Intelligent cutting device for new energy vehicle interior processing

By designing the cutting and sorting sections of the intelligent cutting device, and utilizing adhesive blocks and telescopic top blocks, the automatic separation of automotive interior materials from scrap materials is achieved, solving the problem of complex manual sorting in traditional devices and improving processing efficiency.

CN119501314BActive Publication Date: 2025-11-04丹东黄海汽车有限责任公司
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Patent Information

Application Number
CN202411630196.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-11-15
Publication Date
2025-11-04
Estimated Expiration
2044-11-15

AI Technical Summary

Technical Problem

Traditional interior trim cutting devices have difficulty automatically separating cut products from leftover materials after cutting, leading to complex manual sorting and adhesion problems, which affect processing efficiency.

Method used

An intelligent cutting device was designed, comprising a cutting section and a sorting section. It utilizes adhesive blocks and telescopic top blocks to automatically separate the cut automotive interior trim from the leftover materials. Through electric components and cylinder control, combined with a conveying component, it achieves automated sorting and external discharge.

Benefits of technology

It enables automatic separation of cut automotive interior trim from leftover materials, simplifying the operation process and improving processing efficiency and the degree of automation of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a new energy automobile interior processing intelligent cutting device, and relates to the technical field of intelligent cutting devices.The device comprises a cutting part, a sorting part arranged in the cutting part, and a connecting part arranged outside the cutting part.A fixed frame is arranged in the internal part of a cushion frame to facilitate the displacement of the frame, so that the automobile interior is moved after being adhered to the adhesive block, and the automobile interior cut by the cutting part is sorted without manual operation, thereby solving the problem that the cut product and the remaining material cannot be separated after the cutting of the traditional interior cutting device, and the two are discharged together with the conveying assembly, and manual sorting is required outside the equipment, which makes the cutting process too complicated.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of intelligent cutting devices, in particular to an intelligent cutting device for new energy automobile interior processing. BACKGROUND

[0002] In automobile interior processing, cutting is a very important process for cutting various materials into the required shape and size. When cutting the automobile interior, manual cutting and laser cutting are usually used. Manual cutting is mainly through artificial control of the cutter to cut the interior, while laser cutting is through the delivery of cutting route instructions to the device. The cutting device cuts the raw material according to the route instructions. In order to facilitate the processing of the automobile interior, an intelligent cutting device is needed.

[0003] As for the current traditional interior cutting device, the cut product and the remaining material are not easy to separate after cutting, resulting in the two being discharged together with the conveying assembly. At the same time, manual sorting is needed outside the device, making the cutting process too complex. In the cutting process, the position is easy to stick, so it needs to be pulled separately in the manual process, making the cutting process more complex and not convenient to use. SUMMARY

[0004] The disclosed embodiment relates to an intelligent cutting device for new energy automobile interior processing, which has a sorting part and a separation part. The fixed frame is installed inside the pad frame to facilitate the displacement of the frame, so that the automobile interior is moved after being stuck with the adhesive block. The automobile interior is sorted without the help of manpower. The telescopic top block is clamped in the inside of the cutting remaining material under the action of the electric telescopic rod, so as to separate the cutting remaining material during the separation of the cutting remaining material and the automobile interior. After the two are completely separated, the cutting remaining material is discharged by the conveying assembly, and the turnover top block is forced to turn down by the remaining material, so as to assist the discharge of the cutting remaining material.

