CN209775215U - Ceramic tile processing platform - Google Patents

Ceramic tile processing platform Download PDF

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Publication number
CN209775215U
CN209775215U CN201920299322.9U CN201920299322U CN209775215U CN 209775215 U CN209775215 U CN 209775215U CN 201920299322 U CN201920299322 U CN 201920299322U CN 209775215 U CN209775215 U CN 209775215U
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China
Prior art keywords
plate
ceramic tile
wall plate
sliding rod
loop bar
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Expired - Fee Related
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CN201920299322.9U
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Chinese (zh)
Inventor
张全面
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Individual
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Individual
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Priority to CN201920299322.9U priority Critical patent/CN209775215U/en
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Publication of CN209775215U publication Critical patent/CN209775215U/en
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Anticipated expiration legal-status Critical

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Abstract

The utility model discloses a ceramic tile processing platform that ceramic tile location is easier, the ceramic tile cutting is more accurate, be suitable for the ceramic tile size more comprehensive, the function is more, the operation is more convenient. The utility model discloses a ceramic tile processing platform, wherein supporting legs are supported and connected with the bottom of a bottom wall plate; the side wall plates are respectively arranged on two sides of the bottom wall plate and connected through hinges; the end wall plates are vertically fixed at two ends of the bottom wall plate respectively; two ends of the side wall plate are respectively elastically connected with the corresponding end wall plate through a tension spring; the drawing plate is horizontally arranged on the bottom wall plate and presses the side wall plate downwards, and the length direction of the drawing plate is vertical to that of the bottom wall plate; the limiting pulleys are connected with the edges of two sides of the bottom of the drawing plate; the straight ruler is horizontally arranged on the upper plate surface of the drawing plate; the guiding ruler is locked on the drawing plate through a locking screw; the first sliding rod and the second sliding rod are arranged between the end wall plates in parallel; the ceramic tile push broach is slidably arranged on the first slide rail; the ceramic tile cutting machine is arranged on the second sliding rail in a sliding mode.

