Manufacturing and processing equipment for draw-bar box
By combining components such as lifting electric slide rails and alignment electric push rods, the problem of inaccurate cutting during the correction of the shape of the suitcase was solved, achieving precise cutting and waste disposal, and improving production efficiency and product quality.
Patent Information
- Application Number
- CN202423179785.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-23
- Publication Date
- 2026-01-09
- Estimated Expiration
- 2034-12-23
AI Technical Summary
When modifying the shape of existing suitcases, manual cutting is prone to incomplete cutting or damage due to inaccurate alignment or offset cutting position, which affects production efficiency and product quality. At the same time, existing equipment cannot adjust the cutting position according to the depth of the suitcase and the amount of waste.
The system employs a correction assembly that includes a lifting electric slide rail, an alignment electric push rod, and a cutting motor. Through the combination of a lifting alignment frame and a cutting blade, it achieves precise alignment of the box depth and cutting position. Combined with the vacuum adsorption and waste disposal of the pick-and-place assembly, it improves production efficiency and yield.
Ensure the accuracy of the cutting position, reduce manual intervention, avoid incomplete cutting or damage, improve production efficiency and yield, and achieve effective waste disposal, thereby improving overall production efficiency and quality.
Smart Images

Figure CN223777354U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the production technical field of draw-bar box, concretely to a kind of manufacturing and processing equipment for draw-bar box. BACKGROUND
[0002] Draw-bar box refers to luggage box with draw-bar and roller, and the box body material is generally ABS plastic, PC, aluminum alloy and other materials, and the lining material is generally polyester fiber or nylon and other materials, and the draw-bar is generally made of aluminum alloy or steel, and the wheel is mostly polyurethane or plastic, and the manufacturing process of draw-bar box generally includes design, material selection, processing, assembly and inspection and other main steps.
[0003] However, when the appearance of the draw-bar box is corrected, manual cutting is mostly used, which is prone to misalignment or cutting position deviation during cutting, resulting in incomplete cutting or cutting damage, greatly affecting the production efficiency and product quality, and the existing cutting equipment cannot adjust the cutting position according to the depth of the box body and the actual waste amount of the product, further affecting the processing efficiency. UTILITY MODEL CONTENT
[0004] The utility model provides a kind of manufacturing and processing equipment for draw-bar box, can effectively solve the above-mentioned background art in present when the appearance of the draw-bar box is corrected, mostly manual cutting is handled, which is prone to misalignment or cutting position deviation during cutting, resulting in incomplete cutting or cutting damage, greatly affecting the production efficiency and product quality, and the existing cutting equipment cannot adjust the cutting position according to the depth of the box body and the actual waste amount of the product, further affecting the processing efficiency problem.
[0005] To achieve the above object, the utility model provides the following technical scheme: a kind of manufacturing and processing equipment for draw-bar box, including operation positioning frame, the operation positioning frame side end is provided with correction component, and the correction component includes lifting electric sliding rail;
[0006] The lifting electric sliding rail is symmetrically installed in the inner side of the operation positioning frame, one end of the lifting electric sliding rail is connected with lifting alignment frame through sliding rail seat, the lifting alignment frame is installed with switching motor through motor seat in the inner side, and the output shaft top of the switching motor is connected with sleeve processing frame;
[0007] The alignment electric push rod is symmetrically installed on the top of the operation positioning frame, the alignment electric push rod is connected with alignment integration frame on the top, the alignment integration frame is symmetrically connected with processing electric sliding rail on the top, the processing electric sliding rail is installed with processing alignment frame through sliding rail seat on the top, and the processing alignment frame is installed with cutting motor through motor seat in the inner side.
[0008] The cutting knife is clamped to the bottom end of the cutting motor output shaft, the in-out electric slide rail is clamped to the bottom end of the operation positioning frame, and the in-out cutter is clamped to the bottom end of the in-out electric slide rail.
[0009] According to the technical scheme, the sleeve processing frame is placed in the inside of the operation positioning frame, and the input ends of the lifting electric slide rail, the switching motor, the alignment electric push rod, the processing electric slide rail, the cutting motor and the in-out electric slide rail are electrically connected with the output end of the external power supply.
[0010] According to the technical scheme, the processing alignment frame is slidably connected with the alignment integrated frame, and the in-out cutter is slidably sleeved at the bottom end of the operation positioning frame.
