A gold split flower carving device and processing technology

By designing the nozzle, adjustment components, and filter cloth system of the gold splitting and carving device, the problem of scrap material collection in gold carving was solved, achieving efficient collection and reducing waste, thereby improving carving efficiency and economic benefits.

CN115416420BActive Publication Date: 2025-11-25HANGZHOU SHANGJINYUAN JEWELRY CO LTD
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Patent Information

Application Number
CN202211157540.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-09-22
Publication Date
2025-11-25
Estimated Expiration
2042-09-22

AI Technical Summary

Technical Problem

During the gold carving process, scraps are difficult to recycle in a timely manner, resulting in gold waste and low carving efficiency.

Method used

A gold splitting carving device was designed, which uses nozzles and adjustment components to cool and flush the edge material generated during the carving process, and collects it through filter cloth. Combined with folding cylinders and guide hoods, the probability of edge material spillage is reduced, and the filter cloth can be easily replaced by a drive component to improve collection efficiency.

Benefits of technology

It achieves efficient collection of gold scraps, reduces waste, improves carving efficiency and economic benefits, protects other components in the work box, and has high convenience and practicality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to a gold split-flower carving device and a processing technology, and relates to the technical field of carving. In order to solve the problem that the existing carving machine cannot collect gold edge materials during carving, and the gold is easily wasted, the working efficiency and economic benefits are low. It comprises a working box and a carving cutter in the working box. A positioning clamp for clamping raw materials is arranged in the working box. A partition plate is arranged in the working box, and the partition plate divides the internal space of the working box into a carving cavity and a filtering cavity. A spray head is arranged in the carving cavity. A cooling water tank is arranged outside the working box. An adjusting assembly for adjusting the height of the spray head is arranged in the carving cavity. A through hole is formed in the partition plate along the thickness direction. The through hole is used for connecting the carving cavity and the filtering cavity. A filter pipe is arranged in the filtering cavity. The filter pipe is provided with filter cloth. The application has the effect of washing and collecting the edge materials on the gold materials during the carving of the gold materials, thereby improving the working efficiency and economic benefits.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of engraving, in particular to a gold split flower engraving device and processing technology. BACKGROUND

[0002] Gold is a precious metal, which has good ductility and plasticity. With the improvement of living standards, people often choose gold as their ornaments. Consumers will let the business engrave relevant patterns on the gold according to their own preferences when purchasing gold, so as to meet their own needs for gold ornaments.

[0003] The patent with the publication number CN207859832U provides an engraving machine, which comprises a workbench, a gantry support arranged above the workbench, the gantry support being slidably connected to the slide rails on the two sides of the workbench, the gantry support moving along the slide rails under the drive of a driving device, an installation box arranged on the gantry support, a stepping motor arranged in the installation box, a rotating disc arranged on the rotating shaft of the stepping motor, a plurality of lifting mechanisms arranged below the rotating disc, and a cutter arranged below each lifting mechanism. In the use process, the appropriate cutter is selected by the stepping motor and is rotated to the upper side of the raw material by the rotating disc, and the raw material is engraved.

[0004] In view of the above-mentioned related patent, the inventors find that it is difficult to engrave patterns on gold, and it takes a long time. In the engraving process, the gold edge material at the engraved position will fall off the raw material, and the staff has no time to collect the edge material in time. Gold is a precious metal, and if it is not collected, it will cause waste of gold. Therefore, it needs to be improved. SUMMARY

[0005] In order to collect the gold edge material falling off from the raw material and improve work efficiency and economic benefits, the application provides a gold split flower engraving device and processing technology.

[0006] The gold split flower engraving device and processing technology provided by the application adopt the following technical solutions:

[0007] A gold split flower engraving device, which comprises a workbox and an engraving cutter in the workbox, a positioning clamp for clamping a raw material is arranged in the workbox, a partition plate is arranged in the workbox, the partition plate divides the internal space of the workbox into an engraving cavity and a filtering cavity; a spray head for spraying cooling liquid on the raw material is arranged in the engraving cavity, a cooling water tank is arranged outside the workbox, the spray head and the cooling water tank are connected in communication through a hose, and an adjusting assembly for adjusting the height of the spray head is arranged in the engraving cavity; a through hole is formed through the partition plate in the thickness direction, the through hole is used for connecting the engraving cavity and the filtering cavity in communication, a filtering pipe is arranged in the filtering cavity, and a filter cloth is arranged in the filtering pipe.

