Butt-joint notch machining device for heat insulation and heat preservation plate
By designing a processing device for the groove of the heat insulation board, mechanized cutting is used to replace manual cutting, which solves the problems of low efficiency and inaccurate groove position of manual cutting, and achieves efficient and stable groove processing.
Patent Information
- Application Number
- CN202520347800.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-03
- Publication Date
- 2026-01-23
- Estimated Expiration
- 2035-03-03
AI Technical Summary
Manually cutting grooves with hand-held tools is labor-intensive, inefficient, and makes it difficult to ensure the standard position of the grooves, affecting the installation of the insulation panels.
Design a processing device for the butt groove of thermal insulation board, including a support bracket, a mounting frame, an adjustment support part, a lateral pushing part, a board pressing part, a grooving assembly and a lifting drive part. By replacing manual cutting with mechanized cutting, stable grooving of the edge of the thermal insulation board can be achieved.
It reduces the labor intensity of operators, improves the efficiency of trenching, ensures the standardization of trench opening position, and meets the requirements for subsequent docking and installation of thermal insulation boards.
Smart Images

Figure CN223820627U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to thermal -insulated board processing device field especially is involved in a kind of thermal -insulated board butt joint slot processing device. BACKGROUND
[0002] The thermal -insulated board is installed on the structure of the car compartment to reduce the heat exchange between inside and outside, and the vacuum negative pressure thermal -insulated board is the main component of the thermal -insulated board in the above-mentioned thermal -insulated car, when installing the thermal -insulated board, in order to facilitate the butt joint of the thermal -insulated board, the butt joint slot needs to be processed to the edge of the thermal -insulated board, the butt joint slot on the existing thermal -insulated board is mostly cut into groove operation by artificial hand-held cutting tool, but this kind of mode has the following problems:
[0003] 1, the labor workload of operator is large in the operation process of artificial hand-held cutting tool groove forming mode, and the labor cost of enterprise is high and groove forming efficiency is low;
[0004] 2, the position standard degree of butt joint slot cannot be guaranteed in the operation process of artificial hand-held cutting tool groove forming mode, slot deviation is prone to occur, and then the butt joint installation of subsequent thermal -insulated board is affected. UTILITY MODEL CONTENTS
[0005] The utility model aims at providing a kind of thermal -insulated board butt joint slot processing device, it can replace artificial way and cut into groove to the thermal -insulated board, reduce the labor intensity of operator, can guarantee groove forming efficiency and slot standard simultaneously, meet the subsequent installation of thermal -insulated board and use.
[0006] To achieve the above-mentioned purpose, the utility model adopts the following technical scheme:
[0007] A kind of thermal -insulated board butt joint slot processing device, including, support bracket, installation frame, adjustment support part, horizontal pushing part, board pressing part, grooving assembly and lifting drive part;
[0008] The support bracket is arranged on the lower side of the installation frame and is connected to the installation frame by bolt;Adjustment support part is installed on the support bracket, and the adjustment support part is tightly connected with the support bracket;Horizontal pushing part is provided on the upper part of the adjustment support part, and the board pressing part is arranged on the working end of the horizontal pushing part to press and position the board;
[0009] Lifting drive part is provided on the installation frame, and the lifting drive part is connected to the installation frame, and the grooving assembly is installed on the lifting drive part to cut into groove for the board.
[0010] The adjustment support includes a fixed base, a support rail, a locking slider, and a movable bracket; the fixed base is mounted on the support bracket, the support rail is mounted on the fixed base, the locking slider is locked onto the support rail and slides in contact with the support rail, and the bottom of the movable bracket is mounted on the locking slider and is securely connected to the locking slider.
[0011] The lateral pushing part includes a pushing cylinder, a cylinder support, a cylinder pushing rod, and a connecting frame; the cylinder support is mounted on a movable bracket, the pushing cylinder is mounted on the cylinder support, the cylinder pushing rod is mounted on the pushing cylinder, and the connecting frame is mounted on the outer end of the cylinder pushing rod and locked to the cylinder pushing rod.
