Explosion-proof membrane cutting equipment
By designing explosion-proof membrane cutting equipment including workbench, support frame, slide rail, moving part and driving mechanism, the problem of difficulty in adjusting cutting force in the prior art is solved, and accurate cutting of different explosion-proof membrane models is achieved, and the accuracy and operation convenience of cutting are improved.
Patent Information
- Application Number
- CN202421686685.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-16
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2034-07-16
AI Technical Summary
Existing explosion-proof membrane cutting equipment is difficult to adjust the cutting force according to the model of explosion-proof membrane, which affects the accuracy and quality of cutting, and the dimensional measurement depends on external equipment to reduce the convenience and efficiency of use.
An explosion-proof film cutting device is designed, including a workbench, a support frame, a slide rail, a moving part, a placement part, a cutting part and a plurality of driving mechanisms. Through these mechanisms, the precise positioning and cutting depth adjustment of the explosion-proof film are realized to adapt to different types of explosion-proof films.
Accurate cutting according to the explosion-proof membrane model is achieved, which improves the accuracy and stability of cutting, and improves the convenience and efficiency of operation.
Smart Images

Figure CN223161027U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of explosion-proof film cutting, in particular to an explosion-proof film cutting device. Background Art
[0002] The cutting process of the explosion-proof film is a relatively complex technology. First, the explosion-proof film needs to be placed on a moving cart, which needs to be able to support the explosion-proof film and have sufficient mobility. Before starting the cutting, corresponding adjustments need to be made according to the size to be cut. Generally, the explosion-proof film needs to be cut according to the established standards, so certain measurement capabilities and technologies are required. Then, the explosion-proof film needs to be fixed on the moving cart to ensure the stability and accuracy of cutting. Usually, professional clamping tools or pliers are needed to fix the explosion-proof film. During the cutting process, the moving cart needs to be pushed to slide on the slide rail to cut the explosion-proof film. This requires the operator to have certain skills and experience to accurately master the cutting speed and angle. However, in the existing technology, size measurement usually relies on external devices. This makes it necessary for the operator to use an external measuring device to determine the size of the explosion-proof film before cutting, thus reducing the convenience and efficiency of use.
[0003] In addition, the existing cutting devices usually cannot specifically adjust the corresponding cutting force according to the model of the explosion-proof film, which may affect the accuracy and quality of cutting. Therefore, during the cutting process, corresponding adjustments and treatments need to be carried out for different types of explosion-proof films to ensure the cutting effect and stability. Summary of the Utility Model
[0004] The purpose of the utility model is to provide an explosion-proof film cutting device that can solve at least one of the above technical problems. The technical solution of the utility model is as follows:
[0005] An explosion-proof film cutting device includes: a workbench, a support frame is fixedly arranged on the upper right side of the workbench, slide rails are symmetrically and fixedly arranged above the workbench, a moving part is movably inserted on the slide rails above the workbench, a placing part is horizontally inserted on the moving part, a through groove is arranged on the support frame, a sliding seat is movably inserted on the through groove, a cutting part is movably inserted below the sliding seat, a first moving mechanism capable of driving the moving part to move along the slide rails is arranged below the workbench, a second moving mechanism capable of driving the placing part to move horizontally is arranged on the moving part, a first driving mechanism capable of driving the cutting part to move downward is arranged on the sliding seat, and a second driving mechanism capable of driving the sliding seat to move along the through groove is arranged above the support frame.
[0006] Furthermore, the moving part includes a moving plate movably inserted on the slide rail, and a plurality of rollers are movably sleeved on the insertion end of the moving plate.
[0007] Furthermore, a placing plate is horizontally and movably inserted on the moving plate in the placing part. A baffle is fixed on the left side of the placing plate. Guide columns are symmetrically fixed on the front and rear sides above the baffle. A lower pressing plate is movably inserted between every two of the guide columns. Springs are symmetrically fixed on each of the lower pressing plates. A handle is fixed on each of the lower pressing plates. Cutting grooves are provided on the placing plate and the baffle.
