CN217771665U - Jewelry ornament forming die - Google Patents

Jewelry ornament forming die Download PDF

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Publication number
CN217771665U
CN217771665U CN202221536688.1U CN202221536688U CN217771665U CN 217771665 U CN217771665 U CN 217771665U CN 202221536688 U CN202221536688 U CN 202221536688U CN 217771665 U CN217771665 U CN 217771665U
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CN
China
Prior art keywords
die
fan
hydraulic
lifting
mounting plate
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Expired - Fee Related
Application number
CN202221536688.1U
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Chinese (zh)
Inventor
陈森
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Putian City Qinglong Jewelry Mold Co ltd
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Putian City Qinglong Jewelry Mold Co ltd
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Priority to CN202221536688.1U priority Critical patent/CN217771665U/en
Application granted granted Critical
Publication of CN217771665U publication Critical patent/CN217771665U/en
Expired - Fee Related legal-status Critical Current
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Abstract

The utility model belongs to jewelry processing field provides a jewelry molding die, including the bed die, go up the mould and compress tightly the subassembly, it is used for the ascending and decline of control top die to compress tightly the subassembly, a serial communication port, the bed die is located inside the transmission device, transmission device is used for transporting the bed die, because equipment is equipped with transmission device, the bed die that will process after can be quick transports from the processing position to transport new bed die to the processing position, solved because need wait for just can take out after the cooling of processing article, thereby influence machining efficiency's problem.

