Core taking processing device

By designing the core-taking assembly and lifting assembly of the core-taking processing device, and utilizing the coordination of components such as the cylinder, motor and grating ruler, automatic loading and unloading of materials and convenient disassembly and assembly are achieved, solving the problems of low efficiency and inconvenient disassembly and assembly of the existing core-taking device, and improving production efficiency and quality.

CN223315945UActive Publication Date: 2025-09-09ZHONGSHAN GUANGDA OPTICAL INSTR CO LTD
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Patent Information

Application Number
CN202422753964.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-12
Publication Date
2025-09-09
Estimated Expiration
2034-11-12

AI Technical Summary

Technical Problem

The existing core extraction device is not convenient for automatic loading and unloading, which affects production efficiency and quality. At the same time, it is not convenient for disassembly and assembly, which affects the convenience of use.

Method used

A core removal processing device including a core removal component and a lifting component was designed. Through the cooperation of a cylinder, a motor, a grating ruler and a gear belt, automatic loading and unloading of materials and convenient disassembly and assembly were realized.

Benefits of technology

It realizes the automatic loading and unloading of materials, improves production efficiency and quality, and facilitates the disassembly and assembly of the core extraction device, improving its ease of use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a coring processing device, which belongs to the coring processing field, and comprises a coring assembly and a lifting assembly, the coring assembly comprises a first grating ruler, the upper end of the first grating ruler is provided with a first air cylinder, the output end of the first air cylinder is connected with a guide block, the upper end of the guide block is provided with a connecting disc, one side of the connecting disc is provided with a side rod, and the other side of the connecting disc is provided with a second air cylinder; a lifting air cylinder is slidably connected to one side of the side rod, two lug blocks are fixedly connected to the surface of the lifting air cylinder, guide rods and lead screws are installed at the upper end and the lower end of the side rod correspondingly and installed in the lug blocks, and first bevel gears are connected to the output ends of the lead screws; according to the core taking device, the core taking assembly is matched with the lifting assembly, so that materials can be conveniently and automatically loaded and unloaded, the production efficiency and quality of the core taking device are improved, meanwhile, all parts of the core taking device can be conveniently disassembled and assembled, and the disassembly and assembly convenience of all the parts can be improved.
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Description

Technical Field

[0001] The utility model relates to the field of coring processing, in particular to a coring processing device. Background Art

[0002] The core extraction process is an intermediate process in optical cold processing. The dimensional requirements to be controlled are relatively strict, and the yield rate depends on the operator's operating skills. Most of the existing core extraction work requires manual loading and unloading operations. This operation not only affects production efficiency, but also affects production quality. Based on this, it is necessary to provide a core extraction device that automatically performs loading and unloading operations to improve production efficiency and quality. In addition, the existing core extraction device is not convenient for disassembly and assembly during loading and unloading, which affects the convenience of use. Based on this, it is necessary to provide a core extraction device that is easy to disassemble and assemble and improves the convenience of use. Utility Model Content

[0003] The embodiment of the utility model provides a core extraction processing device, which aims to solve the problem that the existing core extraction device is not convenient for automatic loading and unloading, affecting production efficiency and quality.

[0004] To achieve the above-mentioned purpose, the present invention provides a coring processing device, comprising a coring assembly and a lifting assembly;

[0005] Wherein, the core-taking assembly includes a first grating ruler, a first cylinder is installed on the upper end of the first grating ruler, the output end of the first cylinder is connected to a guide block, the upper end of the guide block is installed with a connecting disk, a side rod is installed on one side of the connecting disk, and a lifting cylinder is slidably connected to one side of the side rod, and two ear blocks are fixedly connected to the surface of the lifting cylinder, and a guide rod and a screw rod are installed on the upper and lower ends of the side rod respectively, and the guide rod and the screw rod are installed inside the ear block, the output end of the screw rod is connected to a first bevel gear, and the lower end of the side rod is installed with a first motor, the output end of the first motor is connected to a second bevel gear, the first bevel gear and the third bevel gear are meshed and connected, and the lower end of the lifting cylinder is connected to a core-taking head;

[0006] The lifting assembly includes a mounting platform, a second cylinder is installed at the lower end of the mounting platform, the output end of the second cylinder is connected to a moving block, one side of the moving block is connected to a rotating block, the upper end of the rotating block is installed with a material moving plate, one side of the moving block is installed with a second motor, two second grating scales are installed at the upper end of the mounting platform, two gears are rotatably connected between the two second grating scales, a toothed belt is meshed between the two gears, one side of one of the gears is connected to a third motor, the surface of the toothed belt is connected to a lifting plate, the surface of the lifting plate is installed with a connecting plate, the end of the connecting plate is installed with a telescopic shaft, and the lower end of the telescopic shaft is installed with a clamping block.

