Raw material cutting device for stainless steel kitchen ware

By designing a cutting device for the finished product and waste material outlets in the production of stainless steel kitchenware, and using a laser nozzle and moving mechanism, the problem of poor operation continuity is solved, achieving efficient and precise cutting of raw materials and waste materials, thereby improving production efficiency and resource utilization.

CN223734134UActive Publication Date: 2025-12-30JIANGMEN GUANYING METAL PRODUCTS CO LTD

Patent Information

Application Number
CN202520227199.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-13
Publication Date
2025-12-30
Estimated Expiration
2035-02-13

AI Technical Summary

Technical Problem

In the current production of stainless steel kitchenware, the raw material cutting device suffers from poor operational continuity, resulting in low work efficiency. Furthermore, the laser cutting head cannot be moved and requires manual control, which affects accuracy and efficiency.

Method used

Design a cutting device that includes finished product and waste material outlets, set up raw material and waste material cutting mechanisms, adopt a laser nozzle, a transverse and radial movement mechanism, combined with guide rollers and a limiting mechanism, to achieve flexible cutting and continuous processing of raw materials and waste materials.

Benefits of technology

It improves the continuity of equipment operation, enhances processing efficiency, ensures cutting accuracy and convenient waste collection, optimizes resource management, and reduces production costs.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223734134U_ABST
    Figure CN223734134U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of kitchenware production, in particular to a raw material cutting device for stainless steel kitchenware, which comprises a machine body and a conveying table for conveying raw materials, one end of the machine body close to the conveying table is provided with a feed port, and the top in the machine body is provided with a raw material cutting mechanism; an upper guide roller and a lower guide roller are arranged on the two side walls in the machine body, and when raw materials enter the machine body, the raw materials are located between the upper guide roller and the lower guide roller; a guiding slope is arranged at the bottom in the machine body, and a finished product discharging opening is formed in the side wall of the machine body and communicates with the guiding slope. A waste discharge port is formed in one end, far away from the feed port, of the machine body; raw materials are cut by the raw material cutting mechanism and then are guided to the waste discharge port by the upper guide roller and the lower guide roller; and a waste material cutting mechanism for cutting waste materials is arranged at the waste material outlet. According to the method, pause and cumbersome operation of the machining process are reduced, and the overall machining efficiency is improved.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to kitchenware production technical field, concretely relates to a raw material cutting device for stainless steel kitchenware. BACKGROUND

[0002] In the production of stainless steel kitchenware, raw material cutting is an important process. The common raw material cutting device has the problems of poor fixing effect on the raw material, easy deviation during cutting, affecting the precision, and the laser cutting head cannot move, which needs manual control of the original element, reducing the work efficiency.

[0003] Chinese patent authorized announcement number CN221870690U discloses a raw material cutting device for stainless steel kitchenware production, when the device works, the second motor makes the second rotating shaft circular motion, through the cooperation of the first gear and the first rack, the first guide rail and the first sliding block, drives the fixed bending rod and the laser nozzle to move horizontally; the third motor makes the third rotating shaft rotate, with the help of the second gear and the second rack, the second guide rail and the second sliding block, also drives the laser nozzle to move horizontally. The fourth motor drives the fourth rotating shaft to rotate, through the engagement of the large and small gears and the large and small curved racks, makes the first and second annular rings rotate, drives the clamp body to clamp the raw material. But the device in the patent document has poor operation continuity, and needs to be re-fed after each cutting, which leads to low work efficiency of the device.

[0004] Therefore, it is necessary to improve the feeding and discharging mode and improve the work efficiency. UTILITY MODEL CONTENTS

[0005] In view of the above problems, a raw material cutting device for stainless steel kitchenware is provided, which guides the finished product and waste through the finished product discharge port and the waste discharge port respectively, and sets up a raw material cutting mechanism and a waste cutting mechanism to cut the raw material and waste respectively, which ensures the operation continuity of the device and facilitates the collection of waste, solving the problem of low work efficiency of the device due to poor operation continuity.