[0008] By adopting the technical scheme, the gold material to be engraved is placed in the working box, and the gold material is clamped and positioned by the positioning clamp, and the engraving cutter is started to engrave the gold material. In the process of engraving, a part of the gold material engraved by the engraving cutter on the surface of the gold material will be attached to the surface of the gold material due to the height generated by the engraving. The position of the spray head in the working box is adjusted by the adjusting assembly, so that the spray head sprays the cooling liquid towards the surface of the gold material. On the one hand, the surface of the gold material can be cooled during the engraving process, improving the safety of the engraving process. On the other hand, the gold material debris attached to the surface of the gold material can be washed off, so as to enter the filter pipe and fall on the filter cloth, so as to be collected uniformly subsequently. The present application can collect the edge material during the engraving of the gold material, improve the working efficiency of the engraving, reduce the waste of the gold material, and has high economic benefits.

[0009] Preferably, the adjusting assembly comprises a sliding channel, a first sliding block, a first spring, a rotating motor, a rotating plate and a first connecting rod. The sliding channel is connected to the inner wall of the engraving cavity. The first sliding block is slidingly connected in the sliding channel. The side wall of the sliding channel is provided with a connecting through slot. The side wall of the first sliding block is provided with a connecting rod. The spray head is connected to the outer wall of the connecting rod extending out of the connecting through slot. One end of the first spring abuts against the top wall of the sliding channel. The other end of the first spring is connected to the first sliding block. The rotating motor is connected to the inner wall of the engraving cavity. The rotating plate is sleeved on the output shaft of the rotating motor. The side wall of the sliding channel away from the connecting through slot is provided with a driven through slot. One end of the first connecting rod is hinged to the side of the first sliding block facing the driven through slot. The other end of the first connecting rod is hinged to the rotating plate.

[0010] By adopting the above technical scheme, the rotating motor is started, and the output shaft of the rotating motor drives the rotating plate to rotate, so that the first connecting rod can pull the first sliding block to slide along the length direction of the sliding channel. Therefore, the position of the spray head can be adjusted by the movement of the first sliding block, so that the spray head can clean the surface of the gold material more efficiently. The structure is simple, the degree of automation is high, and the practicability and convenience of the present application are improved.

[0011] Preferably, the adjusting assembly further comprises another sliding channel, a second sliding block, a second spring and a second connecting rod. The other sliding channel is connected to the inner bottom wall of the engraving cavity. The second sliding block is slidingly connected in the lower sliding channel. One end of the second spring abuts against the inner bottom wall of the sliding channel. The other end of the second spring is connected to the second sliding block. One end of the second connecting rod is hinged to the side of the second sliding block facing the driven through slot. The other end of the second connecting rod is hinged to the rotating plate. A folding cylinder is arranged in the through hole. The folding cylinder comprises an outer cylinder and an inner cylinder. The outer cylinder is sleeved on the outer wall of the inner cylinder. The outer cylinder abuts against the inner wall of the through hole. The side of the second sliding block facing the connecting through slot is provided with a lifting rod. One end of the lifting rod extending out of the connecting through slot is connected to the outer cylinder. One end of the inner cylinder is communicated with the filter pipe.

[0012] By adopting the technical scheme, in the process of rotation of the rotating plate, the second sliding block will also be pulled by the second connecting rod, thereby forming same-direction or reverse movement with the first sliding block, and the outer cylinder is pulled up by the lifting rod to shorten the distance from the positioning clamp, so that the cooling water can more efficiently collect the cooling water and gold debris when flushing the gold material, thereby reducing the probability of the gold material falling into other parts of the working box along with the cooling water, on the one hand, the other parts in the working box can be protected, on the other hand, the gold material can be more efficiently collected, and a rotating motor is used as a power element for adjusting the nozzle, which has high economic benefits and can realize automatic movement.

[0013] Preferably, the adjusting assembly is provided with two groups, the positioning clamp is located between the two groups of adjusting assemblies, the inner wall of the carving cavity is provided with two adjusting plates, and the adjusting assembly and the adjusting plate one-to-one correspond; one end of the adjusting plate is slidably connected with a sliding rod, one end of the sliding rod close to the outer cylinder is connected with a flow guide cover, the flow guide cover can abut against the top wall of the outer cylinder, and the other end of the sliding rod is provided with an abutting piece; a reset spring is arranged between the abutting piece and the adjusting plate, the reset spring is sleeved on the outer wall of the sliding rod, and the reset spring can abut against the abutting piece and the adjusting plate; a first bevel gear is connected at the center of one side of the rotating plate close to the positioning clamp, two rotating rods are arranged on the inner wall of the carving cavity, a second bevel gear is rotatably connected at one end of the rotating rod close to the first bevel gear, the first bevel gear and the second bevel gear are meshed with each other, and the rotating rod is rotatably connected with a cam; the cam can push the abutting piece and the sliding rod to slide after rotation.