[0011] According to the technical scheme, the operation positioning frame is provided with a taking and placing assembly at the side end, and the taking and placing assembly comprises a taking and placing motor.
[0012] The taking and placing motor is symmetrically installed at the top end of the operation positioning frame, a taking and placing fixing frame is clamped to the top end of the output shaft of the taking and placing motor, a taking and placing electric push rod is clamped to the top end of the taking and placing fixing frame, and a taking and placing adsorption sleeve is clamped to the bottom end of the taking and placing electric push rod.
[0013] The operation positioning frame is symmetrically clamped with an external discharge electric push rod at the inside, an in-out alignment block is clamped to one end of the external discharge electric push rod, a matching motor is installed at one end in the inside of the in-out alignment block through a motor base, a matching taking and placing frame is clamped to the top end of the output shaft of the matching motor, the taking and placing adsorption sleeve and the matching taking and placing frame are both penetrated and connected with a taking and placing pipe frame, and the taking and placing adsorption sleeve and the matching taking and placing frame are both installed with a linkage air pump through the motor base.
[0014] According to the technical scheme, the taking and placing motor, the taking and placing electric push rod, the external discharge electric push rod, the in-out alignment block, the matching motor and the linkage air pump are electrically connected with the output end of the external power supply.
[0015] According to the technical scheme, one end of the linkage air pump is connected with one end of the taking and placing pipe frame through an adapter, and the in-out alignment block is sleeved with the matching taking and placing frame.
[0016] Compared with the prior art, the utility model has the advantages that the structure is scientific and reasonable, and the use is safe and convenient.
[0017] 1、Set up with the correction assembly, drive the lifting alignment frame to rise by the lifting electric slide rail, adjust the equipment height according to the depth of the box, drive the alignment integrated frame to rise and handle the electric slide rail to drive the processing alignment frame to move and adjust the position of the cutting knife, so that the cutting position and equipment height can be adjusted according to the amount of waste and the size of the box during cutting, ensure the accuracy of cutting alignment, reduce the situation that the production efficiency is affected by the inability to adjust the cutting, cooperate with the switching motor and the sleeve processing frame to drive the box to rotate, realize the rotation of the box, so that the participation of the staff can be reduced during cutting, and the situation that the cutting is not complete or damaged due to the deviation of the alignment can be avoided, effectively ensure the production efficiency and the product yield of the product.
[0018] 2、Set up with the taking and placing assembly, drive the taking and placing fixed frame to rotate by the taking and placing motor, drive the taking and placing suction sleeve to rise and adhere to the box by the taking and placing electric push rod, cooperate with the taking and placing pipe frame and the linkage air pump to carry out vacuum adsorption and take materials, realize stable feeding and discharging treatment, and through bidirectional linkage operation, realize synchronous production of feeding and discharging, effectively improve the production efficiency and speed, drive the feeding and discharging alignment block by the outer exhaust electric push rod, cooperate with the motor to drive the cooperation taking and placing frame, cooperate with the taking and placing pipe frame and the linkage air pump to carry out adsorption and taking, realize bidirectional taking of waste materials, ensure the effect of waste material cleaning, and avoid the influence of waste material residues on subsequent production. BRIEF DESCRIPTION OF DRAWINGS
[0019] The accompanying drawings are used to provide a further understanding of the present application, and constitute a part of the specification, together with the embodiments of the present application, to explain the present application, and do not constitute a limitation on the present application.
[0020] In the drawings:
[0021] Figure 1 is a schematic view of the three-dimensional structure of the present application;
[0022] Figure 2 is a schematic view of the structure of the correction assembly of the present application;
[0023] Figure 3 is a schematic view of the installation structure of the switching motor of the present application;
[0024] Figure 4 is a schematic view of the structure of the taking and placing assembly of the present application;
[0025] Reference numerals in the drawings: 1, operation positioning frame;
[0026] 2. Correction components; 201. Lifting electric slide rail; 202. Lifting alignment frame; 203. Switching motor; 204. Fitting processing frame; 205. Alignment electric push rod; 206. Alignment integration frame; 207. Processing electric slide rail; 208. Processing alignment frame; 209. Cutting motor; 210. Cutting blade; 211. Infeed / outfeed electric slide rail; 212. Infeed / outfeed cutter;
[0027] 3. Pick-up and placement assembly; 301. Pick-up and discharge machine; 302. Pick-up and placement fixing frame; 303. Pick-up and discharge push rod; 304. Pick-up and placement adsorption sleeve; 305. External discharge electric push rod; 306. Inlet and outlet alignment block; 307. Matching motor; 308. Matching pick-up and placement frame; 309. Pick-up and placement tube rack; 310. Linkage air pump. Detailed Implementation
[0028] The preferred embodiments of the present invention will be described below with reference to the accompanying drawings. It should be understood that the preferred embodiments described herein are for illustration and explanation only and are not intended to limit the present invention.
