Sulfur-oxygen-magnesium plate side edge slotting device
By designing a combination of feeding rack, conveying components and pressure rollers, the problems of board vibration and safety hazards during the grooving process of magnesium oxysulfate board were solved, achieving stable cutting and safe operation.
Patent Information
- Application Number
- CN202520275567.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-20
- Publication Date
- 2026-01-16
- Estimated Expiration
- 2035-02-20
AI Technical Summary
During the grooving process of magnesium oxysulfate board, the board is prone to shaking when moved, which affects the grooving quality. In addition, the operator needs to support the board, which poses a safety hazard.
A side grooving device for magnesium oxysulfate board was designed, including a feeding rack, a conveying assembly, a cutting rack, and a pressing rack. The magnesium oxysulfate board is pressed onto the conveying assembly by the pressing roller to ensure the stability of the board during the grooving process, and the grooving blade is driven by a motor to cut the board.
It improves the stability and safety of the grooving process of magnesium oxysulfate boards, reduces the need for support from operators, and enhances operational safety.
Smart Images

Figure CN223802812U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of grooving equipment, specifically relates to a magnesium oxysulfate board side grooving device. BACKGROUND
[0002] The magnesium oxysulfate board is one of artificial decorative boards, when the magnesium oxysulfate board is assembled on site, the magnesium oxysulfate board is cut into multiple board materials of the same size, and positioning grooves are processed at the side of the board material, when assembling on site, the installation position of the board material can be positioned by using the positioning groove, thereby facilitating the on-site splicing. UTILITY MODEL CONTENTS
[0003] The utility model embodiment provides a magnesium oxysulfate board side grooving device, and aims at improving the safety of the operator during the grooving process of the magnesium oxysulfate board.
[0004] To achieve the above object, the utility model adopts the technical scheme of providing a magnesium oxysulfate board side grooving device, comprising:
[0005] A feeding frame, the length direction of the feeding frame is defined as the first direction;
[0006] A conveying assembly is installed on the feeding frame and is used for conveying the magnesium oxysulfate board along the first direction;
[0007] A cutting frame is installed above the feeding frame and is arranged across the feeding frame, the cutting frame is rotationally provided with a grooving cutter and a driving member for driving the rotation of the grooving cutter;
[0008] A pressing frame is installed on the cutting frame, the bottom of the pressing frame is rotationally provided with a pressing roller, and the pressing roller is used for pressing the magnesium oxysulfate board on the conveying assembly.
[0009] In a possible implementation manner, the position of the pressing frame on the cutting frame has the freedom of adjusting along the vertical direction.
[0010] In a possible implementation manner, a vertical rod is fixedly installed on the pressing frame and is arranged along the vertical direction, the vertical rod penetrates through the cutting frame, and two adjusting members are threadedly connected to the vertical rod, and the two adjusting members are located on the upper and lower sides of the cutting frame respectively.
[0011] In a possible implementation manner, the pressing frame is installed on both sides of the cutting frame along the first direction.
[0012] In a possible implementation, the pressing frame is hingedly provided with a connecting rod for mounting the pressing roller, the length direction of the connecting rod is obliquely arranged from top to bottom along the conveying direction of the magnesium oxysulfate board, and an elastic member for driving the connecting rod to swing downward is arranged between the pressing frame and the connecting rod.
[0013] In a possible implementation, two mounting plates are mounted on the cutting frame, the two mounting plates are arranged in a width direction of the feeding frame, and the positions of the two mounting plates on the cutting frame have a degree of freedom of adjustment in the vertical direction, and the slotting cutter is rotatably arranged on the two mounting plates.
[0014] In a possible implementation, a fixed rod arranged in the vertical direction is fixedly mounted on the mounting plate, both ends of the fixed rod penetrate through the cutting frame, and fasteners for abutting against both sides of the cutting frame are threadedly connected to both ends of the fixed rod.
[0015] In a possible implementation, the position of the slotting cutter on the mounting plate has a degree of freedom of adjustment in the width direction of the feeding frame.
[0016] In a possible implementation, a fixed column for being fixed to one side of the feeding frame is fixedly mounted on the cutting frame, and a gap for avoiding the magnesium oxysulfate board is arranged between the side of the feeding frame away from the fixed column and the cutting frame.
[0017] In a possible implementation, a supporting plate for supporting the magnesium oxysulfate board is mounted on the feeding frame, and the supporting plate is located directly below the slotting cutter.