[0014] By adopting the technical scheme, in the process of rotation of the adjusting assembly, the rotating plate will drive the first bevel gear to rotate, since the first bevel gear and the second bevel gear are meshed with each other, the second bevel gear will drive the rotating rod and the cam to rotate, when the cam rotates, one end with a larger diameter of the cam abuts against the abutting piece, the abutting piece and the sliding rod are pushed by the cam, so that the two flow guide covers move towards each other, and finally splice and abut against the top wall of the outer cylinder, thereby further improving the problem that the cooling water and the material fall into other parts of the working box, causing damage to other parts in the working box and low gold material collection rate.

[0015] Preferably, an extension pipe is arranged at the water outlet of the nozzle, the extension pipe communicates with the nozzle, the extension pipe comprises a plurality of foldable and telescopic superimposed parts, a plurality of micro air cylinders are arranged on the outer wall of the nozzle, and the piston rod of the micro air cylinder is connected with the outer wall of the superimposed part of the extension pipe away from the nozzle.

[0016] By adopting the technical scheme, the extension pipe is arranged to extend the spraying distance of the spray head, when the volume of the gold material is small, the extension pipe can be driven to extend and retract by the micro-cylinder, so that the cooling water can drop on the surface of the feed more fully, thereby improving the cooling effect and flushing effect of the cooling liquid on the gold material, and having high practicability.

[0017] Preferably, the positioning clamp comprises a connecting part, a rotating part and a mechanical claw, one end of the connecting part is connected with the inner wall of the carving cavity, an installation cavity for installing the rotating part is arranged at the end of the connecting part away from the inner wall of the carving cavity, the mechanical claw is connected with the rotating part, and the rotating part can drive the mechanical claw to rotate.

[0018] By adopting the technical scheme, the rotating part is arranged to enable the mechanical claw to drive the feed to rotate, so that the spray head can flush and clean each surface of the gold material, thereby improving the cooling effect and flushing effect of the gold material, and enabling the edge material of each surface of the gold material to be flushed, and improving the collection efficiency of the gold material.

[0019] Preferably, a plurality of filter cloths are arranged, the plurality of filter cloths are uniformly distributed along the length direction of the filter pipe, a plurality of installation net racks for installing the filter cloths are arranged in the filter pipe, and the center of the installation net rack is recessed in the direction away from the carving cavity; a plurality of abutting blocks are arranged on the inner wall of the filter pipe, the top wall of the abutting block is provided with a plurality of connecting columns, the peripheral wall of the installation net rack is provided with a plurality of connecting rings, and the connecting ring is sleeved on the outer wall of the corresponding connecting column.

[0020] By adopting the technical scheme, the plurality of filter cloths can improve the screening efficiency of the gold material and have higher economic benefits; the installation net rack is arranged to facilitate dismounting the filter cloths from the filter pipe, thereby facilitating taking out the gold material on the filter cloths, the recess is arranged in the middle of the installation net rack, the gold material falling on the filter cloth can be more concentrated, thereby facilitating taking out the feed, and the convenience and practicability of the application are improved.

[0021] Preferably, the filter pipe comprises a connecting pipe, a replacement pipe and a drain pipe, the connecting pipe is communicated with the inner cylinder, the replacement pipe is connected to the end of the connecting pipe away from the inner cylinder, the filter cloth and the installation net rack are located on the inner wall of the replacement pipe, the drain pipe is connected to the end of the replacement pipe away from the connecting pipe, and a driving part for moving the replacement pipe is arranged in the filter cavity.

[0022] By adopting the technical scheme, the driving part is arranged, and the replacement pipe can be dismounted from the filter pipe by the driving part, thereby further improving the dismounting rate of the installation net rack and the filter cloth, and having higher convenience.

[0023] Preferably, the driving member comprises a driving motor and a rotating disc, the driving motor is connected with the bottom wall of the partition plate, the rotating disc is sleeved on the outer wall of the output shaft of the driving motor, a plurality of installation openings are formed in the circumferential wall of the rotating disc along the thickness direction, the replacement pipe is inserted into the installation opening, and the outer wall of the replacement pipe is provided with an abutting ring which abuts against the surface of the rotating disc.