Description

Jewelry ornament forming die
Technical Field
The utility model belongs to jewelry processing field especially relates to a jewelry ornaments forming die.
Background
The development of the Chinese jewelry industry approximately goes through three stages of stagnation, recovery and development, before the 20 th century and the 80 th century, the Chinese jewelry industry is basically in a stagnation state and has not been developed all the time; after 80 years, the jewelry industry in China goes through a recovery period of nearly ten years, and the jewelry industry in China is subjected to certain recovery development in the period; the Chinese jewelry industry really enters a rapid development stage from 1990 to 2000, and the Chinese jewelry industry changes from turning over the sky and covering the land in the rapid development stage; in the period from 2000 to 2008, the Chinese jewelry industry enters a relatively stable development period, and the real trend of the Chinese jewelry industry is strong in the period.
The existing ornament processing equipment can only process one ornament at a time, the ornament can be taken out after waiting for the cooling of the ornament after being formed, and then the subsequent processing procedure is carried out, the specific gravity of the processing mode is large in the time-consuming waiting for the cooling time, so that the processing efficiency is low, especially in a processing workshop in summer, the indoor temperature is high, the air circulation is poor, the cooling time is further prolonged, the processing efficiency is further reduced, and therefore, a forming mould which can continue to process without waiting for the cooling of the ornament is urgently needed.
SUMMERY OF THE UTILITY MODEL
The utility model provides a jewelry accessory forming die, which aims to solve the problem that the existing accessory processing equipment can be taken out after waiting for the cooling of the formed accessory, thereby leading to the lower processing efficiency.
The utility model discloses a realize like this, a jewelry ornaments forming die, include the bed die, go up the mould and compress tightly the subassembly, it is used for control to compress tightly the subassembly go up the rising and the decline of mould, a serial communication port, the bed die is located inside the transmission device, transmission device is used for the transportation the bed die.
Optionally, the lower die comprises a forming cavity and a movable block, the upper end face of the lower die is provided with the forming cavity, and the left side wall and the right side wall of the lower die are provided with the movable block.
Optionally, go up the mould and include filling tube and connecting block, it is equipped with the run-through filling tube to go up the mould up end, it is equipped with to go up mould up end both sides the connecting block.
Optionally, the transmission device comprises a movable groove, a driving rail and a pressing device mounting groove, the movable groove is arranged inside the transmission device, the driving rail is symmetrically arranged on the side wall inside the movable groove, and the pressing device mounting groove is arranged on the left side wall and the right side wall of the transmission device.
Optionally, the pressing assembly includes a lifting table and a hydraulic device.
Optionally, the lifting platform comprises a lifting groove, a T-shaped arm, a connecting seat and a hydraulic rod connecting hole, the lifting groove is formed in the lifting platform, the T-shaped arm is arranged in the lifting groove, the connecting seat is arranged below the tail end of the T-shaped arm, and the upper end face of the T-shaped arm is far away from one end of the connecting seat and is provided with the hydraulic rod connecting hole.
Optionally, the hydraulic device comprises a hydraulic machine and a hydraulic machine mounting plate, and the hydraulic machine mounting plate is arranged at the rear end of the hydraulic machine.
Optionally, the transmission device further includes a cooling device mounting plate, and the cooling device mounting plate is located outside the transmission device.
Optionally, at least one cooling fan is arranged at the upper end of the cooling device mounting plate.
Optionally, the cooling fan includes a fan lifting column and a fan, and the upper end of the fan lifting column is rotatably connected with the fan.
About implementing the utility model discloses a beneficial technical effect does: because equipment is equipped with transmission device, the bed die after will having processed that can be quick transports away from the processing position to transport new bed die to the processing position, solved because need wait for the problem that processing article just can take out after cooling, thereby influence machining efficiency.
Drawings
FIG. 1 is a schematic view of the installation of the present invention;
FIG. 2 is a schematic view of the lower mold and the upper mold of the present invention;
fig. 3 is a schematic view of the conveying device of the present invention;
fig. 4 is a schematic view of the elevating platform of the present invention;
FIG. 5 is a schematic view of the hydraulic apparatus of the present invention;
fig. 6 is a schematic view of the cooling fan of the present invention.
In the figure: 1. a lower die; 101, forming a cavity; 102. a movable block; 2. an upper die; 201. a feed tube; 202. connecting blocks; 3. a lifting platform; 301. a lifting groove; 302. a T-shaped arm; 303. a connecting seat; 304. a hydraulic rod connecting hole; 4. a transmission device; 401. a movable groove; 402. a drive rail; 403. a pressing device mounting groove; 404. a cooling device mounting plate; 5. a hydraulic device; 501. a hydraulic press; 502. mounting plates of the hydraulic machine; 6. a cooling fan; 601. a fan lifting column; 602. a fan.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
The present invention will be described in detail below with reference to the accompanying drawings in conjunction with embodiments.
Example one
As shown in fig. 1-3, a jewelry ornament forming mold comprises a lower mold 1, an upper mold 2 and a pressing assembly for controlling the upper mold 2 to ascend and descend, wherein the lower mold 1 is located inside a conveying device 4, and the conveying device 4 is used for transporting the lower mold 1.
The lower die 1 comprises a forming cavity 101 and movable blocks 102, the forming cavity 101 is arranged on the upper end face of the lower die 1, the movable blocks 102 are arranged on the left side wall and the right side wall of the lower die 1, and the movable blocks 102 are used for being matched with the transmission device 4 to realize transportation of the lower die 1.
Go up mould 2 and include filling tube 201 and connecting block 202, go up 2 up end of mould and be equipped with run-through filling tube 201, go up 2 up end both sides of mould and be equipped with connecting block 202, connecting block 202 is used for being connected with the subassembly that compresses tightly, realizes going up the motion of mould 2.
The transmission device 4 comprises a movable groove 401, a driving track 402 and a pressing device mounting groove 403, the movable groove 401 is arranged inside the transmission device 4, the driving tracks 402 are symmetrically arranged on the side wall inside the movable groove 401, the pressing device mounting grooves 403 are arranged on the left side wall and the right side wall of the transmission device 4, and the driving tracks 402 are used for driving the lower die 1 to move.
Before the device is used, a plurality of lower dies 1 to be used are firstly installed in a transmission device 4, then a pressing component is installed on a pressing device installation groove 403, then an upper die 2 and the pressing component are connected through a connecting block 202 of the upper die 2, the pressing component can control the upper die 2 to ascend and descend, finally an external power supply and an external control device are connected with the transmission device 4, and then the device can be used.
