CN210976507U - Tile work device - Google Patents

Tile work device Download PDF

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Publication number
CN210976507U
CN210976507U CN201921814769.1U CN201921814769U CN210976507U CN 210976507 U CN210976507 U CN 210976507U CN 201921814769 U CN201921814769 U CN 201921814769U CN 210976507 U CN210976507 U CN 210976507U
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China
Prior art keywords
pipe
block
main
auxiliary
pulley
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CN201921814769.1U
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Chinese (zh)
Inventor
李宗湛
黄成荣
程世勇
刘广文
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Guangzhou Yuanzhongyuan Green Landscape Co ltd
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Guangzhou Yuanzhongyuan Green Landscape Co ltd
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Priority to CN201921814769.1U priority Critical patent/CN210976507U/en
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Abstract

The utility model relates to a brick paving device, including U type pipe, the both ends of U type pipe are all pegged graft and are stretched out the pipe, U type pipe is provided with the fixed fastener that stretches out the pipe, U type pipe intercommunication has two connecting pipes, the one end intercommunication that U type pipe was kept away from to the connecting pipe has the pipe of gripping, U type pipe is provided with the butt piece, the one end that U type pipe was kept away from to the pipe articulates there is the grip block, the articulated shaft of grip block has cup jointed main torsional spring, the one end of main torsional spring with stretch out union coupling, the other end and the grip block of main torsional spring are connected, grip intraductal control that is provided with control grip block rotation angle, when control, the grip block is along the direction upset that is close to the butt piece, one side that U type pipe kept away from the. Through adopting above-mentioned technical scheme, have the advantage of being convenient for carry and laying the ceramic tile.

Description

Tile work device
Technical Field
The utility model belongs to the technical field of the tiling technique and specifically relates to a tile work device is related to.
Background
In the prior art, the operation of brick paving generally comprises: cleaning up impurities such as dust, laitance and the like on the ground of a base layer, then wetting the ground of the base layer, brushing plain cement or an interface bonding agent on the ground of a bottom layer, then flatly paving floor tiles on the ground of the base layer paved with the plain cement or the interface bonding agent one by one, and then hammering a plurality of floor tiles paved on the ground of the base layer by a rubber hammer to fix the floor tiles paved on the ground of the base layer.
In general, tiles to be laid are stacked near a floor area, and therefore, when the tiles are laid, the tiles need to be moved frequently to the area where the tiles are stacked to carry the tiles, and at the same time, the tiles are laid manually, and the operations of carrying, squatting, standing up, and the like need to be repeated, so that the floor tiles are difficult to lay.
SUMMERY OF THE UTILITY MODEL
Not enough to prior art exists, the utility model aims to provide a tile work device has the advantage of being convenient for carry and laying the ceramic tile.
In order to achieve the above purpose, the utility model provides a following technical scheme:
a brick paving device comprises a U-shaped pipe, extension pipes are inserted at two ends of the U-shaped pipe, a fastener for fixing the extension pipes is arranged on the U-shaped pipe, the U-shaped pipe is communicated with two connecting pipes, one end of each connecting pipe, which is far away from the U-shaped pipe, is communicated with a holding pipe, the U-shaped pipe is provided with a butt joint block, one end of the extension pipe, which is far away from the U-shaped pipe, is hinged with a clamping block, the articulated shaft of the clamping block is sleeved with a main torsion spring, one end of the main torsion spring is connected with the extension pipe, the other end of the main torsion spring is connected with the clamping block, a control piece for controlling the overturning angle of the clamping block is arranged in the holding pipe, when the control piece is controlled, the clamping block is turned over along the direction close to the abutting block, a moving wheel is arranged on one side, away from the connecting pipe, of the U-shaped pipe, and a scissor fork mechanism is arranged between the U-shaped pipe and the moving wheel.
