Claims
- 1. An injection mold design method for designing the core and the cavity by correcting the profile of the product to be fabricated into a releasable profile from the mold, then arranging the corrected product shape in the mold block being displayed on the screen to provide a cavity corresponding to the product shape in the mold block, and then splitting the mold block, said method comprising:detecting a bottom of the cavity in the core side; extending a peripheral portion of the bottom along a mold opening direction so as to select candidates of the split line for splitting the core of the mold block into a nest structure; displaying a result of resin superplasticized analysis of the mold superposedly on a perspective view of the mold viewed from the mold opening direction; arranging a gas vent for exhausting gas in a location where a resin reaches finally based on the result of the resin superplasticized analysis; patternizing gate structures of the mold into plural groups in advance; registering the plural groups of patternized gate structures in a storing device; and selecting one of the stored patternized gate structures by an operator in compliance with procedures displayed on a screen.
- 2. An injection mold design method for designing the core and the cavity by correcting the profile of the product to be fabricated into a releasable profile from the mold, then arranging the corrected product shape in a mold block being displayed on the screen to provide a cavity corresponding to the product shape in the mold block, and then splitting the mold block, said method comprising:detecting a bottom of the cavity in the core side; extending a peripheral portion of the bottom along a mold opening direction so as to select candidates of the split line for splitting the core of the mold block into a nest structure; displaying a result of resin superplasticized analysis of the mold superposedly on a perspective view of the mold viewed from the mold opening direction; arranging a gas vent for exhausting gas in a location where resin reaches finally based on the result of the resin superplasticized analysis; patternizing ejector pin structures of the mold into plural groups in advance; registering the plural groups of patternized ejector pin structures in a storing device; and selecting one of the stored patternized ejector pin structures by an operator in compliance with procedures displayed on a screen.
Priority Claims (2)
Number |
Date |
Country |
Kind |
7-285944 |
Nov 1995 |
JP |
|
8-005329 |
Jan 1996 |
JP |
|
Parent Case Info
This is a divisional of application Ser. No. 09/084,965 filed on May 27, 1998 which has been allowed and issued as U.S. Pat. No. 5,812,402.
US Referenced Citations (15)
Foreign Referenced Citations (4)
Number |
Date |
Country |
0 074 320 A1 |
Mar 1983 |
EP |
0 090 600 A2 |
May 1983 |
EP |
0 082 757 A1 |
Jun 1983 |
EP |
WO 9213301 A |
Dec 1991 |
WO |
Non-Patent Literature Citations (3)
Entry |
Bilge et al, “An Integrated Computer-Aided Process Planning System for Injection Mold Manufacturing”, 1996 IEEE Conference on Emerging Technologies and Factory Automation, pp. 123-129, Nov. 1996.* |
França et al, “Advances in On-Line Monitoring of Polymer Injection Molding Process”, 1997 IEEE Proceedings of Ultrasonics Symposium, pp. 807-810, Oct. 1997.* |
Tseng, et al., “Knowledge-Based Mold Design For Injection Molding Processing” IEEE, 1990, pp. 1199-1204. |