When the device is used, firstly, the external control device is operated, the driving track 402 is controlled to move the lower die 1 to the position below the upper die 2, then the compressing assembly is operated to attach the lower die 1 and the upper die 2, then the heated precious metal liquid is injected into the feeding pipe 201, the ornament is formed after a period of time, then the compressing assembly is operated again to separate the lower die 1 from the upper die 2, then the external control device is operated again, the driving track 402 is controlled to transport the lower die 1 away from the position below the upper die 2, and then the other lower die 1 is moved to the position below the upper die 2 to carry out processing operation again.
Example two
As shown in fig. 4-5, because the compressing assembly of the prior art device is mostly a spring or a lever or other mechanical tools, the initial stage of use can also ensure that the lower mold 1 and the upper mold 2 are tightly attached during the operation, but along with the increase of the service time, the mechanical fatigue can occur in the mechanical compressing assembly used by the prior art device, it is difficult to achieve the tight attachment of the lower mold 1 and the upper mold 2, so that the lower mold 1 and the upper mold 2 have a gap, thereby causing a large amount of burrs, notches and other problems to occur around the formed ornaments, seriously affecting the quality of the finished products and increasing the workload of workers, so on the basis of the first embodiment, the utility model provides a second technical scheme.
The pressing assembly comprises a lifting platform 3 and a hydraulic device 5, the lifting platform 3 is used for connecting the upper die 2, and the hydraulic device 5 is used for controlling the upper die 2 to lift.
The lifting platform 3 comprises a lifting groove 301, a T-shaped arm 302, a connecting seat 303 and a hydraulic rod connecting hole 304, the lifting groove 301 is arranged inside the lifting platform 3, the T-shaped arm 302 is arranged inside the lifting groove 301, the connecting seat 303 is arranged below the tail end of the T-shaped arm 302, and the hydraulic rod connecting hole 304 is arranged at one end, far away from the connecting seat 303, of the upper end face of the T-shaped arm 302.
The hydraulic device 5 comprises a hydraulic machine 501 and a hydraulic machine mounting plate 502, the service life of the pressing assembly is prolonged by using the hydraulic machine 501, and the hydraulic machine mounting plate 502 is arranged at the rear end of the hydraulic machine 501.
Before use, the lifting platform 3 is firstly installed on the pressing device installation groove 403, then a hydraulic rod of the hydraulic machine 501 is connected with a hydraulic rod connection hole 304 on the T-shaped arm 302, control of the hydraulic machine 501 on the T-shaped arm 302 is achieved, then the upper die 2 is connected with the T-shaped arm 302 by means of matching of the connection block 202 of the upper die 2 and the connection seat 303, and finally an external power supply and an external control device are connected with the lifting platform 3 and the hydraulic device 5.
When the device is used, firstly, the external control device is operated, the driving track 402 is controlled to move the lower die 1 to the position below the upper die 2, then the external control device is continuously operated to control the hydraulic machine 501 to reduce the heights of the T-shaped arm 302 and the upper die 2, so that the lower die 1 is tightly attached to the upper die 2, then the heated precious metal liquid is injected into the feeding pipe 201, the ornament is formed after a period of time, the external control device is operated again to control the hydraulic machine 501 to increase the heights of the T-shaped arm 302 and the upper die 2, so that the lower die 1 is separated from the upper die 2, then the external control device is continuously operated, the driving track 402 is controlled to transport the lower die 1 away from the position below the upper die 2, and then the other lower die 1 is moved to the position below the upper die 2 to carry out machining operation again.
EXAMPLE III
As shown in fig. 6, the lower mold 1 carrying the ornaments to be cooled can be transported away from the lower side of the upper mold 2 by using the transporting device 4, and then another lower mold 1 is transported to the lower side of the upper mold 2 for further processing, so that the time for cooling the ornaments is overlapped, the total working time is reduced, and the working efficiency is improved, but the cooling time of the ornaments is not shortened by using the method, and the processing equipment of the existing mold lacks a matched cooling device, so that the processing efficiency is affected by too long cooling time, therefore, the utility model provides a third technical solution on the basis of the second embodiment.
The conveyor 4 further comprises a heat sink mounting plate 404, the heat sink mounting plate 404 is located outside the conveyor 4, and the heat sink mounting plate 404 facilitates subsequent installation of a heat sink.
The upper end of the cooling device mounting plate 404 is provided with at least one cooling fan 6, and the cooling effect is better when the number of the cooling fans 6 is increased.
The cooling fan 6 comprises a fan lifting column 601 and a fan 602, the upper end of the fan lifting column 601 is rotatably connected with the fan 602, and the fan 602 can rotate relative to the fan lifting column 601, so that the fan 602 can be adjusted to an optimal cooling angle conveniently.
Before use, a plurality of cooling fans 6 are mounted on the cooling device mounting plate 404, then the fans 602 are adjusted to an optimal angle by rotating the fans 602, and finally an external power supply and an external control device are connected, so that the use can be started.
When the device is used, firstly, the external control device is operated to control the driving track 402 to move the lower die 1 to the position below the upper die 2, then the external control device is continuously operated to control the hydraulic press 501 to reduce the heights of the T-shaped arm 302 and the upper die 2, so that the lower die 1 is tightly attached to the upper die 2, then the heated precious metal liquid is injected into the feeding pipe 201, the ornament is formed after a period of time, the external control device is operated again to control the hydraulic press 501 to increase the heights of the T-shaped arm 302 and the upper die 2, so that the lower die 1 is separated from the upper die 2, then the external control device is continuously operated to control the driving track 402 to transport the lower die 1 away from the position below the upper die 2, the lower die 1 continues to move in the movable groove 401 under the action of the driving track 402, at the moment, the fan 602 reduces the temperature of the ornament formed on the upper end face of the lower die 1 in a blowing mode, accelerates the temperature reduction speed of the ornament, shortens the temperature reduction time, and when the temperature is reduced to a proper temperature, a worker takes out the ornament formed on the upper end face of the lower die 1.
The above description is only exemplary of the present invention and should not be taken as limiting the scope of the present invention, as any modifications, equivalents, improvements and the like made within the spirit and principles of the present invention are intended to be included within the scope of the present invention.