[0005] The first aspect of the present disclosure provides a new energy vehicle interior processing intelligent cutting device, specifically comprising: a cutting part; the cutting part comprises a support frame and a cushion frame; the cushion frame is provided in the form of a rectangular frame structure, a rectangular through hole is arranged on the cushion frame, and the cushion frame is fixed on the top of the support frame through screws; the inside of the cutting part is provided with a sorting part, and the sorting part comprises a fixed frame, a driving motor, a displacement frame, a separation plate, a setting slot and a decorative glue block; the fixed frame is fixed in the inside of the cushion frame through screws; the displacement frame is provided in the form of a rectangular frame structure, rectangular grooves are respectively arranged on the inner wall of the displacement frame, two groups of rectangular frame-shaped protrusions are arranged on the outer wall of the displacement frame, the two groups of rectangular frame-shaped protrusions of the displacement frame are respectively provided with clamping teeth, the displacement frame is slidingly connected in the inside of the fixed frame, and the two groups of rectangular frame-shaped protrusions of the displacement frame are respectively connected with the cylindrical gear of the driving motor through the clamping teeth; the decorative glue block is provided in the form of a cylindrical structure, a glue layer is arranged on the bottom of the decorative glue block, the decorative glue block is clamped in the inside of the setting slot, and the decorative glue block is connected with the preset air cylinder on the separation plate; the outside of the cutting part is provided with a separate connection part, and the separate connection part comprises a butt joint block, a side fixed frame, a fixed block, an extension top block and a turnover top block; the butt joint block is fixed on the outside of the support frame through screws, and the side fixed frame is fixed on the bottom of the fixed frame through screws; the extension top block is provided in the form of a square plate, the extension top block is provided with rectangular protrusions at equal intervals, an axle hole is arranged on the rectangular top block of the extension top block, an arc-shaped hole is arranged on the rectangular protrusion of the extension top block, a spring is arranged on the extension top block, the extension top block is slidingly connected in the inside of the fixed block, and the extension top block is connected with the electric telescopic rod on the fixed block; the turnover top block is provided in the form of a rectangular block structure, a thimble is arranged on the turnover top block, an arc-shaped frame is arranged on the bottom of the turnover top block, an arc-shaped spring is arranged on the arc-shaped frame of the turnover top block, and the turnover top block is rotationally connected on the extension top block.

[0006] In at least some embodiments, the cutting part further comprises a conveying assembly; the support frame is provided in the form of an I-shaped structure, semicircular through holes are arranged on the side edges of the support frame, and the support frame is provided in two groups, and the two groups of support frames are connected through rectangular rods.

[0007] In at least some embodiments, the cutting part further comprises a translation frame, a longitudinal displacement frame and a cutting assembly; the translation frame is provided in the form of a rectangular frame structure, a translation assembly is arranged on the translation frame, and the translation frame is fixed on the top of the cushion frame through screws; the longitudinal displacement frame is provided with a longitudinal displacement assembly, the longitudinal displacement frame is slidingly connected on the translation frame, and the longitudinal displacement frame is connected with the translation assembly on the translation frame; the cutting assembly is slidingly connected on the longitudinal displacement frame, and the cutting assembly is connected with the longitudinal displacement assembly on the longitudinal displacement frame.

[0008] At least in some embodiments, the fixed frame is arranged as a rectangular frame structure, a rectangular frame-shaped groove is arranged on the inner wall of the fixed frame, two groups of rectangular through holes are connected to the rectangular frame-shaped groove of the fixed frame, and a shaft hole is arranged on the outer wall of the fixed frame.

[0009] At least in some embodiments, the driving motor is provided in two groups, and the two groups of driving motors are fixed on the outer wall of the fixed frame, and the cylindrical gears of the two groups of driving motors are rotatably connected in the shaft hole of the fixed frame.

[0010] At least in some embodiments, the fixed frame is arranged as a rectangular frame structure, a rectangular frame-shaped groove is arranged on the inner wall of the fixed frame, two groups of rectangular through holes are connected to the rectangular frame-shaped groove of the fixed frame, and a shaft hole is arranged on the outer wall of the fixed frame.

[0011] At least in some embodiments, the fixed frame is arranged as a rectangular frame structure, a rectangular frame-shaped groove is arranged on the inner wall of the fixed frame, two groups of rectangular through holes are connected to the rectangular frame-shaped groove of the fixed frame, and a shaft hole is arranged on the outer wall of the fixed frame.

[0012] At least in some embodiments, the fixed frame is arranged as a rectangular frame structure, a rectangular frame-shaped groove is arranged on the inner wall of the fixed frame, two groups of rectangular through holes are connected to the rectangular frame-shaped groove of the fixed frame, and a shaft hole is arranged on the outer wall of the fixed frame.

[0013] At least in some embodiments, the fixed frame is arranged as a rectangular frame structure, a rectangular frame-shaped groove is arranged on the inner wall of the fixed frame, two groups of rectangular through holes are connected to the rectangular frame-shaped groove of the fixed frame, and a shaft hole is arranged on the outer wall of the fixed frame.

[0014] The intelligent cutting device for new energy vehicle interior processing has the following beneficial effects:

[0015] The present application sets up the pad high stand, through the top of the support frame fixed pad high stand, convenient for its cooperation side fixed frame fixed frame carries out the support to the translation frame at the same time, to facilitate the installation of the whole device, convenient for the processing of the automobile interior parts.