[0007] As a preferred solution of the present invention, two slide grooves are provided at the upper end of the first grating ruler, and two slide bars are fixedly connected to the lower end of the guide block, and the two slide bars are slidably connected inside the slide grooves.

[0008] As a preferred solution of the present invention, a guide groove is provided on one side of the side rod, a guide plate is fixedly connected to the surface of the lifting cylinder, and the guide plate is slidably connected to the inside of the guide groove.

[0009] As a preferred solution of the present invention, a limiting hole is provided at one end of the rotating block, the output end of the second motor is connected to a limiting shaft, and the limiting shaft is inserted into the limiting hole.

[0010] As a preferred solution of the present invention, the opposite sides of the two second grating rulers are provided with lifting grooves, and both sides of the interior of the lifting plate are fixedly connected with lifting bars, and the lifting bars are slidably connected to the interior of the lifting grooves.

[0011] As a preferred solution of the present invention, both sides of the gear are fixedly connected with a rotating shaft, the surface of the second grating ruler is provided with two rotating holes, and the rotating shaft is rotatably connected inside the rotating holes.

[0012] As a preferred solution of the present invention, the height of the material moving plate matches that of the mounting platform.

[0013] Compared with the prior art, the beneficial effects of the present invention are:

[0014] The first gear is rotated by the second gear, and the second gear and the telescopic shaft are controlled to move upward and downward, thereby the material can be clamped and placed on the upper end of the material transfer plate by cooperating with the guide rod and the lifting cylinder.

[0015] 2. When disassembling the core-taking device, first remove the slide bar from the slide groove to disassemble the guide block and the first cylinder, then pull the screw rod and the guide rod out of the ear block to disassemble the lifting cylinder, and finally pull the limit shaft out of the limit hole to disassemble the second motor and the rotating block, and finally remove the two second grating scales to disassemble the gear and the toothed belt and the lifting plate on its surface. Compared with the core-taking device in the prior art, the utility model can facilitate the disassembly and assembly of the core-taking device through the cooperation of the above-mentioned structures, thereby improving the convenience of disassembly and assembly of each component. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 This is a schematic diagram of the overall structure of the utility model;

[0017] Figure 2 This is a schematic diagram of the structure of the first grating ruler of the utility model;

[0018] Figure 3 This is a disassembled diagram of the core assembly structure of the utility model;

[0019] Figure 4 This is a disassembled diagram of the lifting component structure of the utility model;

[0020] Figure 5 This is a disassembled diagram of the lifting mechanism structure of the utility model;

[0021] Figure 6 This is a disassembled diagram of the clamping assembly structure of the present invention.

[0022] In the figure: 100, core extraction assembly; 101, first grating ruler; 102, first cylinder; 103, guide block; 104, connecting plate; 105, side rod; 106, lifting cylinder; 107, ear block; 108, guide rod; 109, lead screw; 110, first bevel gear; 120, first motor; 130, second bevel gear; 140, core extraction head; 111, slide; 112, slide bar; 121, guide groove; 122, guide plate; 200, lifting assembly; 20 1. Mounting table; 202. Second cylinder; 203. Moving block; 204. Rotating block; 205. Material transfer plate; 206. Second motor; 207. Second grating scale; 208. Gear; 209. Toothed belt; 210. Third motor; 220. Lifting plate; 230. Connecting plate; 240. Telescopic shaft; 250. Clamping block; 211. Limiting hole; 212. Limiting shaft; 221. Lifting slot; 222. Lifting bar; 231. Rotating shaft; 232. Rotating hole. DETAILED DESCRIPTION

[0023] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0024] See also Figure 1-6 , the utility model provides a core processing device, including a core taking component 100 and a lifting component 200;

[0025] Among them, the core-taking assembly 100 includes a first grating ruler 101, a first cylinder 102 is installed on the upper end of the first grating ruler 101, and the output end of the first cylinder 102 is connected to a guide block 103, and the upper end of the guide block 103 is installed with a connecting disk 104, and a side rod 105 is installed on one side of the connecting disk 104. A lifting cylinder 106 is slidably connected to one side of the side rod 105, and two ear blocks 107 are fixedly connected to the surface of the lifting cylinder 106. The upper and lower ends of the side rod 105 are respectively installed with a guide rod 108 and a screw rod 109, which are both installed inside the ear block 107. The output end of the screw rod 109 is connected to a first bevel gear 110, and the lower end of the side rod 105 is installed with a first motor 120. The output end of the first motor 120 is connected to a second bevel gear 130. The first bevel gear 110 and the second bevel gear 130 are meshed and connected, and the lower end of the lifting cylinder 106 is connected to a core-taking head 140;