[0006] To solve the problems in the prior art, the utility model provides a raw material cutting device for stainless steel kitchenware, which comprises a machine body and a conveying table for conveying raw materials, the machine body is provided with an inlet at one end close to the conveying table, and a raw material cutting mechanism is arranged at the top of the machine body; upper and lower guide rollers are arranged on the two side walls of the machine body, and the raw material is located between the upper and lower guide rollers when it enters the machine body; a guide slope is arranged at the bottom of the machine body, and a finished product discharge port is formed in the side wall of the machine body and communicates with the guide slope; a waste discharge port is formed at the end of the machine body away from the inlet, and the raw material is guided to the waste discharge port by the upper and lower guide rollers after being cut by the raw material cutting mechanism; a waste cutting mechanism is arranged at the waste discharge port to cut the waste.

[0007] Preferably, the raw material cutting mechanism comprises a laser nozzle, a lateral movement mechanism and a radial movement mechanism; the lateral movement mechanism comprises a lateral movement block, a first motor and a first threaded rod; the first motor is arranged on the outer wall of the machine body near the conveying table, the output shaft of the motor penetrates through the outer wall of the machine body and is connected with the first threaded rod; a first threaded hole is formed on the lateral movement block, and the first threaded rod is threadedly connected with the lateral movement block through the first threaded hole; the radial movement mechanism comprises a second motor and a second threaded rod; a movement groove is arranged on the lateral movement block, a guide block is formed on the inner side wall of the movement groove, a guide groove is formed on the laser nozzle, the guide block is inserted into the guide groove, and the laser nozzle moves along the movement groove; a second threaded hole is formed on the laser nozzle, the second motor is arranged on one end of the lateral movement block, the output shaft of the second motor penetrates through one end of the lateral movement block and is connected with the second threaded rod, and the laser nozzle is threadedly connected with the lateral movement block through the second threaded hole.

[0008] Preferably, a first limiting mechanism is arranged between the lateral movement block and the machine body; the first limiting mechanism comprises a first limiting block and a first limiting groove; through grooves are formed on the two side walls of the machine body in contact with the lateral movement block, and the first limiting groove is arranged in the through groove; the first limiting block is arranged on the two ends of the lateral movement block, the first limiting block is inserted into the first limiting groove, and the lateral movement block moves along the first limiting groove.

[0009] Preferably, the waste cutting mechanism comprises an upper cutter head, a lower cutter head and a driving mechanism; the driving mechanism comprises a moving rod, a movement groove, a third motor and a rotating disc; the moving rod is arranged on the two ends of the upper cutter head and the lower cutter head; the movement groove is formed on the two side walls of the waste discharging port of the machine body; the moving rod penetrates through the movement groove, and the upper cutter head and the lower cutter head move along the movement groove; a guide sliding groove is formed on the rotating disc, the guide sliding groove comprises a separation end and an abutting end; the part of the moving rod that penetrates out of the movement groove is inserted into the guide sliding groove, and the output shaft of the third motor is connected with the rotating disc; when the rotating disc is driven by the third motor to rotate to the position where the moving rods of the upper cutter head and the lower cutter head are located at the abutting end, the upper cutter head and the lower cutter head abut against each other to cut the waste; when the rotating disc is driven by the third motor to rotate to the position where the moving rods of the upper cutter head and the lower cutter head are located at the separation end, the upper cutter head and the lower cutter head are separated.

[0010] Preferably, a second limiting mechanism is arranged between the upper cutter head and the lower cutter head and the machine body; the second limiting mechanism comprises a second limiting block and a second limiting groove; the second limiting block is arranged on the two ends of the upper cutter head and the lower cutter head; the second limiting groove is formed on the two inner side walls of the waste discharging port of the machine body; the second limiting block is inserted into the second limiting groove, and the upper cutter head and the lower cutter head move along the second limiting groove.

[0011] Preferably, a heat dissipation mechanism is arranged on the top of the machine body; the heat dissipation mechanism comprises a fourth motor and a fan blade; the fourth motor is arranged on the top end of the machine body, and the output shaft of the fourth motor penetrates into the interior of the machine body from the top of the machine body and is connected with the fan blade.

[0012] Preferably, the finished product outlet is provided with a finished product collecting frame.

[0013] Preferably, the waste material outlet is provided with a waste material collecting frame.

[0014] The beneficial effects of the present utility model compared with the prior art are:

[0015] 1. The present utility model fully considers the length of the raw material, does not need to pre-cut the long raw material, the upper guide roller and the lower guide roller in the machine body can effectively guide the raw material, the raw material cutting mechanism can flexibly cut the raw material, greatly improves the operation continuity of the device, reduces the stop and tedious operation of the processing flow, and improves the overall processing efficiency.