[0024] By adopting the above technical scheme, the output shaft of the driving motor drives the rotating disc to rotate, so that the replacement pipe originally connected between the connecting pipe and the drain pipe can be removed, another replacement pipe can be rotated to the position between the connecting pipe and the drain pipe to continue the filtering work, and the operator can take out the replaced replacement pipe to disassemble the internal mounting rack and filter cloth, thereby collecting the filtered gold material uniformly, so that the degree of automation is high, and the economic benefit and convenience are high.

[0025] A gold splitting and engraving processing technology, high-purity gold is melted and poured into a graphite tank, and is subjected to acid blasting to obtain a gold sheet, the gold sheet is formed into a semi-finished product by a manual punch;

[0026] The semi-finished product is polished and washed, and the semi-finished product is engraved with patterns by the engraving device of the application after repeating the steps multiple times.

[0027] After engraving, the surface of the semi-finished product is electroplated and shaped and corrected to form a finished product.

[0028] By adopting the above technical scheme, first, the feed is melted and re-pressed to form a semi-finished product, which can make the feed have better ductility, thereby facilitating the subsequent engraving process, and after engraving, the surface of the gold material is electroplated, which can improve the corrosion resistance of the gold material and improve the quality of the gold material.

[0029] In summary, the application has at least one of the following beneficial technical effects:

[0030] 1. By providing the spray head and the adjusting assembly, the gold material can be cooled while being engraved, the edge material attached to the gold material can be washed away by the cooling water, and finally filtered by the filter cloth, which can save the time for collecting the gold material after engraving, improve the efficiency of collecting the gold material, reduce the waste of the gold material, and has high economic benefit;

[0031] 2. The folding cylinder and the flow guide cover can effectively reduce the probability that the gold material is splashed to other parts of the working tank along with the cooling water when the spray head is washing the gold material, which can effectively protect other parts in the working tank on the one hand, and can improve the problem that the gold material is splashed to other parts of the working tank, making it difficult to collect the gold material and taking a long time, which has high convenience and practicality. BRIEF DESCRIPTION OF DRAWINGS

[0032] Figure 1 is a structural schematic diagram of a gold split flower carving device according to an embodiment of the present application.

[0033] Figure 2 is a structural schematic diagram of the inside of a working box according to an embodiment of the present application.

[0034] Figure 3 is Figure 2 is a partial enlarged view of A in FIG. 1.

[0035] Figure 4 is a structural schematic diagram of an adjusting assembly according to an embodiment of the present application.

[0036] Figure 5 is an exploded structural schematic diagram of internal parts of a filtering cavity according to an embodiment of the present application.

[0037] Figure 6 is Figure 2 is a partial enlarged view of B in FIG. 1.

[0038] Figure 7 is a structural schematic diagram of a rotating disc and a replacement pipe according to an embodiment of the present application.

[0039] Figure 8 is Figure 7 is a partial enlarged view of C in FIG. 1.

[0040] BRIEF DESCRIPTION OF THE DRAWINGS 1, working box; 11, carving cutter; 12, positioning clamp; 121, connecting part; 1211, mounting cavity; 122, rotating part; 123, mechanical claw; 13, partition; 131, through hole; 14, carving cavity; 15, filtering cavity; 16, spray head; 17, filtering pipe; 171, connecting pipe; 172, replacement pipe; 1721, abutting block; 1722, connecting column; 1723, abutting ring; 173, drain pipe; 18, filter cloth; 2, cooling water tank; 3, adjusting assembly; 31, slide way; 311, connecting through slot; 312, driven through slot; 32, first sliding block; 321, connecting rod; 33, first spring; 34, rotating motor; 35, rotating plate; 351, first bevel gear; 36, first connecting rod; 37, second sliding block; 371, lifting rod; 38, second spring; 39, second connecting rod; 4, folding cylinder; 41, outer cylinder; 42, inner cylinder; 5, adjusting plate; 51, sliding rod; 52, flow guide cover; 53, abutting piece; 54, return spring; 6, rotating rod; 61, second bevel gear; 62, cam; 7, extension pipe; 71, superimposed part; 72, micro pneumatic cylinder; 8, mounting grid; 81, connecting ring; 9, driving part; 91, driving motor; 92, rotating disc; 921, mounting port. DETAILED DESCRIPTION

[0041] The following will be described in detail in combination with the accompanying drawings. Figures 1-8 The present application will be described in further detail.

[0042] The embodiment of the present application discloses a gold split flower carving device. Referring to Figure 1 and Figure 2 The gold split flower carving device comprises a working box 1, a partition plate 13 is connected to the inner wall of the working box 1 through welding, and the partition plate 13 divides the working box 1 into a carving cavity 14 and a filtering cavity 15. The top wall of the carving cavity 14 is provided with a carving cutter 11 for carving processing of gold materials. In the embodiment, the carving cutter 11 is provided with two sliding direction perpendicular guide rails, a cylinder and a motor, so that the carving cutter 11 can realize multidirectional movement and improve the carving range. The working box 1 is externally provided with a control panel, the carving cutter 11 can be moved through the PLC controller in the control panel, and the gold materials can be carved.

