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直四棱柱自锁底成型锁合点模切线
引用本文:王鹏,牟信妮,张书驰,王丽超,孙诚,黄利强.直四棱柱自锁底成型锁合点模切线[J].包装工程,2016,37(23):89-92.
作者姓名:王鹏  牟信妮  张书驰  王丽超  孙诚  黄利强
作者单位:天津科技大学,天津300222;赛闻工业有限公司,天津300457;天津职业大学,天津,300410;天津科技大学,天津,300222;天津科技大学,天津300222;天津职业大学,天津300410
基金项目:天津市艺术科学研究规划项目(E12074)
摘    要:目的针对长方体(正方体)自锁底纸盒成型过程中粘合余角底面容易出现卡滞、破损的现象,研究其自锁底纸盒粘合余角底面的切点轨迹。方法集中研究长方体(正方体)自锁底纸盒的粘合余角底面在成型过程中的切点在三维坐标中的轨迹问题,确定参数轨迹方程为正弦函数曲线。结果不论长方体的长和宽是否相等,自锁底纸盒粘合余角底面的切点轨迹都是正弦函数曲线。结论该正弦函数曲线的设计可以避免自锁底纸盒成型过程中出现的卡滞和破损现象,同时使自锁底粘合纸盒的盒底设计更加合理。

关 键 词:自锁底  粘合余角  切点运动轨迹  模切线  正弦函数曲线  三维坐标
收稿时间:2016/5/25 0:00:00
修稿时间:2016/12/10 0:00:00

Die Tangent of the Auto End-lock Formed Locking Point of the Straight Quadrangular Prism
WANG Peng,MOU Xin-ni,ZHANG Shu-chi,WANG Li-chao,SUN Cheng and HUANG Li-qiang.Die Tangent of the Auto End-lock Formed Locking Point of the Straight Quadrangular Prism[J].Packaging Engineering,2016,37(23):89-92.
Authors:WANG Peng  MOU Xin-ni  ZHANG Shu-chi  WANG Li-chao  SUN Cheng and HUANG Li-qiang
Affiliation:1.Tianjin University of Science and Technology, Tianjin 300222, China; 2.Seven Industrial Co., Ltd., Tianjin 300457, China,Tianjin Vocational Institute, Tianjin 300410, China,Tianjin University of Science and Technology, Tianjin 300222, China,Tianjin University of Science and Technology, Tianjin 300222, China,1.Tianjin University of Science and Technology, Tianjin 300222, China; 2.Tianjin Vocational Institute, Tianjin 300410, China and Tianjin University of Science and Technology, Tianjin 300222, China
Abstract:The work aims to study the point trajectory at the bottom of adhesive coangle of auto end-lock box regarding the clamping stagnation and damage occurring at the bottom of adhesive coangle in the process of forming cuboid (square) auto end-lock box. The study was concentrated on the point trajectory in the 3D coordinates at the bottom of adhesive coangle in the process of forming cuboid (square) auto end-lock box, so as to determine locus equation of the parameters as sin curve. No matter whether the length and width of the cuboid were equal, the point trajectory at the bottom of adhesive coangle of the auto end-lock box was sin curve. The design of such sin curve can avoid clamping stagnation and damage occurring in the process of forming auto end-lock box and enable the design of the bottom of the auto end-lock adhesive box to be more rational.
Keywords:auto end-lock  adhesive coangle  point trajectory  die tangent  sine curve  3D coordinates
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