[0016] 2. The raw material cutting mechanism of the present utility model adopts a laser nozzle, and is matched with a transverse moving mechanism and a radial moving mechanism, through the cooperative operation of the first motor, the first threaded rod, the second motor and the second threaded rod, the position of the laser nozzle is accurately adjusted, the raw material is cut at multiple angles and high precision, the cutting precision is much higher than that of the traditional cutting method, and the product quality is effectively guaranteed.

[0017] 3. The present utility model is provided with a waste material cutting mechanism, a third motor is used for driving the rotating disc to rotate, the upper cutter head and the lower cutter head are driven to make the abutting or separating action according to the change of the rotating disc guide sliding groove, the second limiting mechanism is matched to guarantee the moving accuracy, the waste material can be effectively cut and treated, which is more convenient for collection, transportation and subsequent recycling, optimizes the resource management, and reduces the production cost. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 is a perspective view of a raw material cutting device for stainless steel kitchen utensils.

[0019] Figure 2 is a schematic view of the internal structure of a raw material cutting device for stainless steel kitchen utensils.

[0020] Figure 3 is a perspective view of a raw material cutting mechanism of a raw material cutting device for stainless steel kitchen utensils.

[0021] Figure 4 is a structure exploded view of a raw material cutting mechanism of a raw material cutting device for stainless steel kitchen utensils.

[0022] Figure 5 is a perspective view of a waste material cutting mechanism of a raw material cutting device for stainless steel kitchen utensils.

[0023] Figure 6It is a structure exploded view of a waste cutting mechanism of the raw material cutting device for stainless steel kitchen utensils.

[0024] Figure 7 It is a perspective view of a rotating disc of the raw material cutting device for stainless steel kitchen utensils.

[0025] Figure 8 It is a perspective view of a heat dissipation mechanism of the raw material cutting device for stainless steel kitchen utensils.

[0026] The figure mark is: 1, machine body;11, feed inlet;12, upper guide roller;13, lower guide roller;14, guide slope;15, finished product discharge port;16, waste discharge port;2, conveying table;3, raw material cutting mechanism;31, laser nozzle;32, transverse moving mechanism;321, transverse moving block;322, first motor;323, first threaded rod;33, radial moving mechanism;331, second motor;332, second threaded rod;34, first limiting mechanism;341, first limiting block;342, first limiting groove;4, waste cutting mechanism;41, upper cutter head;42, lower cutter head;43, driving mechanism;431, moving rod;432, moving groove;433, third motor;434, rotating disc;4341, guide chute;4342, separation end;4343, abutting end;44, second limiting mechanism;441, second limiting block;442, second limiting groove;5, heat dissipation mechanism;51, fourth motor;52, fan blade;6, finished product collecting frame;7, waste collecting frame. DETAILED DESCRIPTION

[0027] In order to further understand the features, technical means and specific purposes and functions reached by the utility model, the utility model is described in further detail below in combination with the drawings and specific embodiments.

[0028] Referring to Figures 1-8 The utility model relates to a raw material cutting device for stainless steel kitchen utensils, which comprises a machine body 1 and a conveying table 2 for conveying raw materials, the machine body 1 is provided with a feed inlet 11 at one end close to the conveying table 2, and a raw material cutting mechanism 3 is arranged at the top of the machine body 1; upper guide rollers 12 and lower guide rollers 13 are arranged on the two side walls of the machine body 1, and raw materials are located between the upper guide rollers 12 and the lower guide rollers 13 when entering the machine body 1; a guide slope 14 is arranged at the bottom of the machine body 1, a finished product discharge port 15 is formed in the side wall of the machine body 1, and the guide slope 14 is in communication with the finished product discharge port 15; a waste discharge port 16 is formed at the end of the machine body 1 away from the feed inlet 11, and the raw materials are guided to the waste discharge port 16 by the upper guide rollers 12 and the lower guide rollers 13 after being cut by the raw material cutting mechanism 3; a waste cutting mechanism 4 for cutting waste is arranged at the waste discharge port 16.