[0018] Compared with the prior art, the scheme shown in the embodiments of the present application is provided with a feeding frame, a conveying assembly for conveying the magnesium oxysulfate board is mounted on the feeding frame, a cutting frame is mounted in the middle of the feeding frame, a slotting cutter is rotatably arranged at the bottom of the cutting frame, a driving member is a motor, a driving shaft of the driving member is arranged below the driving member in the vertical direction, and the slotting cutter is fixedly mounted on the driving shaft of the driving member. In the present application, a pressing frame is further mounted on the cutting frame, a plurality of pressing rollers are mounted on the pressing frame, and the plurality of pressing rollers are arranged in the width direction of the feeding frame. When the magnesium oxysulfate board is conveyed to the cutting frame for cutting, the magnesium oxysulfate board can be pressed on the conveying assembly by the pressing frame, which can ensure the stability of the magnesium oxysulfate board during the slotting process and ensure the stable conveying of the magnesium oxysulfate board. The operation of supporting and pushing by the operator can be reduced, and the safety of the operator during the operation process can be improved. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 A structural schematic view of the magnesium oxysulfate board side slotting device provided by the embodiments of the present application.
[0020] Figure 2 The mounting structure schematic view of the pressing frame is provided for the embodiment of the utility model.
[0021] Figure 3 The mounting structure schematic view of the mounting plate is provided for the embodiment of the utility model.
[0022] Mark explanation:
[0023] 1, feeding frame; 2, conveying assembly; 3, cutting frame; 31, mounting plate; 311, fixed rod; 312, fastener; 4, slotting cutter; 5, driving part; 6, pressing frame; 61, pressing roller; 611, connecting rod; 62, vertical rod; 63, adjusting part; 7, fixed column; 8, support plate. Specific implementation
[0024] In order to make the technical problems, technical schemes and beneficial effects to be solved by the utility model more clear and obvious, the utility model is further described in detail below by combining with the drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the utility model, and are not used to limit the utility model.
[0025] Please see Figures 1 to 3 The side slotting device of the magnesium oxysulfate plate is described. The side slotting device of the magnesium oxysulfate plate comprises a feeding frame 1, a conveying assembly 2, a cutting frame 3 and a pressing frame 6. The length direction of the feeding frame 1 is defined as a first direction; the conveying assembly 2 is installed on the feeding frame 1 and is used to convey the magnesium oxysulfate plate along the first direction; the cutting frame 3 is installed above the feeding frame 1 and is arranged across the feeding frame 1, and the cutting frame 3 is rotatably provided with a slotting cutter 4 and a driving part 5 used to drive the slotting cutter 4 to rotate; the pressing frame 6 is installed on the cutting frame 3, and the bottom of the pressing frame 6 is rotatably provided with a pressing roller 61, and the pressing roller 61 is used to press the magnesium oxysulfate plate on the conveying assembly 2.
[0026] Compared with the prior art, the magnesium sulfate plate side slotting device provided by the embodiment is provided with a feeding frame 1, a conveying assembly 2 for conveying the magnesium sulfate plate is installed on the feeding frame 1, a cutting frame 3 is installed at the middle of the feeding frame 1, a slotting cutter 4 is rotatably arranged at the bottom of the cutting frame 3, a driving member 5 is a motor, the driving shaft of the driving member 5 is arranged in a vertical direction below the driving member 5, and the slotting cutter 4 is fixedly installed on the driving shaft of the driving member 5. In the application, a pressing frame 6 is further installed on the cutting frame 3, a plurality of pressing rollers 61 are installed on the pressing frame 6, and the plurality of pressing rollers 61 are arranged in a width direction of the feeding frame 1. When the magnesium sulfate plate is conveyed to the cutting frame 3 for cutting, the magnesium sulfate plate can be pressed on the conveying assembly 2 by the pressing frame 6, which can ensure the stability of the magnesium sulfate plate during slotting by the pressing rollers 61 and can ensure that the magnesium sulfate plate can be stably conveyed. The operation of supporting and pushing by the operator can be reduced, and the safety of the operator during operation can be improved.
