Ceramic tile cutter device

By incorporating a lubrication component into the tile cutter device, the problem of heat generation due to friction in the cutter is solved, achieving effective lubrication of the cutter, extending its service life, and improving cutting efficiency.

CN223849638UActive Publication Date: 2026-01-30SHANXI MUNNITI HARDWARE TOOLS CO LTD
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Patent Information

Application Number
CN202423091473.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-13
Publication Date
2026-01-30
Estimated Expiration
2034-12-13

AI Technical Summary

Technical Problem

Existing tile cutting devices often suffer from deformation or damage due to frictional heat after prolonged use, and there is a lack of effective lubrication measures to reduce frictional resistance.

Method used

A lubrication component is provided in the tile cutter device, including a receiving cavity and a liquid guiding channel. The liquid guiding channel guides the lubricating liquid to the cutting part, thereby achieving lubrication during the cutting process and reducing friction.

Benefits of technology

It improves the service life and lifespan of the cutting parts, avoids damage to the cutting blade caused by friction, and ensures the stability and efficiency of the cutting process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a ceramic tile cutter device, which belongs to the technical field of ceramic tile cutting devices, and comprises a fixed part, a guide part and a sliding part, and the fixed part is detachably provided with a scale part for measuring the size; the sliding piece is slidably arranged on the fixed piece; the cutting piece is rotationally arranged at the lower end of the sliding piece; a plurality of roller groups are detachably arranged on the guide piece, and the guide piece is detachably connected with the sliding piece; the containing cavity is formed in the sliding part and used for containing lubricating liquid. An inlet of the liquid guide channel communicates with the containing cavity, an outlet of the liquid guide channel faces the cutting piece, and liquid in the containing cavity flows to the cutting piece through the liquid guide channel. According to the ceramic tile cutting device, the lubricating assembly is arranged on the sliding piece, when the ceramic tile is cut by the cutting piece, liquid in the containing cavity flows to the cutting piece through the liquid guide channel, the cutting piece can be fully lubricated while cutting is conducted, and the service life and the service life of the cutting piece are prolonged.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a ceramic tile cutting device technical field, specifically relates to a ceramic tile cutting device. BACKGROUND

[0002] T type ceramic tile cutting push knife, working principle is using a cutting wheel with diamond blade to draw a accurate cutting line on the ceramic tile surface, then through exerting pressure makes the ceramic tile along this line breaks, thereby realizes accurate cutting.

[0003] A new type T type ceramic tile cutting push knife is described in Chinese patent document CN220700083U, which comprises: a guide plate, a movable block is slidably arranged on the guide plate, a cutting knife is bearing mounted on the lower end of the movable block, and the cutting knife is used to cut the ceramic tile.

[0004] However, such cutting knife will heat due to the friction between the cutting knife and the ceramic tile after a long time, and the cutting knife will deform or even be damaged after use. UTILITY MODEL CONTENTS

[0005] Therefore, the technical problem to be solved by the utility model lies in overcoming the defect that the ceramic tile cutting device in the prior art does not have the function of lubricating the cutting knife to reduce the frictional resistance, thereby providing a ceramic tile cutting device.

[0006] In order to solve the above technical problems, the utility model provides a ceramic tile cutting device, which comprises: a fixing part, a scale part for measuring size is detachably arranged on the fixing part;

[0007] A sliding part is slidably arranged on the fixing part;

[0008] A cutting part is rotatably arranged at the lower end of the sliding part and used for cutting the ceramic tile;

[0009] A positioning part is detachably connected with the sliding part and detachably provided with a plurality of roller sets;

[0010] An accommodating cavity is arranged on the sliding part and used for accommodating lubricating liquid;

[0011] A liquid guide channel is arranged on the sliding part and used for guiding the liquid in the accommodating cavity to the cutting part.

[0012] Preferably, the accommodating cavity is provided with an opening, and a plugging part for plugging the opening is detachably arranged on the opening.

[0013] Preferably, the inlet of the liquid guide channel is arranged at the bottom of the accommodating cavity, and the bottom of the accommodating cavity is provided with an inclined surface arranged obliquely towards the inlet of the liquid guide channel.

[0014] Preferably, the lower end of the sliding member is provided with a guide groove, and a sliding assembly is arranged in the guide groove in a vertical direction.