[0026] The lifting assembly 200 includes a mounting platform 201, a second cylinder 202 is installed at the lower end of the mounting platform 201, the output end of the second cylinder 202 is connected to a moving block 203, one side of the moving block 203 is connected to a rotating block 204, the upper end of the rotating block 204 is installed with a material moving plate 205, one side of the moving block 203 is installed with a second motor 206, two second grating scales 207 are installed at the upper end of the mounting platform 201, two gears 208 are rotatably connected between the two second grating scales 207, a toothed belt 209 is meshed between the two gears 208, one side of one gear 208 is connected to a third motor 210, the surface of the toothed belt 209 is connected to a lifting plate 220, the surface of the lifting plate 220 is installed with a connecting plate 230, the end of the connecting plate 230 is installed with a telescopic shaft 240, and the lower end of the telescopic shaft 240 is installed with a clamping block 250.

[0027] In a specific embodiment, the core extraction component 100 is provided in conjunction with the lifting component 200, which not only facilitates the automatic loading and unloading operations of the material, thereby improving the production efficiency and quality of the core extraction device, but also facilitates the disassembly and assembly of the various components of the core extraction device, thereby improving the convenience of disassembly and assembly of the various components. When in use, first start the first cylinder 102 to extend and retract, so as to control the guide block 103 and the connecting plate 104 to carry the side rod 105 to reciprocate along the first grating scale 101, and then the position of the lifting cylinder 106 can be adjusted laterally, and then the first motor 120 is started to rotate with the second bevel gear 130, so that the second bevel gear 130 and the screw rod 109 can be rotated, and the guide rod 108 can be used to control the ear block 107 and the lifting cylinder 106 to carry the core The picking head 140 is raised and lowered, so that the material can be sucked and moved to the upper end of the material moving plate 205, and then the second motor 206 is started to rotate the rotating block 204 and its upper end material moving plate 205 clockwise, and at the same time, the second cylinder 202 is started to push the moving block 203 to adjust the position of the material moving plate 205 and the material inside it, and finally the third motor 210 is started to rotate one of the gears 208, and cooperate with the other gear 208 and the toothed belt 209 to control the lifting plate 220 to carry the connecting plate 230 and the telescopic shaft 240 to rise and fall, and under the action of the clamping block 250, the material can be clamped, thereby improving the production efficiency and quality of the material. At the same time, the presence of the first grating scale 101 and the second grating scale 207 can achieve the effect of precise positioning during the core picking operation.

[0028] See also Figure 2 and Figure 3 The upper end of the first grating ruler 101 is provided with two slide grooves 111 , and the lower end of the guide block 103 is fixedly connected to two slide bars 112 , and the two slide bars 112 are slidably connected inside the slide grooves 111 .

[0029] In a specific embodiment, the sliding bar 112 is slidably connected inside the sliding groove 111 to play a limiting effect, thereby improving the stability of the guide block 103 when moving.

[0030] See also Figure 2 and Figure 3 A guide groove 121 is provided on one side of the side rod 105 , and a guide plate 122 is fixedly connected to the surface of the lifting cylinder 106 , and the guide plate 122 is slidably connected to the inside of the guide groove 121 .

[0031] In a specific embodiment, the guide plate 122 moves along the guide groove 121 , thereby improving the stability and smoothness of the movement of the lifting cylinder 106 .

[0032] See also Figure 4-Figure 6A limiting hole 211 is defined at one end of the rotating block 204 , and an output end of the second motor 206 is connected to a limiting shaft 212 , which is inserted into the limiting hole 211 .

[0033] In a specific embodiment, the limiting shaft 212 is inserted into the limiting hole 211. When the second motor 206 drives the limiting shaft 212 to rotate, the second motor 206 drives the rotating block 204 to rotate to perform a material picking and placing operation.

[0034] See also Figure 4-Figure 6 The opposite sides of the two second grating rulers 207 are provided with lifting grooves 221 , and both sides of the interior of the lifting plate 220 are fixedly connected with lifting bars 222 , and the lifting bars 222 are slidably connected to the interior of the lifting grooves 221 .

[0035] In a specific embodiment, the lifting bar 222 moves along the lifting slot 221 to limit the lifting plate 220 , thereby preventing the lifting plate 220 from falling off during the lifting process.

[0036] See also Figure 4-Figure 6 The two sides of the gear 208 are fixedly connected with a rotating shaft 231. The surface of the second grating scale 207 is provided with two rotating holes 232. The rotating shaft 231 is rotatably connected inside the rotating hole 232.

[0037] In a specific embodiment, the rotating shaft 231 is rotatably connected to the rotating hole 232 and can limit the gear 208 through the second grating scale 207, thereby improving the rotation smoothness of the gear 208.

[0038] See also Figure 4-Figure 6 , the height of the material moving plate 205 matches that of the mounting platform 201.