[0043] Referring to Figure 2 and Figure 3 The inner wall of the carving cavity 14 is provided with a positioning clamp 12 for clamping and positioning of the gold materials. The positioning clamp 12 comprises a connecting part 121, a rotating part 122 and a mechanical claw 123. One end of the connecting part 121 is connected to the inner wall of the working box 1 through welding, the other end of the connecting part 121 is provided with an installation cavity 1211 for installation of the rotating part 122, and the mechanical claw 123 is connected with the output shaft of the rotating part 122. In the embodiment, the rotating part 122 is a motor, so that the mechanical claw 123 can be driven to rotate, thereby more comprehensively carving the gold materials.

[0044] Referring to Figure 2 and Figure 4, two spray heads 16 for cooling and flushing gold material in the engraving are arranged in the engraving cavity 14, a cooling water tank 2 is arranged outside the working box 1, and the spray heads 16 are in communication with the cooling water tank 2 through a hose. Two sets of adjusting assemblies 3 for adjusting the positions of the spray heads 16 are arranged in the engraving cavity 14, and the adjusting assemblies 3 and the spray heads 16 are in one-to-one correspondence. The adjusting assembly 3 comprises a slide 31, a first sliding block 32, a first spring 33, a rotating motor 34, a rotating plate 35 and a first connecting rod 36. The slide 31 is vertically arranged in the engraving cavity 14 and is hollow inside. One end of the first spring 33 is connected to the inner top wall of the slide 31 by adhesion. The first sliding block 32 is connected to the other end of the first spring 33 by adhesion and can slide in the slide 31, and the side wall of the first sliding block 32 abuts against the inner wall of the slide 31. A connecting groove 311 is formed in the side of the slide 31 facing the positioning clamp 12. The side wall of the first sliding block 32 is integrally connected with a connecting rod 321. One end of the connecting rod 321 extending out of the connecting groove 311 is connected to the spray head 16 by welding. The rotating motor 34 is connected to the inner wall of the engraving cavity 14 by welding. The rotating plate 35 is sleeved on the outer wall of the output shaft of the rotating motor 34 in a key connection manner. One end of the first connecting rod 36 is hinged to the rotating plate 35. A driven groove 312 is formed in the side of the slide 31 facing the rotating plate 35. The driven groove 312 is formed along the length direction of the slide 31. The other end of the first connecting rod 36 penetrates through the driven groove 312 and is hinged to the side wall of the first sliding block 32. When the output shaft of the rotating motor 34 rotates, the first sliding block 32 can be pulled to slide, so that the position of the spray head 16 can be adjusted flexibly, thereby improving the cooling and flushing effect on the gold material.

[0045] With reference to Figure 2 and Figure 4 The partition plate 13 is provided with a through hole 131 in the thickness direction, and the through hole 131 is used for connecting the engraving cavity 14 and the filtering cavity 15. The adjusting assembly 3 further comprises another slide 31, a second sliding block 37, a second spring 38 and a second connecting rod 39. The other slide 31 is connected to the inner bottom wall of the engraving cavity 14, and the two slides 31 are the same in structure. One end of the second spring 38 is connected to the inner bottom wall of the slide 31 by adhesion. The second sliding block 37 is connected to the other end of the second spring 38 by adhesion. One end of the second connecting rod 39 is hinged to the rotating plate 35. The other end of the second connecting rod 39 penetrates through the driven groove 312 and is hinged to the side wall of the second sliding block 37. The first connecting rod 36 and the second connecting rod 39 are symmetric about the center of the rotating plate 35.

[0046] With reference to Figure 2 and Figure 5The folding barrel 4 is arranged in the through hole 131, and the folding barrel 4 comprises an outer barrel 41 and an inner barrel 42. The outer barrel 41 is sleeved on the outer wall of the inner barrel 42. The outer barrel 41 abuts against the inner wall of the barrel and can slide along the depth direction of the through hole 131. The outer wall of the second sliding block 37 is integrally formed with a lifting rod 371. The lifting rod 371 penetrates through the connecting groove 311 and is connected with the top wall of the outer barrel 41 by welding. Thus, the outer barrel 41 can be driven to slide, and the probability that the cooling water sprayed by the nozzle 16 falls to other positions outside the working box 1 is reduced. The parts inside the working box 1 are effectively protected, and the collection efficiency of the gold material is improved.