[0015] Preferably, the sliding assembly comprises a guide member and an elastic member, the guide member is arranged in the guide groove of the sliding member in a sliding mode, the cutting member is arranged at the lower end of the guide member, the elastic member is arranged at the end of the guide member away from the cutting member, the elastic member is connected with the guide member and the sliding member respectively, and the elastic member has a force for driving the cutting member to move away from the accommodating cavity.

[0016] Preferably, part of the guide member extends into the accommodating cavity, and the liquid guide channel is arranged on the guide member, and the inlet of the liquid guide channel is lower than the bottom surface of the accommodating cavity.

[0017] In the initial state, the inlet of the guide member is lower than the bottom surface of the accommodating cavity, and the liquid guide channel is not communicated with the accommodating cavity; when the cutting member is subjected to a force, the guide member moves upward in a vertical direction, and the inlet of the liquid guide channel is communicated with the accommodating cavity.

[0018] Preferably, the sliding member is provided with a locking device for locking or unlocking the sliding assembly.

[0019] Preferably, the locking device comprises a fastener, the fastener is threadedly connected with the sliding member, and the fastener is in abutment with the guide member after penetrating through the sliding member.

[0020] Preferably, the positioning member is provided with a plurality of through grooves arranged in a direction perpendicular to the length direction of the fixing member, and a plurality of roller assemblies are clamped and arranged in the through grooves.

[0021] Preferably, the fixing member is provided with a clamping groove for clamping the scale member, and the clamping groove is arranged at the side end surface of the fixing member away from the positioning member.

[0022] The technical scheme of the utility model has the following advantages:

[0023] 1. The ceramic tile cutter device provided by the utility model has the following advantages: the lubricating assembly is arranged on the sliding member, and when the cutting member cuts the ceramic tile, the liquid in the accommodating cavity flows to the cutting member through the liquid guide channel, so that the cutting member can be fully lubricated during cutting, and the service period and service life of the cutting member are improved.

[0024] 2. The tile cutter device provided by this utility model has an opening on the receiving cavity, through which lubricating liquid can be added. At the same time, a sealing component is provided on the opening to prevent the lubricating liquid from flowing out during use.

[0025] 3. The tile cutter device provided by this utility model, through the inclined surface set towards the inlet, when the liquid in the receiving cavity is small, guides the lubricating liquid in the receiving cavity to the inlet position of the liquid guiding channel, and then the outlet of the liquid guiding channel is set directly above the cutting part, that is, above in the vertical direction, so that the liquid in the liquid guiding channel can flow onto the cutting part to lubricate the cutting part. Attached Figure Description

[0026] To more clearly illustrate the specific embodiments of this utility model or the technical solutions in the prior art, the drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.

[0027] Figure 1 This is a front view of a tile cutter device provided in one embodiment of the present invention;

[0028] Figure 2 for Figure 1 Enlarged view of part I in the image;

[0029] Figure 3 for Figure 1 AA section view in the middle;

[0030] Figure 4 for Figure 3 A cross-sectional view of the guide post in the middle;

[0031] Figure 5 for Figure 1 A bottom view of the tile cutter device;

[0032] Figure 6 for Figure 1 A three-dimensional diagram of the tile cutter device.

[0033] Explanation of reference numerals in the attached figures:

[0034] 1. Fixing component; 2. Scale component; 3. Sliding component; 4. Cutting component; 5. Guide component; 6. Receiving cavity; 7. Liquid guiding channel; 8. Inclined surface; 9. Sealing component; 10. Elastic component; 11. Inlet; 12. Outlet; 13. Fastener; 14. Through groove; 15. Roller assembly; 16. Slot; 17. Opening; 18. Guide block; 19. Guide post; 20. First positioning plate; 21. Second positioning plate; 22. Groove; 23. Cavity; 24. Roller; 25. Guide groove; 26. Positioning component. Detailed Implementation

[0035] The technical solution of this utility model will now be clearly and completely described with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.

[0036] In the description of this utility model, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicating the orientation or positional relationship, are based on the orientation or positional relationship shown in the accompanying drawings and are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0037] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0038] Furthermore, the technical features involved in the different embodiments of this utility model described below can be combined with each other as long as they do not conflict with each other.