[0008] Furthermore, the cutting part includes a plurality of insertion rods fixed under the sliding seat. A tool holder is movably inserted on each of the insertion rods. A cutting knife is movably sleeved on the tool holder. A first straight gear is fixed on the sleeved end of the cutting knife. A first motor is fixed under the tool holder. A second straight gear is fixed on the output end of the first motor. The second straight gear meshes with the first straight gear.
[0009] Furthermore, the first moving mechanism includes a second motor fixed under the workbench. A third straight gear is fixed on the output end of the second motor. A first screw rod is movably sleeved above the workbench. A first thread sleeve is provided under the moving plate. The first thread sleeve and the first screw rod are in threaded cooperation with each other. A fourth straight gear is fixed on the end of the first screw rod. The fourth straight gear meshes with the third straight gear.
[0010] Furthermore, the second moving mechanism includes a second screw rod movably sleeved on the placing plate. A fifth straight gear is fixed on the end of the second screw rod. A third motor is fixed on the placing plate. A sixth straight gear is fixed on the output end of the third motor. The sixth straight gear meshes with the fifth straight gear. A second thread sleeve is provided under the placing plate.
[0011] Furthermore, the first driving mechanism includes a fourth motor fixed on one side of the sliding seat. A third screw rod is fixed on the output end of the fourth motor. A third thread sleeve is provided behind the tool holder. The third screw rod and the third thread sleeve are in threaded cooperation with each other.
[0012] Furthermore, the second driving mechanism includes a fifth motor fixed above the support frame. A seventh straight gear is on the output end of the fifth motor. A rack is fixed on the sliding seat. The rack meshes with the seventh straight gear.
[0013] In summary, the beneficial effects of the present utility model compared with the prior art are:
[0014] The utility model provides an explosion-proof film cutting device. When in use, a user places an explosion-proof film on a placement part, so that the explosion-proof film is clamped and fixed on the placement part. Then, the placement part is driven by a second moving mechanism to move horizontally, so that the explosion-proof film moves to a position where it needs to be cut. Then, the user drives a cutting part, and then the moving part is driven by a first moving mechanism to move along a slide rail, so that the explosion-proof film moves towards the cutting part. The cutting part cuts the explosion-proof film into a required size. The user can drive the cutting part to move downwards by a first driving mechanism to adjust the depth of downward cutting of the cutting part. At the same time, the sliding seat can be driven by a second driving mechanism to move along a through groove, so as to adjust the cutting position of the cutting part. Compared with the prior art, the corresponding cutting depth can be specifically adjusted according to the model of the explosion-proof film, and corresponding adjustments and treatments can be carried out for different types of explosion-proof films. Brief Description of the Drawings
[0015] Figure 1 is a three-dimensional schematic diagram of the present utility model.
[0016] Figure 2 is one of the exploded schematic diagrams of the present utility model.
[0017] Figure 3 is the second exploded schematic diagram of the present utility model.
[0018] Description of the reference numerals: 1, workbench; 2, support frame; 3, slide rail; 4, moving part; 5, placement part; 6, through groove; 7, sliding seat; 8, cutting part; 100, first moving mechanism; 200, second moving mechanism; 300, first driving mechanism; 400, second driving mechanism; 41, moving plate; 42, roller; 51, placement plate; 52, baffle; 53, guiding column; 54, lower pressing plate; 55, spring; 56, handle; 57, cutting groove; 81, inserting rod; 82, tool rest; 83, cutting knife; 84, first straight gear; 85, first motor; 86, second straight gear; 101, second motor; 102, third straight gear; 103, first screw rod; 104, first threaded sleeve; 105, fourth straight gear; 201, second screw rod; 202, fifth straight gear; 203, third motor; 204, sixth straight gear; 205, second threaded sleeve; 301, fourth motor; 302, third screw rod; 303, third threaded sleeve; 401, fifth motor; 402, rack; 403, seventh straight gear. Detailed Description of the Embodiment
[0019] The present utility model will be further described below in conjunction with the drawings and the detailed description of the embodiment:
[0020] As Figures 1 to 3An explosion-proof film cutting device shown in the figure is characterized by comprising: a workbench 1, a support frame 2 is fixedly arranged on the right side above the workbench 1, slide rails 3 are symmetrically and fixedly arranged above the workbench 1, a moving part 4 is movably inserted on the slide rails 3 above the workbench 1, a placing part 5 is horizontally inserted on the moving part 4, a through groove 6 is arranged on the support frame 2, a sliding seat 7 is movably inserted on the through groove 6, a cutting part 8 is movably inserted below the sliding seat 7, a first moving mechanism 100 capable of driving the moving part 4 to move along the slide rails 3 is arranged below the workbench 1, a second moving mechanism 200 capable of driving the placing part 5 to move horizontally is arranged on the moving part 4, a first driving mechanism 300 capable of driving the cutting part 8 to move downward is arranged on the sliding seat 7, and a second driving mechanism 400 capable of driving the sliding seat 7 to move along the through groove 6 is arranged above the support frame 2.
