CN118253749B - Integrated casting device for complex thin-wall component - Google Patents

Integrated casting device for complex thin-wall component Download PDF

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Publication number
CN118253749B
CN118253749B CN202410419756.3A CN202410419756A CN118253749B CN 118253749 B CN118253749 B CN 118253749B CN 202410419756 A CN202410419756 A CN 202410419756A CN 118253749 B CN118253749 B CN 118253749B
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China
Prior art keywords
connecting rod
assembly
water tank
cooling water
fixed block
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CN202410419756.3A
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Chinese (zh)
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CN118253749A (en
Inventor
胡松松
杨强
范宝强
张绍斌
王辉
张风祥
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Taizhou Boshite Precision Casting Co ltd
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Taizhou Boshite Precision Casting Co ltd
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Priority to CN202410419756.3A priority Critical patent/CN118253749B/en
Publication of CN118253749A publication Critical patent/CN118253749A/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B22CASTING; POWDER METALLURGY
    • B22DCASTING OF METALS; CASTING OF OTHER SUBSTANCES BY THE SAME PROCESSES OR DEVICES
    • B22D33/00Equipment for handling moulds
    • B22D33/02Turning or transposing moulds
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B22CASTING; POWDER METALLURGY
    • B22CFOUNDRY MOULDING
    • B22C9/00Moulds or cores; Moulding processes
    • B22C9/22Moulds for peculiarly-shaped castings
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B22CASTING; POWDER METALLURGY
    • B22CFOUNDRY MOULDING
    • B22C9/00Moulds or cores; Moulding processes
    • B22C9/22Moulds for peculiarly-shaped castings
    • B22C9/24Moulds for peculiarly-shaped castings for hollow articles
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B22CASTING; POWDER METALLURGY
    • B22DCASTING OF METALS; CASTING OF OTHER SUBSTANCES BY THE SAME PROCESSES OR DEVICES
    • B22D27/00Treating the metal in the mould while it is molten or ductile ; Pressure or vacuum casting
    • B22D27/04Influencing the temperature of the metal, e.g. by heating or cooling the mould
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B22CASTING; POWDER METALLURGY
    • B22DCASTING OF METALS; CASTING OF OTHER SUBSTANCES BY THE SAME PROCESSES OR DEVICES
    • B22D29/00Removing castings from moulds, not restricted to casting processes covered by a single main group; Removing cores; Handling ingots
    • B22D29/04Handling or stripping castings or ingots
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B22CASTING; POWDER METALLURGY
    • B22DCASTING OF METALS; CASTING OF OTHER SUBSTANCES BY THE SAME PROCESSES OR DEVICES
    • B22D33/00Equipment for handling moulds
    • B22D33/005Transporting flaskless moulds

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Molds, Cores, And Manufacturing Methods Thereof (AREA)

Abstract

The invention discloses an integrated casting device for complex thin-wall components, which belongs to the technical field of casting equipment and comprises a die, a supporting plate, a turnover mechanism, a cooling control mechanism and a knocking demolding mechanism, wherein the die is arranged on the supporting plate, the turnover mechanism comprises a motor and a turnover assembly, the turnover assembly is connected with the motor, the supporting plate is connected with the turnover assembly, and the die is connected with the turnover assembly through the supporting plate; the cooling control mechanism comprises a first gear, a cooling water tank, a cutting assembly and a cooling assembly, wherein the cutting assembly is connected with the cooling assembly; the knocking demolding mechanism comprises a cam and a knocking component, the knocking component is connected with the mold, the cam is connected with the knocking component, and the overturning component is connected with the cam.

