IP Library Patent Application 17270572
Patent Application
App. No. 17/270,572

MOLDING TOOL WITH HIGH-PERFORMANCE COOLING SYSTEM

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Quick Facts
Patent No.
US None
App. No.
17/270,572
Abstract

A cooling system for a molding tool or molding machine includes a high-performance coolant, multiple cooling circuits with different coolants flowing along each circuit, and/or a self-contained cooling circuit. The high-performance coolant can include a metallic component in various forms, including a liquid phase metal form. Newly recognized coolant characteristics such as volumetric heat capacity (C v ) can be used to identify suitable coolants. High-performance coolants can be used to reduce molding process cycle times, to spatially equalize the cooling rate of the molding material among different sections of the mold cavity, and/or to help cool other parts of the tool or machine such as a runner or an injection sleeve.

Claims (31)

1 . A molding tool comprising a cooling system having a fluid channel formed within a body of the molding tool, wherein the cooling system is arranged so that a coolant that comprises a liquid phase metal flows along the fluid channel.

2 . The molding tool of claim 1 , wherein the liquid phase metal includes a eutectic alloy comprising a plurality of different metallic elements.

3 . The molding tool of claim 1 , wherein the liquid phase metal comprises gallium.

4 . The molding tool of claim 1 , further comprising:

first and second tool portions that at least partly define a mold cavity when the molding tool is in a closed condition; and

a runner that interconnects the mold cavity with a molding material source when the molding tool is installed in a molding machine,

wherein the fluid channel is one of a plurality of fluid channels formed within the body of the molding tool and is the closest of the fluid channels to the runner.

5 . The molding tool of claim 1 , wherein the fluid channel is part of a cooling circuit along which the coolant that comprises the liquid phase metal flows through a heat extraction zone and a heat sink region, the coolant extracts heat from a molding material in a mold cavity of the molding tool in the heat extraction zone and heat is transferred from the coolant to the body of the molding tool in the heat sink region.

6 . The molding tool of claim 1 , further comprising a self-contained cooling circuit comprising a pump, the fluid channel, and the coolant that comprises the liquid phase metal, the cooling circuit being integrated with the body of the molding tool so that the cooling circuit remains part of the molding tool when the molding tool is installed in a molding machine and when the molding tool is uninstalled from the molding machine.

7 . The molding tool of claim 6 , further comprising an additional cooling circuit distinct from the self-contained cooling circuit, wherein the additional cooling circuit contains a coolant different from the coolant of the self-contained cooling circuit that comprises the liquid phase metal.

8 . The molding tool of claim 6 , further comprising:

first and second tool portions that at least partly define a mold cavity when the molding tool is in a closed condition; and

a runner that interconnects the mold cavity with a molding material source when the molding tool is installed in the molding machine,

wherein the fluid channel is one of a plurality of fluid channels of the self-contained cooling circuit and is the closest of the fluid channels to the runner.

9 . The molding tool of claim 6 , wherein the coolant that comprises the liquid phase metal flows along the self-contained cooling circuit through a heat extraction zone and a heat sink region, the coolant extracts heat from a molding material in a mold cavity of the molding tool in the heat extraction zone and heat is transferred from the coolant to the body of the molding tool in the heat sink region.

10 . A molding tool comprising a cooling system having a first cooling circuit and a second cooling circuit distinct from the first cooling circuit, wherein each cooling circuit contains a different coolant and at least one of the coolants has a thermal conductivity (k) of 1.0 W/m-K or greater.

11 . The molding tool of claim 10 , wherein at least one of the different coolants includes a eutectic alloy comprising a plurality of different metallic elements.

12 . The molding tool of claim 10 , wherein at least one of the different coolants comprises gallium.

13 . The molding tool of claim 10 , further comprising:

first and second tool portions that at least partly define a mold cavity when the molding tool is in a closed condition; and

a runner that interconnects the mold cavity with a molding material source when the molding tool is installed in a molding machine,

wherein the coolant contained by the cooling circuit closest to the runner has the highest thermal conductivity (k) of the different coolants.

14 . The molding tool of claim 10 , wherein a first coolant flows along the first cooling circuit and extracts heat from a molding material in a mold cavity of the molding tool at a first portion of the first cooling circuit, and

a second coolant flows along the second cooling circuit and extracts heat from the first coolant at a second portion of the first cooling circuit formed within a body of the molding tool.

15 . The molding tool of claim 10 , wherein at least one of the cooling circuits is a self-contained cooling circuit comprising a pump, a fluid channel, and a liquid phase metal coolant, the self-contained cooling circuit being integrated with a body of the molding tool and remaining part of the molding tool when the molding tool is installed in a molding machine and when the molding tool is uninstalled from the molding machine.

16 . The molding machine of claim 15 , wherein the fluid channel is located along an injection system sleeve and/or a plunger from which molten molding material is injected into a cavity of the molding tool when installed in the molding machine.

17 . A method of using a molding tool comprising a cooling system having a fluid channel formed within a body of the molding tool, the method comprising the steps of:

providing a coolant in the fluid channel, wherein the coolant comprises a liquid phase metal;

causing the coolant to flow along the fluid channel;

extracting heat with the coolant from a molding material in a mold cavity of the molding tool in a heat extraction zone; and

transferring heat from the coolant to the body of the molding tool in a heat sink region.

Assignments (7)
RELEASE OF PATENT SECURITY INTEREST RECORDED AT R/F 56660/0069 Recorded Nov 25, 2025
From: PNC BANK, NATIONAL ASSOCIATION
To: ALUDYNE NORTH AMERICA LLC
Reel/Frame 073707/0793 →
RELEASE (REEL 056474 / FRAME 0924) Recorded Mar 14, 2023
From: JPMORGAN CHASE BANK, N.A.
To: ALUDYNE NORTH AMERICA LLC
Reel/Frame 063083/0321 →
SECURITY INTEREST Recorded Jun 24, 2021
From: ALUDYNE NORTH AMERICA LLC
To: PNC BANK, NATIONAL ASSOCIATION, AS COLLATERAL AGENT
Reel/Frame 056660/0069 →
SECURITY AGREEMENT Recorded May 28, 2021
From: ALUDYNE NORTH AMERICA LLC
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 056474/0924 →
CHANGE OF NAME Recorded May 26, 2021
From: GROUPER CASTING, LLC
To: ALUDYNE NORTH AMERICA LLC
Reel/Frame 056397/0350 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 23, 2021
From: FETSKO, STEPHEN; LEASKE, ERIK
To: SHILOH INDUSTRIES, INC.
Reel/Frame 055369/0500 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 23, 2021
From: SHILOH INDUSTRIES, INC.
To: GROUPER CASTING, LLC
Reel/Frame 055375/0783 →