[0012] The plate clamping part includes a clamping cylinder, a cylinder bracket, and a clamping block; the cylinder bracket is installed and connected to the connecting frame, the clamping cylinder is installed on the cylinder bracket and installed and connected to the cylinder bracket, a cylinder drive rod is installed on the clamping cylinder, and the clamping block is installed on the cylinder drive rod and connected to the cylinder drive rod.
[0013] The lifting drive unit includes a drive motor, a rotating screw, and a drive block. The drive motor is mounted on a mounting frame, and the rotating screw is mounted on the mounting frame on both sides via bearings. The power output end of the drive motor is connected to one end of the rotating screw. A guide groove is provided on the mounting frame, and a threaded hole is provided on the drive block. The drive block is screw-assembled onto the rotating screw through the threaded hole, and one side of the drive block is disposed in the guide groove and slides in contact with the guide groove.
[0014] The grooving assembly includes a cutting motor, a lifting seat, a motor shaft, and a grooving cutter. The lifting seat is connected to the drive block by bolts. The cutting motor is mounted on the lifting seat, and the motor shaft that drives the grooving cutter to rotate is mounted on the cutting motor. The grooving cutter is fixedly mounted on the motor shaft for grooving the edge of the insulation board.
[0015] The beneficial effects of this utility model are as follows: The overall structural design of the heat insulation board butt joint groove processing device of this utility model is scientific. In specific use, the heat insulation board butt joint groove processing device of this utility model has the following advantages:
[0016] 1. It can mechanically groove the edges of insulation boards; This utility model can replace manual labor. By adjusting the coordinated action of components such as the support part, the lateral pushing part, the board pressing part, the grooving assembly and the lifting drive part, the edge of the thermal insulation board can be cut and grooved, which greatly reduces the workload of operators and ensures the efficiency of grooving the edge of the thermal insulation board.
[0017] 2. This utility model can stably press and position the insulation board through the coordinated action of components such as the support bracket, installation frame, adjustment support, lateral pushing part and board pressing part, thereby ensuring that the insulation board has a stable positioning state during the grooving operation, ensuring the standard position of the groove, avoiding groove deviation, and meeting the requirements for subsequent installation of thermal insulation boards. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the overall installation structure of this utility model;
[0019] Figure 2 This is a schematic diagram of the structure of the adjusting support part in this utility model;
[0020] Figure 3 This is a schematic diagram of the transverse pushing part in this utility model;
[0021] Figure 4 This is a schematic diagram of the sheet metal clamping part in this utility model;
[0022] Figure 5 This is a schematic diagram of the lifting drive unit in this utility model;
[0023] Figure 6 This is a schematic diagram of the troughing component in this utility model;
[0024] The numbers in the diagram are as follows: 1-Support bracket, 2-Mounting frame, 3-Adjusting support, 4-Horizontal pushing part, 5-Sheet pressing part, 6-Grooving assembly, 7-Lifting drive part; 31-Fixed seat, 32-Support guide rail, 33-Clamping slider, 34-Moving bracket; 41-Push cylinder, 42-Cylinder support, 43-Cylinder push rod, 44-Connecting frame; 51-Clamping cylinder, 52-Cylinder bracket, 53-Clamping block; 61-Cutting motor, 62-Lifting seat, 63-Motor shaft, 64-Grooving cutter; 71-Drive motor, 72-Rotating screw, 73-Drive block. Detailed Implementation
[0025] Specific Embodiment 1: To enable those skilled in the art to better understand the technical solution of this utility model, the following detailed description is provided in conjunction with the accompanying drawings and specific embodiments. It should be noted that when an element is referred to as "fixed to" or "set on" another element, it can be directly or indirectly connected to the other element. When an element is referred to as "connected to" another element, it can be directly or indirectly connected to the other element. The terms "left" and "right" used in this application to indicate orientation are based on the specific structure shown in the accompanying drawings and do not constitute a limitation on the structure. As per the appendix to this utility model... Figure 1As shown, to address the problems of