A type of slanted vertical tile pusher
Patent Information
- Application Number
- CN202521774303.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-20
- Publication Date
- 2026-09-01
- Estimated Expiration
- 2035-08-20
AI Technical Summary
[0003]传统的瓷砖推刀中,刀头与支架为一体式设计,使用时需贴近地面水平操作,用户需弯腰或蹲下操作,长期使用易导致腰椎劳损,同时由于刀头与支架不可分离,清洁或更换部件时需要对整体进行拆卸,导致工作效率降低
本实用新型通过在斜立式支架底部设置可调节的支撑脚以及连接组件中的定位舌和卡挡块相互配合,将斜立式支架与轨道连接板牢固连接,且卡挡块与卡挡结构可拆卸连接,既保证了整体结构的稳定性,又便于拆卸和组装,滑刀组件与底板通过轨道连接板可分离连接,便于清洁或更换部件,无需对整体进行拆卸,提高了工作效率,同时,这种设计可能使操作更加灵活,便于工作人员根据需要调整刀具位置和角度,减少弯腰或蹲下的操作需求,降低腰椎劳损风险。
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Figure CN224702291U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of construction machinery technology, and in particular to an inclined vertical tile pusher. Background Technology
[0002] In interior decoration work, workers need to lay tiles on the floor and walls. However, due to the differences in the structure, shape and size of buildings, workers often need to cut the tiles into specific sizes before they can be used.
[0003] In traditional tile pushers, the blade and the bracket are designed as one piece. When using them, the blade must be close to the ground and operated horizontally. Users need to bend over or squat down to operate them. Long-term use can easily lead to lumbar strain. At the same time, since the blade and the bracket cannot be separated, the whole thing needs to be disassembled when cleaning or replacing parts, which reduces work efficiency.
[0004] In view of this, the inventor specifically designed an inclined vertical tile pusher, which led to this invention. Utility Model Content
[0005] To solve the above problems, the technical solution of this utility model is as follows: An inclined support frame is provided with adjustable support feet at the bottom to adapt to the inclination angle of the ground. The inclined support frame includes an inclined base plate and a locking structure located on the base plate. The locking structure includes a locking frame and a locking bone. The locking frame is fixed to the base plate. The connecting component includes a positioning tongue and a locking block. The positioning tongue is fixed to one side of the locking block. The locking block has a spring tongue groove near the upper part of the positioning tongue. A spring tongue that can move back and forth is provided in the spring tongue groove. The top of the spring tongue has a groove that adapts to the locking bone. The spring tongue, the positioning tongue and the locking bone are detachably connected. The positioning tongue is inserted into the locking frame and fits against the locking frame. The slide knife assembly is connected to the stop block via a track connecting plate.
[0006] Preferably, the front end of the track connecting plate is provided with positioning pins on both sides near the bottom plate, and the positioning plate is provided with positioning holes that cooperate with the positioning pins.
[0007] Preferably, the sliding knife assembly includes a spring positioning hook and a handle sliding knife. The spring positioning hook is located at the top of the track connecting plate, and the track connecting plate has a gap for the sliding of the handle sliding knife. The spring positioning hook and the positioning plate are detachably connected.
[0008] Preferably, the track connecting plate is provided with a guide rail and a cutting slit, the guide rail is slidably connected to the handle slide knife, and the guide rail is provided on the track connecting plate.
[0009] Preferably, the handle slide knife includes a handle shell, a cutting wheel, and a pressing rod. The cutting wheel is located at the bottom of the handle shell, and the pressing rod is hinged to the handle shell via a connecting shaft. One end of the pressing rod is engaged with the cutting wheel.
[0010] Preferably, the handle shell is provided with a pulley on the side near the track connecting plate.
[0011] Preferably, the card block has pressure feet on both sides of its bottom, and the base plate has an upwardly protruding dividing strip. The pressure feet and the upwardly protruding dividing strip cooperate to form a cutting force-bearing surface.
[0012] The technical solution provided by this utility model has the following beneficial effects: This invention securely connects the inclined vertical bracket to the track connecting plate by setting adjustable support feet at the bottom of the inclined vertical bracket and cooperating with positioning tongues and locking blocks in the connecting assembly. The locking blocks and locking structures are detachably connected, which ensures the stability of the overall structure and facilitates disassembly and assembly. The sliding knife assembly and the base plate can be detachably connected through the track connecting plate, which facilitates cleaning or replacement of parts without disassembling the whole, thus improving work efficiency. At the same time, this design may make operation more flexible, allowing workers to adjust the position and angle of the knife as needed, reducing the need for bending over or squatting, and lowering the risk of lumbar strain. Attached Figure Description
[0013] The accompanying drawings, which are provided to further illustrate the present invention and constitute a part of the present invention, illustrate exemplary embodiments of the present invention and are used to explain the present invention, but do not constitute an undue limitation of the present invention.
