CN206716804U - A kind of water-cooled decompressor - Google Patents
A kind of water-cooled decompressor Download PDFInfo
- Publication number
- CN206716804U CN206716804U CN201720363353.7U CN201720363353U CN206716804U CN 206716804 U CN206716804 U CN 206716804U CN 201720363353 U CN201720363353 U CN 201720363353U CN 206716804 U CN206716804 U CN 206716804U
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- China
- Prior art keywords
- water
- cooling
- water tank
- lower mould
- seat
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Abstract
The utility model discloses a kind of water-cooled decompressor, including forcing press, Water-cooling seat, left water tank, cooling copper tube, right water tank, lower mould, upper mould, guide rod, guide pin bushing, during work, forcing press promotes upper mould to carry out punch forming to thin plate with lower mould matched moulds, during matched moulds, guide rod moves down along guide pin bushing, so as to ensure the precision of matched moulds, cooling water is pumped into water tank to the left through water supply connector, cooling water is discharged through backwater joint again after cooling copper tube flows into right water tank, so as to carry out cooling down to Water-cooling seat, because Water-cooling seat and lower mould are connected, therefore, the Water-cooling seat of low temperature can effectively reduce the temperature of lower mould.The apparatus structure is simple, by Forced water cooling, effectively reduces lower mould temperature, and good cooling results, effectively improves service life.
Description
Technical field
It the utility model is related to a kind of mechanical device, more particularly to a kind of water-cooled decompressor.
Background technology
Automobile, especially kart, have become one of trip instrument essential in people's daily life, automobile
It is small to arrive latch bracket greatly to body of a motor car largely using metal plate parts when manufacturing and designing, due to plates of automobile part knot
Structure is complicated, accuracy class is high, often using forcing press punch forming, and can not use traditional bending and molding, during punch forming, rushes
Pressing mold is because the factor such as extrude, rub causes temperature to raise, if cooling down not in time, it is possible to cause mould be deformed and
Damage.In view of disadvantages described above, is necessary to design a kind of water-cooled decompressor in fact.
Utility model content
Technical problem to be solved in the utility model is:A kind of water-cooled decompressor is provided, to solve to strike out
The problem of rise of diel temperature causes deformed damaged during type.
In order to solve the above technical problems, the technical solution of the utility model is:A kind of water-cooled decompressor, including pressure
Machine, Water-cooling seat, left water tank, cooling copper tube, right water tank, lower mould, upper mould, guide rod, guide pin bushing, described Water-cooling seat are located in forcing press
Portion, described Water-cooling seat are connected with forcing press screw thread, and described left water tank is located on the left of Water-cooling seat, described left water tank and water cooling
Seat screw thread is connected, and described cooling copper tube runs through Water-cooling seat, and described cooling copper tube is connected with Water-cooling seat close-fitting, described right water
Case is located on the right side of Water-cooling seat, and described right water tank is connected with Water-cooling seat screw thread, and described lower mould is located at Water-cooling seat upper end, described
Lower mould is connected with Water-cooling seat screw thread, and described upper mould is located at lower mould upper end and in the middle part of forcing press, described upper mould and lower mould
It is movably connected and is connected with forcing press screw thread, described upper mould is additionally provided with guide rod, and described guide rod is connected with upper mould screw thread, described
Guide pin bushing be located at lower end of the guide rod and be located at lower mould upper end, described guide pin bushing be connected with guide rod gap and with lower mould screw thread phase
Even.
The utility model further improves as follows:
Further, described guide rod quantity is 2, is symmetrically arranged in mould, described guide rod quantity and guide pin bushing quantity
It is identical.
Further, described left water tank is additionally provided with water supply connector, and described water supply connector is located on the left of left water tank, described
Water supply connector be connected with left tank weld.
Further, described cooling copper tube quantity is 3, is distributed in Water-cooling seat.