[0021] For an explosion-proof film cutting device with the above structure, when in use, the user places the explosion-proof film on the placing part 5, so that the explosion-proof film is clamped and fixed on the placing part 5. Then, the second moving mechanism 200 drives the placing part 5 to move horizontally, so that the explosion-proof film moves to the position where it needs to be cut. Then, the user drives the cutting part 8, and then the first moving mechanism 100 drives the moving part 4 to move along the slide rails 3, so that the explosion-proof film moves towards the cutting part 8, and the cutting part 8 cuts the explosion-proof film into the required size. The user can drive the cutting part 8 to move downward through the first driving mechanism 300 to adjust the cutting depth of the cutting part 8 downward. At the same time, the second driving mechanism 400 can drive the sliding seat 7 to move along the through groove 6, so as to adjust the cutting position of the cutting part 8. Compared with the prior art, the corresponding cutting depth can be specifically adjusted according to the model of the explosion-proof film, and corresponding adjustments and treatments can be carried out for different types of explosion-proof films.
[0022] As Figure 2 shown, in some embodiments of the present invention, the moving part 4 includes a moving plate 41 movably inserted on the slide rails 3, and a plurality of rollers 42 are movably sleeved at the insertion end of the moving plate 41. The first moving mechanism 100 drives the moving plate 41 to move, and while the moving plate 41 is moving, a plurality of rollers 42 movably sleeved at its insertion end move along the slide rails 3.
[0023] As Figure 2As shown, in some embodiments of the present utility model, a placement plate 51 is horizontally movably inserted into the placement portion 5 on the moving plate 41. A baffle 52 is fixed to the left side of the placement plate 51. Guide columns 53 are symmetrically fixed to the front and rear sides above the baffle 52. A lower pressing plate 54 is movably inserted between every two of the guide columns 53. Springs 55 are symmetrically fixed to each of the lower pressing plates 54. A handle 56 is fixed to each of the lower pressing plates 54. A cutting groove 57 is provided on the placement plate 51 and the baffle 52. The user places the explosion-proof film on the placement plate 51, levels the explosion-proof film through the baffle 52, and then drives the lower pressing plate 54 to move downward through the spring 55, so that the lower pressing plate 54 moves along the guide column 53, thereby pressing the explosion-proof film by the lower pressing plate 54. When the second moving mechanism 200 is driven, it drives the placement plate 51 to move horizontally above the moving plate 41, so that the placement plate 51 moves the explosion-proof film to a suitable position.
[0024] As Figure 2 and 3 As shown, in some embodiments of the present utility model, the cutting portion 8 includes a plurality of insertion rods 81 fixed to the lower side of the sliding seat 7. A tool holder 82 is movably inserted on each of the insertion rods 81. A cutting knife 83 is movably sleeved on the tool holder 82. A first straight gear 84 is fixed to the sleeved end of the cutting knife 83. A first motor 85 is fixed to the lower side of the tool holder 82. A second straight gear 86 is fixed to the output end of the first motor 85. The second straight gear 86 meshes with the first straight gear 84. When the moving plate 41 moves along the slide rail 3, the moving plate 41 moves the explosion-proof film towards the cutting knife 83, and then drives the cutting knife 83 to rotate on the tool holder 82 through the first motor 85, so that the cutting knife 83 cuts the explosion-proof film. During use, the first driving mechanism 300 can be used to drive the cutting portion 8 to move downward, so as to adjust the cutting depth of the cutting knife 83. At the same time, the second driving mechanism 400 drives the sliding seat 7 to move along the through groove 6, so as to adjust the cutting position of the cutting knife.