[0014] in: Figure 1 This is a schematic diagram of the overall structure of this utility model; Figure 2 This is a schematic diagram of the connecting component in this utility model; Figure 3 yes Figure 1 A magnified schematic diagram of the partial structure at point A in the middle; Figure 4 This is a cross-sectional structural diagram of the connecting component in this utility model; Figure 5 This is a top view of the present invention; Figure 6 yes Figure 1 A magnified schematic diagram of the structure at point B in the middle.
[0015] Label Explanation: 1. Inclined support; 11. Base plate; 12. Clamping structure; 13. Positioning plate; 14. Clamping frame; 15. Clamping bone; 16. Upper convex dividing strip; 17. Positioning hole; 2. Sliding knife assembly; 21. Spring positioning hook; 22. Track connecting plate; 23. Handle sliding knife; 24. Positioning pin; 25. Handle shell; 26. Cutting wheel; 27. Lower pressure rod; 28. Pulley; 3. Connecting assembly; 31. Positioning tongue; 32. Clamping block; 33. Spring tongue groove; 34. Spring tongue; 35. Presser foot. Detailed Implementation
[0016] To make the technical problem to be solved, the technical solution, and the beneficial effects of this utility model clearer and more understandable, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain this utility model and are not intended to limit this utility model.
[0017] Please see Figures 1 to 6 This is a slanted vertical tile pusher, which is the preferred embodiment of the present utility model, comprising: The inclined support 1 has adjustable support feet at the bottom to adapt to the inclination angle of the ground. The inclined support 1 includes an inclined base plate 11 and a locking structure 12 located on the base plate 11. The adjustable support feet at the bottom of the inclined support 1 can be adjusted according to the inclination angle of the ground to ensure the stability of the support and adapt to different building structures and ground shapes. This allows the tile cutting operation to be carried out smoothly under various complex ground conditions. Unlike traditional tile pushers, this design does not require horizontal operation close to the ground. Users do not need to bend over or squat down, which can effectively reduce the risk of lumbar strain. It is especially suitable for long-term operation, improving work efficiency while reducing the physical burden on workers. The sliding blade assembly 2 is detachably connected to the base plate 11 via a track connecting plate. The sliding blade assembly 2 includes a spring positioning hook 21, a track connecting plate 22, and a handle sliding blade 23. The spring positioning hook 21 is located at the top of the track connecting plate 22. The track connecting plate 22 has a gap for the sliding blade 23 to slide. The spring positioning hook 21 is detachably connected to the positioning plate 13. The handle sliding blade 23 is slidably connected to the track connecting plate 22. The handle sliding blade 23 can slide along the track connecting plate 22, and the cutting position and angle can be adjusted as needed to meet the cutting requirements of tiles of different sizes and shapes, thus improving the versatility and flexibility of the push blade. The connecting component 3 allows for the detachable connection between the inclined support 1 and the track connecting plate. The connecting component 3 includes a positioning tongue 31 and a locking block 32. The positioning tongue 31 is fixed to one side of the locking block 32, and the bottom of the track connecting plate is detachably connected to the other side of the locking block 32. The locking block 32 is detachably connected to the locking structure 12. The positioning tongue 31 and the locking block 32 in the connecting component 3 cooperate with each other to firmly connect the inclined support 1 and the track connecting plate. The locking block 32 is detachably connected to the locking structure 12, forming a multi-point fixation, which enhances the stability of the overall structure and ensures that the pusher will not shake or shift during the cutting process, thereby improving the accuracy and safety of the cutting.