Further, described cooling copper tube is additionally provided with some fins, and described fin is located on the inside of cooling copper tube, described
Fin and cooling copper tube be integrally connected, some fins being evenly arranged are effectively increased the sectional area of cooling copper tube, improve and cool down
Effect.
Further, described right water tank is additionally provided with backwater joint, and described backwater joint is located on the right side of right water tank, described
Backwater joint be connected with right tank weld.
Compared with prior art, the water-cooled decompressor, during work, forcing press promotes upper mould with lower mould matched moulds to thin plate
Punch forming is carried out, during matched moulds, guide rod moves down along guide pin bushing, so as to ensure the precision of matched moulds, through water supply connector water to the left
Cooling water is pumped into case, cooling water is discharged through backwater joint again after cooling copper tube flows into right water tank, so as to be carried out to Water-cooling seat
Cooling down, because Water-cooling seat and lower mould are connected, therefore, the Water-cooling seat of low temperature can effectively reduce the temperature of lower mould.The device knot
Structure is simple, by Forced water cooling, effectively reduces lower mould temperature, and good cooling results, effectively improves service life.
Brief description of the drawings
Fig. 1 shows the utility model front view
Fig. 2 shows the utility model cooling copper tube side view
The Water-cooling seat 2 of forcing press 1
The left cooling copper tube 4 of water tank 3
Right 5 times moulds of water tank 6
The upper guide rod 8 of mould 7
The water supply connector 301 of guide pin bushing 9
The backwater joint 501 of fin 401
Embodiment
As shown in Figure 1 and Figure 2, a kind of water-cooled decompressor, including forcing press 1, Water-cooling seat 2, left water tank 3, cooling copper tube
4th, right water tank 5, lower mould 6, upper mould 7, guide rod 8, guide pin bushing 9, described Water-cooling seat 2 are located at the middle part of forcing press 1, described Water-cooling seat 2
It is connected with the screw thread of forcing press 1, described left water tank 3 is located at the left side of Water-cooling seat 2, described left water tank 3 and the screw thread phase of Water-cooling seat 2
Even, described cooling copper tube 4 runs through Water-cooling seat 2, and described cooling copper tube 4 is connected with the close-fitting of Water-cooling seat 2, described right water tank 5
Positioned at the right side of Water-cooling seat 2, described right water tank 5 is connected with the screw thread of Water-cooling seat 2, and described lower mould 6 is located at the upper end of Water-cooling seat 2, institute
The lower mould 6 stated is connected with the screw thread of Water-cooling seat 2, and described upper mould 7 is located at the lower upper end of mould 6 and positioned at the middle part of forcing press 1, and described is upper
Mould 7 is movably connected with lower mould 6 and is connected with the screw thread of forcing press 1, and described upper mould 7 is additionally provided with guide rod 8, described guide rod 8 with it is upper
The screw thread of mould 7 is connected, and described guide pin bushing 9 is located at the lower end of guide rod 8 and is located at the lower upper end of mould 6, described guide pin bushing 9 and the gap phase of guide rod 8
It is connected even and with the lower screw thread of mould 6, the described quantity of guide rod 8 is 2, is symmetrically arranged in mould 7, the described quantity of guide rod 8
Identical with the quantity of guide pin bushing 9, described left water tank 3 is additionally provided with water supply connector 301, and described water supply connector 301 is left positioned at left water tank 3
Side, described water supply connector 301 are weldingly connected with left water tank 3, and the described quantity of cooling copper tube 4 is 3, is distributed in Water-cooling seat 2,
Described cooling copper tube 4 is additionally provided with some fins 401, and described fin 401 is located at the inner side of cooling copper tube 4, described fin 401
It is connected with the one of cooling copper tube 4, some fins 401 being evenly arranged are effectively increased the sectional area of cooling copper tube 4, improve cooling effect
Fruit, described right water tank 5 are additionally provided with backwater joint 501, and described backwater joint 501 is positioned at the right right side of water tank 5, described backwater
Joint 501 is weldingly connected with right water tank 5, the water-cooled decompressor, and during work, forcing press 1 promotes upper mould 7 and the lower matched moulds of mould 6
Punch forming is carried out to thin plate, during matched moulds, guide rod 8 moves down along guide pin bushing 9, so as to ensure the precision of matched moulds, is connect through water inlet
First 301 are pumped into cooling water to the left in water tank 3, cooling water is discharged through backwater joint 501 again after cooling copper tube 4 flows into right water tank 5,
So as to carry out cooling down to Water-cooling seat 2, because Water-cooling seat 2 and lower mould 6 are connected, therefore, the Water-cooling seat 2 of low temperature can be reduced effectively
The temperature of lower mould 6.The apparatus structure is simple, by Forced water cooling, effectively reduces the lower temperature of mould 6, and good cooling results, effectively carries
High service life.