Description

Ceramic tile processing platform
Technical Field
The utility model relates to a ceramic tile processing platform.
Background
Traditional ceramic tile processing platform including push broach and lateral part support frame and bottom sprag frame sets up the guiding rule on the lateral part support rail, and the guiding rule both ends are passed through locking screw and are connected with the support rail, can be used for supporting the ceramic tile tip after the guiding rule has adjusted position and angle, and the ceramic tile other end then cuts below the push broach. However, the guiding rule is complex in adjustment operation and inconvenient to use, and the cutting position of the ceramic tile cannot be quickly positioned. The cutting is also preceded by a line on the tile, which is however prone to errors, resulting in inaccurate cutting. At present, floor tiles have various sizes, and large-size tiles are more and more common, however, in order to be convenient to carry, the traditional tile processing platform is limited by the size of the traditional tile processing platform, and the size range of the applicable tiles is limited. The existing floor tile is also paved obliquely, a square tile needs to be cut along the diagonal, or the diagonal is cut off, or the edge of a triangular tile is cut, the traditional running rule is simple in structure and single in function, and when the obliquely paved tile is machined, the traditional running rule is difficult to fix and is troublesome to machine.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model is to provide a ceramic tile processing platform that ceramic tile cutting location is faster, the ceramic tile cutting is more accurate, be suitable for the ceramic tile size more comprehensive, the function is more, the operation is more convenient.
In order to solve the technical problem, the ceramic tile processing platform comprises supporting legs, a bottom wall plate, a side wall plate, an end wall plate, a tension spring, a drawing plate, a limiting pulley, a straight ruler, a guiding rule, a first slide bar, a second slide bar, a ceramic tile push broach and a ceramic tile cutting machine; the supporting legs are supported and connected to the bottom of the bottom wall plate; the side wall plates are respectively arranged at two sides of the bottom wall plate, and the side edges of the side wall plates are connected with the side edges of the bottom wall plate through hinges; the end wall plates are vertically fixed at two ends of the bottom wall plate respectively; the tension springs are arranged between the end wall plates and the side wall plates, and two ends of each side wall plate are respectively elastically connected with the corresponding end wall plate through the tension springs; the drawing plate is horizontally arranged on the bottom wall plate and presses the side wall plate downwards, and the length direction of the drawing plate is vertical to that of the bottom wall plate; the limiting pulleys are arranged on the bottom wall plates on two sides of the drawing plate, annular grooves are formed in the outer wheel surfaces of the limiting pulleys and are connected with the edges of two sides of the bottom of the drawing plate so as to limit the drawing direction of the drawing plate and prevent the drawing plate from moving upwards; the straight ruler is horizontally arranged on the upper plate surface of the drawing plate, and the length direction of the straight ruler is the same as that of the drawing plate; the guiding ruler is locked on the drawing plate through a locking screw; the first sliding rod and the second sliding rod are arranged between the end wall plates in parallel, and two ends of the first sliding rod and the second sliding rod are respectively connected with the end wall plates; the ceramic tile push broach is slidably arranged on the first sliding rail; the ceramic tile cutting machine is arranged on the second sliding rail in a sliding mode.
And the bottom wall plates on two sides of the pull plate are respectively provided with a compensation plate to compensate the height difference from the pull plate to the bottom wall plates.
The drawing plate can be drawn out from between the limiting pulleys and can be buckled at the top of the end wall plate, and the side wall plate can be folded upwards at the side part of the end wall plate and buckled at the side part of the drawing plate at the top of the end wall plate; the drawing plate, the end wall plate, the side wall plate and the bottom wall plate can be buckled into a rectangular box; the supporting legs are detachably placed in the cuboid box; the ceramic tile push broach, the cutting machine, the first sliding rod and the second sliding rod can be contained in the cuboid box.
The two side edges of the drawing plate comprise top two side edges and bottom two side edges, and the bottom two side edges of the drawing plate are more outwards protruded than the top two side edges so that the bottom two side edges of the drawing plate are more fully connected with the limiting pulleys.