high labor intensity, low grooving efficiency, and inability to guarantee the positional accuracy of the groove during manual hand-held cutting, which can easily lead to groove deviations and affect the subsequent installation of thermal insulation boards, this utility model designs and provides a groove processing device for thermal insulation boards. The device includes a support bracket 1, an installation frame 2, an adjusting support part 3, a lateral pushing part 4, a board pressing part 5, a grooving assembly 6, and a lifting drive part 7. The support bracket 1 is mainly used to support the adjusting support part 3 during installation. During installation, the support bracket 1 is positioned on the installation frame. The lower side of 2 is connected to the mounting frame 2 by bolts; an adjusting support part 3 is installed on the support bracket 1, and the adjusting support part 3 is fastened to the support bracket 1 during installation; a transverse pushing part 4 is provided on the upper part of the adjusting support part 3 for adjusting the movement of the transverse pushing part 5, and the plate pressing part 5 is provided at the working end of the transverse pushing part 4 for pressing and positioning the plate; at the same time, a lifting drive part 7 is provided on the mounting frame 2, and the lifting drive part 7 is used to drive the grooving assembly 6 to lift and adjust. During installation, the lifting drive part 7 is connected to the mounting frame 2, and the grooving assembly 6 is installed on the lifting drive part 7 for cutting the plate into grooves.
[0026] As per the specification attached to this utility model Figure 2 As shown, the adjusting support 3 for mounting and supporting the transverse pushing part 4 includes a fixed base 31, a support rail 32, a locking slider 33, and a movable bracket 34. The fixed base 31 is used to support the support rail 32. During installation, the fixed base 31 is mounted on the support bracket 1. The support rail 32, which is adapted to engage with the slider, is mounted on the fixed base 31. The locking slider 33 engages with the support rail 32 and slides in contact with the support rail 32. The bottom of the movable bracket 34, which directly supports the transverse pushing part 4, is mounted on the locking slider 33 and is securely connected to the locking slider 33.
[0027] As per the specification attached to this utility model Figure 3 As shown, the lateral pushing part 4, used to adjust the lateral displacement of the plate pressing part 5, includes a pushing cylinder 41, a cylinder support 42, a cylinder pushing rod 43, and a connecting frame 44. The cylinder support 42 is used to install and support the pushing cylinder 41. During installation, the cylinder support 42 is mounted on the movable bracket 34. The pushing cylinder 41 is mounted on the cylinder support 42, and the cylinder pushing rod 43 is mounted on the pushing cylinder 41. The connecting frame 44, used to install and connect the plate pressing part 5, is mounted on the outer end of the cylinder pushing rod 43 and locked to the cylinder pushing rod 43.
[0028] As per the specification attached to this utility model Figure 4As shown, the plate clamping part 5 for clamping and positioning the insulation board includes a clamping cylinder 51, a cylinder bracket 52, and a clamping block 53. The cylinder bracket 52 is used to support the clamping cylinder 51. During installation, the cylinder bracket 52 is connected to the connecting frame 44. The clamping cylinder 51 is mounted on the cylinder bracket 52 and connected to it. A cylinder drive rod adapted to the clamping block 53 is mounted on the clamping cylinder 51. The clamping block 53, which is used to directly contact and clamp the insulation board, is mounted on the cylinder drive rod and connected to it.
[0029] As per the specification attached to this utility model Figure 5 As shown, the lifting drive unit 7 for adjusting the lifting displacement of the troughing assembly 6 includes a drive motor 71, a rotating screw 72, and a drive block 73. The drive motor 71 drives the rotating screw 72 to rotate in both directions. During installation, the drive motor 71 is bolted to the mounting frame 2, and the rotating screw 72 is mounted on the mounting frame 2 on both sides via bearings. The power output end of the drive motor 71 is connected to one end of the rotating screw 72. A guide groove is provided on the mounting frame 2 to guide the drive block 73. A threaded hole adapted to the rotating screw 72 is provided on the drive block 73. During installation, the drive block 73 is screwed onto the rotating screw 72 through the threaded hole. One side of the drive block 73 is located in the guide groove and slides in contact with the guide groove.