By adopting the technical scheme, when the tile paving device is used for paving the tiles, the holding pipe is pushed to enable the moving wheels to roll on the ground, so that the operation of the moving tile paving device is simple and convenient, the tile paving device is moved to the area where a plurality of tiles are stacked, and the extension pipe is inserted into the end part of the U-shaped pipe so as to be convenient for adjusting the distance between the abutting block and the clamping block through the telescopic extension pipe, so that the operation of adjusting the distance between the abutting block and the clamping block is simple and convenient, and the extension pipe and the U-shaped pipe are kept in a relatively; according to the overall height of a plurality of stacked floor tiles, the clamping block and the abutting block are positioned above the uppermost floor tile by controlling the scissor mechanism by pushing the holding pipe, then the uppermost floor tile is positioned between the abutting block and the clamping block by adjusting the scissor mechanism, then the clamping block is turned around the hinged axis of the clamping block and the extension pipe to be close to one side of the abutting block by controlling the control piece, the floor tile is clamped by the clamping block and the abutting block by simply and conveniently operating by utilizing the resetting action of the main torsion spring and the torsion action of the main torsion spring, then the U-shaped pipe is turned around the rotating shaft of the moving wheel, so that the floor tile clamped by the tile paving device is separated from the stacked floor tile below, the tile paving device is conveniently moved to a tile paving area, and the floor tile clamped by the tile paving device is aligned with the tile ground, thereby through adjusting scissors mechanism make the ceramic tile of tiling device centre gripping be close to basic unit ground, then remove the operation of control piece to the operation of removing grip block centre gripping ceramic tile is in order to press from both sides, thereby makes the ceramic tile lay on basic unit ground, makes the laying operation of ceramic tile simple and convenient from this.
The utility model discloses further set up to: the outer peripheral surface of the holding pipe is provided with an opening, the control piece comprises a pressing block, the pressing block is hinged with the inner peripheral surface of the holding pipe, the pressing block protrudes out of the opening, an auxiliary torsion spring is sleeved on a hinged shaft of the pressing block, one end of the auxiliary torsion spring is connected with the inner periphery of the holding pipe, the other end of the auxiliary torsion spring is connected with the pressing block, the pressing block is fixedly connected with a rope, and one end of the rope, which is far away from the pressing block, sequentially penetrates through the holding pipe, the connecting pipe, the U-shaped pipe and the extension pipe and then is fixedly connected with the clamping block; the torsion of the auxiliary torsion spring is greater than that of the main torsion spring; when the pressing block is pressed, the pressing block is sunk into the opening, and the clamping block is turned over along the direction close to the abutting block.
By adopting the technical scheme, the opening is arranged to conveniently accommodate the pressing block, and meanwhile, when a hand holds the holding pipe, the pressing block can be pressed by fingers, so that the operation distance can be shortened, and the operation of controlling the control piece by pressing the pressing block is simple and convenient; because the torsion of the auxiliary torsion spring is greater than that of the main torsion spring, in an initial state, the auxiliary torsion spring is in a reset state and protrudes out of the peripheral surface of the holding pipe through the opening, and one end of the rope is fixedly connected with the side surface, close to the holding pipe, of the pressing block, so that the pressing block utilizes the rope to pull the clamping block to perform overturning motion in the direction away from the abutting block around the hinged axis between the clamping block and the extension pipe, and the operation of clamping the floor tiles by the clamping block is relieved; meanwhile, when the pressing block is pressed, the pressing block moves in the holding pipe around the hinged axial direction between the pressing block and the holding pipe through the opening, so that the rope is in a loose state, the main torsion spring is reset, the clamping block is driven to rotate around one side, close to the abutting block, of the hinged axial direction between the clamping block and the extension pipe, and the clamping block is convenient to clamp the floor tiles.
The utility model discloses further set up to: the clamping pipe comprises a holding pipe and a connecting pipe, and is characterized in that a first pulley is fixedly connected to the circumferential surface of the holding pipe, the first pulley is arranged opposite to the connecting pipe, a second pulley is fixedly connected to the inner circumferential surface of the connecting pipe, a third pulley is fixedly connected to the inner circumferential surface of the U-shaped pipe, the second pulley and the third pulley are arranged opposite to the communication position of the connecting pipe and the U-shaped pipe, a fourth pulley is fixedly connected to the inner circumferential surface of the extension pipe, the fourth pulley is arranged opposite to the abutting block, and the rope is sequentially in winding connection with the outer circumferential surfaces of the first pulley, the second pulley, the third pulley and the fourth pulley.