Description

Integrated casting device for complex thin-wall component
Technical Field
The invention relates to the technical field of casting equipment, and particularly discloses an integrated casting device for a complex thin-wall component.
Background
The wall member integrated casting device is equipment for realizing the integrated forming of the wall member in the metal casting process. In conventional metal casting processes, wall members (e.g., pipes, vessels, etc.) typically need to be manufactured and assembled in a number of separate steps and assemblies. The stepped manufacturing method not only increases the production cost and the process complexity, but also easily causes the problems of inaccurate geometric shape of the component, insufficient strength of the joint part and the like. The advent of wall member integrated casting devices changed the traditional manner of wall member fabrication by integrating multiple process steps into one piece of equipment, achieving integrated casting of wall members. With the development of industrial automation and digitization technologies, wall member integrated casting devices are also continuously innovating and evolving. Some advanced devices are equipped with intelligent control systems and sensors, which can monitor parameters such as temperature, pressure, deformation and the like in the casting process in real time, and improve the accuracy and controllability of production. At the same time, some devices also provide flexibility and versatility to accommodate wall member casting requirements of different sizes and shapes.
In summary, the wall member integrated casting device has important significance in the field of metal casting, and can realize efficient integrated manufacturing of the wall member, improve the production efficiency and reduce the cost. With the continuous progress of technology, more advanced and intelligent devices can be expected to appear, and a greater driving force is brought to the development of the metal casting industry.
The publication number is: the Chinese patent of CN115255341A discloses a casting device of a thin-wall titanium alloy component for aviation, and the technical scheme of the patent is as follows: the mold comprises a base, a first mounting groove and a mold cavity, wherein a first motor is fixedly mounted in the first mounting groove. According to the invention, through the cooperation of the first liquid storage tank, the first rubber plug, the ejector rod and the first spring, a worker can drive the supporting block to eject the titanium alloy component formed in the cavity in the process of opening the first motor to drive the ball screw to rotate, so that the worker can conveniently take the titanium alloy component, meanwhile, the ejector rod can eject the first rubber plug out of the water outlet, so that the cooling liquid in the first liquid storage tank is replaced, when the first motor drives the screw nut mounting block to reset, the first spring drives the first rubber plug to block the water outlet again, so that the waste of the cooling liquid can be prevented, the time required by the worker for replacing the cooling liquid can be reduced, and the processing efficiency of the titanium alloy component can be improved.
Disclosure of Invention
Aiming at the technical problems, the invention adopts the following technical scheme: the utility model provides a complicated thin wall component integration casting device, includes backup pad, its characterized in that: the complex thin-wall component integrated casting device further comprises a die, a turnover mechanism, a cooling control mechanism and a knocking demolding mechanism, wherein the die is arranged on the supporting plate.
The turnover mechanism comprises a motor and a turnover assembly, the turnover assembly is connected with the motor, the supporting plate is connected with the turnover assembly, and the die is connected with the turnover assembly through the supporting plate.
The cooling control mechanism comprises a first gear, a cooling water tank cutting assembly and a cooling assembly, wherein the cutting assembly is connected with the cooling assembly, the first gear is connected with the cutting assembly, the cooling assembly is connected with the cooling water tank, and the cutting assembly is connected with the overturning assembly.
The knocking demolding mechanism comprises a cam and a knocking component, the knocking component is connected with the mold, the cam is connected with the knocking component, and the overturning component is connected with the cam.
Further, the mould includes the cope match-plate pattern, and the bed die is installed to the cope match-plate pattern downside, is provided with the annotate material mouth on the cope match-plate pattern, and bed die fixed mounting is in the backup pad, and cope match-plate pattern and bed die link to each other with cutting off the subassembly respectively.