[0029] Example: Figures 1-4 As shown, this utility model provides a technical solution: a manufacturing and processing equipment for trolley cases, including an operation positioning frame 1. The operation positioning frame 1 is provided with a correction component 2 on its side. The correction component 2 includes a lifting electric slide rail 201, a lifting alignment frame 202, a switching motor 203, a fitting processing frame 204, an alignment electric push rod 205, an alignment integration frame 206, a processing electric slide rail 207, a processing alignment frame 208, a cutting motor 209, a cutting blade 210, an inlet and outlet electric slide rail 211, and an inlet and outlet cutter 212.
[0030] A lifting electric slide rail 201 is symmetrically installed on the inner side of the operating positioning frame 1. One end of the lifting electric slide rail 201 is connected to a lifting alignment frame 202 through a slide rail seat. A switching motor 203 is installed on the inner side of the lifting alignment frame 202 through a motor seat. A fitting processing frame 204 is connected to the top of the output shaft of the switching motor 203. The fitting processing frame 204 is rotated and placed inside the operating positioning frame 1 to achieve stable alignment support and ensure the stability of connection fixation and repositioning.
[0031] The top of the operating positioning frame 1 is symmetrically equipped with alignment electric push rods 205. The top of the alignment electric push rods 205 is snapped with an alignment integration frame 206. The top of the alignment integration frame 206 is symmetrically snapped with a processing electric slide rail 207. The top of the processing electric slide rail 207 is equipped with a processing alignment frame 208 through a slide rail seat. The processing alignment frame 208 and the alignment integration frame 206 are slidably connected to achieve steady sliding alignment and ensure the stability of continuous replacement. The inside of the processing alignment frame 208 is equipped with a cutting motor 209 through a motor seat.
[0032] The cutting knife 210 is clamped at the bottom end of the output shaft of the cutting motor 209. The in-out electric slide rail 211 is clamped at the bottom end of the operation positioning frame 1. The in-out cutter 212 is clamped at the bottom end of the in-out electric slide rail 211. The in-out cutter 212 is slidably connected to the bottom end of the operation positioning frame 1, so that stable cutting treatment is realized.
[0033] In order to realize stable operation of the device, the input ends of the lifting electric slide rail 201, the switching motor 203, the alignment electric push rod 205, the processing electric slide rail 207, the cutting motor 209 and the in-out electric slide rail 211 are electrically connected with the output end of the external power supply.
[0034] The operation positioning frame 1 is provided with a taking and placing assembly 3. The taking and placing assembly 3 comprises a taking and placing motor 301, a taking and placing fixing frame 302, a taking and placing electric push rod 303, a taking and placing suction sleeve 304, an external discharge electric push rod 305, an in-out alignment block 306, a matching motor 307, a matching taking and placing frame 308, a taking and placing pipe frame 309 and a linkage air pump 310.
[0035] The taking and placing motor 301 is symmetrically installed at the top end of the operation positioning frame 1. The taking and placing motor 301 is provided with the taking and placing fixing frame 302 clamped at the top end of the output shaft. There are two taking and placing fixing frames 302 to ensure synchronization of taking and placing. The taking and placing fixing frame 302 is provided with the taking and placing electric push rod 303 clamped at the top end. The taking and placing electric push rod 303 is provided with the taking and placing suction sleeve 304 clamped at the bottom end. The operation positioning frame 1 is symmetrically clamped with the external discharge electric push rod 305. One end of the external discharge electric push rod 305 is clamped with the in-out alignment block 306. One end of the in-out alignment block 306 is installed with the matching motor 307 through the motor base. The matching motor 307 is provided with the matching taking and placing frame 308 clamped at the top end of the output shaft. The in-out alignment block 306 is connected with the matching taking and placing frame 308 in a sleeve manner to realize stable matching operation. The taking and placing suction sleeve 304 and the matching taking and placing frame 308 are both provided with the taking and placing pipe frame 309 penetratingly connected at the top end. The taking and placing suction sleeve 304 and the matching taking and placing frame 308 are both installed with the linkage air pump 310 through the motor base. One end of the linkage air pump 310 is connected with one end of the taking and placing pipe frame 309 through the adapter to realize in-out air linkage, which is convenient for taking and placing treatment.
