Transverse cutting equipment for rock wool strip production
By designing a rock wool strip production equipment with support frames, drive components, limit components, cross-cutting components, and grinding components, the problems of rock wool board position correction and uneven cutting have been solved, achieving efficient and smooth cutting surfaces and improved product safety.
Patent Information
- Application Number
- CN202520019833.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-06
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2035-01-06
AI Technical Summary
Existing rock wool board cross-cutting equipment cannot effectively correct the position of the board, resulting in uneven cutting, reduced production efficiency and product quality, and compromised safety.
A cross-cutting device including a support frame, a drive component, a limiting component, a cross-cutting component, and a grinding component is designed. The limiting component corrects the position of the rock wool board, the cross-cutting component cuts the rock wool board into uniform strips, and the grinding component smooths the cross-section to ensure cutting quality.
It improves the production efficiency of rock wool strips, ensures smooth cut surfaces, and enhances product quality and safety.
Smart Images

Figure CN223734962U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of rock wool processing, in particular to a transverse cutting equipment for rock wool strip production. BACKGROUND
[0002] Rock wool board is also called rock wool thermal insulation decorative board, which is made of basalt as the main raw material and processed by high-temperature melting into artificial inorganic fiber, and has the characteristics of light weight, small thermal conductivity, heat absorption and non-combustion, and is most commonly used in buildings.
[0003] In the prior art, firstly, although the traditional transverse cutting equipment has transverse cutting capability, the size of the rock wool board is not fixed and unique, and the position of the rock wool board is not aligned when entering the conveyor belt, so the rock wool board must be positionally corrected before entering the transverse cutting equipment, thereby reducing the work efficiency and increasing the work difficulty; secondly, after the rock wool board is processed by the transverse cutting equipment, the transverse cutting surface of the rock wool board is not uniform due to various factors of the transverse cutting tool, thereby reducing the production quality and making the safety of the rock wool strip cannot be guaranteed in the subsequent installation and use process.
[0004] Therefore, it is necessary to design a transverse cutting equipment for rock wool strip production in the current environment to solve the technical problems raised in the background art. UTILITY MODEL CONTENT
[0005] The utility model provides a transverse cutting equipment for rock wool strip production to solve the technical problems raised in the background art.
[0006] The utility model provides a transverse cutting equipment for rock wool strip production, which comprises a support frame, the support frame is vertically installed on the ground, a driving part for conveying rock wool boards, the driving part is installed at the bottom end of the support frame, a limiting assembly for fixing rock wool boards of different sizes, the limiting assembly is installed at one end of the support frame, a transverse cutting assembly for transversely cutting rock wool boards into rock wool strips, the transverse cutting assembly is installed at one end of the support frame away from the limiting assembly, a polishing assembly for polishing the transverse surface of the rock wool strip, the polishing assembly is installed at one end of the support frame close to the transverse cutting assembly, and a storage box is installed at one end of the polishing assembly.
[0007] Optionally, the driving part comprises a motor, a driving wheel, a plurality of transmission shafts, a driven wheel and a track, the motor is installed at the bottom end of the support frame, the driving wheel is connected with the output end of the motor, a plurality of transmission shafts are respectively installed at both ends of the support frame, the driven wheel is connected with one of the transmission shafts, the transmission shaft is away from the transverse cutting assembly, the driving wheel drives the driven wheel to rotate through belt transmission, and the track is installed between a plurality of transmission shafts.
[0008] Optionally, the limiting assembly comprises a plurality of limiting telescopic rods, a plurality of limiting plates, a plurality of connecting plates, a plurality of limiting racks, a limiting gear and a knob, the plurality of limiting telescopic rods are respectively installed on the two sides of the support frame, the plurality of limiting plates are respectively installed on one end of the plurality of limiting telescopic rods, the plurality of connecting plates are installed on the top end of the plurality of limiting plates, the plurality of limiting racks are in one-to-one correspondence with and connected with the plurality of connecting plates, the limiting gear is engaged with the plurality of limiting racks, and the knob is coaxially arranged with the limiting gear.
