Ceramic tile cutting equipment for constructional engineering
By introducing an adsorption positioning structure and guide groove adjustment into the tile cutting equipment, the problem of inaccurate positioning in existing equipment has been solved, achieving stable and efficient tile cutting and improving the yield of the cutting equipment.
Patent Information
- Application Number
- CN202423089481.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-13
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-12-13
AI Technical Summary
Existing tile cutting equipment used in construction projects lacks positioning functions, resulting in uneven cuts and low cutting efficiency, which easily leads to defective products.
An adsorption positioning structure is adopted, and the second electric guide rail and guide rail slider are used to control the stable movement of the tile. Combined with the guide groove and bidirectional screw adjustment positioning component, the tile can be stably positioned and cut flat.
It improves the stability of tile cutting and the finished product qualification rate, avoids skewed cut lines, and enhances cutting efficiency and finished product quality.
Smart Images

Figure CN223573477U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of building engineering, especially relate to a ceramic tile cutting equipment for building engineering. BACKGROUND
[0002] The ceramic tile is a kind of common building decoration material, in building engineering, when building is completed and decorated, usually, ceramic tile is laid on the building ground, so that the building ground is more neat, smooth and beautiful.In the process of laying ceramic tile, cutting equipment is used to cut the larger ceramic tile locally according to the actual laying area, so that the cut ceramic tile can be more adapted to the ground.
[0003] Through searching and combining with actual ceramic tile laying and cutting work experience, it is found that the current cutting equipment is mostly table type and handheld type, but the cutting equipment lacks positioning function for ceramic tile in the process of cutting, and the cutting line is prone to be inclined, which affects the cutting efficiency of ceramic tile and causes waste due to unqualified products.Therefore, it is urgent to improve the existing ceramic tile cutting equipment for building engineering and provide a ceramic tile cutting equipment for building engineering. UTILITY MODEL CONTENT
[0004] The utility model aims at the deficiencies in the prior art, provides a ceramic tile cutting equipment for building engineering with reasonable design, simple structure, can be adsorbed and positioned to ceramic tile, and cutting is more stable, to solve the problems in the prior art.
[0005] In order to realize the above-mentioned purpose, the utility model adopts the following technical scheme:
[0006] A ceramic tile cutting equipment for building engineering, comprising a machining table, a cutting assembly, a second electric guide rail and a central controller, the right upper side of the machining table is provided with the cutting assembly, the bottom inner wall of the front and rear sides of the machining table is provided with a guide groove, a cross bar is arranged between the two guide grooves, the top inner wall of the front and rear sides of the machining table is fixedly installed with a second electric guide rail, a second guide rail sliding block is installed on the second electric guide rail, a servo motor is fixedly arranged at the bottom end middle position of the rear second guide rail sliding block, a bidirectional screw rod is fixedly connected to the output end of the servo motor, the front end of the bidirectional screw rod is connected with the front second guide rail sliding block bearing, a set of positioning assembly is arranged on the outer side of the opposite end of the bidirectional screw rod, a drag rod is fixedly arranged between the two second guide rail sliding blocks and symmetrically left and right, a sliding groove is formed between the two drag rods, and a central controller is fixedly installed at the right front of the machining table.
[0007] As a preferred implementation, the cutting assembly includes an electric push rod, a mounting plate, a first electric guide rail, a first guide rail slider, a drive motor and a cutting blade, the electric push rod is provided with two and is fixedly installed on the upper side of the right end of the processing table, the telescopic end of the electric push rod is fixedly connected with the mounting plate, the bottom end surface of the mounting plate is fixedly installed with the first electric guide rail, the first electric guide rail is installed with the first guide rail slider, the bottom end of the first guide rail slider is fixedly installed with the drive motor, and the output end of the drive motor is fixedly connected with the cutting blade.
[0008] As a preferred implementation, the cutting blade is fixedly connected with the output end of the drive motor in a bolt and nut mode, and the material of the cutting blade is a diamond blade.
[0009] As a preferred implementation, the guide groove includes a straight section and an inclined section located at the left end of the straight section, the inclined section is communicated with the straight section, and the two ends of the cross rod are guided to slide on the inner sides of the front and rear guide grooves.
[0010] As a preferred implementation, the positioning assembly includes a positioning cylinder, a fixed tube, a rubber pad, a movable rod and a limiting block, the bottom end of the positioning cylinder is internally fixed with the fixed tube in a front-rear symmetrical mode, the fixed tube is threadedly sleeved on the outer side of the bidirectional screw rod, the top end of the positioning cylinder is bonded with the rubber pad, the center of the positioning cylinder is provided with the movable rod, the top end of the movable rod is bonded with the rubber pad, the bottom of the inner wall of the positioning cylinder is fixedly provided with the limiting block, and the bottom end of the movable rod penetrates through the limiting block and is slidably connected with the limiting block.
