IP Library Granted Patent US 10,444,092
Granted Patent B2
US 10,444,092 · App. 16/134,405 · Granted Oct 15, 2019

Upstream nozzle sensor for injection molding apparatus and methods of use

Inventors: Rick Alan Pollard (Moscow, OH); Bryan Keith Allen (Lebanon, OH); Chow-Chi Huang (West Chester, OH); Gene Michael Altonen (West Chester, OH)
Assignee: IMFLUX INC.
G01L1/2218B29C45/2708B29C45/30B29C45/77G01L1/04G01L19/147B29C45/1603B29C2945/7619B29C2945/76381B29C2945/76481B29C2945/76498B29C2945/76545B29C2945/76658B29C2945/76859
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Quick Facts
Patent No.
US 10,444,092
App. No.
16/134,405
Granted
Oct 15, 2019
Kind
B2
Abstract

A strain gauge nozzle adapter that may be placed between a barrel end cap and a nozzle body of an injection molding system, the strain gauge nozzle adapter having a strain gauge pin that measures strain within the strain gauge nozzle adapter for use in approximating conditions within an injection molding system, such as pressure or the location of a melt flow front. The strain gauge nozzle adapter may include a plurality of strain gauge pins. An alternative material insert in the strain gauge nozzle adapter may surround a strain gauge pin to amplify meaningful measurements obtained by the strain gauge pin so that noise measurements do not compromise the accuracy of approximation of conditions within a mold.

Claims (16)

1. A method of injection molding, comprising:

measuring, using a strain gauge pin, a change in strain in a strain gauge nozzle adapter;

approximating at least one of a pressure or a melt flow front location within a mold cavity based on the change in strain;

comparing the approximated pressure or melt flow front location to a trigger point; and,

if the approximated pressure or melt flow front location equals or exceeds the trigger point, activating a virtual cavity sensor, wherein upon activation, the virtual cavity sensor causes a controller to perform an action,

the method further comprising amplifying a change in an alternative material insert of the strain gauge nozzle adapter.

2. The method of injection molding of claim 1 , wherein measuring the change in strain in a strain gauge nozzle adapter includes using a plurality of strain gauge pins.

3. The method of injection molding of claim 1 , wherein measuring the change in strain in a strain gauge nozzle adapter includes using a secondary sensor.

4. A method of injection molding, comprising:

measuring, using a strain gauge pin, a change in strain in a strain gauge feed system adapter;

approximating at least one of a pressure or a melt flow front location within a mold cavity based on the change in strain;

comparing the approximated pressure or melt flow front location to a trigger point; and,

if the approximated pressure or melt flow front location equals or exceeds the trigger point, activating a virtual cavity sensor, wherein upon activation, the virtual cavity sensor causes a controller to perform an action,

the method further comprising amplifying a change in an alternative material insert of the strain gauge feed system adapter.

5. The method of injection molding of claim 4 , wherein measuring the change in strain in a strain gauge feed system adapter includes using a plurality of strain gauge pins.

6. The method of injection molding of claim 4 , wherein measuring the change in strain in a strain gauge feed system adapter includes using a secondary sensor.

Assignments (2)
NUNC PRO TUNC ASSIGNMENT Recorded Jul 29, 2024
From: IMFLUX, INC.
To: THE PROCTER & GAMBLE COMPANY
Reel/Frame 068178/0055 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 18, 2018
From: POLLARD, RICK ALAN; ALLEN, BRYAN KEITH; HUANG, CHOW-CHI; ALTONEN, GENE MICHAEL
To: IMFLUX INC.
Reel/Frame 046902/0217 →
Continuity (3)
Division 15615996 · Jun 7, 2017
Provisional Application 62356638 · Jun 30, 2016
Related Publication 20190017886A1 · Jan 17, 2019