[0009] Optionally, the transverse cutting assembly comprises a transverse cutting tool holder, a transverse cutting cylinder, a transverse cutting connecting plate, a plurality of blades, a first sensor and a first receiver, the transverse cutting tool holder is installed at the top end of the support frame, the transverse cutting cylinder is installed at the top end of the transverse cutting tool holder, the transverse cutting connecting plate is connected with the output end of the transverse cutting cylinder, the plurality of blades are uniformly installed at the bottom end of the transverse cutting connecting plate, the first sensor is installed on one side of the transverse cutting tool holder, and the first receiver is installed at the top end of the transverse cutting tool holder and electrically connected with the transverse cutting cylinder.
[0010] Optionally, the polishing assembly comprises a polishing support frame, a shunt cylinder, a shunt plate, a partition plate, a polishing supplement frame, a plurality of current plates, a plurality of metal wires, a second sensor and a second receiver, one end of the polishing support frame is connected with one end of the support frame, the shunt cylinder is installed on the outer wall of the polishing support frame, the output end of the shunt cylinder penetrates one side of the polishing support frame, the shunt plate is connected with the output end of the shunt cylinder, the partition plate is installed at the top end of the polishing support frame, the polishing supplement frame is installed at one end of the polishing support frame, the plurality of current plates are installed at the top end of the polishing supplement frame, the plurality of metal wires are in one-to-one correspondence with the plurality of current plates and are installed at the bottom end of the plurality of current plates, the second sensor is installed on one side of the polishing support frame, and the second receiver is installed on the outer wall of the polishing support frame and electrically connected with the shunt cylinder.
[0011] The beneficial effects of the utility model are as follows:
[0012] The cross-cutting equipment for rock wool strip production comprises a support frame, a driving part, a limiting assembly, a cross-cutting assembly, a polishing assembly and a storage box, the support frame is vertically installed on the ground, the driving part is installed at the bottom end of the support frame, the limiting assembly is installed at one end of the support frame, the cross-cutting assembly is installed at the end of the support frame away from the limiting assembly, the polishing assembly is installed at the end of the support frame close to the cross-cutting assembly, and the storage box is installed at the end of the polishing assembly, the cross-cutting equipment for rock wool strip production is provided with various structures, the position of the transportation positioning area can be adjusted and corrected before cross-cutting rock wool plates of different sizes, so that the production conditions of rock wool plates of different sizes are met, the production efficiency is improved, and the working difficulty is reduced; after the rock wool strips are cross-cut, the two cross-cut surfaces of the rock wool strips can be polished, so that the cross-cut surfaces of the rock wool strips are smoother, the product quality is improved, and the safety is ensured. BRIEF DESCRIPTION OF DRAWINGS
[0013] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed in the embodiment description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.
[0014] Fig. 1 It is a first view structural schematic diagram of the cross-cutting equipment for rock wool strip production provided by the present application.
[0015] Fig. 2 It is a second view structural schematic diagram of the cross-cutting equipment for rock wool strip production provided by the present application.
[0016] Fig. 3 It is a third view structural schematic diagram of the cross-cutting equipment for rock wool strip production provided by the present application.
[0017] Fig. 4 It is a schematic diagram of the A area of the cross-cutting equipment for rock wool strip production provided by the present application.
[0018] Explanation of reference signs: 100, support frame; 200, driving piece; 210, motor; 220, driving wheel; 230, transmission shaft; 240, driven wheel; 250, track; 300, limiting assembly; 310, limiting telescopic rod; 320, limiting plate; 330, connecting plate; 340, limiting rack; 350, limiting gear; 360, knob; 400, cross cutting assembly; 410, cross cutting tool holder; 420, cross cutting cylinder; 430, cross cutting connecting plate; 440, blade; 450, first sensor; 460, first receiver; 500, polishing assembly; 510, polishing support frame; 520, shunt cylinder; 530, shunt plate; 540, partition plate; 550, polishing supplement frame; 560, current plate; 570, metal wire; 580, second sensor; 590, second receiver; 600, storage box. DETAILED DESCRIPTION
[0019] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. It can be understood that the specific embodiments described herein are only used to explain the present application, and not to limit the present application. In addition, it should be noted that, in order to facilitate description, only parts related to the present application are shown in the drawings, rather than all structures. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application.
[0020] In this document, the term "embodiment" means that the specific features, structures or characteristics described in connection with the embodiment can be included in at least one embodiment of the present application. The phrase appears at various places in the specification does not necessarily all refer to the same embodiment, nor is it necessarily mutually exclusive or alternative embodiments to each other. Those skilled in the art explicitly and implicitly understand that the embodiments described herein can be combined with other embodiments.