[0016] In addition, the displacement frame and the adhesive block are arranged, the displacement frame is slidably connected in the fixed frame, the displacement frame is driven by the motor to adjust the extension and contraction, the displacement frame is controlled to move to the top of the automobile interior, and the adhesive block is connected to the cut automobile interior under the action of the preset cylinder, so that the cut automobile interior and the cutting waste are separated.

[0017] In addition, the telescopic top block and the turnover top block are arranged, the telescopic top block is driven by the electric telescopic rod to move outward, the turnover top block is inserted into the cutting waste, the cutting waste is constrained, the automobile interior is separated from the cutting waste during movement, and the automobile interior is cut and processed. BRIEF DESCRIPTION OF DRAWINGS

[0018] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings of the embodiments will be briefly introduced below.

[0019] The drawings described below only relate to some embodiments of the present application, and are not limited to the present application.

[0020] In the drawings:

[0021] Figure 1 A schematic view of a three-dimensional assembly structure according to an embodiment of the present application is shown;

[0022] Figure 2 A schematic view of a three-dimensional assembly bottom structure according to an embodiment of the present application is shown;

[0023] Figure 3 A schematic view of an exploded structure according to an embodiment of the present application is shown;

[0024] Figure 4 A schematic view of an exploded bottom structure according to an embodiment of the present application is shown;

[0025] Figure 5 A schematic view of a cutting state partial cut structure according to an embodiment of the present application is shown;

[0026] Figure 6 A schematic view of a cutting state partial cut structure according to an embodiment of the present application is shown; Figure 5 A schematic view of an enlarged structure of part A according to an embodiment of the present application is shown;

[0027] Figure 7 A schematic view of an enlarged structure of part B according to an embodiment of the present application is shown; Figure 5 A schematic view of an enlarged structure of part B according to an embodiment of the present application is shown;

[0028] Figure 8 A schematic view of a sorting state partial cut structure according to an embodiment of the present application is shown;

[0029] Figure 9 Fig. 1 shows a schematic view of a cutting part assembly structure according to an embodiment of the present application;

[0030] Figure 10 Fig. 2 shows a schematic view of a sorting part assembly structure according to an embodiment of the present application;

[0031] Figure 11 Fig. 3 shows a schematic view of a C part assembly structure according to an embodiment of the present application; Figure 10 Fig. 4 shows a schematic view of a C part assembly structure according to an embodiment of the present application;

[0032] Figure 12 Fig. 5 shows a schematic view of a sorting and connecting part assembly structure according to an embodiment of the present application.

[0033] List of reference signs

[0034] 1, cutting part; 101, support frame; 102, conveying assembly; 103, heightening frame; 104, translation frame; 105, longitudinal movement frame; 106, cutting assembly;

[0035] 2, sorting part; 201, fixed frame; 202, driving motor; 203, displacement frame; 204, sorting baffle; 205, setting slot; 206, adhesive decoration block;

[0036] 3, sorting and connecting part; 301, auxiliary support frame; 302, abutting connecting block; 303, side fixing frame; 304, supporting decoration plate; 305, fixed block; 306, telescopic top block; 307, overturning top block. DETAILED DESCRIPTION

[0037] The embodiments of the present application will be further described in detail below with reference to the accompanying drawings and embodiments.