[0029] In the prior art, the cutting of raw materials does not take into account the case of long raw materials, so the long raw materials need to be pre-cut during processing, which will result in poor continuity of the device. In view of this problem, the raw material cutting device for stainless steel kitchen utensils works, the conveying table 2 conveys the raw materials to the feeding port 11 of the machine body 1 into the machine body 1, the raw materials entering the machine body 1 are between the upper guide roller 12 and the lower guide roller 13, the raw material cutting mechanism 3 at the top of the machine body 1 cuts the raw materials, the finished products after cutting will slide along the guide slope 14 at the bottom of the machine body 1 to the finished product discharge port 15, and the waste materials will be guided to the waste material discharge port 16 by the upper guide roller 12 and the lower guide roller 13. The waste material cutting mechanism 4 arranged outside the waste material discharge port 16 will further cut the waste materials for easy collection.

[0030] Referring to Figures 1-8 As shown: the raw material cutting mechanism 3 includes a laser nozzle 31, a transverse moving mechanism 32 and a radial moving mechanism 33; the transverse moving mechanism 32 includes a transverse moving block 321, a first motor 322 and a first threaded rod 323; the first motor 322 is arranged on the outer wall of the machine body 1 close to the conveying table 2, the output shaft of the motor penetrates through the outer wall of the machine body 1 and is connected with the first threaded rod 323; the first threaded hole is opened on the transverse moving block 321, and the first threaded rod 323 is threadedly connected with the transverse moving block 321 through the first threaded hole; the radial moving mechanism 33 includes a second motor 331 and a second threaded rod 332; the moving groove 432 is arranged on the transverse moving block 321, the guide block is opened on the inner side wall of the moving groove 432, the guide groove is opened on the laser nozzle 31, the guide block is inserted into the guide groove, and the laser nozzle 31 moves along the moving groove 432; the second threaded hole is opened on the laser nozzle 31, the second motor 331 is arranged on one end of the transverse moving block 321, the output shaft of the second motor 331 penetrates through one end of the transverse moving block 321 and is connected with the second threaded rod 332, and the laser nozzle 31 is threadedly connected with the transverse moving block 321 through the second threaded hole.

[0031] When working, the first motor 322 is started to drive the first threaded rod 323 to rotate, because the first threaded hole is opened on the transverse moving block 321 and is threadedly connected with the first threaded rod 323, the rotation of the first threaded rod 323 will make the transverse moving block 321 move transversely along the first threaded rod 323; at the same time, the second motor 331 is started to drive the second threaded rod 332 to rotate, the laser nozzle 31 can move radially along the moving groove 432 because the second threaded hole is opened and is threadedly connected with the second threaded rod 332, and the laser nozzle 31 is matched with the guide block on the inner side wall of the moving groove 432 of the transverse moving block 321 through the guide groove opened thereon, the laser nozzle 31 can move radially along the moving groove 432 when the second threaded rod 332 rotates, the position of the laser nozzle 31 is adjusted through the cooperation of the transverse moving mechanism 32 and the radial moving mechanism 33, so that the laser nozzle 31 cuts the raw materials entering the machine body 1.

[0032] Referring to Figures 1-4 As shown in the figure: the first limiting mechanism 34 is arranged between the transverse moving block 321 and the body 1; the first limiting mechanism 34 comprises a first limiting block 341 and a first limiting groove 342; the two side walls in the body 1 that are in contact with the transverse moving block 321 are provided with through grooves, and the first limiting groove 342 is arranged in the through groove; the first limiting block 341 is arranged at the two ends of the transverse moving block 321, the first limiting block 341 is inserted into the first limiting groove 342, and the transverse moving block 321 moves along the first limiting groove 342.

[0033] During the working process of the device, when the transverse moving block 321 moves transversely under the action of the first motor 322 driving the first threaded rod 323 to rotate, the transverse moving block 321 moves along the first limiting groove 342 arranged in the through groove of the two side walls in the body 1 under the limitation of the first limiting block 341, the first limiting groove 342 plays a limiting and guiding role on the first limiting block 341, so that the transverse moving block 321 can move smoothly along the predetermined direction when moving, ensuring the accuracy and stability of its transverse movement, and assisting the transverse moving mechanism 32 to work better to realize the adjustment of the transverse position of the laser nozzle 31.