[0047] With reference to Figure 2 and Figure 6 , the inner wall of the carving cavity 14 is connected with two adjusting plates 5 by welding. The adjusting plate 5 corresponds to the adjusting assembly 3 one by one, and the adjusting plate 5 is vertically arranged. The adjusting plate 5 is slidably connected with a sliding rod 51. One end of the sliding rod 51 is connected with a flow guide cover 52 by welding. The two flow guide covers 52 can be spliced to form a complete cover body, thereby limiting the cooling liquid sprayed by the nozzle 16 and the gold material washed. The center of the rotating plate 35 is connected with a first bevel gear 351 by welding. The inner wall of the carving cavity 14 is connected with a rotating rod 6 by welding. One end of the rotating rod 6 close to the first bevel gear 351 is rotatably connected with a second bevel gear 61. The second bevel gear 61 is meshed with the first bevel gear 351. The rotating rod is rotatably connected with a cam 62. One end of the sliding rod 51 close to the cam 62 is connected with an abutting piece 53 by welding. After the longer end of the cam 62 abuts against the abutting piece 53, the sliding rod 51 can be pushed to move, so that the two flow guide covers 52 can be spliced. The outer wall of the sliding rod 51 is sleeved with a return spring 54. The return spring 54 is located between the abutting piece 53 and the adjusting plate 5, so as to reset the sliding rod 51.

[0048] With reference to Figure 2 and Figure 6 , the water outlet of the nozzle 16 is provided with an extension pipe 7 for extending the range of the nozzle 16. The extension pipe 7 comprises a plurality of folding and telescopic superposed parts 71. The outer wall of the nozzle 16 is connected with a micro pneumatic cylinder 72 by welding. The piston rod of the micro pneumatic cylinder 72 is connected with the superposed part 71 of the extension pipe 7 away from the nozzle 16 by gluing, so as to extend the range of the nozzle 16.

[0049] With reference to Figure 2 and Figure 5 , the filtering cavity 15 is provided with a filtering pipe 17. The filtering pipe 17 comprises a connecting pipe 171, a replacement pipe 172 and a drainage pipe 173 from top to bottom. The connecting pipe 171 is connected with the inner barrel 42 by welding. The replacement pipe 172 is connected to one end of the connecting pipe 171 away from the inner barrel 42. The drainage pipe 173 is connected to one end of the replacement pipe 172 away from the connecting pipe 171.

[0050] With reference to Figure 7 And Figure 8 The inner wall of the replacement pipe 172 is integrally formed with two abutting blocks 1721, and the surface of the abutting block 1721 is integrally formed with a plurality of connecting columns 1722. Each abutting block 1721 is provided with a mounting grid 8, and the side wall of the mounting grid 8 is connected by welding with a connecting ring 81, and the connecting ring 81 is sleeved on the outer wall of the corresponding connecting column 1722. The mounting grid 8 is recessed at the center, and the mounting grid 8 is connected with the filter cloth 18 by gluing, so as to filter the gold material.

[0051] With reference to Figure 2 And Figure 5 A driving member 9 for replacing the replacement pipe 172 is arranged in the filter cavity 15. The driving member 9 includes a driving motor 91 and a rotating disc 92. The driving motor 91 is connected to the inner top wall of the filter cavity 15 by welding. The rotating disc 92 is sleeved on the outer wall of the output shaft of the driving motor 91 by key connection. A plurality of mounting holes 921 are formed in the rotating disc 92 along the thickness direction. The replacement pipe 172 is inserted into the mounting hole 921. The outer wall of the replacement pipe 172 is integrally formed with an abutting ring 1723, which can abut with the surface of the rotating disc 92. By arranging the driving member 9, the replacement pipe 172 can be easily replaced, so that the filter cloth 18 can be easily taken out, and the gold material can be collected.

[0052] The application also discloses a gold splitting and engraving processing technology, which comprises the following steps:

[0053] S1: melt high-purity gold and introduce it into a graphite tank for cooling. After cooling, the gold material is placed in strong hydrochloric acid for acid blasting. After acid blasting, the gold material is subjected to stamping processing to form a semi-finished product;

[0054] S2: polishing the semi-finished product to remove surface burrs, and rinsing the polished semi-finished product. After rinsing, the semi-finished product is subjected to engraving treatment by the engraving device of the application;

[0055] S3: after engraving, the surface of the semi-finished product is electroplated, and is subjected to shaping and edging to form a gold finished product.