[0039] The tile cutter device provided in this embodiment is used to cut tiles.

[0040] like Figure 1 , Figure 2As shown, the tile cutter device provided by the embodiment includes a fixing member 1, a sliding member 3 and a guide member 5. A scale member 2 is detachably arranged on the fixing member 1, and the scale member 2 is provided with scales along the length direction thereof, for facilitating size measurement during cutting. The sliding member 3 is slidingly arranged on the fixing member 1, and the sliding member 3 is slid on the fixing member 1 to a specific size to be cut, and then the entire tile cutter device is moved to cut the tile. The cutting member 4 is a diamond blade, and the rolling direction of the cutting member 4 is perpendicular to the length direction of the fixing member 1. The cutting member 4 is rotationally arranged at the lower end of the sliding member 3, and is abutted to the end surface of the tile. When the tile cutter device slides on the tile, the cutting member 4 rolls on the surface of the tile to cut the tile. A plurality of roller sets 15 are detachably arranged on a positioning member 26, and the positioning member 26 is used to mount the roller sets 15. When moved, the roller sets 15 are abutted to the tile, to facilitate movement of the tile cutter device. When mounted, the roller sets 15 are located at the lower end surface of the positioning member 26, and the fixing member 1 is detachably mounted on the upper end surface of the fixing member 1. The rolling direction of the roller sets 15 is perpendicular to the length direction of the fixing member 1, that is, the moving direction of the roller sets 15 is parallel to the moving direction of the cutting member 4. Through movement of the roller sets 15, the cutting member 4 cuts the tile. A lubricating assembly is arranged on the sliding member 3, and the lubricating assembly has a containing cavity 6. The containing cavity 6 is used to store lubricating liquid, and the lubricating liquid flows to the cutting member 4 through a liquid guiding channel 7 to lubricate the cutting member 4. The inlet 11 of the liquid guiding channel 7 is in communication with the containing cavity 6, the outlet 12 of the liquid guiding channel 7 is arranged towards the cutting member 4, and the liquid in the containing cavity 6 flows to the cutting member 4 through the liquid guiding channel 7. The lubricating liquid can be a conventional lubricating material in the prior art, and the embodiment does not limit the lubricating liquid. For example, the lubricating liquid can be engine oil, saw blade oil, etc.

[0041] By arranging the lubricating assembly on the sliding member 3, the liquid in the containing cavity 6 flows to the cutting member 4 through the liquid guiding channel 7 while the cutting member 4 cuts the tile, so that the cutting member 4 can be sufficiently lubricated during cutting, and the service period and life of the cutting member 4 are improved.

[0042] As Figure 3As shown, in this embodiment, the receiving cavity 6 is provided with an opening 17, through which lubricating fluid can be added. A sealing element 9 is also provided on the opening 17 to prevent lubricating fluid from leaking out during use. Specifically, the opening 17 is located on the upper end face of the sliding member 3, and the sealing element 9 is a cover plate. The cover plate is threadedly connected to the receiving cavity 6, and the opening 17 is sealed by screwing on the cover plate. Alternatively, the opening 17 can also be located on the side wall of the sliding member 3, allowing lubricating fluid to be added to the receiving cavity 6 from the side. The sealing element 9 can also be a rubber stopper, installed on the opening 17 to seal it. Alternatively, a rubber seal can also be provided between the sealing element 9 and the opening 17.

[0043] like Figure 3 As shown, in this embodiment, the inlet 11 of the liquid guiding channel 7 is located at the bottom of the receiving cavity 6. The liquid guiding channel 7 is vertically arranged in the vertical direction, allowing the lubricating liquid in the receiving cavity 6 to flow onto the cutting piece 4 under gravity, thus lubricating the cutting piece 4. Simultaneously, through the inclined surface 8 inclined towards the inlet 11, when the liquid in the receiving cavity 6 is low, the lubricating liquid in the receiving cavity 6 is guided to the inlet 11 of the liquid guiding channel 7. Then, the outlet 12 of the liquid guiding channel 7 is located directly above the cutting piece 4, i.e., vertically above, allowing the liquid in the liquid guiding channel 7 to flow onto the cutting piece 4, lubricating it. Specifically, the inclined surface 8 is located at the center of the lower end face of the receiving cavity 6. There are four inclined surfaces 8, forming a downwardly extending trapezoidal groove 22. The trapezoidal groove 22 gradually tapers from top to bottom, guiding the lubricating liquid when the liquid in the receiving cavity 6 is low, facilitating the lubricating liquid to flow along the inclined surface to the inlet 11 of the liquid guiding channel 7. Of course, as an alternative, the inlet 11 of the liquid guiding channel 7 can also be located on the side end face of the receiving cavity 6. Of course, as an alternative, the entire bottom surface of the receiving cavity 6 can be set as an arc with the center facing upwards, and the inlet 11 of the liquid guiding channel 7 can be set at the lowest point of the arc.