[0034] Referring to Figures 5-8 As shown in the figure: the waste cutting mechanism 4 comprises an upper cutter head 41, a lower cutter head 42 and a driving mechanism 43; the driving mechanism 43 comprises a moving rod 431, a moving groove 432, a third motor 433 and a rotating disc 434; the moving rod 431 is arranged at the two ends of the upper cutter head 41 and the lower cutter head 42; the moving groove 432 is arranged at the two side walls of the waste discharge port 16 of the body 1; the moving rod 431 is inserted into the moving groove 432, and the upper cutter head 41 and the lower cutter head 42 move along the moving groove 432; the rotating disc 434 is provided with a guide sliding groove 4341, the guide sliding groove 4341 comprises a separation end 4342 and an abutting end 4343; the part of the moving rod 431 that penetrates out of the moving groove 432 is inserted into the guide sliding groove 4341, and the output shaft of the third motor 433 is connected with the rotating disc 434; when the third motor 433 drives the rotating disc 434 to rotate to the position where the moving rod 431 of the upper cutter head 41 and the lower cutter head 42 is located at the abutting end 4343, the upper cutter head 41 and the lower cutter head 42 abut against each other to cut the waste; when the third motor 433 drives the rotating disc 434 to rotate to the position where the moving rod 431 of the upper cutter head 41 and the lower cutter head 42 is located at the separation end 4342, the upper cutter head 41 and the lower cutter head 42 are separated.

[0035] When working, the third motor 433 starts to drive the rotating disc 434 to rotate. Since the moving rod 431 is inserted into the guide sliding groove 4341 of the rotating disc 434, when the rotating disc 434 rotates, the moving rod 431 will drive the upper cutter head 41 and the lower cutter head 42 to move towards each other along the moving groove 432 and abut tightly when the moving rod 431 is located at the abutting end 4343 of the guide sliding groove 4341, at this time, the upper cutter head 41 and the lower cutter head 42 can cut the waste material coming out of the waste material discharge port 16; when the rotating disc 434 continues to rotate, the moving rod 431 is located at the separation end 4342 of the guide sliding groove 4341, the upper cutter head 41 and the lower cutter head 42 will move away along the moving groove 432 and separate, so as to stop cutting the waste material. The abutting and separating states of the upper cutter head 41 and the lower cutter head 42 are controlled by the continuous rotation of the rotating disc 434, so as to realize the timely cutting treatment of the waste material.

[0036] Referring to Figures 5-8 As shown in the figure: the upper cutter head 41 and the lower cutter head 42 are provided with a second limiting mechanism 44 between the machine body 1; the second limiting mechanism 44 comprises a second limiting block 441 and a second limiting groove 442; the second limiting block 441 is arranged at both ends of the upper cutter head 41 and the lower cutter head 42; the second limiting groove 442 is opened in the two inner side walls of the waste material discharge port 16 of the machine body 1; the second limiting block 441 is inserted into the second limiting groove 442, and the upper cutter head 41 and the lower cutter head 42 move along the second limiting groove 442.

[0037] During the operation of the device, when the driving mechanism 43 drives the upper cutter head 41 and the lower cutter head 42 to move, the second limiting block 441 arranged at both ends of the upper cutter head 41 and the lower cutter head 42 will move along the second limiting groove 442 opened in the two inner side walls of the waste material discharge port 16 of the machine body 1. The second limiting groove 442 limits and guides the second limiting block 441, so that the upper cutter head 41 and the lower cutter head 42 can stably move in the predetermined direction when moving, ensuring the accuracy of the movement, assisting the driving mechanism 43 to better control the abutting and separating actions of the upper cutter head 41 and the lower cutter head 42, and ensuring that the cutting operation of the waste material can be smoothly carried out.

[0038] Referring to Figure 8 As shown in the figure: the machine body 1 is provided with a heat dissipation mechanism 5 at the top; the heat dissipation mechanism 5 comprises a fourth motor 51 and a fan blade 52; the fourth motor 51 is arranged at the top end of the machine body 1, and the output shaft of the fourth motor 51 penetrates into the inside of the machine body 1 from the top of the machine body 1 and is connected with the fan blade 52.

[0039] When working, the fourth motor 51 starts to work, and the output shaft thereof rotates to drive the fan blade 52 connected therewith to rotate. The rotation of the fan blade 52 causes the air in the machine body 1 to flow, and the heat generated by the operation of the components in the machine body 1 is taken out of the machine body 1 with the air flow, thereby playing a role of heat dissipation and cooling for the inside of the machine body 1.