The ceramic tile cutting machine comprises a ceramic tile cutting machine body and a sliding seat, wherein a metal elastic band is arranged on a pulley seat of the ceramic tile cutting machine and is used for adjusting the tightness degree through an elastic bolt, and the metal elastic band is sleeved on the tail of the ceramic tile cutting machine body to lock and fix the ceramic tile cutting machine body.
The upper part of the end wall plate is telescopically connected with the first sliding rod through a first loop bar, and a sleeving cavity sleeved with the first loop bar is arranged in the first sliding rod; the upper part of the end wall plate is telescopically connected with the second sliding rod through a second loop bar, and a sleeving cavity sleeved with the second loop bar is arranged in the second sliding rod; the lower portion of the end wall plate is connected with the bottom wall plate in a telescopic mode through a third loop bar, and a track cavity sleeved with the third loop bar is formed in the bottom wall plate.
Magnets are arranged in the first loop bar and the second loop bar respectively, the outer side walls of the first loop bar and the second loop bar are provided with fall compensation pieces respectively, each fall compensation piece comprises an upper half pipe piece and a lower half pipe piece, and the fall compensation pieces are tightly attached to the surface of the first loop bar and the surface of the second loop bar in a magnetic mode.
The track cavity is characterized in that inlet bearings are arranged in the inlet of the track cavity from top to bottom, the third sleeve rod is arranged between the inlet bearings, end bearings are arranged on the end portion of the third sleeve rod in the track cavity from top to bottom, and the end bearings are connected with the upper inner wall and the lower inner wall of the track cavity in a sliding mode.
A drawing plate at the bottom of one side of the guiding ruler is fixedly connected with a protracting plate, and a concentric arc-shaped hole is formed between the circle center of the protracting plate and the outer arc edge; a circle center screw hole is formed in the guiding ruler at the circle center of the angle measuring plate, and a side screw hole corresponding to the arc-shaped hole is formed in the guiding ruler at the side part of the circle center hole; the locking screw comprises a first locking screw and a second locking screw; the first locking screw is arranged in the circle center screw hole and is in threaded connection with the drawing plate; the upper end of the second locking screw is arranged in the side screw hole, and the lower end of the second locking screw is arranged in the arc-shaped hole of the angle measuring plate; the guiding ruler rotates by taking the first locking screw as an axis and takes the radian of the arc-shaped hole as the maximum rotating angle.
The guiding ruler lateral part still is provided with the right angle slide caliper rule, right angle slide caliper rule central authorities are provided with the right angle bayonet socket, form the acute angle bayonet socket between right angle slide caliper rule both sides and the guiding ruler respectively, the contained angle of acute angle bayonet socket is 45.
By adopting the structure of the utility model, the cutting machine and the push broach are integrated, the ceramic tile can be processed in two ways, and the functions are more; the cutting machine is arranged on the sliding rod and linearly moves along the sliding rod to cut, so that the cutting is more accurate; the ceramic tile cutting machine is characterized in that a drawing plate is transversely arranged on the bottom wall plate, a straight ruler and a rotatable guiding ruler are arranged on the drawing plate, the ceramic tile cutting angle can be accurately set through the guiding ruler, the ceramic tile cutting size can be accurately set through the straight ruler, the cutting position can be quickly moved to the drawing plate, the drawing plate can be quickly locked through the bottom wall plate and a spring connected with the bottom wall plate, and therefore ceramic tile cutting can be quickly positioned, ceramic tile positioning is more efficient, ceramic tile cutting is more accurate, and operation is more convenient; the guiding rule can be indirectly translated through the drawing plate, the change of the angle of the guiding rule caused by directly translating the guiding rule is avoided, and the operation is simpler and more accurate; the pull plate, the end wall plate, the side wall plate and the bottom wall plate can be buckled into a cuboid box, and parts such as supporting legs and small tools can be placed into the cuboid box and can be carried in a whole carrying manner, so that three-to-four loss is avoided. Because pass through telescopic connection of loop bar respectively between end wall board and end wall board, first slide bar, the second slide bar for can place the ceramic tile of bigger size on the cutting platform and cut, it is more comprehensive to be suitable for the ceramic tile size. The guiding ruler lateral part is provided with the angle gauge board, and the angle gauge board is provided with centre of a circle hole and arc hole for the guiding ruler can be more convenient and more accurate angle of adjustment and locking angle. The guiding ruler lateral part still is fixed with the right angle slide caliper rule, more makes things convenient for the cutting to spread the ceramic tile to one side, and the function is more, and it is fixed more accurate quick to spreading the ceramic tile to one side.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is another schematic structural diagram of the present invention.