Further, the turnover assembly comprises a fixed rod, the fixed rod is rotatably arranged on the side face of the supporting plate, the motor is fixedly arranged on the side face of the fixed rod, a first connecting rod is fixedly arranged at the output end of the fixed rod, one end of the first connecting rod, which is far away from the motor, is rotatably provided with a second connecting rod, one end of the second connecting rod, which is far away from the first connecting rod, is rotatably provided with a third connecting rod, the side face, which is far away from the second connecting rod, of the third connecting rod is fixedly provided with a fourth connecting rod, the side face, which is far away from the third connecting rod, of the fourth connecting rod is fixedly provided with a fifth connecting rod.
Further, the first gear is fixedly arranged on the outer surface of the first rotating shaft, the cutting assembly comprises a second gear, the second gear is meshed with the first gear, a second rotating shaft is fixedly arranged on the side face of the first gear, a rotating frame is rotatably arranged on the side face of the second rotating shaft, a third fixing block is rotatably arranged on the side face of the second rotating shaft, the third fixing block is rotatably connected with the rotating frame, a fixing frame is fixedly arranged on the side face of the third fixing block, and the fixing frame is fixedly arranged on the upper side of the supporting plate.
Further, the side surface of the upper die is fixedly provided with a first fixed block, the side surface of the lower die is fixedly provided with a second fixed block, the first fixed block is attached to the second fixed block, the side surfaces of the first fixed block and the second fixed block are respectively provided with a circular through hole, the circular through holes of the first fixed block and the second fixed block are coaxial, the upper side of the first fixed block is fixedly provided with a sleeve, the inner wall of the sleeve is fixedly provided with a third rotating shaft, and the third rotating shaft is fixedly arranged on the rotating frame.
Further, the cooling water tank is fixedly arranged on the supporting plate, the lower die is connected with the cooling water tank, an inner coil is arranged in the cooling water tank, the cooling assembly comprises a cooling water tank, a section of circulating pipe is respectively arranged at the output end and the input end of the cooling water tank, and the cooling water tank is connected with the cooling water tank through the circulating pipe.
Further, a side frame is fixedly arranged on the side face of the cooling water tank, a first spring shaft is fixedly arranged on the inner wall of the side frame, a sliding shaft is slidably arranged on the outer surface of the first spring shaft, a first spring is wound on the outer surface of the first spring shaft, one end of the first spring is fixedly arranged on the outer surface of the first spring shaft, the other end of the first spring is fixedly arranged on the sliding shaft, the first spring is in a compressed state in an initial state, a sealing block is fixedly arranged on the side face of the sliding shaft, the sealing block is slidably arranged in the cooling water tank, an inclined surface block is fixedly arranged on the side face of the sealing block, and an inclined surface is arranged on the lower side of the inclined surface block.
Further, the inclined plane of inclined plane piece downside is installed the gyro wheel, and gyro wheel side rotation is installed and is installed the sixth connecting rod, and sixth connecting rod fixed mounting is on first axis of rotation surface.
Further, the cam is fixedly arranged on the outer surface of the second rotating shaft, the impact assembly comprises a fourth fixed block, the fourth fixed block is fixedly arranged on the supporting plate, a second spring shaft is fixedly arranged on the fourth fixed block, a seventh connecting rod is rotatably arranged on the outer surface of the second spring shaft, a second spring is wound on the outer surface of the second spring shaft, one end of the second spring is fixedly arranged on the outer surface of the second spring shaft, the other end of the second spring is fixedly arranged on the side surface of the seventh connecting rod, the impact block is fixedly arranged on the side surface of the seventh connecting rod, and the impact block is connected with the lower die.
Compared with the prior art, the invention has the beneficial effects that: (1) The invention realizes the automatic overturning of the die, thereby avoiding the damage to the thin-wall part when the thin-wall part is demolded; (2) The invention realizes the automatic closing of the cooling water, thereby avoiding the waste of water resources; (3) The invention can automatically knock the mould in the process of reversing the mould and close the cooling water, thereby realizing the quick falling of the thin-wall part.
Drawings
Fig. 1 is a schematic diagram of the overall structure of the present invention.
FIG. 2 is a schematic diagram of the positional relationship between the mold and the cooling control mechanism according to the present invention.
Fig. 3 is a schematic view of a partial enlarged structure at a in fig. 2.
Fig. 4 is a schematic structural view of the turnover mechanism of the present invention.
Fig. 5 is a schematic view of a partial enlarged structure at B in fig. 4.
Fig. 6 is a schematic view of a partial enlarged structure at C in fig. 4.
Fig. 7 is a schematic view of a partial enlarged structure at D in fig. 4.
FIG. 8 is a schematic view of a cooling control mechanism according to the present invention.