[0056] The implementation principle of the gold splitting and engraving device is as follows: gold material is placed in the working box 1 and clamped and positioned by the positioning clamp 12, the engraving cutter 11 is started to split and engrave the surface of the gold material; the adjusting assembly 3 is started, the rotating motor 34 rotates, the first connecting rod 36 and the first sliding block 32 adjust the position of the nozzle 16, so that the nozzle 16 can directly cool and clean the gold material; the second connecting rod 39 and the second sliding block 37 drive the outer cylinder 41 to rise, and through the meshing of the first bevel gear 351 and the second bevel gear 61, the cam 62 is driven to rotate, so that the cam 62 can push the abutting piece 53, and the two side flow deflectors 52 are spliced with each other and abut against the top wall of the outer cylinder 41, so that the cooling water and the gold material washed down can enter the filter pipe 17, and the gold material is filtered out through the filter cloth 18, thereby improving the collection efficiency of the corner gold material, and solving the problems of gold material waste and low economic benefit caused by the untimely collection of the gold material.

[0057] The above are preferred embodiments of the present application, and do not limit the protection scope of the present application, therefore: any equivalent changes made on the structure, shape and principle of the present application should be covered within the protection scope of the present application.

Claims

1. A gold split engraving device, comprising a working box (1) and an engraving tool (11) in the working box (1), a positioning clamp (12) for clamping raw materials is arranged in the working box (1), characterized in that: The working box (1) is provided with a partition plate (13), which divides the internal space of the working box (1) into an engraving cavity (14) and a filtering cavity (15); the engraving cavity (14) is provided with a spray head (16) for spraying cooling liquid on raw materials, the working box (1) is provided with a cooling water tank (2) outside, the spray head (16) is connected with the cooling water tank (2) through a hose, and the engraving cavity (14) is provided with an adjusting assembly (3) for adjusting the height of the spray head (16); the partition plate (13) is provided with a through hole (131) penetrating in the thickness direction, and the through hole (131) is used for communicating the engraving cavity (14) with the filtering cavity (15); the filtering cavity (15) is provided with a filter pipe (17), and the filter pipe (17) is provided with a filter cloth (18); The adjusting assembly (3) comprises a slide (31), a first sliding block (32), a first spring (33), a rotating motor (34), a rotating plate (35) and a first connecting rod (36), the slide (31) is connected to the inner wall of the engraving cavity (14), the first sliding block (32) is slidingly connected in the slide (31), the side wall of the slide (31) is provided with a connecting groove (311), the side wall of the first sliding block (32) is provided with a connecting rod (321), and the spray head (16) is connected with the outer wall of the connecting groove (311) of the connecting rod (321); one end of the first spring (33) abuts against the top wall of the slide (31), the other end of the first spring (33) is connected with the first sliding block (32), the rotating motor (34) is connected to the inner wall of the engraving cavity (14), the rotating plate (35) is sleeved on the output shaft of the rotating motor (34), the side wall of the slide (31) away from the connecting groove (311) is provided with a driven groove (312), one end of the first connecting rod (36) is hinged to the side of the first sliding block (32) facing the driven groove (312), and the other end of the first connecting rod (36) is hinged to the rotating plate (35); The adjusting assembly (3) further comprises another sliding channel (31), a second sliding block (37), a second spring (38) and a second connecting rod (39), the other sliding channel (31) is connected with the inner bottom wall of the carving cavity (14), the second sliding block (37) is slidingly connected in the lower sliding channel (31), one end of the second spring (38) abuts against the inner bottom wall of the sliding channel (31), the other end of the second spring (38) is connected with the second sliding block (37), one end of the second connecting rod (39) is hinged with the side of the second sliding block (37) facing the driven through slot (312), and the other end of the second connecting rod (39) is hinged with the rotating plate (35); the through hole (131) is provided with a folding cylinder (4), the folding cylinder (4) comprises an outer cylinder (41) and an inner cylinder (42), the outer cylinder (41) is sleeved on the outer wall of the inner cylinder (42), the outer cylinder (41) abuts against the inner wall of the through hole (131), one side of the second sliding block (37) facing the connecting through slot (311) is provided with a lifting rod (371), one end of the lifting rod (371) extending out of the connecting through slot (311) is connected with the outer cylinder (41), and one end of the inner cylinder (42) is communicated with the filter pipe (17).