Fig. 3 is a schematic structural view of the drawing plate in fig. 1 and 2.
Fig. 4 is a top view of the present invention.
In the figure: 1-end wall plate, 2-tension spring, 3-side wall plate, 4-supporting leg, 5-thickness compensation plate, 6-first sliding rod, 7-ceramic push broach, 8-pulling plate, 9-limiting pulley, 10-ceramic cutting machine, 11-thickness compensation plate, 12-bottom wall plate, 13-end bearing, 14-third loop bar, 15-inlet bearing, 16-first loop bar, 17-fall compensation piece, 81-ruler, 82-guiding rule, 83-angle plate and 84-rectangular caliper.
Detailed Description
The present invention will be described in detail with reference to the accompanying drawings and specific embodiments.
As shown in fig. 1, fig. 2, fig. 3 and fig. 4, the utility model discloses a ceramic tile processing platform, including supporting leg, end wall board, lateral wall board, end wall board, extension spring, pull board, spacing pulley, ruler, guiding ruler, first slide bar, second slide bar, ceramic tile push broach and ceramic tile cutting machine.
The number of the supporting legs is at least four, the supporting legs are respectively supported and connected to the bottom of the bottom wall plate, the processing platform is supported off the ground by the supporting legs, a repairman can conveniently stand for operation, and diseases such as lumbar vertebra protrusion caused by long-term squatting operation of the repairman are avoided. The side wall plates are respectively arranged on two sides of the bottom wall plate, the side edges of the side wall plates are connected with the side edges of the bottom wall plate through hinges, and the side wall plates can swing up and down on the two sides of the bottom wall plate through the hinges. The end wall board is vertically fixed in diapire board both ends respectively, and the end wall board bottom is connected with the lateral wall board. The extension spring sets up between end wall board and lateral wall board, and lateral wall board both ends are respectively through extension spring and the end wall board elastic connection who corresponds, and the extension spring is the spring, and the extension spring both ends are caught on lateral wall board and end wall board through the couple, and the extension spring can be dismantled, and the extension spring is with lateral wall board pull-up, makes lateral wall board from up supporting main pull board bottom down, carries out the rigidity to the pull board. The pull plate is horizontally arranged on the bottom wall plate and presses down the side wall plates on two sides, and the length direction of the pull plate is vertical to that of the bottom wall plate. The drawing plate is clamped between the limiting pulleys on the bottom wall plate. After the side wall plate is pressed down, the drawing plate can be drawn and moved from two sides of the bottom wall plate.
Spacing pulley sets up on the end wallboard of pull board both sides, the shaft bottom mounting of spacing pulley is on the end wallboard, spacing pulley is provided with 4 at least and respectively is provided with 2 at least in pull board both sides, spacing pulley's foreign steamer face is provided with the annular groove, the annular groove links up in the bottom both sides edge of pull board, spacing pulley top is less than the pull board top, because the annular groove of spacing pulley exists, both can support the pull board, can restrict the pull board and shift up again, then it only carries out the pull removal to inject the pull board, prevent the lateral wall board because the effect of extension spring lifts the pull board on, avoid spacing pulley top to contact the ceramic tile simultaneously, be convenient for promote the ceramic tile through the pull board and stabilize the removal.
The ruler level sets up in the face on the pull board, and the length direction of ruler is the same with the length direction of pull board. The ruler surface of the ruler is tightly attached to or embedded in the upper plate surface of the drawing plate. The ruler is used for measuring the cutting position of the ceramic tile on the drawing plate and measuring the moving distance of the drawing plate, and the number of the rulers is 1 or 2. The guiding ruler is fixed on the drawing plate through the locking screws and used for abutting against the edge of the side portion of the ceramic tile to be cut so as to fix the angle of the ceramic tile and further accurately cut the ceramic tile. Because the guiding rule is fixed on the drawing plate, only the angle of the guiding rule needs to be adjusted, and the distance between the guiding rule and the cutting position is adjusted through the movement of the drawing plate.
