Anti-deviation and anti-collision edge treatment device for plate treatment
By designing anti-deviation and anti-collision edge treatment devices and adopting a clamping positioning and limiting bolt structure, the problems of unstable position and tool collision during the plate cutting process are solved, thus achieving precision in the cutting of insulation plates and tool protection.
Patent Information
- Application Number
- CN202520332864.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-28
- Publication Date
- 2026-01-20
- Estimated Expiration
- 2035-02-28
AI Technical Summary
Existing insulation board cutting devices cannot guarantee the stability of the board position during the cutting process, resulting in deviations in cutting accuracy, and the cutting blade is prone to collision damage with the board support platform.
An anti-deviation and anti-collision edge treatment device for sheet metal processing was designed. It adopts a clamping positioning and limiting bolt structure. The clamping drive and the anti-deviation clamping group work together to ensure the stability of the sheet metal position. The limiting bolt controls the downward movement of the cutting tool to avoid the tool colliding with the platform.
This method ensures the stability of the insulation board's position during the cutting process, avoiding cutting deviation and tool damage, and improving cutting accuracy and the service life of the device.
Smart Images

Figure CN223812144U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of heat preservation board processing device, especially to a kind of board processing is used to prevent deviation, anti-collision edge processing device. BACKGROUND
[0002] Negative pressure heat preservation board is the main component of the carriage body in the heat preservation vehicle, and the negative pressure heat preservation board needs to be cut and processed by cutting processing device according to the specific installation size during production process. The existing heat preservation board cutting processing device has a relatively traditional structure, and the following problems exist in the specific processing process:
[0003] 1. In the edge cutting process of the existing heat preservation board cutting processing device, the position of the heat preservation board cannot be stabilized, and the position of the board is prone to deviation, resulting in size deviation after cutting;
[0004] 2. In the edge cutting process of the existing heat preservation board cutting processing device, the edge cutting tool and the board bearing platform are prone to contact, causing damage to the tool and affecting the normal cutting process. UTILITY MODEL CONTENTS
[0005] The utility model aims to provide a kind of board processing is used to prevent deviation, anti-collision edge processing device, which can press and position the heat preservation board during edge cutting processing, ensure the position stability of the heat preservation board, and realize the downward position control of the edge cutting tool through limiting bolt to avoid collision between the edge cutting tool and the board bearing platform.
[0006] In order to achieve the above-mentioned purpose, the utility model adopts the following technical solutions:
[0007] A kind of board processing is used to prevent deviation, anti-collision edge processing device, comprising, left support, right support, bearing platform mechanism, tool driving part, edge cutting tool group, pressing driving part and deviation prevention pressing group;
[0008] The bottom of the left support and the right support is installed on the working ground;The bottom of one side of the bearing platform mechanism is installed on the left support and connected with the left support;The bottom of the other side of the bearing platform mechanism is installed on the right support and connected with the right support;
[0009] The tool driving part is installed between the left support and the bearing platform mechanism for driving the edge cutting tool group;The pressing driving part is installed between the right support and the bearing platform mechanism for driving the deviation prevention pressing group;
[0010] The edge cutting tool group is installed on the tool driving part, and the edge cutting tool group is connected with the tool driving part;The deviation prevention pressing group is installed on the pressing driving part, and the deviation prevention pressing group is connected with the pressing driving part.
[0011] The bearing platform mechanism comprises a first support, a second support and a platform frame, the first support is installed on the left support, the second support is installed on the right support, and the lower part of the platform frame is arranged on and connected with the first support and the second support.
[0012] The cutter driving part and the pressing driving part have the same structure, and both comprise a cylinder mounting frame, a driving cylinder, a cylinder telescopic rod and a limiting tool, the driving cylinder is installed on and connected with the cylinder mounting frame, the cylinder telescopic rod is installed on the driving cylinder and can be telescoped, and the limiting tool is installed on the top of the cylinder telescopic rod and fixedly connected with the cylinder telescopic rod.
[0013] The limiting tool comprises a bearing support and a limiting screw, the bottom of the bearing support is fixedly connected with the top of the cylinder telescopic rod, a threaded through hole is formed in the bearing support, and the limiting screw penetrates through the threaded through hole and is connected with the threaded through hole in a threaded mode.
[0014] The edge cutting cutter set comprises a first bracket, a cutter support, a locking nut, a threaded cutter rod and a cutter head body, the bottom of the first bracket is installed on the bearing support, the cutter support is installed on the first bracket, a through hole is formed in the cutter support, the threaded cutter rod penetrates through the through hole formed in the cutter support and is locked with the cutter support through the locking nut, and the cutter head body is installed on the bottom of the threaded cutter rod and fixedly connected with the threaded cutter rod.