[0021] Please refer to Figs. 1 to 4 The cross cutting device for rock wool strip production comprises a support frame 100, a driving piece 200, a limiting assembly 300, a cross cutting assembly 400, a polishing assembly 500 and a storage box 600.
[0022] The support frame 100 is vertically installed on the ground, the driving piece 200 is installed at the bottom end of the support frame 100, the limiting assembly 300 is installed at one end of the support frame 100, the cross cutting assembly 400 is installed at the end of the support frame 100 away from the limiting assembly 300, the polishing assembly 500 is installed at the end of the support frame 100 close to the cross cutting assembly 400, and the storage box 600 is installed at one end of the polishing assembly 500.
[0023] Wherein, the support frame 100 plays a supporting role, the rock wool board is first transported to the limiting assembly 300 and the cross-cutting assembly 400 by the driving part 200, the rock wool board first enters the limiting assembly 300, and the limiting assembly 300 is manually rotated to correct the position according to the size of the rock wool board;
[0024] Meanwhile, after the position correction of the rock wool board, the rock wool board enters the cross-cutting assembly 400, and the cross-cutting assembly 400 uniformly cuts the rock wool board into multiple rock wool strips of the same size;
[0025] Further, after the cutting of the rock wool strip is completed, the rock wool strip is transported to the polishing assembly 500, the transverse surface of the rock wool strip is polished in the polishing assembly 500, and then the rock wool strip is sent into the storage box 600, so that the quality of the rock wool strip is improved, and the safety of the rock wool strip is ensured.
[0026] The motor 210 is installed at the bottom end of the support frame 100, the driving wheel 220 is connected with the output end of the motor 210, a plurality of the transmission shafts 230 are respectively installed at both ends of the support frame 100, the driven wheel 240 is connected with one of the transmission shafts 230, the transmission shaft 230 is away from the cross-cutting assembly 400, the driving wheel 220 drives the driven wheel 240 to rotate through the belt transmission, and the crawler belt 250 is installed between a plurality of the transmission shafts.
[0027] Wherein, the motor 210 is powered on to work, the driving wheel 220 installed at the output end of the motor 210 rotates, and the driven wheel 240 connected with the driving wheel 220 through the synchronous belt also starts to rotate;
[0028] Meanwhile, there are two transmission shafts 230, one is installed at one end of the support frame 100 and close to the cross-cutting assembly 400, and the other is installed at one end of the support frame 100 and away from the cross-cutting assembly 400, the driven wheel 240 is connected with the transmission shaft 230 away from the cross-cutting assembly 400 and drives the transmission shaft 230 connected therewith to rotate, at this time, the transmission shaft 230 away from the cross-cutting assembly 400 drives the other transmission shaft 230 to rotate through the crawler belt 250, thereby realizing the function of the crawler belt 250 conveying the rock wool board.
[0029] In this embodiment, a plurality of the limiting telescopic rods 310 are respectively installed at both sides of the support frame 100, a plurality of the limiting plates 320 are respectively installed at one end of a plurality of the limiting telescopic rods 310, a plurality of the connecting plates 330 are installed at the top end of a plurality of the limiting plates 320, a plurality of the limiting racks 340 correspond to and are connected with a plurality of the connecting plates 330, the limiting gear 350 is engaged with a plurality of the limiting racks 340, and the knob 360 is coaxially arranged with the limiting gear 350.
[0030] Wherein, the plurality of limiting telescopic rod 310 is divided into two groups, respectively installed in support frame 100 both sides, a plurality of said limiting plate 320 is installed in two groups of limiting telescopic rod 310 output end, connecting plate 330 plays a connecting role, one end with limiting plate 320 connection, one end with limiting rack 340 connection;
[0031] At the same time, knob 360 with limiting gear 350 coaxial, through manual rotation knob 360, limiting gear 350 also rotates, clockwise rotation knob 360, with limiting gear 350 meshing limiting rack 340 relative movement, limiting rack 340 through connecting plate 330 drive limiting plate 320 start moving, vice versa, the same reason, due to the telescopic rod 310 is set, so that the limiting plate 320 can realize two actions, stretching, in turn, complete the position correction of rock wool board, reduce the work difficulty, improve the work efficiency.
