IP Library Granted Patent US 9,095,895
Granted Patent B2
US 9,095,895 · App. 14/449,233 · Granted Aug 4, 2015

Overflow system for casting a component

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 9,095,895
App. No.
14/449,233
Granted
Aug 4, 2015
Kind
B2
Abstract

An overflow system for casting a component is disclosed. The system includes a mold formed of sand. The mold includes a top surface that defines an opening for receiving a liquid fluid. A trenching assembly includes a cutting device movable relative to a frame between a first position and a second position. The cutting device includes a cutter that is in a disengaged position spaced from the top surface when the cutting device is in the first position and in an engaged position engaging the top surface when the cutting device is in the second position. The cutter defines a recess in the top surface when the cutter is in the engaged position. The recess is spaced from the opening for receiving excess liquid fluid. The trenching assembly further includes at least one of a blocking mechanism, a blowing mechanism and an adjustment mechanism that assists the cutting device.

Claims (25)

1. An overflow system for casting a component, the system comprising:

a mold formed of sand and including a first side and a second side spaced from each other along a first axis, with the mold including a top surface between the first and second sides, and with the top surface defining an opening for receiving a liquid fluid;

a trenching assembly including:

a frame configured to receive the mold;

a cutting configured to be rotated, the cutter defining an outer diameter having a generally circular configuration when rotated, wherein the cutter is rotated along an axis of rotation that is generally parallel to the first axis of the mold device operatively coupled to the frame and including a cutter, with the cutting device movable relative to the frame along a second axis transverse to the first axis between a first position and a second position, with the cutter being in a disengaged position spaced from the top surface of the mold when the cutting device is in the first position and the cutter being in an engaged position engaging the top surface of the mold when the cutting device is in the second position, and with the cutter defining a recess in the top surface when the cutter is in the engaged position, and with the recess spaced from the opening for receiving excess liquid fluid; and

at least one of a blocking mechanism, a blowing mechanism and an adjustment mechanism assisting the cutting device.

2. A system as set forth in claim 1 wherein the cutting device includes an electric motor, with the cutter operatively coupled to the electric motor such that activation of the electric motor rotates the cutter.

3. A system as set forth in claim 2 wherein the cutter is further defined as a first cutter, and wherein the cutting device includes a second cutter operatively coupled to the electric motor and abutting the first cutter, with the first and second cutters rotating in unison when the electric motor is activated.

4. A system as set forth in claim 3 wherein the cutting device includes a third cutter operatively coupled to the electric motor and abutting one of the first and second cutters, with the first, second and third cutters rotating in unison when the electric motor is activated.

5. A system as set forth in claim 4 wherein the first, second and third cutters are configured substantially the same.

6. A system as set forth in claim 1 wherein the blocking mechanism is operatively coupled to the cutting device and the frame, with the blocking mechanism and the cutting device movable in unison relative to the frame along the second axis between the first and second positions.

7. A system as set forth in claim 6 wherein the blocking mechanism includes a first partition extending toward the top surface of the mold, with the first partition spaced from the top surface when in the first position and engaging the top surface when in the second position to separate the opening and the recess.

8. A system as set forth in claim 7 wherein the blocking mechanism includes a second partition extending toward the top surface of the mold and spaced from the first partition to define a gap between the first and second partitions, with the second partition spaced from the top surface when in the first position and engaging the top surface when in the second position, with the recess created between the first and second partitions such that the first and second partitions cooperate to contain the sand removed from the top surface of the mold by the cutter.

9. A system as set forth in claim 8 wherein the blowing mechanism is disposed in the gap to move the sand removed from the top surface of the mold by the cutter toward one of the first and second sides of the mold, with the blowing mechanism attached to at least one of the first partition and the second partition.

10. A system as set forth in claim 9 wherein the blowing mechanism includes a nozzle for expelling a gaseous fluid out of the nozzle to move the sand removed from the top surface of the mold toward one of the first and second sides of the mold.

11. A system as set forth in claim 8 wherein one of the first and second partitions defines a slot and wherein the cutting device includes an electric motor and an output shaft operatively coupled to the electric motor, with the cutter attached to the output shaft such that the output shaft and the cutter rotate in unison when the electric motor is activated, and with the output shaft extending through the slot and the cutter disposed in the gap between the first and second partitions.