[0027] Specifically, in the embodiment, the conveying assembly 2 includes driving rollers and driven rollers which are arranged in parallel at intervals in a first direction. The driving rollers are driven to rotate by a motor, a conveying belt is arranged between the driving rollers and the driven rollers, and the magnesium sulfate plate is moved on the feeding frame 1 in the first direction by the driving of the conveying belt. A support rod is further installed in the conveying belt, the support rod is fixed on the feeding frame 1, and the length direction of the support rod is arranged in the first direction. Moreover, the support rod is located at the bottom of the upper layer of the conveying belt and is used for supporting the conveying belt to prevent the conveying belt from deforming.
[0028] Preferably, in the embodiment, two groups of conveying assemblies 2 are installed on the feeding frame 1, and the two groups of conveying assemblies 2 are arranged at intervals in a width direction of the feeding frame 1. Moreover, the driving rollers of the two groups of conveying assemblies 2 are drivingly connected to each other. Two pressing rollers 61 corresponding to the two conveying belts are arranged on the pressing frame 6, and the two pressing rollers 61 are located directly above the two conveying belts, respectively.
[0029] In some embodiments, the pressing frame 6 can adopt the structure as shown in Figure 1 , Figure 2 . See Figure 1 , Figure 2 , the position of the pressing frame 6 on the cutting frame 3 has a freedom degree of adjustment in a vertical direction. The position of the pressing frame 6 on the cutting frame 3 has a freedom degree of adjustment in a vertical direction, by adjusting the height of the pressing frame 6, the height of the corresponding pressing roller 61 can be adjusted, the height of the pressing roller 61 can be freely adjusted according to the thickness of the plate, so as to be suitable for slotting of plates with different thicknesses.
[0030] In some embodiments, the pressing frame 6 can adopt the structure as shown in Figure 2 . See Figure 2The vertical rod 62 is fixedly installed on the top of the pressing frame 6, and the bottom end of the vertical rod 62 is fixedly installed on the pressing frame 6 by welding. The cross beam for installing the vertical rod 62 is slidingly installed on the cutting frame 3, the vertical rod 62 penetrates through the cross beam, and two adjusting members 63 are threadedly connected to the vertical rod 62. The adjusting member 63 is a nut. The two adjusting members 63 are respectively located at the bottom end and the top end of the cross beam. The height of the pressing frame 6 is adjusted by adjusting the position of the adjusting member 63 on the vertical rod 62, and the structure is simple and convenient to operate.
[0031] Specifically, in the embodiment, the length direction of the pressing frame 6 is arranged along the width direction of the feeding frame 1, two vertical rods 62 are fixedly installed on the top of the pressing frame 6, and the two vertical rods 62 are arranged at intervals along the length direction of the pressing frame 6. Two cross beams corresponding to the vertical rods 62 are fixedly installed on one side of the cutting frame 3.
[0032] In some embodiments, the cutting frame 3 described above can adopt the structure as shown in Figure 1 , Figure 2 Figure 1 Figure 2 The pressing frame 6 is installed on both sides of the cutting frame 3 in the first direction. The pressing frame 6 is installed on both sides of the cutting frame 3, so that the magnesium oxysulfate plate can be pressed tightly on the conveying assembly 2 by the pressing roller 61 on the feeding side pressing frame 6 before the magnesium oxysulfate plate contacts the slotting knife 4. After the magnesium oxysulfate plate is slotted, the magnesium oxysulfate plate can be pressed tightly on the conveying assembly 2 by the pressing roller 61 on the discharging side pressing frame 6. The magnesium oxysulfate plate can be stably conveyed and positioned by the pressing roller 61 before and after slotting.
[0033] In some embodiments, the pressing roller 61 described above can adopt the structure as shown in Figure 2 Figure 2 The connecting rod 611 is hingedly arranged on the pressing frame 6 and used for mounting the pressing roller 61. The length direction of the connecting rod 611 is obliquely arranged from top to bottom along the conveying direction of the magnesium oxysulfate board, and an elastic member is arranged between the pressing frame 6 and the connecting rod 611 and used for driving the connecting rod 611 to swing downward. The connecting rod 611 is hingedly arranged on the pressing frame 6, and the connecting rod 611 is arranged at both ends of the connecting roller. The two ends of the connecting roller are rotatably arranged on the two connecting rods 611, respectively. One end of the connecting rod 611 is hingedly arranged on the pressing frame 6, and a limiting portion for limiting the connecting rod 611 to swing to a vertical state is arranged on the pressing frame 6. Thus, the connecting rod 611 can always be kept in an inclined state. The elastic member is a torsion spring, and the elastic member is used for driving the connecting rod 611 to swing downward. When the magnesium oxysulfate board is conveyed to the pressing roller 61, the elastic member can effectively press the magnesium oxysulfate board on the surface of the pressing roller 61.
