Tandem Water Spot Cooling Device for Top Die
20170291212 · 2017-10-12
Assignee
Inventors
- Lin Zhu (Qinhuangdao, CN)
- Changhai Li (Qinhuangdao, CN)
- Hongbiao Li (Qinhuangdao, CN)
- Yong Li (Qinhuangdao, CN)
Cpc classification
B22D17/2218
PERFORMING OPERATIONS; TRANSPORTING
B22D18/04
PERFORMING OPERATIONS; TRANSPORTING
B22C9/065
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A tandem water spot cooling device for a top die. The device includes a spot cooling device main body, a lower sealing plate, an outer-ring circular track, an inner-ring serpentine passage, outer-ring flow dividing baffles, inner-ring flow dividing baffles, outer-ring through holes, inner-ring through holes, bolt hole reservation positions, stripper rod reservation positions, and water inlet and outlet connection through holes.
Claims
1. A tandem water spot cooling device for a top die, comprising: a spot cooling device main body, a lower sealing plate, an outer-ring circular track, an inner-ring serpentine passage, outer-ring flow dividing baffles, inner-ring flow dividing baffles, outer-ring through holes, inner-ring through holes, bolt hole reservation positions, stripper rod reservation positions, and water inlet and outlet connection through holes, wherein the spot cooling device main body is a steel disc, and comprises the outer-ring circular track and the inner-ring serpentine passage which are connected together end to end, respectively; the outer-ring through holes and the outer-ring flow dividing baffles are provided in the outer-ring circular track, and the outer-ring through holes are connected to cooling holes in a top die of a die; the inner-ring through holes and the outer-ring flow dividing baffles are provided in the inner-ring serpentine passage, and the inner-ring through holes are connected to the cooling holes in the top die of the die; the spot cooling device main body is provided with the stripper rod reservation positions at an inner side of the inner-ring serpentine passage; the spot cooling device main body is provided with the bolt hole reservation positions; the lower sealing plate is disposed below the spot cooling device main body, and the spot cooling device main body and the lower sealing plate are configured to encircle the outer-ring circular track and the inner-ring serpentine passage to form closed ducts; and the outer-ring circular track and the inner-ring serpentine passage of the tandem water spot cooling device for the top die are connected to the water inlet and outlet connection through holes, respectively.
2. The tandem water spot cooling device for the top die according to claim 1, wherein the outer-ring circular track and the inner-ring serpentine passage are disposed corresponding to spot cooling holes in the top die.
3. The tandem water spot cooling device for the top die according to claim 1, wherein the outer-ring flow dividing baffles and the inner-ring flow dividing baffles are fixed to the spot cooling device main body by way of spot welding, located corresponding to the cooling holes in the top die of the die, and oriented towards the same center of circle.
4. The tandem water spot cooling device for the top die according to claim 3, wherein the outer-ring flow dividing baffles and the inner-ring flow dividing baffles are made of 304 stainless steel with thickness of 1-2 mm.
5. The tandem water spot cooling device for the top die according to claim 1, wherein the spot cooling device main body is bonded with the lower sealing plate by a high temperature resistant sealant.
6. The tandem water spot cooling device for the top die according to claim 1, wherein the outer-ring circular track and the inner-ring serpentine passage have diameters with a range of 10-16 mm.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0014] The implementation of the present invention will be described below in detail in conjunction with accompanying drawings, in which:
[0015]
[0016]
[0017]
[0018]
[0019]
[0020]
[0021]
[0022]
[0023] In the drawings, 101—Cooling pipe of the water cooling device for a die in the prior art; 201—Cooling pipe of the air cooling device for a die in the prior art; 1—Spot cooling device main body; 2—Lower sealing plate; 3—Outer-ring circular track; 4—Inner-ring serpentine passage; 5—Outer-ring flow dividing baffle; 6—Inner-ring flow dividing baffle; 7—Outer-ring through hole; 8—Inner-ring through hole; 9—Bolt hole reservation position; 10—Tripper rod reservation position, and 11—Water inlet and outlet connection through holes.
DETAILED DESCRIPTION OF THE INVENTION
Embodiment 1
[0024] A tandem water spot cooling device for a top die provided by the present invention comprises a spot cooling device main body 1, a lower sealing plate 2, outer-ring flow dividing baffles 5, and inner-ring flow dividing baffles 6. Firstly, the satisfied spot cooling device main body 1 is machined according to dimensions of a drawing, during which an accurate position of an inner-ring serpentine passage 4 should be especially guaranteed, and equivalent diameters of an outer-ring circular track 3 and the inner-ring serpentine passage 4 should be guaranteed within a range of 10-16 mm. In addition, four through holes 11 for mounting water inlet and outlet connections are further machined. Secondly, the lower sealing plate 2 is machined according to requirements. It must be ensured that outer-ring through holes 7 and inner-ring through holes 8 in the lower sealing plate 2 accurately correspond to spot cooling holes in a top die flange. Afterwards, the outer-ring flow dividing baffles 5 and the inner-ring flow dividing baffles 6 of corresponding dimensions are machined according to the drawings. The flow dividing baffles are made of 304 stainless steel of which the thickness is controlled within a range of 1-2 mm. Finally, the spot cooling device main body 1 is bonded to the lower sealing plate 2 by using a high temperature resistant sealant to form a non-sealed integrated body, thus realizing control on total flow of spot cooling. Because the flow resistance between the matching surfaces of the spot cooling device main body 1 and the lower sealing plate 2 is certainly greater than the flow resistance in the spot cooling holes according to the least resistance principle of fluid flow, a fluid will certainly flow away via the spot cooling holes. Afterwards, the outer-ring flow dividing baffles 5 and the inner-ring flow dividing baffles 6 are mounted in corresponding holes and fixed by way of spot welding. After the above work is finished, the whole device can be fitted on the top die according to the schematic assembly diagram as shown in
[0025] The tandem water spot cooling device for the top die manufactured according to this embodiment achieves uniform and powerful cooling for the top die and overcomes the defects of various water spot welding devices in the prior art. In particular, cooling for the flange part is well improved.
[0026] The tandem water spot cooling device for the top die provided by the present invention is not limited to the summary of the present invention and the contents described in the detailed description of the embodiments. Other design patterns obtained according to the teaching of the summary of the present invention shall all fall within the protection scope of the present invention.