[0032] In this embodiment, the cross cutter holder 410 is installed at the top end of the support frame 100, the cross cutter cylinder 420 is installed at the top end of the cross cutter holder 410, the cross cutter connecting plate 430 is connected with the output end of the cross cutter cylinder 420, a plurality of blades 440 are uniformly installed at the bottom end of the cross cutter connecting plate 430, the first sensor 450 is installed on one side of the cross cutter holder 410, the first receiver 460 is installed at the top end of the cross cutter holder 410 and is electrically connected with the cross cutter cylinder 420.
[0033] Wherein, the rock wool board is transported to the cross cutting assembly 400 after the position correction of the limiting assembly 300, the cross cutter holder 410 plays a supporting role to ensure the stability of the cross cutting process.
[0034] At the same time, when the rock wool board is transported to the vicinity of the cross cutter holder 410, the first sensor 450 will transmit a signal to the first receiver 460, and the first receiver 460 will issue a work instruction to the cross cutter cylinder 420, and the output end of the cross cutter cylinder 420 will start to push the cross cutter connecting plate 430. At this time, the plurality of blades 440 on the connecting plate 430 move towards the rock wool board on the track 250, thereby completing the work flow of cross cutting the rock wool board into rock wool strips.
[0035] In the embodiment, one end of the polishing support frame 510 is connected with one end of the support frame 100, the shunt air cylinder 520 is installed on the outer wall of the polishing support frame 510, and the output end of the shunt air cylinder 520 penetrates one side of the polishing support frame 510, the shunt plate 530 is connected with the output end of the shunt air cylinder 520, the partition plate 540 is installed at the top end of the polishing support frame 510, the polishing supplement frame 550 is installed at one end of the polishing support frame 510, a plurality of the current plates 560 are installed at the top end of the polishing supplement frame 550, a plurality of the metal wires 570 correspond to the plurality of the current plates 560 one by one, and the plurality of the metal wires 570 are installed at the bottom end of the plurality of the current plates 560, the second sensor 580 is installed at one side of the polishing support frame 510, and the second receiver 590 is installed on the outer wall of the polishing support frame 510 and is electrically connected with the shunt air cylinder 520.
[0036] In the embodiment, the top end of the polishing support frame 510 is inclined, so that the rock wool strip is transported by sliding. When the transversely processed rock wool strip is transported to the polishing support frame 510, the second sensor 580 at one side of the polishing support frame 510 transmits a signal to the second receiver 590, the second receiver 590 issues a working instruction, the shunt air cylinder 520 receives the instruction and starts to push the shunt plate 530 to move. The shunt plate 530 is arranged in an inclined manner at the output end of the shunt air cylinder 520, so that the rock wool strip can enter the area of the partition plate 540 vertically after entering the polishing support frame 510 through the cooperation of the shunt air cylinder 520 and the shunt plate 530. Due to the inclined shunt plate 530, the two transverse sections of the rock wool strip are limited during the pushing process of the shunt air cylinder 520, so that the two transverse sections of the rock wool strip are in contact with the two metal wires 570 after entering the area of the partition plate 540.
[0037] Meanwhile, the two current plates 560 are installed at the openings at the top end of the polishing supplement frame 550, and the bottom ends of the two current plates 560 are respectively installed with the two metal wires 570. When the rock wool strip enters the area of the partition plate 540, the rock wool strip continues to slide, and the current plates 560 arranged at the polishing supplement frame 550 release current when the rock wool strip slides to the polishing supplement frame 550, so that the two metal wires 570 are electrified by the current.
[0038] Further, due to the inclined shunt plate 530, the two transverse sections of the rock wool strip pass through the two electrified metal wires 570 during the pushing process of the shunt air cylinder 520, so as to complete the polishing of the transverse sections and improve the quality of the product, and the safety is ensured in the subsequent use.
[0039] In summary, the transportation work of the rock wool board on the support frame is completed by the driving member 200, the limiting of the rock wool board is completed by the limiting rack 340, the limiting gear 350 and the knob 360, the position correction work is completed, the cross-cutting work of the rock wool board is completed by the cross-cutting cylinder 420, the cross-cutting connecting plate 430 and the blade 440, the polishing work of the cross section of the rock wool strip is completed by the shunt cylinder 520, the shunt plate 530, the partition plate 540, the current plate 560 and the metal wire 570, the position adjustment and correction of the transportation positioning area can be performed before the rock wool board of different sizes is cross-cut, the equipment can meet the production conditions of cross-cutting the rock wool board of different sizes, the production efficiency is improved, and the work difficulty is reduced; after the rock wool strip is cross-cut, the two cross sections of the rock wool strip can be polished, the cross section of the rock wool strip is smoother, the product quality is improved, and the safety is ensured.