[0011] As a preferred implementation, the top end of the positioning cylinder is guided to slide in the sliding groove, and the rubber pad is in the same horizontal plane as the upper end surface of the drag rod.
[0012] As a preferred implementation, the bottom end of the movable rod is slidably sleeved on the outer side of the cross rod, the upper end of the movable rod is internally provided with a through groove structure, and the movable rod is slidably connected with the bidirectional screw rod.
[0013] Compared with the prior art, the utility model has the advantages of:
[0014] In the scheme of the utility model:
[0015] The smooth side of the ceramic tile is tightly attached to the rubber pad, the second electric guide rail and the second guide rail slider are used, the ceramic tile is conveniently controlled to move horizontally and uniformly, the inclined section of the guide groove is used when moving, the cross rod can be right shifted while driving the movable rod to stably and vertically move downward, the middle position of the rubber pad can be recessed into the positioning cylinder, the rubber pad and the ceramic tile form a sealed space with an air pressure value less than a normal value, the ceramic tile can be adsorbed and positioned, displacement of the ceramic tile during cutting is avoided, the cutting line is prevented from being skewed, the cutting efficiency is improved, and the qualified rate of finished products is higher.
[0016] The height position of the cutting blade is adjusted by the electric push rod, the first electric guide rail and the first guide rail slider are used to control the forward and backward movement of the cutting blade, and the cutting device is adjusted according to the cutting position of the ceramic tile, the ceramic tile is stably moved right by the second electric guide rail and the second guide rail slider after being adsorbed and positioned, so that the stable linear cutting of the ceramic tile is facilitated, the cut is smoother, and the distance between the two groups of positioning components can be adjusted by the bidirectional screw rod, so that the adsorption and positioning requirements of ceramic tiles of different sizes are met. BRIEF DESCRIPTION OF DRAWINGS
[0017] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description, and the drawings will be described as follows:
[0018] Figure 1 It is a perspective view structural schematic diagram of the present application;
[0019] Figure 2 It is a left view structural schematic diagram of the cutting assembly of the present application;
[0020] Figure 3 It is a guide groove structural schematic diagram of the present application;
[0021] Figure 4 It is a left view cross-sectional structural schematic diagram of the positioning assembly of the present application;
[0022] Figure 5 It is a left view structural schematic diagram of the working state of the present application.
[0023] In the drawings:
[0024] 1, processing table; 2, cutting assembly; 21, electric push rod; 22, mounting plate; 23, first electric guide rail; 24, first guide rail slider; 25, driving motor; 26, cutting blade; 3, guide groove; 4, second electric guide rail; 5, second guide rail slider; 6, servo motor; 7, bidirectional screw rod; 8, positioning assembly; 81, positioning cylinder; 82, fixed tube; 83, rubber pad; 84, movable rod; 85, limiting block; 9, cross bar; 10, drag bar; 11, sliding groove; 12, central controller. DETAILED DESCRIPTION
[0025] The following described embodiments are only a part of the embodiments of the present application, and do not represent all the embodiments consistent with the present application. Now, the exemplary embodiments will be described as follows in combination with the drawings:
[0026] As Figures 1-5As shown, the utility model building engineering ceramic tile cutting equipment, it includes processing platform 1, cutting assembly 2, second electric guide rail 4 and central controller 12, the right upper of processing platform 1 is equipped with cutting assembly 2, the bottom inner wall of the front and rear two sides of processing platform 1 is all set up with guide groove 3, is equipped with cross bar 9 between two guide grooves 3, the top inner wall of the front and rear two sides of processing platform 1 is all fixedly installed with second electric guide rail 4, is installed with second guide rail sliding block 5 on second electric guide rail 4, the bottom end middle position of rear second guide rail sliding block 5 is fixed with servo motor 6, the output of servo motor 6 is fixedly connected with two-way screw rod 7, the front end of two-way screw rod 7 is connected with the bearing of front second guide rail sliding block 5, and the outside of the opposite thread of both ends of two-way screw rod 7 is equipped with a set of positioning assembly 8 respectively, and the left and right symmetry of two second guide rail sliding blocks 5 is fixed with drag link 10, and the slide slot 11 is formed between two drag links 10, and the right front of processing platform 1 is fixedly installed with central controller 12.