[0034] In some embodiments, the cutting frame 3 described above can adopt the structure as shown in Figure 2 、 Figure 3 . Referring to Figure 2 、 Figure 3 , two mounting plates 31 are mounted on the cutting frame 3 and are arranged at intervals along the width direction of the feeding frame 1. The positions of the mounting plates 31 on the cutting frame 3 have the freedom of adjusting along the vertical direction. The slotted knives 4 are rotatably arranged on the two mounting plates 31. Two mounting plates 31 are mounted on the cutting frame 3, and the slotted knives 4 are correspondingly mounted on the two mounting plates 31. The two opposite side edges of the magnesium oxysulfate board can be simultaneously slotted, thereby improving the efficiency of slotted cutting of the magnesium oxysulfate board. Meanwhile, the heights of the two mounting plates 31 on the cutting frame 3 can be adjusted independently. When two slotted knives 4 are needed to work, the heights of the two mounting plates 31 can be lowered. When a single slotted knife 4 is needed to work, the mounting plate 31 corresponding to the slotted knife 4 that does not need to work can be raised, so that the height of the slotted knife 4 is higher than the height of the magnesium oxysulfate board. The flexibility of the equipment during use is improved.
[0035] Specifically, in the embodiment, guide rails are fixedly mounted on the cutting frame 3, and corresponding sliding blocks are fixedly mounted on the mounting plates 31, so that the mounting plates 31 can stably slide along the vertical direction.
[0036] In some embodiments, the mounting plate 31 described above can adopt the structure as shown in Figure 3 . Referring to Figure 3The mounting plate 31 is fixedly installed with a fixed rod 311 arranged in the vertical direction, both ends of the fixed rod 311 penetrate the cutting frame 3, and both ends of the fixed rod 311 are threadedly connected with fasteners 312 for abutting to both sides of the cutting frame 3. The fixed rod 311 is fixedly installed on the mounting plate 31, the side plates for mounting the fixed rod 311 are fixedly installed at the upper end and the bottom end of the cutting frame 3, and both ends of the fixed rod 311 are slidingly arranged on the side plates. The fasteners 312 are nuts, and the height of the mounting plate 31 can be adjusted by adjusting the position of the fasteners 312 on the fixed rod 311, and the mounting plate 31 can be fixed on the cutting frame 3. The structure is simple and convenient to operate.
[0037] In some embodiments, the above-mentioned slotting knife 4 can adopt the structure as shown in Figure 3 . Referring to Figure 3 , the position of the slotting knife 4 on the mounting plate 31 has the freedom of adjusting along the width direction of the feeding frame 1. An angle steel for mounting the driving member 5 is fixedly installed on the mounting plate 31, and the length direction of the angle steel is arranged along the width direction of the feeding frame 1. A long circular through hole for mounting the driving member 5 is arranged on the angle steel, and the length direction of the long circular through hole is arranged along the length direction of the angle steel. The mounting position of the driving member 5 can be adjusted, and the slotting knife 4 is mounted on the driving end of the driving member 5, so that the position of the driving member 5 can be correspondingly adjusted according to the width of the magnesium oxysulfate board.
[0038] In some embodiments, the above-mentioned cutting frame 3 can adopt the structure as shown in Figure 1 . Referring to Figure 1 , the cutting frame 3 is fixedly installed with a fixed column 7 for being fixed to one side of the feeding frame 1, and a gap is arranged between the side of the feeding frame 1 away from the fixed column 7 and the cutting frame 3 for avoiding the magnesium oxysulfate board. The fixed column 7 is fixedly installed at the bottom end on the ground or the feeding frame 1 on one side of the feeding frame 1, and a gap is arranged on the other side of the feeding frame 1, so that when the width size of the magnesium oxysulfate board is large, one side edge of the magnesium oxysulfate board can extend to the outside of the feeding frame 1. It can be suitable for cutting boards with large width size.
[0039] In some embodiments, the above-mentioned feeding frame 1 can adopt the structure as shown in Figure 2 . Referring to Figure 2 , the feeding frame 1 is installed with a support plate 8 for supporting the magnesium oxysulfate board, and the support plate 8 is located directly below the slotting knife 4. The support plate 8 is also arranged directly below the slotting knife 4, and when the slotting knife 4 acts on the magnesium oxysulfate board, the magnesium oxysulfate board can be supported by the support plate 8 to prevent the board from being bent downward by the force of the slotting knife 4 and affecting the slotting quality.