[0044] like Figure 2 , Figure 3As shown, in the embodiment, the lower end of the sliding piece 3 is provided with a guide groove 25, and a sliding assembly is slidably arranged in the guide groove 25 in the vertical direction. The guide groove 25 can better guide the sliding assembly and ensure the linearity of movement. The cutting piece 4 is rotationally arranged at the end of the sliding assembly away from the accommodating cavity 6. When the cutting piece 4 on the sliding piece 3 abuts against the ceramic tile, the cutting piece 4 moves upward by a certain distance under the action of the sliding assembly, so as to adapt to ceramic tiles of different thicknesses, ensure that the contact point of the cutting piece 4 is always in the best position during cutting, and the vertical movement is beneficial to reduce the lateral stress during cutting and reduce the risk of breaking of the ceramic tile during cutting. Of course, as an alternative, the guide groove 25 can also not be arranged on the sliding piece 3, and the sliding assembly can also be slidably arranged on the outer end face of the sliding piece 3 to realize the movement of the sliding device in the vertical direction.

[0045] As shown, Figure 2 In the embodiment, the sliding assembly includes a guide piece 5 and an elastic piece 10. The guide piece 5 is slidably arranged in the guide groove 25 of the sliding piece 3, and the two side end faces of the guide piece 5 abut against the inner end faces of the guide groove 25. The elastic piece 10 is a spring with elastic force, one end of the elastic piece 10 abuts against the sliding piece 3, and the other end abuts against the guide piece 5. The elastic piece 10 always has a force to drive the cutting piece 4 to move toward the side away from the accommodating cavity 6. The cutting piece 4 is arranged at the lower end of the guide piece 5. When the cutting piece 4 abuts against the ceramic tile, the cutting piece 4 is forced to move upward, thereby compressing the spring. At this time, the spring drives the cutting piece 4 to always abut against the upper end face of the ceramic tile, ensuring that the cutting piece 4 always abuts against the ceramic tile during cutting. At the same time, the elastic piece 10 can absorb the vibration during cutting, so that the pressure applied by the cutting piece 4 remains stable. Of course, as an alternative, a dovetail groove can also be arranged in the guide groove 25 in the vertical direction, and a dovetail block slidably arranged in the dovetail groove can be arranged on the guide piece 5. Of course, as an alternative, the elastic piece 10 can also be a torsion spring, one end of which is connected with the guide piece 5, and the other end is connected with the sliding block.

[0046] The guide piece 5 includes a guide block 18 and a guide column 19. The guide block 18 is slidably arranged in the guide groove 25, and the cutting piece 4 is arranged at the lower end of the guide block 18. The end of the guide block 18 away from the cutting piece 4 is provided with the guide column 19, which extends upward in the vertical direction and is slidably connected with the sliding piece 3. The sliding piece 3 is a sliding groove, and the guide column 19 is slidably arranged in the sliding groove. The elastic piece 10 is sleeved outside the guide column 19, one end of the elastic piece 10 abuts against the guide block 18, and the other end abuts against the upper end face of the guide groove 25 of the sliding piece 3. Of course, as an alternative, only the guide block 18 can be slidably arranged in the guide groove 25, and the guide column 19 can also be arranged, so that the guide block 18 can slide in the guide groove 25, and the elastic piece 10 can connect the guide block 18 and the sliding piece 3.