[0038] Embodiment 1: please refer to Figures 1 to 12The application provides an intelligent cutting device for new energy vehicle interior processing, which comprises a cutting part 1; the cutting part 1 comprises a support frame 101 and a cushion frame 103; the cushion frame 103 is arranged in a rectangular frame structure, the cushion frame 103 is provided with a rectangular through hole, and the cushion frame 103 is fixed on the top of the support frame 101 through screws; the cushion frame 103 is used for assisting in mounting and fixing a longitudinal moving frame 105 and a fixed frame 201, so that the two can be kept stable; a sorting part 2 is arranged in the cutting part 1, and the sorting part 2 comprises the fixed frame 201, a driving motor 202, a displacement frame 203, a separation plate 204, a setting groove 205 and a decoration glue block 206; the fixed frame 201 is fixed in the inside of the cushion frame 103 through screws; the displacement frame 203 is arranged in a rectangular frame structure, the inner wall of the displacement frame 203 is respectively provided with a rectangular groove, the outer wall of the displacement frame 203 is provided with two groups of rectangular frame-shaped protrusions, the two groups of rectangular frame-shaped protrusions of the displacement frame 203 are respectively provided with clamping teeth, the displacement frame 203 is slidingly connected in the inside of the fixed frame 201, and the two groups of rectangular frame-shaped protrusions of the displacement frame 203 are respectively connected with cylindrical gears of the driving motor 202 through the clamping teeth; the displacement frame 203 is used for sliding adjustment through the driving motor 202 while being kept stable, so that the cut decoration can be moved for use; the decoration glue block 206 is arranged in a cylindrical structure, the bottom of the decoration glue block 206 is provided with a glue layer, the decoration glue block 206 is clamped in the inside of the setting groove 205, and the decoration glue block 206 is connected with a preset air cylinder on the separation plate 204; the decoration glue block 206 is used for moving downward under the action of the preset air cylinder, so that the cut decoration can be stuck for sorting the vehicle decoration; the cutting part 1 is provided with a separate connection part 3, and the separate connection part 3 comprises a butt joint block 302, a side fixing frame 303, a fixed block 305, an extension top block 306 and a turnover top block 307; the butt joint block 302 is fixed on the outside of the support frame 101 through screws, the side fixing frame 303 is fixed on the bottom of the fixed frame 201 through screws; the extension top block 306 is arranged in a square plate, the extension top block 306 is equidistantly provided with a rectangular protrusion, the rectangular top block of the extension top block 306 is provided with a shaft hole, the rectangular protrusion of the extension top block 306 is provided with an arc-shaped hole, the extension top block 306 is provided with a spring, the extension top block 306 is slidingly connected in the inside of the fixed block 305, and the extension top block 306 is connected with an electric telescopic rod on the fixed block 305; the extension top block 306 is used for extension adjustment in the fixed block 305 under the action of the electric telescopic rod, so that the turnover top block 307 can be driven to constrain the excess material of the cut decoration, and the cut decoration can be separated; the turnover top block 307 is arranged in a rectangular block structure, the turnover top block 307 is provided with a thimble, the bottom of the turnover top block 307 is provided with an arc-shaped frame, the arc-shaped frame of the turnover top block 307 is provided with an arc-shaped spring, and the turnover top block 307 is rotationally connected on the extension top block 306.The flipping top block 307, driven by the telescopic top block 306, constrains the cut-off excess material, thus aiding in the separation of the excess material from the cut-off automotive interior trim.

[0039] Example 2: Based on Example 1, as follows Figure 9 As shown, the cutting section 1 also includes a conveying assembly 102; the support frame 101 is configured as an I-beam structure, and a semi-circular through hole is provided on the side of the support frame 101. There are two sets of support frames 101, and the two sets of support frames 101 are connected by a rectangular rod; the support frame 101 is used to assist in the installation and fixation of other structures of the cutting section 1 to facilitate the conveying of raw materials; the rotating shaft of the conveying assembly 102 is rotatably connected to the two sets of support frames 101, and a conveyor belt is provided on the conveying assembly 102, which is arranged between the support frames 101; the conveying assembly 102 is used to convey the automotive trim raw materials; the cutting section 1 also includes a translation frame 104, a longitudinal frame 105, and a cutting assembly 106; the translation frame 104 is configured as a rectangular frame. The structure includes a translation frame 104 with a translation component, which is fixed to the top of the support frame 103 by screws. The translation frame 104 is used in conjunction with the longitudinal frame 105 to assist in adjusting the corresponding position of the cutting component 106. The longitudinal frame 105 is equipped with a longitudinal component and is slidably connected to the translation frame 104. The longitudinal frame 105 is connected to the translation component on the translation frame 104. The longitudinal frame 105 is used in conjunction with the translation frame 104 to cut the cutting component 106. The cutting component 106 is slidably connected to the longitudinal frame 105 and is connected to the longitudinal component on the longitudinal frame 105. The cutting component 106 is used to cut automotive trim materials by laser cutting.

