直配置的头部部件,该叉从旋转的碗中拾取部件。从零件数量、料叉往复速率和料斗旋转速度三个参数对喂料机的喂料速率性能进行了分析。实验设计(DOE)采用23全因子法。使用Design Expert®软件制定数学模型,以调查单个参数的意义以及它们之间的相互作用。使用方差分析(ANOVA)方法检查模型预测馈线性能的充分性。所得结果以图形和因子模型的形式呈现,该模型定义了给料机的性能特征。该数学模型还提供了最合适的工艺参数设置,以在给定的约束条件下优化给料机的进给速度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mathematical performance analysis of a reciprocating-fork hopper feeder
Feeders form a critical part of automated assembly lines. Along with feeding from a bulk supply, they also convert the randomness of parts into a flow in a geometrical pattern and deliver them at a predetermined rate. This paper mathematically analyses a reciprocating-fork hopper feeder. This system supplies headed parts like bolts and rivets in an upright configuration to the delivery chute through a pneumatically-actuated reciprocating fork which picks up the parts from a rotating bowl. The feed rate performance of the feeder is analysed for three parameters: part population, rate of reciprocation of fork and speed of rotation of bowl. The Design of Experiments (DOE) is done using 23 full-factorial method. A mathematical model is formulated using Design Expert ® software, to investigate the significance of individual parameters as well as interactions amongst them. Adequacy of the model to predict the performance of the feeder is checked using Analysis of Variance (ANOVA) method. The results obtained are presented graphically and in the form of factorial model which defines the performance characteristics of the feeder. The mathematical model also provides the most appropriate process parameter settings to optimize the feed rate of the feeder under the given constraints.
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