[0030] As per the specification attached to this utility model Figure 6 As shown, the grooving assembly 6 for grooving the edge of the insulation board includes a cutting motor 61, a lifting seat 62, a motor shaft 63, and a grooving cutter 64. The cutting motor 61 is mainly used to drive the grooving cutter 64 to rotate. The lifting seat 62 is used to install the cutting motor 61. During installation, the lifting seat 62 is connected to the driving block 73 by bolts. The cutting motor 61 is installed on the lifting seat 62. At the same time, the motor shaft 63 that drives the grooving cutter 64 to rotate is installed on the cutting motor 61. The grooving cutter 64 is fixedly installed on the motor shaft 63 for grooving the edge of the insulation board.
[0031] The installation process of the heat insulation board butt groove processing device of this utility model is as follows:
[0032] The installation process is as follows:
[0033] First, the installer can install one end of the support bracket 1 on the lower side of the mounting frame 2 using mounting bolts. Then, the adjustment support 3 is installed. Specifically, the fixed seat 31 is installed on the support bracket 1, and the support guide rail 32 is installed on the fixed seat 31. The locking slider 33 is slidably locked onto the support guide rail 32. The bottom of the movable bracket 34, which directly supports the transverse pushing part 4, is installed on the locking slider 33. Then, the transverse pushing part 4 is installed. The cylinder support 42 is installed on the movable bracket 34, the pushing cylinder 41 is installed on the cylinder support 42, and the cylinder pushing rod 43 is installed on the pushing cylinder 41. The connecting bracket 44 is installed on the outer end of the cylinder pushing rod 43. Then, the cylinder bracket 52 is connected to the connecting bracket 44, and the clamping cylinder 51 is installed on the cylinder bracket 52. A cylinder drive rod is installed on the clamping cylinder 51, and a clamping block 53 for directly pressing the insulation board is installed on the cylinder drive rod. Then, the grooving assembly 6 and the lifting drive unit 7 are installed. Specifically, the drive motor 71 is bolted to the mounting frame 2, and the rotating screw 72 is mounted on both sides of the mounting frame 2 via bearings. Simultaneously, the power output end of the drive motor 71 is connected to one end of the rotating screw 72. The drive block 73 is threaded onto the rotating screw 72 via a threaded knob in a threaded hole, and one side of the drive block 73 is slidably installed in the guide groove. Finally, the lifting seat 62 is bolted to the drive block 73, and a cutting motor 61 is installed on the lifting seat 62. The grooving tool 64 is fixedly installed on the motor shaft 63 of the cutting motor 61 for grooving the edge of the insulation board. Thus, the installation process of this utility model is completed.
[0034] In practical operation, this utility model can be divided into a pressing process and a troughing process, as detailed below:
[0035] 1. Pressing process: The operator can place the insulation board to be formed on the movable support 34, and then control the pushing cylinder 41 in the transverse pushing part 4 to work. The pushing cylinder 41 pushes the board pressing part 5 to move laterally through the cylinder pushing rod 43 and the connecting frame 44. When the pressing block 53 in the board pressing part 5 is placed above the insulation board, the pressing cylinder 51 in the board pressing part 5 can be controlled to work. The pressing cylinder 51 drives the pressing block 53 to press down to press and position the insulation board. At this time, the pressing action of the insulation board is completed.