[0015] The anti-deviation pressing group comprises a second bracket, a connecting plate and a pressing plate, the bottom of the second bracket is fixedly installed on the bearing support, the connecting plate is installed on the second bracket and fixedly connected with the second bracket, and the pressing plate is installed on the lower side of the connecting plate and fixedly connected with the connecting plate in a perpendicular mode.
[0016] The plate processing anti-deviation and anti-collision edge processing device has the following advantages in specific use.
[0017] 1. The heat preservation plate can be pressed and positioned, in the edge cutting processing of the anti-deviation and anti-collision edge processing device, the heat preservation plate can be pressed and positioned through the cooperative operation of the pressing driving part and the anti-deviation pressing group, the position of the heat preservation plate in the edge cutting process is ensured to be stable, and cutting deviation is avoided.
[0018] 2. The lower position of the trimming cutter can be controlled; the limit screw is installed on the bearing support in the utility model, and the relative position adjustment of the limit bolt on the bearing support can be realized in the trimming process, the lower position control of the trimming cutter is realized, the collision between the trimming cutter and the plate bearing platform is avoided, and the trimming cutter is protected from being damaged. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 It is the overall structure schematic view of the utility model;
[0020] Figure 2 It is the structure schematic view of the bearing platform mechanism in the utility model;
[0021] Figure 3 It is the structure schematic view of the cutter driving part and the pressing driving part in the utility model;
[0022] Figure 4 It is the structure schematic view of the limit tool in the utility model;
[0023] Figure 5 It is the structure schematic view of the trimming cutter group in the utility model;
[0024] Figure 6 It is the structure schematic view of the anti-deviation pressing group in the utility model;
[0025] The figure mark is: 1-left support, 2-right support, 3-bearing platform mechanism, 4-cutter driving part, 5-trimming cutter group, 6-pressing driving part, 7-anti-deviation pressing group; 31-first support, 32-second support, 33-platform frame; 41-cylinder mounting frame, 42-driving cylinder, 43-cylinder telescopic rod, 44-limit tool; 441-bearing support, 442-limit screw; 51-first bracket, 52-cutter support, 53-locking nut, 54-threaded cutter bar, 55-cutter head body; 71-second bracket, 72-connection plate, 73-pressing plate. DETAILED DESCRIPTION
[0026] Specific embodiment 1: as the description attached in the utility model, Figure 1As shown in the present application, in order to solve the problem that the existing cutting processing device of the thermal insulation board cannot guarantee the position stability of the thermal insulation board and the contact between the cutting tool and the board bearing platform during the edge cutting process, causing damage to the tool, the utility model discloses and provides a deviation and collision prevention edge processing device for board processing, which mainly comprises a left support 1, a right support 2, a bearing platform mechanism 3, a tool driving part 4, an edge cutting tool group 5, a pressing driving part 6 and a deviation and pressing group 7.
[0027] As shown in the specification of the present application Figure 2 The bearing platform mechanism 3 for bearing and placing the thermal insulation board comprises a first support 31, a second support 32 and a platform frame 33.
[0028] As shown in the specification of the present application Figure 3 , the specification Figure 4As shown, the structure of the cutter driving part 4 for driving the trimming cutter group 5 and the pressing driving part 6 for driving the anti-deviation pressing group 7 are same, both of which include a cylinder mounting frame 41, a driving cylinder 42, a cylinder telescopic rod 43 and a limiting tool 44; wherein the cylinder mounting frame 41 is used for mounting the driving cylinder 42; when mounted, the driving cylinder 42 is mounted on the cylinder mounting frame 41 and connected with the cylinder mounting frame 41, and the telescopic cylinder telescopic rod 43 is mounted on the driving cylinder 42; the limiting tool 44 for limiting the telescopic stroke of the cylinder telescopic rod 43 is mounted on the top of the cylinder telescopic rod 43 and fixedly connected with the cylinder telescopic rod 43; the limiting tool 44 includes a bearing support 441 and a limiting screw 442; wherein the bearing support 441 is mainly used for mounting and assembling the limiting screw 442; when mounted, the bottom of the bearing support 441 is fixedly connected with the top of the cylinder telescopic rod 43; a threaded hole is formed in the bearing support 441, the limiting screw 442 penetrates through the threaded hole and is threadedly connected with the threaded hole; when the cylinder telescopic rod 43 is retracted, the bottom of the limiting screw 442 is in contact with the top of the cylinder mounting frame 41, thereby limiting the telescopic stroke of the cylinder telescopic rod 43.