[0036] In order to realize stable operation of the device, the input ends of the taking and placing motor 301, the taking and placing electric push rod 303, the external discharge electric push rod 305, the in-out alignment block 306, the matching motor 307 and the linkage air pump 310 are electrically connected with the output end of the external power supply.
[0037] The working principle and use process of the utility model: when the pull rod box is produced, the staff places the hot plastic forming pull rod box semi-finished product to the feeding position, the taking and placing motor 301 drives the taking and placing fixing frame 302 to rotate along the operation positioning frame 1, the taking and placing electric push rod 303 drives the taking and placing adsorption sleeve 304 to adhere to the material top end, the taking and placing pipe frame 309 and the linkage air pump 310 are used for vacuum adsorption taking, after the taking is completed, the taking and placing motor 301 drives the taking and placing fixing frame 302 to rotate again, the material is rotated to the top end of the sleeve processing frame 204, the lifting electric slide rail 201 drives the lifting alignment frame 202 to ascend along the operation positioning frame 1, the equipment height is adjusted according to the depth of the box body, the switching motor 203 drives the sleeve processing frame 204 to rotate, thereby realizing alignment with the box body, the taking and placing electric push rod 303 is used for lowering to place the box body to the side end of the sleeve processing frame 204, realizing feeding treatment;
[0038] After the feeding is completed, the taking and placing fixing frame 302 of the taking is driven by the taking and placing motor 301 to take again, the taking and placing fixing frame 302 of the feeding is driven by the taking and placing motor 301 to rotate to the top end of the box body, the taking and placing electric push rod 303 and the taking and placing adsorption sleeve 304 are used for limiting the box body, so that it can be effectively limited during cutting rotation, the sleeve processing frame 204 is driven by the switching motor 203 to rotate, the alignment integration frame 206 is driven by the alignment electric push rod 205 to move up and down, the processing electric slide rail 207 drives the processing alignment frame 208 to move, the cutting knife 210 is adhered to the side end of the box body, the cutting motor 209 drives the cutting knife 210 to rotate to cut the box body, realizing the contour modification of the box body, after the modification is completed, the box body is taken by the taking and placing adsorption sleeve 304 again, and the discharging is realized.
[0039] At the same time, the lifting electric slide rail 201 drives the lifting alignment frame 202 to move down, the inlet and outlet cutter 212 is driven by the inlet and outlet electric slide rail 211 to cut the waste material, the inlet and outlet alignment block 306 is driven by the outlet electric push rod 305, the taking and placing frame 308 is driven by the motor 307, the taking and placing pipe frame 309 and the linkage air pump 310 are used for adsorption taking, realizing the waste material outlet.
[0040] Finally, it should be pointed out that: the above-mentioned only for the preferred examples of the utility model, and does not limit the utility model, although the utility model is described in detail with reference to the foregoing embodiments, for the person skilled in the art, it still can modify the technical scheme recorded in the foregoing embodiments, or equivalent replacement of part of the technical features. Any modification, equivalent replacement, improvement, etc. within the spirit and principles of the utility model should be included in the protection scope of the utility model.
Claims
1. A manufacturing and processing apparatus for trolley cases comprising an operating positioning frame (1), characterized in that: The operation positioning frame (1) side end is provided with a correction assembly (2), the correction assembly (2) includes lifting electric slide rail (201); The operation positioning frame (1) inside symmetry is installed lifting electric slide rail (201), one end of lifting electric slide rail (201) is connected with lifting alignment frame (202) through slide rail seat, the inside of lifting alignment frame (202) is installed switching motor (203) through motor base, the top end of switching motor (203) output shaft is connected with sleeve processing frame (204); The operation positioning frame (1) top end symmetry is installed alignment electric push rod (205), the top end of alignment electric push rod (205) is connected with alignment integration frame (206), the top end of alignment integration frame (206) symmetry is connected with processing electric slide rail (207), the top end of processing electric slide rail (207) is installed processing alignment frame (208) through slide rail seat, the inside of processing alignment frame (208) is installed cutting motor (209) through motor base; The bottom end of cutting motor (209) output shaft is connected with cutting knife (210), the bottom end of operation positioning frame (1) is connected with in-out electric slide rail (211), the bottom end of in-out electric slide rail (211) is connected with in-out cutter (212).