[0036] 2. Trenching Process: The operator can control the cutting motor 61 in the trenching assembly 6 to operate. The cutting motor 61 drives the trenching cutter 64 to rotate via the motor shaft 63. Simultaneously, the operator can control the drive motor 71 in the lifting drive unit 7 to operate. The drive motor 71 drives the rotating screw 72 to rotate clockwise. At this time, the driving block 73 on the rotating screw 72 moves downward under the action of the threaded force. When the driving block 73 moves downward, it drives the trenching assembly 6 installed on it to move downward. When the trenching cutter 64 in the trenching assembly 6 contacts the edge of the insulation board, the edge of the insulation board can be cut and trenched. The operation process is extremely convenient. At the same time, the trenching efficiency is high, which can ensure the standard of the trench position and meet the requirements of the subsequent docking and installation of the insulation board. The above shows and describes the basic principle, main features and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of this utility model as claimed.
Claims
1. A processing device for butt joint grooves of thermal insulation boards, characterized in that, It includes a support bracket (1), a mounting frame (2), an adjustment support part (3), a lateral pushing part (4), a plate clamping part (5), a grooving assembly (6), and a lifting drive part (7); The support bracket (1) is located on the lower side of the mounting frame (2) and is connected to the mounting frame (2) by bolts; an adjustment support part (3) is installed on the support bracket (1), and the adjustment support part (3) is fastened to the support bracket (1); a transverse pushing part (4) is provided on the upper part of the adjustment support part (3), and the plate pressing part (5) is located at the working end of the transverse pushing part (4) for pressing and positioning the plate; A lifting drive unit (7) is provided on the mounting frame (2), and the lifting drive unit (7) is connected to the mounting frame (2). The grooving assembly (6) is installed on the lifting drive unit (7) for cutting the plate into grooves.
2. The heat insulation board butt groove processing device according to claim 1, characterized in that, The adjustment support (3) includes a fixed seat (31), a support rail (32), a locking slider (33), and a movable bracket (34); the fixed seat (31) is mounted on the support bracket (1), the support rail (32) is mounted on the fixed seat (31), the locking slider (33) is locked on the support rail (32) and slides in contact with the support rail (32), and the bottom of the movable bracket (34) is mounted on the locking slider (33).
3. The heat insulation board butt groove processing device according to claim 2, characterized in that, The lateral pushing part (4) includes a pushing cylinder (41), a cylinder support (42), a cylinder pushing rod (43), and a connecting frame (44); the cylinder support (42) is mounted on a movable bracket (34), the pushing cylinder (41) is mounted on the cylinder support (42), the cylinder pushing rod (43) is mounted on the pushing cylinder (41), and the connecting frame (44) is mounted on the outer end of the cylinder pushing rod (43) and locked to the cylinder pushing rod (43).
4. The heat insulation board butt groove processing device according to claim 3, characterized in that, The plate pressing part (5) includes a pressing cylinder (51), a cylinder bracket (52), and a pressing block (53); the cylinder bracket (52) is installed and connected to the connecting frame (44), the pressing cylinder (51) is installed on the cylinder bracket (52), a cylinder drive rod is installed on the pressing cylinder (51), and the pressing block (53) is installed on the cylinder drive rod and connected to the cylinder drive rod.
5. The heat insulation board butt groove processing device according to claim 1, characterized in that, The lifting drive unit (7) includes a drive motor (71), a rotating screw (72), and a drive block (73). The rotating screw (72) is mounted on the mounting frame (2) on both sides by bearings. The power output end of the drive motor (71) is connected to one end of the rotating screw (72). A guide groove is provided on the mounting frame (2), and a threaded hole is provided on the drive block (73). The drive block (73) is screw-assembled on the rotating screw (72) through the threaded hole. One side of the drive block (73) is set in the guide groove and slides in contact with the guide groove.
6. The heat insulation board butt groove processing device according to claim 5, characterized in that, The grooving assembly (6) includes a cutting motor (61), a lifting seat (62), a motor shaft (63), and a grooving cutter (64). The lifting seat (62) is connected to the drive block (73) by bolts. The cutting motor (61) is mounted on the lifting seat (62). The motor shaft (63) that drives the grooving cutter (64) to rotate is mounted on the cutting motor (61). The grooving cutter (64) is fixedly mounted on the motor shaft (63).