[0025] As Figure 3 As shown, in some embodiments of the present utility model, in order to achieve the effect of driving the moving portion 4 to move along the slide rail 3, the first moving mechanism 100 includes a second motor 101 fixed to the lower side of the workbench 1. A third straight gear 102 is fixed to the output end of the second motor 101. A first screw rod 103 is movably sleeved above the workbench 1. A first threaded sleeve 104 is provided under the moving plate 41. The first threaded sleeve 104 and the first screw rod 103 are in threaded cooperation with each other. A fourth straight gear 105 is fixed to the end of the first screw rod 103. The fourth straight gear 105 meshes with the third straight gear 102.
[0026] When an explosion-proof film cutting device with the above structure is in operation, the second motor 101 drives the third straight gear 102 to rotate, so that the third straight gear 102 drives the fourth straight gear 105 to rotate. While the fourth straight gear 105 is rotating, it drives the first screw 103 to rotate. When the first screw 103 is rotating, the moving plate 41 moves along the slide rail 3 through the first thread sleeve 104.
[0027] As Figure 2 and 3 shown, in some embodiments of the present invention, in order to achieve the effect of driving the placement part 5 to move horizontally, the second moving mechanism 200 includes a second screw 201 movably sleeved on the placement plate 51. A fifth straight gear 202 is fixed at the end of the second screw 201. A third motor 203 is fixed on the placement plate 51. A sixth straight gear 204 is fixed at the output end of the third motor 203. The sixth straight gear 204 meshes with the fifth straight gear 202. A second thread sleeve 205 is provided below the placement plate 51.
[0028] When an explosion-proof film cutting device with the above structure is in operation, the third motor 203 drives the sixth straight gear 204 to rotate. While the sixth straight gear 204 is rotating, it drives the fifth straight gear 202 to rotate, so that the second screw 201 rotates. While the second screw 201 is rotating, it drives the placement plate 51 to move horizontally along the moving plate 41 through the second thread sleeve 205.
[0029] As Figure 2 shown, in some embodiments of the present invention, in order to achieve the effect of driving the cutting part 8 to move downward, the first driving mechanism 300 includes a fourth motor 301 fixed on one side of the sliding seat 7. A third screw 302 is fixed at the output end of the fourth motor 301. A third thread sleeve 303 is provided behind the tool holder 82. The third screw 302 is in threaded cooperation with the third thread sleeve 303.
[0030] When an explosion-proof film cutting device with the above structure is in operation, the fourth motor 301 drives the third screw 302 to rotate, so that the third screw 302 drives the third thread sleeve 303 to move the tool holder 82 downward through the third thread sleeve 303.
[0031] As Figure 2 and 3 shown, in some embodiments of the present invention, in order to achieve the effect of driving the sliding seat 7 to move along the through groove 6, the second driving mechanism 400 includes a fifth motor 401 fixed above the support frame 2. A seventh straight gear 403 is at the output end of the fifth motor 401. A rack 402 is fixed on the sliding seat 7. The rack 402 meshes with the seventh straight gear 403.
[0032] When an explosion-proof film cutting device with the above structure is in operation, the fifth motor 401 drives the seventh spur gear 403 to rotate, so that the seventh spur gear 403 drives the rack 402 to move, and at the same time the rack 402 drives the sliding seat 7 to move along the through groove 6.
[0033] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. The above embodiments and the descriptions in the specification only illustrate the principles of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of protection claimed by the present invention is defined by the appended claims and their equivalents.