[0029] As shown in the description of the utility model Figure 5 As shown, the trimming cutter group 5 for trimming the edge of the thermal insulation board includes a first bracket 51, a cutter support 52, a locking nut 53, a threaded cutter bar 54 and a cutter head body 55; wherein the first bracket 51 is used for mounting and supporting the cutter support 52; when mounted, the bottom of the first bracket 51 is mounted on the bearing support 441; the cutter support 52 is mounted on the first bracket 51; the cutter support 52 is used for mounting and bearing the threaded cutter bar 54; a through hole is formed in the cutter support 52; the threaded cutter bar 54 penetrates through the through hole formed in the cutter support 52 and is locked with the cutter support 52 through the locking nut 53; the cutter head body 55 is fixedly mounted at the bottom of the threaded cutter bar 54 and used for performing cutting work.
[0030] As shown in the description of the utility model Figure 6 As shown, the anti-deviation pressing group 7 for pressing and positioning the thermal insulation board includes a second bracket 71, a connecting plate 72 and a pressing plate 73; wherein the second bracket 71 is used for mounting and bearing the connecting plate 72; when mounted, the bottom of the second bracket 71 is fixedly mounted on the bearing support 441; the connecting plate 72 is mounted on the second bracket 71 and fixedly connected with the second bracket 71; the pressing plate 73 for pressing the board is mounted on the lower side of the connecting plate 72 and fixedly connected with the connecting plate 72 perpendicularly.
[0031] The installation and use process of the anti-deviation and anti-collision edge processing device for board processing in the specific installation and use is as follows:
[0032] I. The installation process is as follows:
[0033] Firstly, the bottom of the left support 1 and the right support 2 can be arranged on the working ground; the load platform mechanism 3 is installed on the left support 1 and the right support 2, and specifically, the first support 31 is installed on the left support 1, the second support 32 is installed on the right support 2, and the platform frame 33 for flatly loading the plate is arranged on the first support 31 and the second support 32; then the cutter driving part 4 and the pressing driving part 6 are installed, and specifically, the driving cylinder 42 is installed on the cylinder mounting bracket 41, and the telescopic cylinder telescopic rod 43 is installed on the driving cylinder 42; the limiting tool 44 for limiting the telescopic stroke of the cylinder telescopic rod 43 is installed at the top of the cylinder telescopic rod 43, and the limiting tool 44 comprises a bearing support 441 and a limiting screw 442; the bottom of the bearing support 441 is fixedly connected with the top of the cylinder telescopic rod 43; a threaded hole is formed in the bearing support 441, and the limiting screw 442 is screwed in the threaded hole; then the trimming cutter set 5 is installed, and the bottom of the first bracket 51 is installed on the bearing support 441; the cutter support 52 is installed on the first bracket 51, and a through hole is formed in the cutter support 52; the threaded cutter rod 54 is locked with the cutter support 52 through the lock nut 53; the cutter head body 55 is fixedly installed at the bottom of the threaded cutter rod 54 for performing cutting work; finally, the pressing driving part 6 is installed, and the bottom of the second bracket 71 is fixedly installed on the bearing support 441; the connecting plate 72 is fixedly installed on the second bracket 71, and the pressing plate 73 for pressing the plate is fixedly installed at the lower side of the connecting plate 72, thus the installation process of the utility model is completed.
[0034] II. In specific use:
[0035] 1. The operator can place the negative pressure insulation board on the platform frame 33 of the bearing platform mechanism 3, and then control the drive cylinder 42 in the pressing drive unit 6 to work. The drive cylinder 42 can control the cylinder extension rod 43 installed on it to retract. When the cylinder extension rod 43 retracts, it can drive the second bracket 71, connecting plate 72 and lower pressure plate 73 in the anti-deviation pressing assembly 7 to move down. At this time, the lower pressure plate 73 in the anti-deviation pressing assembly 7 can realize the pressing and positioning of the negative pressure insulation board on the platform frame 33. Then, the operator can control the drive cylinder 42 in the tool drive unit 4. During operation, the drive cylinder 42 can control the retraction of the cylinder extension rod 43 mounted on it. When the cylinder extension rod 43 retracts, it can drive the limit fixture 44 and the cutting tool group 5 mounted on the limit fixture 44 to move down. During this process, the first bracket 51, the tool support 52, the thread cutter bar 54 and the cutter head body 55 move down and achieve the cutting action on the edge of the insulation board through the cutter head body 55. In the edge cutting process, the insulation board is pressed and positioned by the coordinated operation of the pressing drive unit 6 and the anti-deviation pressing group 7, which ensures the stability of the position of the insulation board during the edge cutting process.