Fig. 9 is a schematic view of a partial enlarged structure at E in fig. 8.
FIG. 10 is a schematic view of the impact assembly of the present invention.
Fig. 11 is a schematic view of a partial enlarged structure at F in fig. 10.
Fig. 12 is a schematic view of a partially enlarged structure at G in fig. 10.
Reference numerals: 1-a die; 2-supporting plates; 3-a turnover mechanism; 4-a cooling control mechanism; 5-knocking the demoulding mechanism; 101-upper die; 102-lower die; 103-a material injection port; 301-an electric motor; 302-a fixed rod; 303-a first link; 304-a second link; 305-a third link; 306-fourth link; 307-fifth link; 308-a first rotation axis; 401-a first gear; 402-a second gear; 403-a second axis of rotation; 404-rotating frame; 405-a third rotation axis; 406-a sleeve; 407-first fixed block; 408-a second fixed block; 409-third fixed block; 410-fixing frame; 411-side frames; 412-a sliding shaft; 413-a first spring shaft; 414-a first spring; 415-sixth link; 416-roller; 417-bevel blocks; 418-closing the block; 419-cooling water tank; 420-circulation pipe; 421-cooling water tank; 501-cam; 502-moving a block; 503-seventh connecting rod; 504-a second spring shaft; 505-a second spring; 506-strike block; 507-fourth fixed block.
Detailed Description
The technical scheme of the invention is further described in the following by combining with the specific embodiments.
Wherein the drawings are for illustrative purposes only and are shown in schematic, non-physical, and not intended to be limiting of the present patent; for the purpose of better illustrating embodiments of the invention, certain elements of the drawings may be omitted, enlarged or reduced and do not represent the size of the actual product; it will be appreciated by those skilled in the art that certain well-known structures in the drawings and descriptions thereof may be omitted.
As shown in fig. 1 to 12, a mold 1 is mounted on a support plate 2; the turnover mechanism 3 comprises a motor 301 and a turnover assembly, the turnover assembly is connected with the motor 301, the support plate 2 is connected with the turnover assembly, and the die 1 is connected with the turnover assembly through the support plate 2; the cooling control mechanism 4 comprises a first gear 401, a cooling water tank 421 and a cutting assembly, wherein the cutting assembly is connected with the cooling assembly, the first gear 401 is connected with the cutting assembly, the cooling assembly is connected with the cooling water tank 421, and the cutting assembly is connected with the overturning assembly; the striking-release mechanism 5 includes a cam 501 and a striking assembly, the striking assembly is connected to the mold 1, the cam 501 is connected to the striking assembly, and the flip assembly is connected to the cam 501.
As shown in fig. 2 to 10, the mold 1 includes an upper mold 101, a lower mold 102 is mounted on the lower side of the upper mold 101, a material injection port 103 is provided on the upper mold 101, the lower mold 102 is fixedly mounted on a supporting plate 2, the upper mold 101 and the lower mold 102 are respectively connected with a cutting assembly, the turning assembly includes a fixing rod 302, the fixing rod 302 is rotatably mounted on the side surface of the supporting plate 2, a motor 301 is fixedly mounted on the side surface of the fixing rod 302, a first connecting rod 303 is fixedly mounted at the output end of the fixing rod 302, a second connecting rod 304 is rotatably mounted at one end of the first connecting rod 303 away from the motor 301, a third connecting rod 305 is rotatably mounted at one end of the second connecting rod 304 away from the first connecting rod 303, a fourth connecting rod 306 is fixedly mounted at the side surface of the third connecting rod 305 away from the second connecting rod 304, a first rotating shaft 308 is fixedly mounted at the side surface of the fourth connecting rod 306, the first rotating shaft 308 is rotatably mounted at the side surface of the fixing rod 302, and the first rotating shaft 308 is fixedly connected with the supporting plate 2.
As shown in fig. 3 to 11, a first gear 401 is fixedly installed on the outer surface of a first rotating shaft 308, a cutting assembly comprises a second gear 402, the second gear 402 is meshed with the first gear 401, a second rotating shaft 403 is fixedly installed on the side surface of the first gear 401, a rotating frame 404 is rotatably installed on the side surface of the second rotating shaft 403, a third fixing block 409 is rotatably installed on the side surface of the second rotating shaft 403, the third fixing block 409 is rotatably connected with the rotating frame 404, a fixing frame 410 is fixedly installed on the side surface of the third fixing block 409, and the fixing frame 410 is fixedly installed on the upper side of a supporting plate 2; the side surface of the upper die 101 is fixedly provided with a first fixed block 407, the side surface of the lower die 102 is fixedly provided with a second fixed block 408, the first fixed block 407 is attached to the second fixed block 408, the side surfaces of the first fixed block 407 and the second fixed block 408 are respectively provided with a circular through hole, the circular through holes of the first fixed block 407 and the second fixed block 408 are coaxial, the upper side of the first fixed block 407 is fixedly provided with a sleeve 406, the inner wall of the sleeve 406 is fixedly provided with a third rotating shaft 405, and the third rotating shaft 405 is fixedly arranged on the rotating frame 404; the cooling water tank 421 is fixedly installed on the support plate 2, the lower die 102 is connected with the cooling water tank 421, an inner coil is installed in the cooling water tank 421, the cooling assembly comprises a cooling water tank 419, one section of circulating pipe 420 is installed at the output end and the input end of the cooling water tank 419 respectively, the cooling water tank 419 is connected with the cooling water tank 421 through the circulating pipe 420, and the cooling water tank 419 is connected with a water pump.