2. A gold parting splitting and engraving apparatus as claimed in claim 1, wherein: The adjusting assembly (3) is provided with two groups, the positioning clamp (12) is located between the two groups of adjusting assemblies (3), two adjusting plates (5) are arranged on the inner wall of the carving cavity (14), and the adjusting assembly (3) and the adjusting plate (5) one-to-one correspond; one end of the adjusting plate (5) is slidingly connected with a sliding rod (51), one end of the sliding rod (51) close to the outer cylinder (41) is connected with a flow guide cover (52), the flow guide cover (52) can abut against the top wall of the outer cylinder (41), the other end of the sliding rod (51) is provided with an abutting piece (53), the abutting piece (53) and the adjusting plate (5) are provided with a reset spring (54), the reset spring (54) is sleeved on the outer wall of the sliding rod (51), and the reset spring (54) can abut against the abutting piece (53) and the adjusting plate (5); the rotating plate (35) is connected with a first bevel gear (351) at the center of the side close to the positioning clamp (12), two rotating rods (6) are arranged on the inner wall of the carving cavity (14), one end of the rotating rod (6) close to the first bevel gear (351) is rotatably connected with a second bevel gear (61), the first bevel gear (351) and the second bevel gear (61) are meshed with each other, and the rotating rod (6) is rotatably connected with a cam (62), and the cam (62) can push the abutting piece (53) and the sliding rod (51) to slide after rotation.

3. A gold parting splitting and engraving apparatus as claimed in claim 1, wherein: The water outlet of the spray head (16) is provided with an extension pipe (7), the extension pipe (7) is communicated with the spray head (16), the extension pipe (7) comprises a plurality of telescopic folding superposition parts (71), the outer wall of the spray head (16) is provided with a plurality of micro air cylinders (72), and the piston rod of the micro air cylinder (72) is connected with the outer wall of the superposition part (71) of the extension pipe (7) away from the spray head (16).

4. A gold parting splitting and engraving apparatus as claimed in claim 1, wherein: The positioning clamp (12) comprises a connecting part (121), a rotating part (122) and a mechanical claw (123), one end of the connecting part (121) is connected with the inner wall of the carving cavity (14), an installation cavity (1211) for installing the rotating part (122) is formed at the end of the connecting part (121) away from the inner wall of the carving cavity (14), the mechanical claw (123) is connected with the rotating part (122), and the rotating part (122) can drive the mechanical claw (123) to rotate.

5. A gold parting splitting and engraving apparatus as claimed in claim 1, wherein: A plurality of filter cloths (18) are arranged, and the plurality of filter cloths (18) are uniformly distributed along the length direction of the filter pipe (17); a plurality of installation net racks (8) for installing the filter cloths (18) are arranged in the filter pipe (17), and the center of the installation net rack (8) is recessed in the direction away from the carving cavity (14); a plurality of abutting blocks (1721) are arranged on the inner wall of the filter pipe (17), the top wall of the abutting block (1721) is provided with a plurality of connecting columns (1722), the peripheral wall of the installation net rack (8) is provided with a plurality of connecting rings (81), and the connecting ring (81) is sleeved on the outer wall of the corresponding connecting column (1722).

6. A gold parting splitting and engraving apparatus as claimed in claim 5, wherein: The filter pipe (17) comprises a connecting pipe (171), a replacement pipe (172) and a drainage pipe (173), the connecting pipe (171) is communicated with the inner cylinder (42), the replacement pipe (172) is connected to one end of the connecting pipe (171) away from the inner cylinder (42), the filter cloth (18) and the installation net rack (8) are located on the inner wall of the replacement pipe (172), and the drainage pipe (173) is connected to one end of the replacement pipe (172) away from the connecting pipe (171).

7. A gold parting and splitting device as claimed in claim 6, wherein: The driving member (9) comprises a driving motor (91) and a rotating disc (92), the driving motor (91) is connected with the bottom wall of the partition plate (13), the rotating disc (92) is sleeved on the outer wall of the output shaft of the driving motor (91), a plurality of installation openings (921) are formed in the peripheral wall of the rotating disc (92) along the thickness direction, the replacement pipe (172) is inserted into the installation opening (921), and the outer wall of the replacement pipe (172) is provided with an abutting ring (1723) which abuts against the surface of the rotating disc (92).

8. A gold split flower carving processing process, using the gold split flower carving device of any one of claims 1-7, characterized in that: High-purity gold is melted and poured into a graphite tank, and is subjected to acid blasting to obtain a gold sheet, and the gold sheet is formed into a semi-finished product by a manual punch; The semi-finished product is polished and washed, and after repeating the steps for multiple times, the semi-finished product is engraved with patterns by the carving device of the present application; After the engraving is completed, the surface of the semi-finished product is electroplated, and is shaped and corrected to form a finished product.

Citation Information

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