[0040] In the embodiments disclosed herein, such as Figure 10 and Figure 11As shown, the fixed frame 201 is provided in a rectangular frame structure, a rectangular frame-shaped groove is arranged on the inner wall of the fixed frame 201, two groups of rectangular through holes are connected to the rectangular frame-shaped groove of the fixed frame 201, and an axle hole is arranged on the outer wall of the fixed frame 201; the fixed frame 201 is used to assist in mounting and fixing other structures of the sorting part 2, so as to facilitate the moving treatment of the cut automobile interior; two groups of driving motors 202 are provided, and the two groups of driving motors 202 are respectively fixed on the outer wall of the fixed frame 201; the cylindrical gears of the two groups of driving motors 202 are rotatably connected in the axle hole of the fixed frame 201; the driving motor 202 is used to control the position adjustment of the displacement frame 203 by controlling the rotation of the cylindrical gear, so as to facilitate the moving treatment of the automobile interior; the dividing baffle 204 is provided in a square plate structure, a rectangular protrusion is arranged on the outer wall of the dividing baffle 204, and a ventilation groove is arranged at the bottom of the dividing baffle 204; the dividing baffle 204 is fixed in the inside of the displacement frame 203 through screws; the dividing baffle 204 is used to assist in fixing the preset air cylinder, so as to perform the bonding treatment on the adhesive block 206 at the specified position; the positioning groove 205 is provided in a circular groove, and the positioning groove 205 is arranged at the bottom of the preset air cylinder of the dividing baffle 204; the positioning groove 205 is used to assist in the contraction treatment of the adhesive block 206, so as to assist in the moving treatment of the cut automobile interior.

[0041] In the embodiments of the present disclosure, as Figure 12As shown, the sub-connection part 3 further comprises an auxiliary support frame 301; the auxiliary support frame 301 is provided in the shape of a rectangular plate, and a rectangular protrusion is arranged on the side edge of the auxiliary support frame 301; the auxiliary support frame 301 is provided in two groups, and the two groups of auxiliary support frames 301 are connected through a square mesh plate; the auxiliary support frame 301 is used to assist in mounting and fixing other structures of the sub-connection part 3, so as to facilitate the overall stability of the sub-connection part 3; the butt joint block 302 is provided in the shape of a rectangular block, and a rectangular frame-shaped groove is arranged on the outer wall of the butt joint block 302; the butt joint block 302 is provided in two groups, and the two groups of butt joint blocks 302 are fixed on the rectangular protrusions of the two groups of auxiliary support frames 301 through screws; the butt joint block 302 is used to assist in connecting the auxiliary support frame 301 and the support frame 101, so as to maintain the overall stability of the device; the sub-connection part 3 further comprises a support decoration plate 304; the side fixed frame 303 is provided in the shape of a T-shaped frame, and the side fixed frame 303 is provided in two groups; the two groups of side fixed frames 303 are fixed on the top of the two groups of auxiliary support frames 301 through screws; the side fixed frame 303 is used to assist in fixing the fixed frame 201, so as to assist in maintaining the overall stability of the device; the support decoration plate 304 is provided in the shape of a square plate, and a rectangular protrusion is arranged on the side edge of the support decoration plate 304; a rectangular groove is formed in the support decoration plate 304, and the support decoration plate 304 is fixed between the two groups of auxiliary support frames 301 through screws; the support decoration plate 304 is used to temporarily support the sorted automobile interior, so as to facilitate the processing of the automobile interior; the fixed block 305 is provided in the shape of a rectangular block, and a rectangular frame-shaped groove is arranged on the outer wall of the fixed block 305; a rectangular groove is arranged in the fixed block 305, and a rectangular through hole is connected to the rectangular groove of the fixed block 305; an electric telescopic rod is arranged on the outside of the fixed block 305, and the fixed block 305 is fixed in the rectangular groove of the support decoration plate 304 through a screw; the fixed block 305 is used to assist in mounting the telescopic top block 306, so as to facilitate the telescopic adjustment of the telescopic top block 306 under the action of the electric telescopic rod.