As shown in fig. 4 to 12, a side frame 411 is fixedly installed on the side of a cooling water tank 419, a first spring shaft 413 is fixedly installed on the inner wall of the side frame 411, a sliding shaft 412 is slidably installed on the outer surface of the first spring shaft 413, a first spring 414 is wound on the outer surface of the first spring shaft 413, one end of the first spring 414 is fixedly installed on the outer surface of the first spring shaft 413, the other end of the first spring 414 is fixedly installed on the sliding shaft 412, the first spring 414 is in a compressed state in an initial state, a sealing block 418 is fixedly installed on the side of the sliding shaft 412, the sealing block 418 is slidably installed in the cooling water tank 419, a slope block 417 is fixedly installed on the side of the sealing block 418, and a slope is arranged on the lower side of the slope block 417; the inclined surface of the lower side of the inclined surface block 417 is provided with a roller 416, the side surface of the roller 416 is rotatably provided with a sixth connecting rod 415, and the sixth connecting rod 415 is fixedly arranged on the outer surface of the first rotating shaft 308; the cam 501 is fixedly mounted on the outer surface of the second rotating shaft 403, the impact assembly comprises a fourth fixed block 507, the fourth fixed block 507 is fixedly mounted on the supporting plate 2, a second spring shaft 504 is fixedly mounted on the fourth fixed block 507, a seventh connecting rod 503 is rotatably mounted on the outer surface of the second spring shaft 504, a second spring 505 is wound on the outer surface of the second spring shaft 504, one end of the second spring 505 is fixedly mounted on the outer surface of the second spring shaft 504, the other end of the second spring 505 is fixedly mounted on the side surface of the seventh connecting rod 503, an impact block 506 is fixedly mounted on the side surface of the seventh connecting rod 503, the impact block 506 is connected with the lower die 102, a moving block 502 is mounted on the seventh connecting rod 503, and the moving block 502 is in sliding connection with the cam 501.
The invention discloses a working principle of an integrated casting device for complex thin-wall components.
Before the operation, molten iron is injected between the upper die 101 and the lower die 102 through the injection hole 103, then the injection hole 103 is plugged, then a water pump connected with the cooling water tank 419 is connected, cooling water in the cooling water tank 419 is sent into an inner coil pipe of the cooling water tank 421 through the circulating pipe 420, then the molten iron in the upper die 101 and the lower die 102 is cooled through the inner coil pipe in the cooling water tank 421, and the motor 301 is started after the molten iron is cooled for a period of time.
The motor 301 drives the first connecting rod 303 to rotate, the first connecting rod 303 drives the third connecting rod 305 to move through the second connecting rod 304, the third connecting rod 305 drives the fifth connecting rod 307 to rotate around the first rotating shaft 308 through the fourth connecting rod 306, and the supporting plate 2 is driven to rotate through the first rotating shaft 308.
And (III) when the first rotating shaft 308 rotates, the sixth connecting rod 415 is driven to rotate, the sixth connecting rod 415 drives the roller 416 to gradually separate from the inclined surface of the inclined surface block 417, then the sealing block 418 breaks off the connection between the cooling water tank 419 and the circulating pipe 420 under the action of the first spring 414, then the water pump stops working, meanwhile, the rotation of the first rotating shaft 308 drives the first gear 401 to rotate, the first gear 401 drives the second gear 402 to rotate, the second gear 402 drives the second rotating shaft 403 to rotate, the second rotating shaft 403 drives the rotating frame 404 to rotate, and the rotating frame 404 drives the third rotating shaft 405 to be pulled out from the sleeve 406, so that the separation of the upper die 101 and the lower die 102 is realized.
And (IV) when the second rotating shaft 403 rotates, the cam 501 is driven to rotate, the cam 501 pushes the moving block 502 to move, the moving block 502 drives the seventh connecting rod 503 to rotate around the second spring shaft 504, and the seventh connecting rod 503 drives the impact block 506 to impact the lower die 102, so that the demoulding process is completed.