Claims (10)

1. The utility model provides a jewelry ornaments forming die, includes bed die (1), goes up mould (2) and compresses tightly the subassembly, it is used for control to compress tightly the subassembly go up the rising and the decline of mould (2), its characterized in that, bed die (1) is located transmission (4) inside, transmission (4) are used for transporting bed die (1).
2. The jewelry ornaments forming die according to claim 1, wherein the lower die (1) comprises a forming cavity (101) and movable blocks (102), the forming cavity (101) is arranged on the upper end surface of the lower die (1), and the movable blocks (102) are arranged on the left side wall and the right side wall of the lower die (1).
3. The jewelry ornaments forming die according to claim 1, wherein the upper die (2) comprises a feeding pipe (201) and a connecting block (202), the feeding pipe (201) is arranged on the upper end surface of the upper die (2), and the connecting block (202) is arranged on two sides of the upper end surface of the upper die (2).
4. The jewelry ornaments forming die according to claim 1, wherein the transmission device (4) comprises a movable groove (401), a driving rail (402) and a pressing device mounting groove (403), the movable groove (401) is arranged inside the transmission device (4), the driving rail (402) is symmetrically arranged on the inner side wall of the movable groove (401), and the pressing device mounting grooves (403) are arranged on the left side wall and the right side wall of the transmission device (4).
5. A jewellery item forming die according to claim 1, wherein the compression assembly comprises a lifting table (3) and a hydraulic device (5).
6. The jewelry ornaments forming die as claimed in claim 5, wherein the lifting platform (3) comprises a lifting groove (301), a T-shaped arm (302), a connecting seat (303) and a hydraulic rod connecting hole (304), the lifting groove (301) is arranged inside the lifting platform (3), the T-shaped arm (302) is arranged inside the lifting groove (301), the connecting seat (303) is arranged below the tail end of the T-shaped arm (302), and the hydraulic rod connecting hole (304) is arranged at one end of the upper end surface of the T-shaped arm (302) far away from the connecting seat (303).
7. A jewellery forming mould according to claim 5, wherein the hydraulic means (5) comprises a hydraulic machine (501) and a hydraulic machine mounting plate (502), the hydraulic machine mounting plate (502) being provided at the rear end of the hydraulic machine (501).
8. A jewellery item forming die according to claim 1, wherein the transfer device (4) further comprises a heat sink mounting plate (404), the heat sink mounting plate (404) being located outside the transfer device (4).
9. A jewellery molding die as claimed in claim 8, wherein the cooling device mounting plate (404) is provided at its upper end with at least one cooling fan (6).
10. The jewelry ornaments forming die of claim 9, wherein the cooling fan (6) comprises a fan lifting column (601) and a fan (602), and the fan (602) is rotatably connected to the upper end of the fan lifting column (601).
CN202221536688.1U 2022-06-20 2022-06-20 Jewelry ornament forming die Expired - Fee Related CN217771665U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221536688.1U CN217771665U (en) 2022-06-20 2022-06-20 Jewelry ornament forming die

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221536688.1U CN217771665U (en) 2022-06-20 2022-06-20 Jewelry ornament forming die

Publications (1)

Publication Number Publication Date
CN217771665U true CN217771665U (en) 2022-11-11

Family

ID=83933831

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221536688.1U Expired - Fee Related CN217771665U (en) 2022-06-20 2022-06-20 Jewelry ornament forming die

Country Status (1)

Country Link
CN (1) CN217771665U (en)

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CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20221111