IP Library Granted Patent US 10,195,656
Granted Patent B2
US 10,195,656 · App. 14/907,730 · Granted Feb 5, 2019

Cooling method for hot press forming and hot press forming apparatus

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Quick Facts
Patent No.
US 10,195,656
App. No.
14/907,730
Granted
Feb 5, 2019
Kind
B2
Abstract

In hot press forming a thin steel sheet K, when cooling the thin steel sheet K by supplying a refrigerant to an ejection hole ( 27 ) communicated from a supply path ( 28 ) inside a lower mold ( 12 ), precooling in which an ejection amount per unit time period of the refrigerant from the ejection hole ( 27 ) is suppressed is carried out, and thereafter, main cooling is carried out by increasing the ejection amount per unit time period.

Claims (35)

1. A cooling method for hot press forming of a thin steel sheet in which the thin steel sheet is cooled by supplying a refrigerant to an ejection hole of a surface of a mold which ejection hole is communicated from a supply path inside the mold and by discharging the refrigerant from a suction hole of the surface of the mold in hot press forming the heated thin steel sheet, the cooling method for hot press forming comprising:

carrying out precooling in which an ejection amount per unit time period of the refrigerant from the ejection hole is suppressed; and

thereafter, carrying out main cooling by increasing the ejection amount per unit time period,

wherein the thin steel sheet is cooled by supplying the refrigerant to the ejection hole in a state where the heated thin steel sheet is placed on the mold and held at a bottom dead center,

wherein the ejection amount per unit time period at a precooling time is 1 mL/sec to 3 mL/sec,

wherein a ratio of the ejection amount per unit time period of the refrigerant from the ejection hole of the precooling time to of a main cooling time is 1:5 to 2:5, and

wherein a ratio of a precooling time period to a main cooling time period is 1:4 to 4:1.

2. The cooling method for hot press forming of the thin steel sheet according to claim 1 , further,

wherein the ratio of the precooling time period to the main cooling time period is 2:3 to 3:2.

3. The cooling method for hot press forming of the thin steel sheet according to claim 1 , further,

wherein the thin steel sheet is an aluminum-based plated thin steel sheet or a galvanized thin steel sheet of 1 mm to 2 mm in sheet thickness and is heated to 700° C. to 1000° C. before the precooling,

wherein the refrigerant is water of 5° C. to 25° C., and

wherein a cooling time period obtained by combining the precooling time period and the main cooling time period is 2 seconds to 5 seconds.

4. A hot press forming apparatus of a thin steel sheet which cools the thin steel sheet by supplying a refrigerant to an ejection hole of a surface of a mold which ejection hole is communicated from a supply path inside the mold and by discharging the refrigerant from the suction hole of the surface of the mold in hot press forming the heated thin steel sheet,

the hot press forming apparatus

carrying out precooling in which an ejection amount per unit time period is suppressed, and thereafter, carrying out main cooling by increasing the ejection amount per unit time period of the refrigerant from the ejection hole, wherein the steel sheet is cooled by supplying the refrigerant to the ejection hole in a state where the heated thin steel sheet is placed on the mold and held at a bottom dead center,

wherein the ejection amount per unit time period at a precooling time is 1 mL/sec to 3 mL/sec,

wherein a ratio of the ejection amount per unit time period of the refrigerant from the ejection hole of the precooling time to of a main cooling time is 1:5 to 2:5, and

wherein a ratio of a precooling time period to a main cooling time period is 1:4 to 4:1.

5. The hot press forming apparatus of the thin steel sheet according to claim 4 , further,

wherein the ratio of the precooling time period to the main cooling time period is 2:3 to 3:2.

6. The hot press forming apparatus of the thin steel sheet according to claim 4 , further,

wherein the thin steel sheet is an aluminum-based plated thin steel sheet or a galvanized thin steel sheet of 1 mm to 2 mm in sheet thickness and is heated to 700° C. to 1000° C. before the precooling,

wherein the refrigerant is water of 5° C. to 25° C., and

wherein a cooling time period obtained by combining the precooling time period and the main cooling time period is 2 seconds to 5seconds.

7. The hot press forming apparatus of the thin steel sheet according to claim 4 ,

wherein a suction hole is made in a center of four ejection holes positioned rectangularly in the surface of the mold, and

wherein a diameter of the suction hole is larger than a diameter of the ejection hole.

8. The hot press forming apparatus of the thin steel sheet according to claim 4 ,

wherein a plurality of supply systems of the refrigerant are connected to a supply pipe of the refrigerant, the supply pipe leading to the supply path inside the mold, and

wherein an opening/closing valve is provided in each of the supply systems.

9. The hot press forming apparatus of the thin steel sheet according to claim 4 ,

wherein a flow amount regulation valve is provided in the supply pipe of the refrigerant, the supply pipe leading to the supply path inside the mold.

10. The hot press forming apparatus of the thin steel sheet according to claim 4 ,

wherein a supply pump capable of regulating the flow amount is provided in the supply pipe of the refrigerant, the supply pipe leading to the supply path inside the mold.

Assignments (2)
CHANGE OF NAME Recorded May 14, 2019
From: NIPPON STEEL & SUMITOMO METAL CORPORATION
To: NIPPON STEEL CORPORATION
Reel/Frame 049257/0828 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 27, 2016
From: FUKUCHI, HIROSHI; NOMURA, NARUHIKO; SETO, ATSUSHI
To: NIPPON STEEL & SUMITOMO METAL CORPORATION
Reel/Frame 037599/0451 →