[0018] Please refer to Figure 1 The locking structure 12 includes a locking frame 14 and a locking bone 15. The locking block 32 is provided with a spring tongue groove 33 near the positioning tongue 31. A spring tongue 34 that can move back and forth is provided in the spring tongue groove 33. The spring tongue 34 is located above the positioning tongue 31 and passes through the locking block 32. The spring tongue 34 and the locking bone 15 can be detachably connected. The locking block 32, the locking bone 15, and the locking frame 14 can be detachably connected. The spring tongue 34 can move back and forth, making the connection and disassembly of the track connecting plate and the inclined vertical bracket 1 more convenient and quick. The cooperation of the locking frame 14 and the locking bone 15, as well as the detachable connection of the spring tongue 34 with the locking bone 15 and the locking frame 14, form a multi-point fixing structure. This design enhances the overall stability of the locking structure 12, ensuring a firm connection between the track connecting plate and the inclined support 1. It prevents loosening or wobbling during tile cutting, guaranteeing cutting accuracy and safety. The locking block 32 has a spring tongue groove 33 near the upper part of the positioning tongue 31. This layout makes positioning and alignment between the positioning tongue 31 and the locking block 32 simpler and more intuitive. During installation, workers can quickly insert the positioning tongue 31 into the spring tongue groove 33, and then secure it through the connection of the spring tongue 34.
[0019] For details, please refer to Figures 1 to 3 The bottom of the block 32 is provided with pressure feet 35 on both sides, and the base plate 11 is provided with an upwardly protruding dividing strip 16. The pressure feet 35 and the upwardly protruding dividing strip 16 cooperate to form a cutting force surface. When cutting tiles, the cooperation between the pressure feet 35 and the upwardly protruding dividing strip 16 can evenly distribute the force generated during the cutting process on the base plate 11. This even distribution can reduce the situation of excessive local stress and avoid deformation or damage to the base plate 11 due to stress concentration, thereby improving the service life and structural stability of the base plate 11.
[0020] For details, please refer to Figures 1 to 3The track connecting plate includes a guide rail and a cutting slit. The guide rail is slidably connected to the handle slide 23, providing a stable and straight sliding path for the handle slide 23. This allows the operator to precisely control the cutting position and direction, ensuring the straightness and accuracy of the cut. The guiding effect of the guide rail reduces the shaking and deviation of the handle slide 23 during the cutting process, thereby improving the cutting quality. The design of the cutting slit also helps to collect and guide the debris generated during the cutting process, keeping the working environment clean and preventing debris from interfering with the cutting process.
[0021] For details, please refer to Figure 3 Two positioning pins 24 are provided on the side of the track connecting plate 22 near the base plate 11. Positioning plates 13 have positioning holes 17 that mate with the positioning pins 24. The engagement of the positioning pins 24 and the positioning holes 17 provides a direct alignment method, allowing the track connecting plate and the inclined support 1 to be quickly and accurately aligned and connected during assembly. This design reduces assembly errors caused by inaccurate visual alignment, ensures precise connection between the track connecting plate and the inclined support 1, and improves assembly efficiency. The engagement of the positioning pins 24 and the positioning holes 17 forms a rigid connection point, effectively preventing the track connecting plate from loosening or shifting during use. This stable connection structure ensures the stability of the track connecting plate during cutting, preventing the cutting trajectory from deviating from the predetermined path due to component loosening, thereby improving the straightness and accuracy of the cut.
[0022] Specifically, the handle slide 23 includes a handle housing 25, a cutting wheel 26, and a pressing rod 27. The cutting wheel 26 is located at the bottom of the handle housing 25. The pressing rod 27 is hinged to the handle housing 25 via a connecting shaft. One end of the pressing rod 27 engages with the cutting wheel 26. The handle housing is fixed above the pulley 28 assembly, and the pressing rod 27 is fixed inside the handle housing. The bottom has a cutting wheel. The pulley 28 is located on the side of the handle housing 25 near the track connecting plate 22. The handle slide 23 has a compact design, and the handle housing 25 provides a comfortable grip. The position and hinge of the pressing rod 27 allow the operator to easily control the cutting process with one hand, which is particularly useful in environments with limited space or requiring rapid operation, improving work efficiency and operational flexibility. The cooperation between the cutting wheel 26 and the pressing rod 27, as well as the auxiliary sliding of the pulley 28, makes the cutting action more stable and precise. Operators can precisely control the cutting depth and speed, which helps to achieve high-quality cutting results, reduce unevenness of the cut edges and damage to the tiles, and is especially suitable for delicate cutting tasks.