[0027] On the basis of the above structure, cutting assembly 2 includes electric push rod 21, mounting plate 22, first electric guide rail 23, first guide rail sliding block 24, driving motor 25 and cutting blade 26, electric push rod 21 is provided with two and is fixedly installed on the right end of processing platform 1 on the top of the front and rear two sides, the telescopic end of electric push rod 21 is fixedly connected with mounting plate 22, the bottom end surface middle position of mounting plate 22 is fixedly installed with first electric guide rail 23, first electric guide rail 23 is installed with first guide rail sliding block 24, the bottom end of first guide rail sliding block 24 is fixedly installed with driving motor 25, and the output of driving motor 25 is fixedly connected with cutting blade 26.
[0028] On the basis of the above structure, the output of cutting blade 26 and driving motor 25 is fixedly connected in the mode of bolt and nut, and the material of cutting blade 26 is diamond blade.
[0029] In this embodiment, the height position of cutting blade 26 is adjusted by electric push rod 21, and the front and rear movement of cutting blade 26 is controlled by first electric guide rail 23 and first guide rail sliding block 24, so that the corresponding adjustment according to the cutting position of ceramic tile is facilitated.
[0030] On the basis of the above structure, guide groove 3 includes a straight section and an inclined section at the left end of the straight section, the inclined section is connected with the straight section, and the two ends of cross bar 9 are guided and slid on the inner sides of the front and rear two guide grooves 3.
[0031] In this embodiment, the inclined section of guide groove 3 facilitates the right movement and downward movement of cross bar 9.
[0032] On the basis of the above structure, the positioning assembly 8 comprises a positioning cylinder 81, a fixed pipe 82, a rubber pad 83, a movable rod 84 and a limiting block 85, the fixed pipe 82 is fixed in the inside of the bottom end of the positioning cylinder 81 in a front-rear symmetry mode, the fixed pipe 82 is threadedly sleeved on the outside of the bidirectional screw rod 7, the rubber pad 83 is bonded to the top end of the positioning cylinder 81, the movable rod 84 is arranged at the center of the positioning cylinder 81, the top end of the movable rod 84 is bonded to the rubber pad 83, the limiting block 85 is fixedly arranged on the inner wall of the bottom of the positioning cylinder 81, and the bottom end of the movable rod 84 penetrates through the limiting block 85 and is slidably connected with the limiting block 85.
[0033] In the embodiment, when the positioning assembly 8 moves to the right, the movable rod 84 can be driven to move downward by the downward moving cross rod 9, so that the middle position of the rubber pad 83 can be pulled to recess into the positioning cylinder 81, the rubber pad 83 and the ceramic tile can form a sealed space with an air pressure value less than a normal value, and the ceramic tile can be adsorbed and positioned.
[0034] On the basis of the above structure, the top end of the positioning cylinder 81 is slidably arranged in the sliding groove 11, and the rubber pad 83 is located on the same horizontal plane as the upper end surface of the drag rod 10.
[0035] In the embodiment, the setting of the sliding groove 11 can improve the state stability of the positioning cylinder 81 in the sliding adjustment process.
[0036] On the basis of the above structure, the bottom end of the movable rod 84 is slidably sleeved on the outside of the cross rod 9, the upper end of the movable rod 84 is internally provided with a through groove structure, and the movable rod 84 is slidably connected with the bidirectional screw rod 7.
[0037] In the embodiment, the through groove structure arranged in the inside of the movable rod 84 can avoid the influence of the setting of the bidirectional screw rod 7 on the lifting adjustment of the movable rod 84.
[0038] The working principle of the utility model is as follows:
[0039] In use, first, the smooth side of the ceramic tile is placed downward above the drag rod 10, so that the smooth surface of the ceramic tile is closely attached to the rubber pad 83, then the height position of the cutting blade 26 is adjusted by the electric push rod 21, the first electric guide rail 23 and the first guide rail sliding block 24 are used to control the forward and backward movement of the cutting blade 26, and the corresponding adjustment can be conveniently made according to the cutting position of the ceramic tile.
[0040] After the position adjustment of the cutting blade 26 is completed, the second electric guide rail 4 and the second guide rail slider 5 can be used to control the horizontal and uniform movement of the ceramic tile to the right, and at the same time, the inclined section of the guide groove 3 can make the cross rod 9 move to the right and drive the movable rod 84 to vertically move downward under the limiting action of the limiting block 85, so that the movable rod 84 can pull the middle part of the rubber pad 83 to recess into the positioning cylinder 81, and the rubber pad 83 and the ceramic tile can form a sealed space with an air pressure value less than the normal air pressure value outside, thereby achieving the effect of adsorbing and positioning the ceramic tile, avoiding the displacement of the ceramic tile during movement and cutting, and improving the cutting efficiency and the qualified rate of the finished product.