[0047] As Figure 2 , Figure 3 , Figure 4 shown in the embodiment, the guide 5 is integrally formed with a guide post 19 at one end away from the cutting member 4, and the guide post 19 is a component of the guide 5. The sliding member 3 is provided with a sliding groove, and the guide post 19 is slidingly arranged in the sliding groove of the sliding member 3, and the sliding groove extends from the upper end surface of the guide groove 25 to the accommodating cavity 6, and part of the guide post 19 extends into the accommodating cavity 6, and the liquid guide channel 7 is arranged on the guide 5 and the guide post 19, so that the lubricating liquid can flow from the guide post 19 to the guide block 18, and then flow from the guide block 18 to the cutting member 4. Among them, in order to avoid the liquid guide channel 7 being always in communication with the accommodating cavity 6, the inlet 11 of the liquid guide channel 7 is lower than the bottom surface of the accommodating cavity 6; that is, in the initial state, when the cutting member 4 is not abutted on the ceramic tile, since the inlet 11 of the liquid guide channel 7 is lower than the ground surface of the accommodating cavity 6, and the guide post 19 blocks the sliding groove, the liquid guide channel 7 cannot be in communication with the accommodating cavity 6; when the cutting member 4 is abutted on the ceramic tile and is under stress, the guide 5 moves upward to drive the guide post 19 to move upward, that is, the inlet 11 of the liquid guide channel 7 moves upward to be in communication with the accommodating cavity 6, that is, the lubricating liquid in the accommodating cavity 6 is always prevented from flowing outward, and material waste is avoided. Of course, as an alternative, the guide post 19 can also not extend into the accommodating cavity 6, and the liquid guide channel 7 is arranged on the guide post 19, and the sliding groove still extends from the upper end surface of the guide groove 25 to the accommodating cavity 6, and a sealing plug can be threadedly connected to the upper opening 17 of the sliding groove, and the accommodating cavity 6 is in communication with the liquid guide channel 7 by loosening the sealing plug, and the sealing plug can be tightened to seal the accommodating cavity 6. Of course, as an alternative, the guide post 19 can also extend into the accommodating cavity 6, and the liquid guide channel 7 can also not be arranged on the guide post 19, but arranged on the sliding member 3, and the inlet 11 of the liquid guide channel 7 is in communication with the accommodating cavity 6, and the outlet 12 is arranged above the cutting member 4, and the cutting member 4 can also be lubricated.

[0048] As Figure 2As shown, in this embodiment, the sliding member 3 is provided with a locking device for locking or unlocking the sliding assembly. The locking device can fix the movement of the guide member 5 and restrict the movement of the cutting member 4 in the vertical direction. This allows it to be used to process products other than ceramic tiles, expanding the applicability of the ceramic tile cutting device. Specifically, the locking device includes a fastener 13, which passes through the sliding member 3 and abuts against the sliding assembly. The fastener 13 is a bolt, which is threaded to the sliding member 3. The bolt is symmetrically arranged on the outer end face of the sliding member 3 in the horizontal direction. After passing through the sliding member 3, the bolt abuts against the end face of the guide block 18. The movement of the guide block 18 is locked and unlocked by tightening the bolt. Of course, as an alternative, the locking device can also be provided on the sliding assembly. In addition to the fastener 13, the locking device can also include multiple grooves 22 arranged in the vertical direction on the guide block 18. The fastener 13 abuts against the grooves 22 to restrict the movement of the guide block 18. Of course, as an alternative, fastener 13 can also be equipped with a handwheel on the bolt for easy tightening. Alternatively, fastener 13 can be threaded to guide block 18, with fastener 13 passing through sliding member 3 and threaded to guide block 18. When tightening fastener 13, fastener 13 pulls guide block 18 to lock and fix it.

[0049] like Figure 1 , Figure 5 As shown, in this embodiment, the positioning member 26 has several through slots 14 along the length direction perpendicular to the fixing member 1. Several roller sets 15 are engaged in the through slots 14. When the roller sets 15 of the positioning member 26 abut against the tile, the roller sets 15 rotate, causing the fixing member 1 to move, thereby allowing the cutting member 4 to slide across the tile and cut it. Simultaneously, the roller sets 15, engaged in the through slots 14, can be adjusted in number according to actual needs to accommodate different tiles. Alternatively, the roller sets 15 can also be bolted to the positioning member 26.