[0023] The implementation principle of the inclined vertical tile pusher provided by this utility model is as follows: Lean the base plate 11 against the wall at approximately a 30° angle, with the tile resting on it. Insert the connecting component 3 evenly into the locking structure 12. At this point, the spring tongue 34 is pressed back by the locking frame 14, and the locking bone 15 engages with the positioning tongue 33 and the locking block 32. The three components, including the pressure foot, limit the connection of the component. The spring positioning hook 21 hooks onto the positioning plate 13, ensuring a tight fit between the base plate 11 and the track connecting plate 22. Then, push the handle forcefully to move the sliding blade assembly 2 to cut the tile. After cutting, the spring positioning hook 21 returns to its original position and disengages. Pull the pusher assembly to a vertical position, allowing the spring tongue 34 to contact the locking bone 15, creating a limit. The tile on the base plate 11 and the pressure foot 35 then contact each other at approximately a 30° angle. Push the pusher assembly towards the base plate 11, and through the force applied, the upper protrusion and the pressure foot 35 separate the tile. Remove the sliding blade assembly 2 completely, and the separated tile can be removed without obstruction.
[0024] In summary, this utility model, by setting adjustable support feet at the bottom of the inclined support 1 and cooperating with the positioning tongue 31 and the locking block 32 in the connecting component 3, firmly connects the inclined support 1 to the track connecting plate 22. The locking block 32 is detachably connected to the locking structure 12, which not only ensures the stability of the overall structure but also facilitates disassembly and assembly. The sliding knife component 2 and the base plate 11 can be detachably connected through the track connecting plate 22, and the handle sliding knife 23 can also be detached from the track connecting plate 22, which facilitates cleaning or replacement of parts without disassembling the whole, thus improving work efficiency. At the same time, this design may make operation more flexible, allowing workers to adjust the position and angle of the knife as needed, reducing the need for bending over or squatting, and lowering the risk of lumbar strain.
[0025] The present invention has been described above with reference to the accompanying drawings. Obviously, the specific implementation of the present invention is not limited to the above-described manner. Any non-substantial improvements made using the inventive concept and technical solution of the present invention, or the direct application of the inventive concept and technical solution to other situations without modification, are all within the protection scope of the present invention.
Claims
1. A slanted vertical tile pusher, characterized in that, include: An inclined support (1) is provided with adjustable support feet at the bottom to adapt to the tilt angle of the ground. The inclined support (1) includes an inclined base plate (11) and a locking structure (12) located on the base plate (11). The locking structure (12) includes a locking frame (14) and a locking bone (15). The locking frame (14) is fixed on the base plate (11). The connecting component (3) includes a positioning tongue (31) and a locking block (32). The positioning tongue (31) is fixed to one side of the locking block (32). The locking block (32) is provided with a spring tongue groove (33) near the top of the positioning tongue (31). A spring tongue (34) that can move back and forth is provided in the spring tongue groove (33). The top of the spring tongue (34) is provided with a groove that is adapted to the locking bone (15). The spring tongue (34), the positioning tongue (31) and the locking bone (15) are detachably connected. The positioning tongue (31) is inserted into the locking frame (14) and fits against the locking frame (14). The slide knife assembly (2) is connected to the stop block (32) via the track connecting plate (22).
2. The inclined vertical tile pusher according to claim 1, characterized in that, The track connecting plate (22) has positioning pins (24) on both sides near the base plate (11) at the front end. The base plate (11) has a positioning plate (13) with positioning holes (17) that cooperate with the positioning pins (24).
3. The inclined vertical tile pusher according to claim 1, characterized in that, The sliding knife assembly (2) includes a spring positioning hook (21) and a handle sliding knife (23). The spring positioning hook (21) is located at the top of the track connecting plate (22). The track connecting plate (22) has a gap for the sliding knife (23) to slide. The spring positioning hook (21) and the positioning plate (13) can be detachably connected.
4. The inclined vertical tile pusher according to claim 3, characterized in that, The track connecting plate (22) is provided with a guide rail and a cutting slit. The guide rail is slidably connected to the handle slide knife (23). The guide rail is located on the track connecting plate (22).
5. A slanted vertical tile pusher according to claim 3, characterized in that, The handle slide cutter (23) includes a handle shell (25), a cutting wheel (26), and a pressing rod (27). The cutting wheel (26) is located at the bottom of the handle shell (25), and the pressing rod (27) is hinged to the handle shell (25) through a connecting shaft. One end of the pressing rod (27) is engaged with the cutting wheel (26).
6. A slanted vertical tile pusher according to claim 5, characterized in that, The handle shell (25) is provided with a pulley (28) on the side near the track connecting plate (22).
7. A slanted vertical tile pusher according to claim 1, characterized in that, The card block (32) has pressure feet (35) on both sides of its bottom, and the base plate (11) has an upper convex dividing strip (16). The pressure feet (35) and the upper convex dividing strip (16) cooperate to form a cutting force surface.