[0041] The second electric guide rail 4 and the second guide rail slider 5 can be used to control the stable and smooth movement of the ceramic tile to the right, which is beneficial to the stable and straight cutting of the ceramic tile, and the cut is smoother. Moreover, before cutting the ceramic tile, the servo motor 6 can be started to control the rotation of the bidirectional screw rod 7, and the fixed tube 82 connected with the bidirectional screw rod 7 can be used to control the stable movement of the two groups of positioning assemblies 8 along the cross rod 9 and the sliding groove 11 in opposite directions, and the distance between the two groups of positioning assemblies 8 can be adjusted to meet the adsorbing and positioning requirements of ceramic tiles of different sizes. Figure 4 As shown in the drawings, the through groove structure in the movable rod 84 can avoid the influence of the bidirectional screw rod 7 on the lifting adjustment of the movable rod 84.
[0042] It should be particularly noted that the wire connection mode, specific structure and working principle of the first electric guide rail 23, the first guide rail slider 24, the second electric guide rail 4, the second guide rail slider 5 and the central controller 12 in the cutting device all adopt existing mature technical means, and therefore will not be described in detail.
Claims
1. A ceramic tile cutting device for construction engineering, comprising a processing table (1), a cutting assembly (2), a second electric guide rail (4) and a central controller (12), characterized in that: A cutting component (2) is provided on the upper right side of the processing table (1). Guide grooves (3) are provided on the bottom inner walls of the front and rear sides of the processing table (1). A crossbar (9) is provided between the two guide grooves (3). A second electric guide rail (4) is fixedly installed on the top inner walls of the front and rear sides of the processing table (1). A second guide rail slider (5) is installed on the second electric guide rail (4). A servo motor (6) is fixed at the middle of the bottom end of the second guide rail slider (5) at the rear. A bidirectional lead screw (7) is fixedly connected to the output end of the servo motor (6). The front end of the bidirectional lead screw (7) is connected to the bearing of the second guide rail slider (5) at the front. A set of positioning components (8) is provided on the outer side of the opposite threaded ends of the two ends of the bidirectional lead screw (7). A drag bar (10) is fixedly fixed symmetrically between the two second guide rail sliders (5). A sliding groove (11) is formed between the two drag bars (10). A central controller (12) is fixedly installed on the front right side of the processing table (1).
2. A ceramic tile cutting apparatus for use in construction work according to claim 1, characterized in that: The cutting assembly (2) includes an electric push rod (21), a mounting plate (22), a first electric guide rail (23), a first guide rail slider (24), a drive motor (25), and a cutting blade (26). There are two electric push rods (21), which are fixedly installed on the upper front and rear sides of the right end of the processing table (1). The telescopic end of the electric push rod (21) is fixedly connected to the mounting plate (22). The first electric guide rail (23) is fixedly installed at the middle position of the bottom end face of the mounting plate (22). The first guide rail slider (24) is installed on the first electric guide rail (23). The drive motor (25) is fixedly installed at the bottom end of the first guide rail slider (24). The output end of the drive motor (25) is fixedly connected to the cutting blade (26).
3. A ceramic tile cutting apparatus for use in construction work according to claim 2, characterized in that: The cutting blade (26) is fixedly connected to the output end of the drive motor (25) by bolts and nuts. The material of the cutting blade (26) is diamond.
4. A ceramic tile cutting apparatus for use in construction work as claimed in claim 1, wherein: The guide groove (3) includes a straight section and an inclined section located at the left end of the straight section. The inclined section is connected to the straight section. The two ends of the crossbar (9) are respectively guided and slidably located inside the front and rear guide grooves (3).
5. A ceramic tile cutting apparatus for use in construction work as claimed in claim 1, wherein: The positioning component (8) includes a positioning cylinder (81), a fixing tube (82), a rubber pad (83), a movable rod (84), and a limiting block (85). The fixing tube (82) is fixedly fixed symmetrically at the bottom of the positioning cylinder (81). The fixing tube (82) is threaded onto the outside of the double-acting screw (7). The rubber pad (83) is bonded to the top of the positioning cylinder (81). The movable rod (84) is located at the center of the positioning cylinder (81). The top of the movable rod (84) is bonded to the rubber pad (83). The limiting block (85) is fixedly provided on the bottom inner wall of the positioning cylinder (81). The bottom end of the movable rod (84) passes through the limiting block (85) and is slidably connected to the limiting block (85).
6. A ceramic tile cutting apparatus for use in construction work according to claim 5, characterized in that: The top guide of the positioning cylinder (81) is located in the slide groove (11), and the rubber pad (83) and the upper end face of the drag bar (10) are on the same horizontal plane.
7. A ceramic tile cutting apparatus for use in construction work according to claim 6, characterized in that: The bottom end of the movable rod (84) is sleeved outside the cross rod (9), and a through slot structure is formed in the inner upper end of the movable rod (84), and the movable rod (84) is slidably connected with the bidirectional screw rod (7).