[0050] Specifically, the positioning component 26 is L-shaped, having a first positioning plate 20 and a second positioning plate 21 that are perpendicular to each other. The first positioning plate 20 is bolted to the lower end face of the fixing component 1, and the second positioning plate 21 is fixedly disposed at the end of the first positioning plate 20 away from the sliding component 3, extending downward in a vertical direction. The first positioning plate 20 has five grooves 22, and the second positioning plate 21 has one groove 22. The width of the roller assembly 15 is slightly larger than the width of the groove 22, allowing the two parts to overcome the friction and interference between the roller assembly 15 and the groove 22 by applying external force during assembly, thus achieving a tight connection. Of course, as an alternative, the number of grooves 22 on the first positioning plate 20 and the second positioning plate 21 is not limited, and those skilled in the art can modify it according to actual needs.

[0051] Specifically, the roller assembly 15 includes a cuboid cavity 23 and a roller 24. The cavity 23 has a slot, and the roller 24 is rotatably disposed in the slot. Of course, as an alternative, the shape of the cavity 23 is not limited; for example, it can also be square.

[0052] like Figure 6 As shown, in this embodiment, the upper end face of the fixing member 1 is provided with a slot 16 for engaging the scale member 2. The slot 16 is located on the end face of the fixing member 1 away from the positioning member 26, meaning that the scale member 2 is located on top of the fixing member 1. During operation, the operator can easily observe the dimensions on the scale member 2 from above, thus facilitating dimensional measurement. Alternatively, the scale member 2 can also be fixed to the fixing member 1 with bolts.

[0053] Specifically, the slot 16 is convex ("U") shaped, with a wider lower opening and a narrower upper opening. The slot 16 extends along the length of the fixing member 1 from one end to the other. The scale member 2 is engaged in the wider lower slot of the convex slot 16 and secured with bolts. The values ​​on the scale member 2 can be seen when viewed from above. Alternatively, the slot 16 can also be a downward-facing rectangular slot on the upper surface of the fixing member 1, with the scale member 2 positioned within it.

[0054] The installation mode of the ceramic tile cutter device is as follows: a sliding piece 3 is slidably arranged on a fixed piece 1, a positioning piece 26 is connected to the lower side of the end of the fixed piece 1 through a bolt, a plurality of rollers 15 are arranged on the positioning piece 26, and the rollers 15 are detachably connected with a clamping groove 16 on the positioning piece 26. An accommodating cavity 6 is arranged on the sliding piece 3, the upper side of the accommodating cavity 6 is an opening 17, a plugging piece 9 is arranged at the opening 17, and a sealing piece is arranged between the plugging piece 9 and the opening 17. A guide groove 25 is arranged at the lower end of the sliding piece 3, a guide block 18 and a guide column 19 are slidably arranged in the guide groove 25, a cutting piece 4 is rotatably arranged at the lower end of the guide block 18, and the guide column 19 is arranged on the upper end surface of the guide block 18. A locking device is threadedly connected to the side end surface of the sliding piece 3, the locking device abuts against the end surface of the guide block 18 after penetrating through the sliding piece 3. An elastic piece 10 is arranged in the guide groove 25, the elastic piece 10 is sleeved on the guide column 19, one end of the elastic piece 10 abuts against the sliding piece 3, and the other end of the elastic piece 10 abuts against the guide block 18. A part of the guide column 19 extends into the accommodating cavity 6, a guide channel 7 is arranged on the guide column 19 and the guide block 18, the inlet 11 of the guide channel 7 is lower than the bottom surface of the accommodating cavity 6 in the initial state, and the accommodating cavity 6 is not communicated with the guide channel 7 at this time. When the cutting piece 4 abuts against the ceramic tile, the cutting piece 4 is forced to drive the guide block 18 and the guide column 19 to move upward, so that the inlet 11 of the guide channel 7 is communicated with the accommodating cavity 6, and at this time, the lubricating liquid enters the guide channel 7 and directly flows to the cutting piece 4 along the guide channel 7. After the cutting is completed, the cutting piece 4 is separated from the ceramic tile, and under the action of the elastic piece 10, the guide block 18 moves downward to drive the guide column 19 to move downward, so that the guide channel 7 is not communicated with the accommodating cavity 6.