Through adopting above-mentioned technical scheme, through setting up the rope and respectively with the outer peripheral face wraparound of first pulley, second pulley, third pulley and fourth pulley, be favorable to improving the guidance quality of rope, and then reduce the rope and hold the pipe, connecting pipe, U type pipe and the inner peripheral surface sliding friction who stretches out the pipe and damage the condition of rope, and then make the traction movement of rope more smooth and easy.
The utility model discloses further set up to: it includes middle part mutual articulated mobile jib and vice pole to cut fork mechanism, the U type pipe is close to remove one side fixedly connected with fixed plate of wheel, the pivot rotation that removes the wheel is connected with the rotor plate, the both ends of mobile jib articulate respectively have main slider and main piece of moving, the both ends of vice pole articulate respectively have vice slider and vice piece of moving, main slider and vice slider all with the fixed plate joint slides, main move the piece with vice piece all with the rotor plate joint slides, the side-mounting of fixed plate has the motor, the coaxial rotation of pivot of motor has the lead screw, the outer peripheral face at the both ends of lead screw is provided with main external screw thread and vice external screw thread respectively, the rotation of main external screw thread and vice external screw thread is opposite, main slider with the main external screw thread threaded connection of lead screw, vice slider with vice external screw thread threaded connection.
Through adopting above-mentioned technical scheme, because the both ends of lead screw are provided with respectively and revolve to opposite main external screw thread and vice external screw thread, utilize the outer peripheral face threaded connection of main slider and vice slider and lead screw, under the drive effect of motor, thereby make the pivot coaxial rotation of lead screw and motor, make the continuous threaded connection of outer peripheral face of main slider and vice slider and lead screw, utilize main slider and vice slider and fixed plate joint to slide, thereby make main slider and vice slider to the reverse motion that is close to each other or keeps away from each other, make simultaneously main piece and vice piece of moving to the reverse motion that is close to each other or keeps away from each other, so that adjust the distance between fixed plate and the rotor plate, thereby make the operation of adjusting the height of U type pipe simple and convenient.
The utility model discloses further set up to: the fastener comprises a fixing bolt, a plurality of main screw holes are formed in the peripheral surface of the U-shaped pipe in a penetrating mode, a plurality of auxiliary screw holes are formed in the peripheral surface of the extension pipe in a penetrating mode, and when the auxiliary screw holes are aligned with the main screw holes, the fixing bolt is in threaded connection with the main screw holes and the auxiliary screw holes.
Through adopting above-mentioned technical scheme, through setting up main screw and vice screw, make vice screw and main screw just to the time through flexible extension bar, utilize fixing bolt and mutual just right main screw and vice screw threaded connection to fixed extension bar makes the easy and simple to handle of fixed extension bar.
The utility model discloses further set up to: the side face, facing the clamping block, of the abutting block is fixedly connected with a rubber pad.
By adopting the technical scheme, the rubber pad has stronger friction force, the floor tile is extruded by the clamping blocks, and the floor tile is enabled to extrude the rubber pad of the abutting block, so that the stability of clamping the floor tile by the clamping blocks is improved.
The utility model is further arranged in that the extension pipe is similar to a model L, and one end of the extension pipe, which is far away from the U-shaped pipe, is arranged downwards.
By adopting the technical scheme, the extension pipe is similar to a L shape, and one end of the extension pipe, which is far away from the U-shaped pipe, is arranged downwards, so that the clamping block and the abutting block are arranged oppositely, and the clamping block clamps the floor tiles conveniently.
The utility model discloses further set up to: and a switch for controlling the motor to work is arranged at one end of the holding pipe, which is far away from the connecting pipe.
By adopting the technical scheme, the switch is arranged, so that the operating distance of the control switch is shortened, and the operation of the work of the control motor is convenient.
To sum up, the utility model discloses following beneficial effect has:
1. by arranging the control piece, the abutting block and the clamping block, the clamping block is pulled to clamp the floor tile by pressing the pressing block, so that the floor tile clamping operation is simple and convenient;
2. through setting up the scissors mechanism to the height of control grip block and butt joint piece, thereby make the operation of grip block centre gripping ceramic tile of different heights simple and convenient.