[0040] Referring toFigure 1 As shown: the finished product discharge port 15 is provided with a finished product collecting frame 6.

[0041] The finished product collecting frame 6 plays a role of collecting and storing finished products, facilitating subsequent unified processing or transfer operation of the finished products.

[0042] Referring to Figure 1 As shown: the waste discharge port 16 is provided with a waste collecting frame 7.

[0043] The waste collecting frame 7 is used for collecting and storing waste, facilitating subsequent centralized processing or recycling operation of the waste.

[0044] The conveying table 2 conveys the raw material to the machine body 1 feeding port 11 into the machine body 1, the raw material is between the upper guide roller 12 and the lower guide roller 13, the first motor 322 in the raw material cutting mechanism 3 at the top of the machine body 1 is started to drive the first threaded rod 323 to rotate to make the transverse moving block 321 move transversely along the first threaded rod 323, and the second motor 331 is started to drive the second threaded rod 332 to rotate to make the laser nozzle 31 move radially along the moving groove 432, the position of the laser nozzle 31 is adjusted by cooperation of the two to cut the raw material, the finished product after cutting is discharged from the finished product discharge port 15 to the finished product collecting frame 6 for subsequent processing and transfer, the waste is guided to the waste discharge port 16 by the upper guide roller 12 and the lower guide roller 13, the third motor 433 in the waste cutting mechanism 4 drives the rotating disc 434 to rotate, the moving rod 431 changes along with the rotating disc 434 guide sliding groove 4341 to drive the upper cutter head 41 and the lower cutter head 42 to make the abutting or separating action along the moving groove 432 to cut the waste in time, the upper cutter head 41 and the lower cutter head 42 move along the second limiting block 441 along the second limiting groove 442 to move to ensure the accuracy of movement, the transverse moving block 321 moves along the first limiting block 341 along the first limiting groove 342 to ensure the accuracy and stability of transverse movement, the fourth motor 51 at the top of the machine body 1 is started to drive the fan blade 52 to rotate to make the air flow in and out of the machine body 1 to take away the heat to achieve heat dissipation and cooling, and the waste is discharged from the waste discharge port 16 and falls into the waste collecting frame 7 for centralized processing or recycling.

[0045] The above embodiments only express one or several embodiments of the present application, and the description is more specific and detailed, but it cannot be understood as a limitation on the scope of the present application. It should be noted that for ordinary skilled persons in the art, without departing from the concept of the present application, a number of modifications and improvements can be made, which all belong to the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the appended claims.

Claims

1. A raw material cutting device for stainless steel kitchenware, comprising a machine body (1) and a conveying table (2) for conveying raw material, characterized in that, The machine body (1) is provided with an inlet (11) at one end close to the conveying table (2), and a raw material cutting mechanism (3) is arranged on the top of the machine body (1); The machine body (1) is provided with upper guide rollers (12) and lower guide rollers (13) on the two side walls, when the raw material enters the machine body (1), it is located between the upper guide rollers (12) and the lower guide rollers (13); The machine body (1) is provided with a guide slope (14) at the bottom, and the machine body (1) is provided with a finished product outlet (15) on the side wall, and the guide slope (14) is communicated with the finished product outlet (15); The machine body (1) is provided with a waste outlet (16) at the end away from the inlet (11), and the raw material is cut by the raw material cutting mechanism (3) and guided to the waste outlet (16) by the upper guide roller (12) and the lower guide roller (13); The waste cutting mechanism (4) is arranged at the waste outlet (16).

2. A raw material cutting device for stainless steel kitchen utensils according to claim 1, wherein The raw material cutting mechanism (3) comprises a laser nozzle (31), a transverse moving mechanism (32) and a radial moving mechanism (33); The transverse moving mechanism (32) comprises a transverse moving block (321), a first motor (322) and a first threaded rod (323); The first motor (322) is arranged on the outer wall of the machine body (1) close to the conveying table (2), and the output shaft of the motor penetrates through the outer wall of the machine body (1) and is connected with the first threaded rod (323); The transverse moving block (321) is provided with a first threaded hole, and the first threaded rod (323) is threadedly connected with the transverse moving block (321) through the first threaded hole; The radial moving mechanism (33) comprises a second motor (331) and a second threaded rod (332); The transverse moving block (321) is provided with a moving groove (432), the inner side wall of the moving groove (432) is provided with a guide block, the laser nozzle (31) is provided with a guide groove, the guide block is inserted into the guide groove, and the laser nozzle (31) moves along the moving groove (432); The laser nozzle (31) is provided with a second threaded hole, the second motor (331) is arranged at one end of the transverse moving block (321), the output shaft of the second motor (331) penetrates through one end of the transverse moving block (321) and is connected with the second threaded rod (332), and the laser nozzle (31) is threadedly connected with the transverse moving block (321) through the second threaded hole.