The first sliding rod and the second sliding rod are arranged between the end wall plates in parallel, and two ends of the first sliding rod and the second sliding rod are connected with the end wall plates respectively. The ceramic tile push broach can be arranged on the first slide rail in a sliding manner. The ceramic tile cutting machine is arranged on the second sliding rail in a sliding mode. The ceramic tile push broach and the cutting machine are provided with pulley seats, at least two pairs of pulleys are arranged in each pulley seat, the two pairs of pulleys clamp the first sliding rod or the second sliding rod from the upper side and the lower side, and the moving direction of the pulley seats is defined to slide along the first sliding rod or the second pulley in a straight line. The tile cutter body can be detached from the pulley. Ceramic tile cutting machine package ceramic tile cutting machine main part and slide, the ceramic tile cutting machine joint is provided with the metal elastic cord at the slide lateral part on the pulley seat of ceramic tile cutting machine, and the metal elastic cord passes through the elasticity bolt adjustment elasticity degree, and the metal elastic cord cup joints ceramic tile cutting machine main part afterbody in order to fix ceramic tile cutting machine main part locking. The metal elastic band can further lock and fix the cutting machine main body.
When using, according to the angle of ceramic tile cutting angle adjustment guiding ruler well earlier, look for ceramic tile cutting size on the ruler, then push down lateral wall board and make the pull board can remove, remove the line of cut that the cutting size on the pull board made the ruler aimed at cutting platform, release lateral wall board and make lateral wall board end the pull board, put the ceramic tile according to the guiding ruler position on the pull board at last, remove ceramic tile push-out broach or ceramic tile cutting machine and cut the ceramic tile.
As shown in fig. 1, 2 and 3, the bottom wall plates on two sides of the drawing plate are respectively provided with a compensating plate to compensate the height difference of the bottom wall plates from the drawing plate, the top of the compensating plate is 1-5mm lower than that of the drawing plate, the compensating plate can support ceramic tiles on two sides of the drawing plate, the shaking of the ceramic tiles on the drawing plate is reduced, and the cutting is more accurate.
As shown in fig. 1, 2 and 3, the drawing plate can be drawn out from between the limiting pulleys and can be buckled at the top edge of the end wall plate, the side wall plate can be folded upwards at the side edge of the end wall plate and buckled at the side edge of the drawing plate at the top of the end wall plate, and the drawing plate, the end wall plate, the side wall plate and the bottom wall plate can be buckled into a rectangular box. The supporting legs can be detachably placed in the cuboid box. The ceramic tile push broach, the cutting machine, the first sliding rod and the second sliding rod can be contained in the cuboid box. Because the ceramic tile cutting platform can draw in into cuboid case to receive and release each required instrument and the spare part that uses in the case, can once only carry as a whole, avoid losing three and four, it is more convenient to carry, more saves space.
As shown in fig. 1, 2 and 3, the two side edges of the pulling plate include two top side edges and two bottom side edges, and the two bottom side edges of the pulling plate are more outwardly protruded than the two top side edges so that the two bottom side edges of the pulling plate are more fully connected with the limiting pulleys, thereby further preventing the pulling plate from upwarping and separating.
as shown in fig. 1, 2 and 3, the upper portion of the end wall plate is telescopically connected with the first slide rod through a first loop bar, and a sleeving cavity sleeved with the first loop bar is arranged in the first slide rod. The upper part of the end wall plate is telescopically connected with the second sliding rod through a second loop bar, and a sleeving cavity for sleeving the second loop bar is arranged in the second sliding rod. The lower part of the end wall plate is connected with the bottom wall plate in a telescopic mode through a third loop bar, and a track cavity sleeved with the third loop bar is formed in the bottom wall plate. Third loop bar parallel arrangement has at least two, sets up more third loop bars, can improve the support intensity to the ceramic tile and improve the joint strength between end wall board and the diapire board. The end wall board passes through loop bar and end wall board and slide bar telescopic connection, is convenient for expand the interval between two end wall boards, and then can put into the ceramic tile of bigger size and cut, and the ceramic tile size of being suitable for is more comprehensive.