The utility model is not limited to above-mentioned specific embodiment, and one of ordinary skill in the art visualizes from above-mentioned
Hair, without performing creative labour, a variety of conversion made, all falls within the scope of protection of the utility model.
Claims (6)
- A kind of 1. water-cooled decompressor, it is characterised in that including forcing press, Water-cooling seat, left water tank, cooling copper tube, right water tank, Lower mould, upper mould, guide rod, guide pin bushing, described Water-cooling seat are located in the middle part of forcing press, and described Water-cooling seat is connected with forcing press screw thread, Described left water tank is located on the left of Water-cooling seat, and described left water tank is connected with Water-cooling seat screw thread, and described cooling copper tube runs through water Cold seat, described cooling copper tube are connected with Water-cooling seat close-fitting, and described right water tank is located on the right side of Water-cooling seat, described right water tank with Water-cooling seat screw thread is connected, and described lower mould is located at Water-cooling seat upper end, and described lower mould is connected with Water-cooling seat screw thread, described upper mould Positioned at lower mould upper end and in the middle part of forcing press, described upper mould is movably connected with lower mould and is connected with forcing press screw thread, described Upper mould be additionally provided with guide rod, described guide rod is connected with upper mould screw thread, and described guide pin bushing is located at lower end of the guide rod and on the lower mould End, described guide pin bushing are connected with guide rod gap and are connected with lower mould screw thread.
- 2. water-cooled decompressor as claimed in claim 1, it is characterised in that described guide rod quantity is 2, is arranged symmetrically Yu Shangmo, described guide rod quantity are identical with guide pin bushing quantity.
- 3. water-cooled decompressor as claimed in claim 1, it is characterised in that described left water tank is additionally provided with water supply connector, institute The water supply connector stated is located on the left of left water tank, and described water supply connector is connected with left tank weld.
- 4. water-cooled decompressor as claimed in claim 1, it is characterised in that described cooling copper tube quantity is 3, uniformly In Water-cooling seat.
- 5. water-cooled decompressor as claimed in claim 4, it is characterised in that described cooling copper tube is additionally provided with some fins, Described fin is located on the inside of cooling copper tube, and described fin is integrally connected with cooling copper tube.
- 6. water-cooled decompressor as claimed in claim 1, it is characterised in that described right water tank is additionally provided with backwater joint, institute The backwater joint stated is located on the right side of right water tank, and described backwater joint is connected with right tank weld.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201720363353.7U CN206716804U (en) | 2017-04-10 | 2017-04-10 | A kind of water-cooled decompressor |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201720363353.7U CN206716804U (en) | 2017-04-10 | 2017-04-10 | A kind of water-cooled decompressor |
Publications (1)
Publication Number | Publication Date |
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CN206716804U true CN206716804U (en) | 2017-12-08 |
Family
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Family Applications (1)
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CN201720363353.7U Active CN206716804U (en) | 2017-04-10 | 2017-04-10 | A kind of water-cooled decompressor |
Country Status (1)
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CN (1) | CN206716804U (en) |
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2017
- 2017-04-10 CN CN201720363353.7U patent/CN206716804U/en active Active
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