Claims
1. An explosion-proof film cutting device, characterized in that, Comprising: A workbench (1), a support frame (2) is fixedly installed on the upper right side above the workbench (1), slide rails (3) are symmetrically and fixedly installed above the workbench (1), a moving part (4) is movably inserted through the slide rails (3) above the workbench (1), a placing part (5) is horizontally inserted into the moving part (4), a through groove (6) is provided on the support frame (2), a sliding seat (7) is movably inserted through the through groove (6), a cutting part (8) is movably inserted below the sliding seat (7), a first moving mechanism (100) capable of driving the moving part (4) to move along the slide rails (3) is provided below the workbench (1), a second moving mechanism (200) capable of driving the placing part (5) to move horizontally is provided on the moving part (4), a first driving mechanism (300) capable of driving the cutting part (8) to move downward is provided on the sliding seat (7), and a second driving mechanism (400) capable of driving the sliding seat (7) to move along the through groove (6) is provided above the support frame (2).
2. The explosion-proof film cutting device according to claim 1, wherein The moving part (4) includes a moving plate (41) movably inserted through the slide rails (3), and a plurality of rollers (42) are movably sleeved on the insertion end of the moving plate (41).
3. An explosion-proof film cutting device according to claim 2, characterized in that The placing part (5) includes a placing plate (51) horizontally and movably inserted into the moving plate (41), a baffle (52) is fixedly installed on the left side of the placing plate (51), guiding columns (53) are symmetrically and fixedly installed on the front and rear sides above the baffle (52), a lower pressing plate (54) is movably inserted between every two guiding columns (53), springs (55) are symmetrically fixedly installed on each lower pressing plate (54), a handle (56) is fixedly installed on each lower pressing plate (54), and a cutting groove (57) is provided on the placing plate (51) and the baffle (52).
4. An explosion-proof film cutting device according to claim 1, characterized in that The cutting part (8) includes a plurality of insertion rods (81) fixedly installed below the sliding seat (7), a tool holder (82) is movably inserted through each insertion rod (81), a cutting tool (83) is movably sleeved on the tool holder (82), a first straight gear (84) is fixedly installed at the sleeved end of the cutting tool (83), a first motor (85) is fixedly installed below the tool holder (82), a second straight gear (86) is fixedly installed at the output end of the first motor (85), and the second straight gear (86) meshes with the first straight gear (84).
5. The explosion-proof film cutting device according to claim 2, wherein The first moving mechanism (100) includes a second motor (101) fixedly installed below the workbench (1), a third straight gear (102) is fixedly installed at the output end of the second motor (101), a first screw rod (103) is movably sleeved above the workbench (1), a first thread sleeve (104) is provided below the moving plate (41), the first thread sleeve (104) and the first screw rod (103) are in threaded cooperation with each other, a fourth straight gear (105) is fixedly installed at the end of the first screw rod (103), and the fourth straight gear (105) meshes with the third straight gear (102).
6. The explosion-proof film cutting device according to claim 3, characterized in that The second moving mechanism (200) includes a second screw rod (201) movably sleeved on a placement plate (51). A fifth spur gear (202) is fixed to the end of the second screw rod (201). A third motor (203) is fixed to the placement plate (51). A sixth spur gear (204) is fixed to the output end of the third motor (203). The sixth spur gear (204) meshes with the fifth spur gear (202). A second threaded sleeve (205) is provided below the placement plate (51).
7. An explosion-proof film cutting device according to claim 4, characterized in that The first driving mechanism (300) includes a fourth motor (301) fixed to one side of a sliding seat (7). A third screw rod (302) is fixed to the output end of the fourth motor (301). A third threaded sleeve (303) is provided at the rear side of a tool rest (82). The third screw rod (302) is in threaded fit with the third threaded sleeve (303).
8. The explosion-proof film cutting device according to claim 1, wherein The second driving mechanism (400) includes a fifth motor (401) fixed above a support frame (2). A seventh spur gear (403) is provided at the output end of the fifth motor (401). A rack (402) is fixed to the sliding seat (7). The rack (402) meshes with the seventh spur gear (403).