As shown in fig. 1, 2 and 3, magnets are respectively arranged in the first loop bar and the second loop bar, and fall compensators are respectively arranged on the outer side walls of the first loop bar and the second loop bar. The fall compensation piece comprises an upper half pipe piece and a lower half pipe piece, and the fall compensation piece is tightly attached to the surface of the first sleeve rod and the surface of the second sleeve rod in a magnetic mode. The thickness of the fall compensation sheet of the first loop bar is equal to the height fall from the top of the outer wall of the first slide bar to the top of the outer wall of the first loop bar. The thickness of the fall compensation sheet of the second loop bar is equal to the height fall from the top of the outer wall of the second sliding bar to the top of the outer wall of the second loop bar. The upper half light sheet and the lower half tube sheet on the first sleeve rod can be combined on the outer surface of the first sleeve rod to form a finished pipe sleeve, and the upper half light sheet and the lower half tube sheet on the second sleeve rod can be combined on the outer surface of the second sleeve rod to form a finished pipe sleeve. Through setting up the fall compensation piece, can compensate the fall from slide bar to loop bar to make ceramic tile push broach and ceramic tile cutting machine move more steadily, it is more accurate to the ceramic tile cutting.
As shown in fig. 1, 2 and 3, inlet bearings are arranged up and down in the inlet of the track cavity, the third sleeve rod is arranged between the inlet bearings, end bearings are arranged up and down at the end part of the third sleeve rod in the track cavity, and the end bearings are connected with the upper inner wall and the lower inner wall of the track cavity in a sliding manner. The inlet bearing and the end bearing can enable the telescopic process of the third sleeve rod to be more stable and labor-saving, and meanwhile, the third sleeve rod can be prevented from completely extending out of the track cavity and falling off.
As shown in fig. 1, 2 and 3, a protractor plate is fixedly connected to the drawing plate at the bottom of one side of the guiding rule, and is embedded in the surface of the drawing plate. The angle measuring plate is provided with an angle mark, and the angle measuring range of the angle measuring plate is 0-180 degrees, 0-270 degrees or 0-360 degrees. An arc hole with the same center is arranged between the center of the angle measuring plate and the outer arc edge. The guiding ruler at the circle center of the angle measuring plate is provided with a circle center screw hole, and the guiding ruler at the side part of the circle center hole is provided with a side part screw hole corresponding to the arc-shaped hole. The locking screw includes a first locking screw and a second locking screw. The first locking screw is arranged in the circle center screw hole and is in threaded connection with the drawing plate. The nut of the first locking screw covers the top of the circle center screw hole, so that the guiding ruler is prevented from being separated from the first locking screw. The upper end of the second locking screw is arranged in the screw hole at the side part and the lower end of the second locking screw is arranged in the arc-shaped hole of the angle measuring plate. The nut of second lock screw sets up in arc hole below and can follow the arc hole and remove, and second lock screw top is provided with lock nut, and lock nut covers at lateral part screw top, and rotatory lock nut can carry out the elasticity operation to second lock screw, and then the angular position of locking guiding ruler. The guiding ruler rotates by taking the first locking screw as an axis and takes the radian of the arc-shaped hole as the maximum rotating angle. When the angle of guiding rule is adjusted, the second locking screw is loosened firstly, then the guiding rule is rotated to the required angle, and finally the second locking screw is tightened.
as shown in fig. 1, 2 and 3, the guiding ruler is provided with a right-angle caliper at the side, a right-angle bayonet is arranged at the center of the right-angle caliper, acute-angle bayonets are formed between the two sides of the right-angle caliper and the guiding ruler respectively, and the included angle of the acute-angle bayonet is 45 degrees. When cutting the rectangle ceramic tile or cutting the long limit of right triangle ceramic tile along the diagonal, only need to go into right angle card mouth of right angle slide caliper rule with the right angle card of ceramic tile can firmly fix the ceramic tile, the fixed ceramic tile of being more convenient for when laying the ceramic tile to one side, the operation is more high-efficient. When the minor face of cutting right triangle-shaped ceramic tile, can firmly fix the ceramic tile in the acute angle bayonet socket between guiding rule and the right angle latch is gone into to the acute angle card of ceramic tile, the fixed ceramic tile of being more convenient for when laying the ceramic tile to one side, the operation is more high-efficient.