[0039] In a specific embodiment, the material transfer plate 205 and the mounting platform 201 are matched to accurately receive the materials, ensuring the convenience of taking and placing the materials.

[0040] Working principle: When in use, first start the extension and retraction of the first cylinder 102 to control the guide block 103 and the connecting plate 104 to carry the side rod 105 to reciprocate along the first grating ruler 101, so that the position of the lifting cylinder 106 can be adjusted laterally, and then start the first motor 120 to rotate the second bevel gear 130, so that the second bevel gear 130 and the screw rod 109 can be rotated, and the guide rod 108 can be used to control the ear block 107 and the lifting cylinder 106 to carry the core removal head 140 to rise and fall, so that the material can be sucked and moved to be placed on the material transfer plate. 205, and at the same time start the second motor 206 to rotate the rotating block 204 and the upper end of the material moving plate 205 clockwise, then start the second cylinder 202 to push the moving block 203 to adjust the position of the material moving plate 205 and the material inside it, and then start the third motor 210 to rotate one of the gears 208 to cooperate with another gear 208 to cooperate with the toothed belt 209 to control the lifting plate 220 to carry the connecting plate 230 and the telescopic shaft 240 to rise and fall, and under the action of the clamping block 250, the material can be clamped, thereby improving the production efficiency and quality of the material.

[0041] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that includes a list of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus.

[0042] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A coring processing device, characterized in that: include: A core extraction assembly (100) includes a first grating ruler (101), a first cylinder (102) is installed on the upper end of the first grating ruler (101), an output end of the first cylinder (102) is connected to a guide block (103), a connecting disk (104) is installed on the upper end of the guide block (103), a side rod (105) is installed on one side of the connecting disk (104), a lifting cylinder (106) is slidably connected to one side of the side rod (105), two ear blocks (107) are fixedly connected to the surface of the lifting cylinder (106), and the side rod ( A guide rod (108) and a screw rod (109) are respectively installed at the upper and lower ends of the side rod (105), and the guide rod (108) and the screw rod (109) are both installed inside the ear block (107). The output end of the screw rod (109) is connected to a first bevel gear (110). A first motor (120) is installed at the lower end of the side rod (105), and the output end of the first motor (120) is connected to a second bevel gear (130). The first bevel gear (110) and the third bevel gear (130) are meshed and connected. The lower end of the lifting cylinder (106) is connected to a core removal head (140); A lifting assembly (200) comprising a mounting platform (201), a second cylinder (202) being mounted on the lower end of the mounting platform (201), an output end of the second cylinder (202) being connected to a moving block (203), a rotating block (204) being connected to one side of the moving block (203), a material moving plate (205) being mounted on the upper end of the rotating block (204), a second motor (206) being mounted on one side of the moving block (203), and two second grating rulers (206) being mounted on the upper end of the mounting platform (201). 7), two gears (208) are rotatably connected between the two second grating scales (207), a toothed belt (209) is meshed and connected between the two gears (208), one side of one of the gears (208) is connected to a third motor (210), the surface of the toothed belt (209) is connected to a lifting plate (220), the surface of the lifting plate (220) is installed with a connecting plate (230), the end of the connecting plate (230) is installed with a telescopic shaft (240), and the lower end of the telescopic shaft (240) is installed with a clamping block (250).

2. The coring processing device according to claim 1, characterized in that: Two slide grooves (111) are provided at the upper end of the first grating ruler (101), and two slide bars (112) are fixedly connected to the lower end of the guide block (103), and the two slide bars (112) are slidably connected inside the slide grooves (111).

3. The coring device according to claim 1, characterized in that: A guide groove (121) is provided on one side of the side rod (105), and a guide plate (122) is fixedly connected to the surface of the lifting cylinder (106), and the guide plate (122) is slidably connected to the inside of the guide groove (121).

4. The coring device according to claim 1, characterized in that: A limiting hole (211) is provided at one end of the rotating block (204), and an output end of the second motor (206) is connected to a limiting shaft (212), which is inserted into the limiting hole (211).

5. The coring processing device according to claim 1, characterized in that: The opposite sides of the two second grating rulers (207) are both provided with lifting grooves (221), and both sides of the interior of the lifting plate (220) are fixedly connected with lifting bars (222), and the lifting bars (222) are slidably connected to the interior of the lifting grooves (221).

6. The coring processing device according to claim 1, characterized in that: Both sides of the gear (208) are fixedly connected with a rotating shaft (231), and the surface of the second grating ruler (207) is provided with two rotating holes (232), and the rotating shaft (231) is rotatably connected inside the rotating holes (232).

7. The coring processing device according to claim 1, characterized in that: The height of the material shifting plate (205) matches that of the mounting platform (201).