[0055] Obviously, the above embodiments are only examples for clearly illustrating, but not limitation on the embodiments. Other different forms of changes or variations can be made on the basis of the above description for those skilled in the art. All the embodiments need not and cannot be exhausted here. The obvious changes or variations derived therefrom are still within the protection scope of the utility model.

Claims

1. A tile cutter device, characterized by, The utility model provides a kind of ceramic tile cutting device, including: Fixed part (1), the fixed part (1) is detachably provided with graduation part (2) for measuring size; Sliding part (3), slidingly arranged on the fixed part (1); Cutting part (4), the cutting part (4) is rotatably arranged on the lower end of the sliding part (3), for cutting ceramic tile; Positioning part (26), the positioning part (26) is detachably provided with several roller groups (15), and the positioning part (26) is detachably connected with the sliding part (3); Accommodating cavity (6), the accommodating cavity (6) is arranged on the sliding part (3), and the accommodating cavity (6) is used for accommodating lubricating liquid; Liquid guide channel (7), the inlet (11) of the liquid guide channel (7) is communicated with the accommodating cavity (6), and the outlet (12) of the liquid guide channel (7) is arranged towards the cutting part (4), and the liquid in the accommodating cavity (6) flows onto the cutting part (4) through the liquid guide channel (7).

2. The tile cutter device according to claim 1, characterized in that, The accommodating cavity (6) is provided with an opening (17), and the opening (17) is detachably provided with a plugging part (9) for plugging the opening (17).

3. The tile cutter device according to claim 1, wherein, The inlet (11) of the liquid guide channel (7) is arranged at the bottom of the accommodating cavity (6), and the bottom of the accommodating cavity (6) has an inclined surface (8) arranged obliquely towards the inlet (11) of the liquid guide channel (7).

4. The tile cutter device according to claim 3, characterized in that, The lower end of the sliding part (3) is provided with a guide groove (25), and a sliding assembly is slidably arranged in the guide groove (25) in the vertical direction, and the cutting part (4) is rotatably arranged at one end of the sliding assembly away from the accommodating cavity (6).

5. The tile cutter device according to claim 4, wherein, The sliding assembly comprises a guide part (5) and an elastic part (10), the guide part (5) is slidably arranged in the guide groove (25) of the sliding part (3), the cutting part (4) is arranged at the lower end of the guide part (5), the elastic part (10) is arranged at one end of the guide part (5) away from the cutting part (4), the elastic part (10) is connected with the guide part (5) and the sliding part (3) respectively, and the elastic part (10) has a force for driving the cutting part (4) to move away from the accommodating cavity (6).

6. The tile cutter device according to claim 5, wherein, Part of the guide part (5) extends into the accommodating cavity (6), the liquid guide channel (7) is arranged on the guide part (5), and the inlet (11) of the liquid guide channel (7) is lower than the bottom surface of the accommodating cavity (6); In the initial state, the inlet (11) of the guide part (5) is lower than the bottom surface of the accommodating cavity (6), and the liquid guide channel (7) is not communicated with the accommodating cavity (6); when the cutting part (4) is stressed, the guide part (5) moves upward in the vertical direction, and the inlet (11) of the liquid guide channel (7) is communicated with the accommodating cavity (6).

7. The tile cutter device according to claim 5, wherein, The sliding part (3) is provided with a locking device for locking or unlocking the sliding assembly.

8. The tile cutter device according to claim 7, characterized in that, The locking device comprises a fastener (13) threadedly connected with the sliding part (3), and the fastener (13) abuts against the guide part (5) after penetrating through the sliding part (3).

9. The tile cutter device according to any one of claims 1-8, wherein, A plurality of through grooves (14) are arranged on the positioning member (26) in a direction perpendicular to the length direction of the fixing member (1), and a plurality of roller groups (15) are clamped and arranged in the through grooves (14).

10. The tile cutter device according to any one of claims 1-8, wherein, The fixing member (1) is provided with a clamping groove (16) for clamping the scale member (2), and the clamping groove (16) is arranged on the side end face of the fixing member (1) away from the positioning member (26).

Citation Information

Patent Citations

  • Novel T-shaped ceramic tile cutting push broach

    CN220700083U