[0040] Preferably, in the embodiment, the position of the support plate 8 on the feeding frame 1 has the freedom of adjustment in the vertical direction. Two screw rods are fixedly installed at the bottom of the support plate 8, the screw rods are arranged through the feeding frame 1, and two nuts are threadedly connected on the screw rods, and the two nuts are respectively located at the bottom and the top of the feeding frame 1. Thus, the height of the support plate 8 can be adjusted, and the support plate 8 can be fixed to the feeding frame 1 through the two nuts.
[0041] The above merely describes the preferred embodiments of the present application and is not intended to limit the present application, and any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A device for slotting the side edges of a magnesium oxysulfate board, characterized in that, The application relates to a magnesium oxysulfate plate cutting device. The application comprises: a feeding frame (1), wherein the length direction of the feeding frame (1) is defined as a first direction; a conveying assembly (2) installed on the feeding frame (1) and used for conveying magnesium oxysulfate plates in the first direction; a cutting frame (3) installed above the feeding frame (1) and arranged across the feeding frame (1), wherein a slotting cutter (4) and a driving member (5) used for driving the slotting cutter (4) to rotate are rotationally arranged on the cutting frame (3); 2. The device for grooving the side edge of a magnesium oxysulfate plate according to claim 1, characterized in that, a pressing frame (6) installed on the cutting frame (3), wherein a pressing roller (61) used for pressing magnesium oxysulfate plates on the conveying assembly (2) is rotationally arranged on the bottom of the pressing frame (6).
3. The device for grooving the side edge of a magnesium oxysulfate plate according to claim 2, wherein The position of the pressing frame (6) on the cutting frame (3) has the freedom of vertical adjustment.
4. The device for grooving the side of a magnesium peroxide plate according to claim 1, wherein A vertical stand rod (62) is fixedly installed on the pressing frame (6), the stand rod (62) penetrates through the cutting frame (3), and two adjusting members (63) are threadedly connected to the stand rod (62), and the two adjusting members (63) are located on the upper and lower sides of the cutting frame (3) respectively.
5. The device for grooving the side edge of a magnesium peroxide plate according to claim 1, wherein The cutting frame (3) is provided with the pressing frame (6) on both sides in the first direction.
6. The magnesium oxysulfate board side slotting device of claim 1, wherein, A connecting rod (611) used for installing the pressing roller (61) is hingedly arranged on the pressing frame (6), the length direction of the connecting rod (611) is obliquely arranged from top to bottom along the conveying direction of the magnesium oxysulfate plates, and an elastic member used for driving the connecting rod (611) to swing downward is arranged between the pressing frame (6) and the connecting rod (611).
7. The device for grooving the side edge of a magnesium oxysulfate plate according to claim 6, characterized in that, Two mounting plates (31) are mounted on the cutting frame (3), the two mounting plates (31) are arranged at intervals in the width direction of the feeding frame (1), the position of the mounting plate (31) on the cutting frame (3) has the freedom of vertical adjustment, and the slotting cutter (4) is rotationally arranged on the two mounting plates (31).
8. The device for grooving the side edge of a magnesium oxysulfate plate according to claim 6, wherein A vertical fixing rod (311) is fixedly installed on the mounting plate (31), the two ends of the fixing rod (311) penetrate through the cutting frame (3), and the two ends of the fixing rod (311) are threadedly connected with fastening members (312) used for abutting against the upper and lower sides of the cutting frame (3).
9. The magnesium oxysulfate board side slotting device of claim 1, wherein, The position of the slotting cutter (4) on the mounting plate (31) has the freedom of adjustment in the width direction of the feeding frame (1).
10. The device for grooving the side edge of a magnesium peroxide plate according to claim 1, wherein A fixing column (7) used for fixing to one side of the feeding frame (1) is fixedly installed on the cutting frame (3), and a gap for avoiding magnesium oxysulfate plates is arranged between the side, away from the fixing column (7), of the feeding frame (1) and the cutting frame (3). A supporting plate (8) used for supporting magnesium oxysulfate plates is mounted on the feeding frame (1), and the supporting plate (8) is located directly below the slotting cutter (4).