[0042] The specific use and role of the embodiment are as follows: in the application, when in use, the fixed frame 201 is fixed on the cushion frame 103 and the side fixing frame 303 by screws respectively, and the support frame 101 and the auxiliary support frame 301 are connected through the butt joint block 302, so that the overall stability of the device is maintained, then the automobile interior raw material is conveyed to the bottom of the translation frame 104 and the longitudinal moving frame 105 through the conveying assembly 102 cooperating with external equipment, and the cutting assembly 106 is controlled to cut the automobile interior raw material through the preset path instruction, after the cutting is completed, the connected cylindrical gear is driven to rotate by starting the control motor, and the position adjusting frame 203 is adjusted in position through the clamping tooth control in the process of rotation, so that it moves to the top of the cut raw material, and the sticking glue block 206 is controlled to move down through the preset air cylinder on the dividing plate 204, so that the sticking glue block 206 contacts with the cut automobile interior, and after the sticking is completed, the automobile interior is driven to move up through the reset, then the automobile interior and the cut raw material are conveyed through the conveying assembly 102 cooperating with the reset state of the displacement frame 203, after reaching the edge position of the conveying assembly 102, the electric telescopic rod on the fixed block 305 is started to control the telescopic top block 306 to extend out of the fixed block 305, and at the same time in the process of extension, the turnover top block 307 is inserted into the inside of the cut residual material to constrain the residual material, so that the automobile interior moves to the top of the supporting plate 304 under the action of the displacement frame 203, and the automobile interior and the cut residual material are separated, after the two are completely separated, the automobile interior moves to the top of the supporting plate 304, then the sticking glue block 206 is retracted, so that the automobile interior is separated from the sticking glue block 206 under the action of the dividing plate 204, so that the automobile interior falls on the supporting plate 304, and the cut residual material is discharged under the action of the conveying assembly 102.

[0043] It should be noted that: 1. The drawings of the disclosed embodiment only relate to the structures involved in the disclosed embodiment, and other structures can be referred to the general design.

[0044] 2. In the case of no conflict, the embodiments and features in the embodiments of the present disclosure can be combined with each other to obtain new embodiments.

[0045] The above is only a specific embodiment of the present disclosure, but the protection scope of the present disclosure is not limited thereto, any person skilled in the art can easily think of changes or replacements within the technical range disclosed by the present disclosure, which should be covered within the protection scope of the present disclosure. Therefore, the protection scope of the present disclosure should be subject to the protection scope of the claims.

Claims

1. An intelligent cutting device for processing interior parts of new energy vehicles, comprising: Cutting section (1); characterized in that the cutting section (1) includes a support frame (101) and a support frame (103); the support frame (103) is configured as a rectangular frame structure, and the support frame (103) is provided with a rectangular through hole, and the support frame (103) is fixed to the top of the support frame (101) by screws; the cutting section (1) is provided with a sorting section (2) inside, and the sorting section (2) includes a fixed frame (201), a drive motor (202), a displacement frame (203), a dividing plate (204), a positioning groove (205), and an adhesive block (206); the fixed frame (201) is fixed to the support frame by screws. (103) inside; the displacement frame (203) is configured as a rectangular frame structure, the inner wall of the displacement frame (203) is provided with rectangular grooves, the outer wall of the displacement frame (203) is provided with two sets of rectangular frame protrusions, the two sets of rectangular frame protrusions of the displacement frame (203) are respectively provided with locking teeth, the displacement frame (203) is slidably connected to the inside of the fixed frame (201), the two sets of rectangular frame protrusions of the displacement frame (203) are respectively connected to the columnar gear of the drive motor (202) through locking teeth; the adhesive block (206) is configured as a cylindrical structure, the bottom of the adhesive block (206) is provided with an adhesive layer, the adhesive block (206) is inserted into the positioning groove (205), and the adhesive block (206) is connected to the preset cylinder on the baffle plate (204); the cutting part (1) is provided with a connecting part (3) on the outside, and the connecting part (3) includes a connecting block (302), a side fixing frame (303), a fixing block (305), a telescopic top block (306), and a flipping top block (307); the connecting block (302) is fixed to the outside of the support frame (101) by screws, and the side fixing frame (303) is fixed to the bottom of the fixing frame (201) by screws; the telescopic top block (306) is set as a square plate, and the telescopic top block (306) is provided with rectangular plates at equal intervals. The rectangular top block (306) has a shaft hole, and the rectangular protrusion of the telescopic top block (306) has an arc-shaped hole. The telescopic top block (306) is equipped with a spring. The telescopic top block (306) is slidably connected to the inside of the fixed block (305). The telescopic top block (306) is connected to the electric telescopic rod on the fixed block (305). The flip top block (307) is set as a rectangular block structure. The flip top block (307) is equipped with a pin. The bottom of the flip top block (307) is equipped with an arc-shaped frame. The arc-shaped frame of the flip top block (307) is equipped with an arc-shaped spring. The flip top block (307) is rotatably connected to the telescopic top block (306).

