IP Library Granted Patent US 7,284,592
Granted Patent B2
US 7,284,592 · App. 10/793,878 · Granted Oct 23, 2007

Devices and methods for melting materials

Assignee: Limtech Corporation
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 7,284,592
App. No.
10/793,878
Granted
Oct 23, 2007
Kind
B2
Abstract

A molten material supply unit includes a heating cylinder. The heating cylinder may receive and heat the material in a substantially vacuum condition. A molding apparatus may include a pressurizing and charging unit in addition to the molten material supply unit. The pressurizing and charging unit is adapted to receive the melted material from the molten material supply unit and to charge the melted material into a die under pressure.

Claims (30)

1. A molten material supply unit comprising:

a heating cylinder constructed and arranged for receiving a solid material rods, and comprising an inlet open to the atmosphere which receives the solid material rods and an outlet spaced from the inlet; and

a vacuum device communicating with the heating cylinder between the solid material rod received at the inlet and the outlet spaced from the inlet, and constructed and arranged to generate a reduced pressure environment within the heating cylinder,

wherein the solid material rods are heated and melted in the reduced pressure environment as the rods move from the inlet to the outlet.

2. A molten metal supply unit as in claim 1 , wherein the vacuum device comprises a vacuum pump that is disposed adjacent to the heating cylinder in a position near an inlet of the heating cylinder.

3. A molten material supply unit as in claim 1 , additionally comprising means for successively supplying the solid material rods into the heating cylinder via the inlet.

4. A molten material supply unit as in claim 3 , wherein the solid material rods are made of metal.

5. A molten material supply unit as in claim 3 , further including a pusher device that is adapted to push the solid material rods into the heating cylinder.

6. A molten material supply unit as in claim 5 , further including a squeezing member disposed at the inlet of the heating cylinder, wherein the squeezing member has an inner diameter slightly smaller than an outer diameter of the solid material rods, so that an outer surface of the solid material rods is scraped as the solid material rods are pushed into the heating cylinder.

7. A molten material supply unit as in claim 3 , further including a preheating device that is adapted to heat the solid material rods so as to preheat and soften the solid material rods before the rods are pushed by a pusher device.

8. A molten material supply unit as in claim 5 , wherein the pushing device comprises a piston constructed and arranged to contact a rear end of each solid material rod and to move each solid material rod by a predetermined stroke in order to push the solid material rods into the heating cylinder.

9. A molten material supply unit as in claim 1 , wherein the heating cylinder has an inner wall that is covered with a protective layer that does not chemically react with the melted material within the heating cylinder.

10. A molten material supply unit as in claim 9 , wherein the protective layer is made of at least one material selected from the group consisting of ceramic, ceramic-metal composite and chromium oxide.

11. A molten material supply unit comprising:

a heating cylinder constructed and arranged for receiving solid material rods, and comprising an inlet open to the atmosphere to receive the solid material rods, which inlet comprises a squeezing device constructed and arranged to accommodate the solid material rods in a sealing manner,

an outlet spaced apart from the inlet, and

a vacuum device communicating with the heating cylinder and constructed and arranged to generate a reduced pressure within the heating cylinder,

wherein the squeezing device substantially forms a seal with the solid material rods as the solid material rods move through the squeezing device, and

wherein the solid material rods are heated and melted in the reduced pressure environment as the solid material rods move from the inlet towards the outlet.

12. A molten material supply unit as in claim 11 , additionally comprising a pusher device constructed and arranged to push the solid material rods into the inlet of the heating cylinder.

13. A molten material supply unit as in claim 11 , additionally comprising:

a preheating device constructed and arranged to preheat and soften the solid material rods; and

a pusher device constructed and arranged to push the solid material rods into the inlet of the heating cylinder,

wherein the preheating device preheats the solid material rods prior to the pusher device inserting the solid material rods into the inlet of the heating cylinder.

14. A molten material supply unit comprising:

a preheating device constructed and arranged to preheat a plurality of solid material rods;

a heating cylinder constructed and arranged for receiving and heating the preheated solid material rods under substantially vacuum conditions within the heating cylinder, wherein the heating cylinder includes an inlet open to the atmosphere and an outlet spaced apart from the inlet;

a pushing device constructed and arranged to push the preheated solid material rods successively into the heating cylinder via the inlet, so that the preheated solid material rods move successively within the heating cylinder toward the outlet;

a squeezing member disposed an the inlet of the heating cylinder having an inner diameter slightly smaller than an outer diameter of the preheated solid material rods, so that the preheated solid material rods substantially form a seal with the squeezing member as the solid material rods are pushed into the heating cylinder; and

a vacuum device communicating with the heating cylinder and constructed and arranged to generate the substantially vacuum conditions within the heating cylinder.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 17, 2009
From: LIMTECH CORPORATION
To: FUJI TECHNOLOGY SYSTEM CO., LTD.
Reel/Frame 023538/0827 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 12, 2006
From: YAMADA, FUJIO
To: LIMTECH CORPORATION
Reel/Frame 018053/0753 →
Continuity (2)
Division 0995343300 · Sep 17, 2001
Related Publication 20040168787A1 · Sep 2, 2004