Claims (2)

1. The utility model provides a complicated thin wall component integration casting device, includes backup pad (2), its characterized in that: the complex thin-wall component integrated casting device also comprises a die (1), a turnover mechanism (3), a cooling control mechanism (4) and a knocking demolding mechanism (5), wherein the die (1) is arranged on the supporting plate (2);
the turnover mechanism (3) comprises a motor (301) and a turnover assembly, the turnover assembly is connected with the motor (301), the supporting plate (2) is connected with the turnover assembly, and the die (1) is connected with the turnover assembly through the supporting plate (2);
The cooling control mechanism (4) comprises a first gear (401), a cooling water tank (421), a cutting assembly and a cooling assembly, wherein the cutting assembly is connected with the cooling assembly, the first gear (401) is connected with the cutting assembly, the cooling assembly is connected with the cooling water tank (421), and the cutting assembly is connected with the overturning assembly;
The knocking demolding mechanism (5) comprises a cam (501) and a striking component, the striking component is connected with the mold (1), the cam (501) is connected with the striking component, and the overturning component is connected with the cam (501);
the die (1) comprises an upper die (101), a lower die (102) is arranged at the lower side of the upper die (101), a material injection hole (103) is formed in the upper die (101), and the lower die (102) is fixedly arranged on the supporting plate (2);
The turnover assembly comprises a fixed rod (302), the fixed rod (302) is rotatably arranged on the side surface of a supporting plate (2), a motor (301) is fixedly arranged on the side surface of the fixed rod (302), a first connecting rod (303) is fixedly arranged at the output end of the fixed rod (302), a second connecting rod (304) is rotatably arranged at one end of the first connecting rod (303) far away from the motor (301), a third connecting rod (305) is rotatably arranged at one end of the second connecting rod (304) far away from the first connecting rod (303), a fourth connecting rod (306) is fixedly arranged at the side surface of the third connecting rod (305), a fifth connecting rod (307) is fixedly arranged at the side surface of the fourth connecting rod (306), a first rotating shaft (308) is rotatably arranged at the side surface of the fixed rod (302), and the first rotating shaft (308) is fixedly connected with the supporting plate (2);
The first gear (401) is fixedly arranged on the outer surface of the first rotating shaft (308), the second gear (402) is meshed with the first gear (401), a second rotating shaft (403) is fixedly arranged on the side face of the second gear (402), a rotating frame (404) is rotatably arranged on the side face of the second rotating shaft (403), a third fixing block (409) is rotatably arranged on the side face of the second rotating shaft (403), the third fixing block (409) is rotatably connected with the rotating frame (404), a fixing frame (410) is fixedly arranged on the side face of the third fixing block (409), and the fixing frame (410) is fixedly arranged on the upper side of the supporting plate (2);
The side surface of the upper die (101) is fixedly provided with a first fixed block (407), the side surface of the lower die (102) is fixedly provided with a second fixed block (408), the first fixed block (407) is attached to the second fixed block (408), the side surfaces of the first fixed block (407) and the second fixed block (408) are respectively provided with a circular through hole, the circular through holes of the first fixed block (407) and the second fixed block (408) are concentric, the upper side of the first fixed block (407) is fixedly provided with a sleeve (406), the inner wall of the sleeve (406) is fixedly provided with a third rotating shaft (405), and the third rotating shaft (405) is fixedly arranged on the rotating frame (404);
Cam (501) fixed mounting is on second axis of rotation (403) surface, striking subassembly includes fourth fixed block (507), fourth fixed block (507) fixed mounting is on backup pad (2), fixed mounting has second spring axle (504) on fourth fixed block (507), seventh connecting rod (503) are installed in rotation of second spring axle (504) surface, second spring (505) are twined to second spring axle (504) surface, second spring (505) one end fixed mounting is on second spring axle (504) surface, second spring (505) other end fixed mounting is in seventh connecting rod (503) side, seventh connecting rod (503) side fixed mounting has striking piece (506), striking piece (506) link to each other with bed die (102), install movable block (502) on seventh connecting rod (503), movable block (502) and cam (501) sliding connection.
2. The integrated casting device for complex thin-walled components according to claim 1, wherein: cooling water tank (421) fixed mounting is on backup pad (2), and bed die (102) links to each other with cooling water tank (421), installs interior coil pipe in cooling water tank (421), and cooling module includes cooling water tank (419), and one section circulating pipe (420) are installed respectively to the output and the input of cooling water tank (419), and cooling water tank (419) link to each other with cooling water tank (421) through circulating pipe (420).
CN202410419756.3A 2024-04-09 2024-04-09 Integrated casting device for complex thin-wall component Active CN118253749B (en)

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CN118808619B (en) * 2024-09-18 2024-12-31 兴化市丽云机械铸造有限公司 Water pump casing casting equipment

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CN219632580U (en) * 2022-12-30 2023-09-05 昆山友人铸造有限公司 Stable and reliable metal casting die

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