2. The intelligent cutting device for processing interior parts of new energy vehicles according to claim 1, characterized in that: The cutting section (1) also includes a conveying assembly (102); the support frame (101) is configured as an I-shaped structure, and a semi-circular through hole is provided on the side of the support frame (101). There are two sets of support frames (101), and the two sets of support frames (101) are connected by a rectangular rod; the rotating shaft of the conveying assembly (102) is rotatably connected to the two sets of support frames (101), and a conveyor belt is provided on the conveying assembly (102). The conveying assembly (102) is arranged between the support frames (101).

3. The intelligent cutting device for processing interior parts of new energy vehicles according to claim 1, characterized in that: The cutting section (1) further includes a translation frame (104), a longitudinal frame (105), and a cutting assembly (106); the translation frame (104) is configured as a rectangular frame structure, and a translation assembly is provided on the translation frame (104). The translation frame (104) is fixed to the top of the support frame (103) by screws; a longitudinal assembly is provided on the longitudinal frame (105), and the longitudinal frame (105) is slidably connected to the translation frame (104). The longitudinal frame (105) is connected to the translation assembly on the translation frame (104); the cutting assembly (106) is slidably connected to the longitudinal frame (105), and the cutting assembly (106) is connected to the longitudinal assembly on the longitudinal frame (105).

4. The intelligent cutting device for processing interior parts of new energy vehicles according to claim 1, characterized in that: The fixed frame (201) is configured as a rectangular frame structure. The inner wall of the fixed frame (201) is provided with a rectangular frame groove. The rectangular frame groove of the fixed frame (201) is connected to two sets of rectangular through holes. The outer wall of the fixed frame (201) is provided with shaft holes.

5. The intelligent cutting device for processing interior parts of new energy vehicles according to claim 1, characterized in that: The drive motor (202) is provided in two sets. The two sets of drive motors (202) are respectively fixed on the outer wall of the fixed frame (201), and the column gears of the two sets of drive motors (202) are rotatably connected in the shaft hole of the fixed frame (201).

6. The intelligent cutting device for processing interior parts of new energy vehicles according to claim 1, characterized in that: The baffle (204) is configured as a square plate structure. The outer wall of the baffle (204) is provided with a rectangular protrusion. The bottom of the baffle (204) is provided with a ventilation groove. The baffle (204) is fixed inside the displacement frame (203) by screws. The positioning groove (205) is configured as a circular groove. The positioning groove (205) is opened at the bottom of the preset cylinder of the baffle (204).

7. The intelligent cutting device for processing interior parts of new energy vehicles according to claim 1, characterized in that: The connecting part (3) also includes an auxiliary support (301); the auxiliary support (301) is a rectangular plate, and a rectangular protrusion is provided on the side of the auxiliary support (301). There are two sets of auxiliary support (301), and the two sets of auxiliary support (301) are connected by a square mesh plate; the connecting block (302) is a rectangular block structure, and a rectangular frame-shaped groove is provided on the outer wall of the connecting block (302). There are two sets of connecting blocks (302), and the two sets of connecting blocks (302) are respectively fixed to the rectangular protrusions of the two sets of auxiliary support (301) by screws.

8. The intelligent cutting device for processing interior parts of new energy vehicles according to claim 1, characterized in that: The connecting part (3) also includes a support plate (304); the side support frame (303) is configured as a T-shaped frame, and there are two sets of side support frames (303). The two sets of side support frames (303) are respectively fixed to the top of the two sets of auxiliary support frames (301) by screws; the support plate (304) is configured as a square plate structure, the side of the support plate (304) is provided with a rectangular protrusion, and a rectangular groove is opened on the support plate (304). The support plate (304) is fixed between the two sets of auxiliary support frames (301) by screws.

9. The intelligent cutting device for processing interior parts of new energy vehicles according to claim 8, characterized in that: The fixing block (305) is configured as a rectangular block structure. The outer wall of the fixing block (305) is provided with a rectangular frame-shaped groove. The interior of the fixing block (305) is provided with a rectangular groove. The rectangular groove of the fixing block (305) is connected to a rectangular through hole. The exterior of the fixing block (305) is provided with an electric telescopic rod. The fixing block (305) is fixed in the rectangular groove of the supporting panel (304) by screws.

Citation Information

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