[0040] The above description is only the implementation manner of the utility model, and does not limit the patent range of the utility model, and equivalent structures or equivalent process transformations in the content of the utility model specification and drawings, or direct or indirect application in other related technical fields are also included in the patent protection range of the utility model.
Claims
1. A cross-cut apparatus for rock wool strip production, characterized in that, Comprising a support frame vertically installed on the ground; a driving member for transporting rock wool boards, the driving member is installed at the bottom end of the support frame; a limiting assembly for fixing rock wool boards of different sizes, the limiting assembly is installed at one end of the support frame; a cross-cutting assembly for cross-cutting rock wool boards into rock wool strips, the cross-cutting assembly is installed at one end of the support frame away from the limiting assembly; a polishing assembly for polishing the cross section of rock wool strips, the polishing assembly is installed at one end of the support frame close to the cross-cutting assembly; a storage box installed at one end of the polishing assembly.
2. A cross-cut apparatus for rock wool slab production according to claim 1, characterized in that, The driving member includes a motor, a driving wheel, a plurality of transmission shafts, a driven wheel, and a track. The motor is installed at the bottom end of the support frame. The driving wheel is connected to the output end of the motor. The plurality of transmission shafts are respectively installed at both ends of the support frame. The driven wheel is connected to one of the transmission shafts, which is away from the cross-cutting assembly. The driving wheel drives the driven wheel to rotate through belt transmission. The track is installed between the plurality of transmission shafts.
3. A cross-cut apparatus for rock wool slab production according to claim 1, characterized in that, The limiting assembly includes a plurality of limiting telescopic rods, a plurality of limiting plates, a plurality of connecting plates, a plurality of limiting racks, a limiting gear, and a knob. The plurality of limiting telescopic rods are respectively installed at both sides of the support frame. The plurality of limiting plates are respectively installed at one end of the plurality of limiting telescopic rods. The plurality of connecting plates are installed at the top end of the plurality of limiting plates. The plurality of limiting racks correspond to and are connected to the plurality of connecting plates. The limiting gear is engaged with the plurality of limiting racks. The knob is coaxially arranged with the limiting gear.
4. A cross-cut apparatus for rock wool slab production according to claim 1, characterized in that, The cross-cutting assembly includes a cross-cutting tool holder, a cross-cutting cylinder, a cross-cutting connecting plate, a plurality of blades, a first sensor, and a first receiver. The cross-cutting tool holder is installed at the top end of the support frame. The cross-cutting cylinder is installed at the top end of the cross-cutting tool holder. The cross-cutting connecting plate is connected to the output end of the cross-cutting cylinder. The plurality of blades are uniformly installed at the bottom end of the cross-cutting connecting plate. The first sensor is installed at one side of the cross-cutting tool holder. The first receiver is installed at the top end of the cross-cutting tool holder and is electrically connected to the cross-cutting cylinder.
5. A cross-cut apparatus for rock wool slab production according to claim 1, characterized in that, The polishing assembly includes a polishing support frame, a shunt cylinder, a shunt plate, a partition plate, a polishing supplement frame, a plurality of current plates, a plurality of metal wires, a second sensor, and a second receiver. One end of the polishing support frame is connected to one end of the support frame. The shunt cylinder is installed on the outer wall of the polishing support frame, and the output end of the shunt cylinder penetrates one side of the polishing support frame. The shunt plate is connected to the output end of the shunt cylinder. The partition plate is installed on the top end of the polishing support frame. The polishing supplement frame is installed on one end of the polishing support frame. A plurality of current plates are installed on the top end of the polishing supplement frame. A plurality of metal wires correspond to a plurality of current plates one by one, and a plurality of metal wires are installed on the bottom end of a plurality of current plates. The second sensor is installed on one side of the polishing support frame. The second receiver is installed on the outer wall of the polishing support frame, and the second receiver is electrically connected to the shunt cylinder.