12. A system as set forth in claim 11 further including a first actuator device operatively coupled to the cutting device to move the cutting device along the first axis between an initial position and a final position, with the cutter engaging the top surface of the mold between the initial and final positions to define the recess presenting a predetermined length between the first and second sides.

13. A system as set forth in claim 12 wherein the first actuator device includes a bracket attached to the cutting device to support the cutting device and a guide attached to one of the first and second partitions, with the bracket movably attached to the guide such that the cutting device is guided along the first axis between the initial and final positions when the first actuator device is activated.

14. A system as set forth in claim 12 further including a second actuator device operatively coupled to the blocking mechanism to move the blocking mechanism and the cutting device in unison relative to the frame along the second axis between the first and second positions independently of the first actuator device moving the cutting device between the initial and final positions.

15. A system as set forth in claim 1 wherein the adjustment mechanism is operatively coupled to the cutting device to move the cutting device along a third axis transverse to the first and second axes to adjust a position of the cutter relative to the opening of the mold.

16. A system as set forth in claim 15 wherein the adjustment mechanism includes a base supporting the frame such that the frame is movable relative to the base between a first adjustment position and a second adjustment position along the third axis, with the cutting device movable in unison with the frame between the first and second adjustment positions to adjust the position of the cutter.

17. A system as set forth in claim 16 wherein the adjustment mechanism includes a rack attached to the base and a gear operatively coupled to the frame and engaging the rack, and wherein the adjustment mechanism includes a handle supported by the frame and attached to the gear such that the gear moves along the rack when the handle is rotated to move the frame relative to the base to adjust the position of the cutter.

18. A system as set forth in claim 16 wherein the adjustment mechanism includes a lock device supported by the frame and movable between a locked position engaging the base to secure the frame in one of the first and second adjustment positions and an unlocked position disengaging the base to allow movement of the frame relative to the base.

19. A system as set forth in claim 1 wherein the blowing mechanism is coupled to the blocking mechanism to move the sand removed from the top surface of the mold by the cutter toward one of the first and second sides of the mold.

20. A system as set forth in claim 19 wherein the blowing mechanism includes a nozzle for expelling a gaseous fluid out of the nozzle to move the sand removed from the top surface of the mold toward one of the first and second sides of the mold.

Assignments (6)
INTELLECTUAL PROPERTY SECURITY AGREEMENT Recorded Jul 30, 2021
From: GREDE LLC; GREDE II LLC
To: BLUE TORCH FINANCE LLC, AS ADMINISTRATIVE AGENT
Reel/Frame 057037/0481 →
PARTIAL RELEASE OF PATENT SECURITY INTEREST Recorded Dec 16, 2019
From: JPMORGAN CHASE BANK, N.A., AS COLLATERAL AGENT
To: GREDE LLC; GREDE II LLC
Reel/Frame 051312/0873 →
PATENT SECURITY AGREEMENT Recorded Dec 16, 2019
From: GREDE II LLC; GREDE LLC
To: WELLS FARGO BANK, NATIONAL ASSOCIATION, AS ADMINISTRATIVE AGENT
Reel/Frame 051317/0096 →
SECURITY INTEREST Recorded Jun 8, 2017
From: AMERICAN AXLE & MANUFACTURING, INC.; CLOYES GEAR AND PRODUCTS, INC.; GREDE LLC; GREDE II LLC; METALDYNE, LLC; METALDYNE BSM, LLC; MSP INDUSTRIES CORPORATION
To: JPMORGAN CHASE BANK, N.A., AS COLLATERAL AGENT
Reel/Frame 042734/0001 →
RELEASE OF SECURITY INTEREST Recorded Apr 6, 2017
From: GOLDMAN SACHS BANK USA, AS AGENT
To: GREDE LLC
Reel/Frame 041887/0559 →
SECURITY INTEREST Recorded May 11, 2015
From: GREDE LLC
To: GOLDMAN SACHS BANK USA, AS COLLATERAL AGENT
Reel/Frame 035606/0307 →