[0036] 2. During the edge trimming process, the downward movement of the edge trimming tool can be controlled by adjusting the relative position of the limiting bolt on the bearing support 441, thus preventing collision between the edge trimming tool and the plate bearing platform. Specifically, the operator can rotate the limiting screw 442 to extend it a certain distance. When the cylinder telescopic rod 43 retracts, the bottom of the limiting screw 442 contacts the top of the cylinder mounting bracket 41, which limits the extension stroke of the cylinder telescopic rod 43. At this time, the downward movement of the edge trimming tool group 5 on the limiting fixture 44 is limited, and the possibility of collision between the edge trimming tool and the plate bearing platform is eliminated, thereby protecting the edge trimming tool from damage.
[0037] The foregoing has shown and described the basic principles, 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 the claimed utility model.
Claims
1. A device for preventing deviation and collision in sheet metal processing, characterized in that, It comprises a left support (1), a right support (2), a bearing platform mechanism (3), a cutter driving part (4), an edge cutting cutter set (5), a pressing driving part (6) and an anti-deviation pressing set (7). The bottom of the left support (1) and the right support (2) is installed on the working ground; one side of the bottom of the bearing platform mechanism (3) is installed on the left support (1) and connected with the left support (1); the other side of the bottom of the bearing platform mechanism (3) is installed on the right support (2) and connected with the right support (2). The cutter driving part (4) is installed between the left support (1) and the bearing platform mechanism (3) and used for driving the edge cutting cutter set (5); the pressing driving part (6) is installed between the right support (2) and the bearing platform mechanism (3) and used for driving the anti-deviation pressing set (7). The edge cutting cutter set (5) is installed on the cutter driving part (4) and connected with the cutter driving part (4); the anti-deviation pressing set (7) is installed on the pressing driving part (6) and connected with the pressing driving part (6).
2. The anti-deviation and anti-collision edge processing device for plate processing according to claim 1, characterized in that, The bearing platform mechanism (3) comprises a first support (31), a second support (32) and a platform frame (33); the first support (31) is installed on the left support (1); the second support (32) is installed on the right support (2); the platform frame (33) is arranged on the first support (31) and the second support (32).
3. The anti-deviation and anti-collision edge processing device for plate processing according to claim 1, characterized in that, The cutter driving part (4) and the pressing driving part (6) have the same structure, which comprises a cylinder mounting frame (41), a driving cylinder (42), a cylinder telescopic rod (43) and a limiting tool (44); the driving cylinder (42) is installed on the cylinder mounting frame (41) and has the telescopic cylinder telescopic rod (43) installed thereon; the limiting tool (44) is installed on the top of the cylinder telescopic rod (43) and fixedly connected with the cylinder telescopic rod (43). The limiting tool (44) comprises a bearing support (441) and a limiting screw (442); the bottom of the bearing support (441) is fixedly connected with the top of the cylinder telescopic rod (43); a threaded hole is formed in the bearing support (441); the limiting screw (442) penetrates through the threaded hole and is threadedly connected with the threaded hole.
4. The anti-deviation and anti-collision edge processing device for processing a plate material according to claim 3, characterized in that, The edge cutting cutter set (5) comprises a first bracket (51), a cutter support (52), a locking nut (53), a threaded cutter rod (54) and a cutter head body (55); the bottom of the first bracket (51) is installed on the bearing support (441); the cutter support (52) is installed on the first bracket (51); a through hole is formed in the cutter support (52); the threaded cutter rod (54) penetrates through the through hole of the cutter support (52) and is locked with the cutter support (52) through the locking nut (53); the cutter head body (55) is installed on the bottom of the threaded cutter rod (54).
5. The anti-deviation and anti-collision edge processing device for processing a plate material according to claim 4, characterized in that, 6. The anti-deviation and anti-collision edge processing device for plate processing according to claim 4, characterized in that, The anti-deviation pressure group (7) comprises a second bracket (71), a connecting plate (72) and a pressing plate (73); the bottom of the second bracket (71) is fixedly installed on the bearing support (441), the connecting plate (72) is installed on the second bracket (71), and the pressing plate (73) is installed on the lower side of the connecting plate (72) and is fixedly connected with the connecting plate (72) perpendicularly.