2. The manufacturing apparatus for a trolley case according to claim 1, wherein, The sleeve processing frame (204) rotates and places in the inside of operation positioning frame (1), the input end of lifting electric slide rail (201), switching motor (203), alignment electric push rod (205), processing electric slide rail (207), cutting motor (209) and in-out electric slide rail (211) is electrically connected with the output end of external power supply.
3. The manufacturing apparatus for a trolley case according to claim 1, wherein, The processing alignment frame (208) is connected with alignment integration frame (206) slidingly, the in-out cutter (212) is slidingly sleeved in the bottom end of operation positioning frame (1).
4. The manufacturing apparatus for a trolley case according to claim 1, wherein, The operation positioning frame (1) side end is provided with a correction assembly (2), the correction assembly (2) includes lifting electric slide rail (201); The operation positioning frame (1) top end symmetry is installed alignment electric push rod (205), the top end of alignment electric push rod (205) is connected with alignment integration frame (206), the top end of alignment integration frame (206) symmetry is connected with processing electric slide rail (207), the top end of processing electric slide rail (207) is installed processing alignment frame (208) through slide rail seat, the inside of processing alignment frame (208) is installed cutting motor (209) through motor base; The bottom end of cutting motor (209) output shaft is connected with cutting knife (210), the bottom end of operation positioning frame (1) is connected with in-out electric slide rail (211), the bottom end of in-out electric slide rail (211) is connected with in-out cutter (212). The sleeve processing frame (204) rotates and places in the inside of operation positioning frame (1), the input end of lifting electric slide rail (201), switching motor (203), alignment electric push rod (205), processing electric slide rail (207), cutting motor (209) and in-out electric slide rail (211) is electrically connected with the output end of external power supply. The processing alignment frame (208) is connected with alignment integration frame (206) slidingly, the in-out cutter (212) is slidingly sleeved in the bottom end of operation positioning frame (1). The operation positioning frame (1) side end is provided with a correction assembly (2), the correction assembly (2) includes lifting electric slide rail (201); The operation positioning frame (1) top end symmetry is installed alignment electric push rod (205), the top end of alignment electric push rod (205) is connected with alignment integration frame (206), the top end of alignment integration frame (206) symmetry is connected with processing electric slide rail (207), the top end of processing electric slide rail (207) is installed processing alignment frame (208) through slide rail seat, the inside of processing alignment frame (208) is installed cutting motor (209) through motor base; The bottom end of cutting motor (209) output shaft is connected with cutting knife (210), the bottom end of operation positioning frame (1) is connected with in-out electric slide rail (211), the bottom end of in-out electric slide rail (211) is connected with in-out cutter (212). The sleeve processing frame (204) rotates and places in the inside of operation positioning frame (1), the input end of lifting electric slide rail (201), switching motor (203), alignment electric push rod (205), processing electric slide rail (207), cutting motor (209) and in-out electric slide rail (211) is electrically connected with the output end of external power supply. The processing alignment frame (208) is connected with alignment integration frame (206) slidingly, the in-out cutter (212) is slidingly sleeved in the bottom end of operation positioning frame (1).
5. The manufacturing apparatus for a trolley case according to claim 4, wherein, The taking and placing fixing frame (302) has two, the taking and placing motor (301), the taking and placing electric push rod (303), the outer row electric push rod (305), the in-out alignment block (306), the matching motor (307) and the input end of linkage air pump (310) are electrically connected with the output end of external power supply.
6. The manufacturing apparatus for a trolley case according to claim 4, wherein, One end of the linkage air pump (310) is connected with one end of the taking and placing pipe frame (309) through the adapter, and the in-out alignment block (306) is connected with the matching taking and placing frame (308) in a sleeve.