Claims (10)

1. the utility model provides a ceramic tile processing platform which characterized in that: the ceramic tile cutting machine comprises supporting legs, a bottom wall plate, a side wall plate, an end wall plate, a tension spring, a drawing plate, a limiting pulley, a straight ruler, a guiding rule, a first sliding rod, a second sliding rod, a ceramic tile push broach and a ceramic tile cutting machine;
the supporting legs are supported and connected to the bottom of the bottom wall plate; the side wall plates are respectively arranged at two sides of the bottom wall plate, and the side edges of the side wall plates are connected with the side edges of the bottom wall plate through hinges; the end wall plates are vertically fixed at two ends of the bottom wall plate respectively; the tension springs are arranged between the end wall plates and the side wall plates, and two ends of each side wall plate are respectively elastically connected with the corresponding end wall plate through the tension springs; the drawing plate is horizontally arranged on the bottom wall plate and presses the side wall plate downwards, and the length direction of the drawing plate is vertical to that of the bottom wall plate;
The limiting pulleys are arranged on the bottom wall plates on two sides of the drawing plate, annular grooves are formed in the outer wheel surfaces of the limiting pulleys and are connected with the edges of two sides of the bottom of the drawing plate so as to limit the drawing direction of the drawing plate and prevent the drawing plate from moving upwards;
The straight ruler is horizontally arranged on the upper plate surface of the drawing plate, and the length direction of the straight ruler is the same as that of the drawing plate; the guiding ruler is locked on the drawing plate through a locking screw;
The first sliding rod and the second sliding rod are arranged between the end wall plates in parallel, and two ends of the first sliding rod and the second sliding rod are respectively connected with the end wall plates; the ceramic tile push broach is slidably arranged on the first sliding rod; the ceramic tile cutting machine is slidably arranged on the second sliding rod.
2. A tile processing platform according to claim 1, wherein: and the bottom wall plates on two sides of the pull plate are respectively provided with a compensation plate to compensate the height difference from the pull plate to the bottom wall plates.
3. A tile processing platform according to claim 1, wherein: the drawing plate can be drawn out from between the limiting pulleys and can be buckled at the top of the end wall plate, and the side wall plate can be folded upwards at the side part of the end wall plate and buckled at the side part of the drawing plate at the top of the end wall plate; the drawing plate, the end wall plate, the side wall plate and the bottom wall plate can be buckled into a rectangular box; the supporting legs are detachably placed in the cuboid box; the ceramic tile push broach, the cutting machine, the first sliding rod and the second sliding rod can be contained in the cuboid box.
4. A tile processing platform according to claim 1, wherein: the two side edges of the drawing plate comprise top two side edges and bottom two side edges, and the bottom two side edges of the drawing plate are more outwards protruded than the top two side edges so that the bottom two side edges of the drawing plate are more fully connected with the limiting pulleys.
5. A tile processing platform according to claim 1, wherein: the ceramic tile cutting machine comprises a ceramic tile cutting machine body and a sliding seat, wherein a metal elastic band is arranged on a pulley seat of the ceramic tile cutting machine and is used for adjusting the tightness degree through an elastic bolt, and the metal elastic band is sleeved on the tail of the ceramic tile cutting machine body to lock and fix the ceramic tile cutting machine body.
6. A tile processing platform according to claim 1, wherein: the upper part of the end wall plate is telescopically connected with the first sliding rod through a first loop bar, and a sleeving cavity sleeved with the first loop bar is arranged in the first sliding rod; the upper part of the end wall plate is telescopically connected with the second sliding rod through a second loop bar, and a sleeving cavity sleeved with the second loop bar is arranged in the second sliding rod; the lower portion of the end wall plate is connected with the bottom wall plate in a telescopic mode through a third loop bar, and a track cavity sleeved with the third loop bar is formed in the bottom wall plate.
7. A tile processing platform according to claim 6, wherein: magnets are arranged in the first loop bar and the second loop bar respectively, the outer side walls of the first loop bar and the second loop bar are provided with fall compensation pieces respectively, each fall compensation piece comprises an upper half pipe piece and a lower half pipe piece, and the fall compensation pieces are tightly attached to the surface of the first loop bar and the surface of the second loop bar in a magnetic mode.
8. A tile processing platform according to claim 6, wherein: the track cavity is characterized in that inlet bearings are arranged in the inlet of the track cavity from top to bottom, the third sleeve rod is arranged between the inlet bearings, end bearings are arranged on the end portion of the third sleeve rod in the track cavity from top to bottom, and the end bearings are connected with the upper inner wall and the lower inner wall of the track cavity in a sliding mode.
9. A tile processing platform according to claim 1, wherein: a drawing plate at the bottom of one side of the guiding ruler is fixedly connected with a protracting plate, and a concentric arc-shaped hole is formed between the circle center of the protracting plate and the outer arc edge; a circle center screw hole is formed in the guiding rule at the circle center of the angle measuring plate, and a side screw hole corresponding to the arc-shaped hole is formed in the guiding rule at the side of the circle center screw hole; the locking screw comprises a first locking screw and a second locking screw; the first locking screw is arranged in the circle center screw hole and is in threaded connection with the drawing plate; the upper end of the second locking screw is arranged in the side screw hole, and the lower end of the second locking screw is arranged in the arc-shaped hole of the angle measuring plate; the guiding ruler rotates by taking the first locking screw as an axis and takes the radian of the arc-shaped hole as the maximum rotating angle.
10. A tile processing platform according to claim 9, wherein: the guiding ruler lateral part still is provided with the right angle slide caliper rule, right angle slide caliper rule central authorities are provided with the right angle bayonet socket, form the acute angle bayonet socket between right angle slide caliper rule both sides and the guiding ruler respectively, the contained angle of acute angle bayonet socket is 45.
CN201920299322.9U 2019-03-11 2019-03-11 Ceramic tile processing platform Expired - Fee Related CN209775215U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920299322.9U CN209775215U (en) 2019-03-11 2019-03-11 Ceramic tile processing platform

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920299322.9U CN209775215U (en) 2019-03-11 2019-03-11 Ceramic tile processing platform

Publications (1)

Publication Number Publication Date
CN209775215U true CN209775215U (en) 2019-12-13

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920299322.9U Expired - Fee Related CN209775215U (en) 2019-03-11 2019-03-11 Ceramic tile processing platform

Country Status (1)

Country Link
CN (1) CN209775215U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109702913A (en) * 2019-03-11 2019-05-03 张全面 Ceramic tile processing platform

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109702913A (en) * 2019-03-11 2019-05-03 张全面 Ceramic tile processing platform

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