3. A raw material cutting device for stainless steel kitchen utensils according to claim 2, wherein A first limiting mechanism (34) is arranged between the transverse moving block (321) and the machine body (1); The first limiting mechanism (34) comprises a first limiting block (341) and a first limiting groove (342); The two side walls of the machine body (1) in contact with the transverse moving block (321) are provided with a through groove, and the first limiting groove (342) is arranged in the through groove; The first limiting block (341) is arranged at both ends of the transverse moving block (321), the first limiting block (341) is inserted into the first limiting groove (342), and the transverse moving block (321) moves along the first limiting groove (342).

4. The raw material cutting device for stainless steel kitchen utensils according to claim 1, wherein The waste cutting mechanism (4) comprises an upper cutter head (41), a lower cutter head (42) and a driving mechanism (43); The driving mechanism (43) comprises a moving rod (431), a moving groove (432), a third motor (433) and a rotating disc (434); The moving rod (431) is arranged at two ends of the upper cutter head (41) and the lower cutter head (42); The moving groove (432) is arranged at two side walls of the waste material discharge port (16) of the machine body (1); The moving rod (431) is arranged in the moving groove (432), and the upper cutter head (41) and the lower cutter head (42) move along the moving groove (432); The rotating disc (434) is provided with a guide sliding groove (4341), and the guide sliding groove (4341) comprises a separation end (4342) and an abutting end (4343); The moving rod (431) is arranged in the guide sliding groove (4341) and the third motor (433) is connected with the rotating disc (434); When the third motor (433) drives the rotating disc (434) to rotate to the abutting end (4343) of the moving rod (431) of the upper cutter head (41) and the lower cutter head (42), the upper cutter head (41) and the lower cutter head (42) abut against each other to cut the waste material; When the third motor (433) drives the rotating disc (434) to rotate to the separation end (4342) of the moving rod (431) of the upper cutter head (41) and the lower cutter head (42), the upper cutter head (41) and the lower cutter head (42) are separated.

5. A raw material cutting device for stainless steel kitchen utensils according to claim 4, wherein The second limiting mechanism (44) is arranged between the upper cutter head (41) and the lower cutter head (42) and the machine body (1); The second limiting mechanism (44) comprises a second limiting block (441) and a second limiting groove (442); The second limiting block (441) is arranged at two ends of the upper cutter head (41) and the lower cutter head (42); The second limiting groove (442) is arranged at two inner side walls of the waste material discharge port (16) of the machine body (1); The second limiting block (441) is arranged in the second limiting groove (442), and the upper cutter head (41) and the lower cutter head (42) move along the second limiting groove (442).

6. The raw material cutting device for stainless steel kitchen utensils according to claim 1, wherein The heat dissipation mechanism (5) is arranged at the top of the machine body (1); The heat dissipation mechanism (5) comprises a fourth motor (51) and a fan blade (52); The fourth motor (51) is arranged at the top end of the machine body (1), and the output shaft of the fourth motor (51) penetrates into the machine body (1) from the top of the machine body (1) and is connected with the fan blade (52).

7. The raw material cutting device for stainless steel kitchen utensils according to claim 1, wherein The finished product discharge port (15) is provided with a finished product collecting frame (6).

8. The raw material cutting device for stainless steel kitchen utensils according to claim 1, wherein The waste material discharge port (16) is provided with a waste material collecting frame (7).

Citation Information

Patent Citations

  • Raw material cutting device for stainless steel kitchen ware production

    CN221870690U

Cited By

  • Raw material cutting device for stainless steel kitchen ware production

    CN121798033A

  • Laser cutting device for stainless steel kitchen ware

    CN122099617A