Drawings
FIG. 1 is a schematic view of the overall structure of the present embodiment;
FIG. 2 is a sectional view of the present embodiment;
FIG. 3 is an enlarged view of a portion of FIG. 2 at D;
FIG. 4 is a cross-sectional view of another angle of the present embodiment;
FIG. 5 is an enlarged view of a portion of FIG. 4 at A;
FIG. 6 is a partial enlarged view of the portion B in FIG. 4;
FIG. 7 is an enlarged view of a portion of FIG. 4 at C;
fig. 8 is a partial enlarged view at E in fig. 2.
Reference numerals: 1. a U-shaped pipe; 11. a main screw hole; 12. a butting block; 121. a rubber pad; 13. a fixing plate; 131. a main dovetail groove; 2. an extension tube; 21. an auxiliary screw hole; 3. a fastener; 31. fixing the bolt; 4. a connecting pipe; 5. a holding tube; 51. an opening; 52. cushion blocks; 6. a control member; 61. a pressing block; 611. a secondary torsion spring; 62. a rope; 63. a first pulley; 64. a second pulley; 65. a third pulley; 66. a fourth pulley; 67. a clamping block; 671. a main torsion spring; 7. a moving wheel; 71. a drive shaft; 72. a rotating plate; 721. a secondary dovetail groove; 8. a scissor mechanism; 81. a motor; 82. a lead screw; 821. a main external thread; 822. an auxiliary external thread; 83. a main rod; 831. a main slider; 832. a main moving block; 84. an auxiliary rod; 841. a sub slider; 842. a secondary moving block; 9. and (4) switching.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings and examples.
As shown in fig. 1 to 2, the utility model discloses a brick paving device, including U type pipe 1, a plurality of main screw 11 have been link up to the outer peripheral face of U type pipe 1, a plurality of main screw 11 are along the pipe depth equidistant distribution of U type pipe 1, extension pipe 2 has all been pegged graft at the both ends of U type pipe 1, a plurality of vice screws 21 have been link up to the outer peripheral face of extension pipe 2, a plurality of vice screws 21 are along the pipe depth equidistant distribution of extension pipe 2, U type pipe 1 is provided with fastener 3 of fixed extension pipe 2, fastener 3 includes fixing bolt 31, when flexible extension pipe 2, make the vice screw 21 of extension pipe 2 just right set up with the main screw 11 of U type pipe 1, fixing bolt 31 and main screw 11 and vice screw 21 threaded connection are with fixed extension pipe 2. extension pipe 2 is type "L", the one end that extension pipe 2 kept away from U type pipe 1 sets up downwards.
As shown in fig. 2 to 3, the end surface of the extension pipe 2 away from the U-shaped pipe 1 is hinged with a clamping block 67, the axial direction of the hinged shaft of the clamping block 67 is perpendicular to the extension direction of the extension pipe 2, the hinged shaft of the clamping block 67 is sleeved with a main torsion spring 671, one end of the main torsion spring 671 is fixedly connected with the extension pipe 2, and the other end of the main torsion spring 671 is fixedly connected with the clamping block 67. The outer peripheral surfaces of the two vertical parts of the U-shaped pipe 1 are fixedly connected with abutting blocks 12 respectively, and the length of the abutting blocks 12 is equal to the sum of the length of the downward end of the extension pipe 2 and the length of the clamping block 67. The abutting block 12 and the clamping block 67 are arranged opposite to each other, and a rubber pad 121 is fixedly connected to the side surface, facing the clamping block 67, of the abutting block 12. The torsion of the main torsion spring 671 is greater than the gravity of the tile so that the abutment block 12 and the clamping block 67 grip the tile, thereby reducing the likelihood of the tile separating from the clamping block 67.
Two vertical portions of U type pipe 1 and relative outer peripheral face intercommunication that sets up have two connecting pipes 4, are the obtuse angle setting between the length direction of connecting pipe 4 and the length direction of the vertical portion of U type pipe 1, and the one end intercommunication that U type pipe 1 was kept away from to connecting pipe 4 has the pipe 5 of gripping, and the length direction of the pipe 5 of gripping sets up with the length direction mutually perpendicular of connecting pipe 4, and the length direction of the pipe 5 of gripping sets up on a parallel with ground.
As shown in fig. 4 to 5, the grip pipe 5 has an opening 51 opened toward the outer peripheral surface of the U-shaped pipe 1, a spacer 52 is fixedly connected to the inner peripheral surface of the grip pipe 5, the spacer 52 is located adjacent to the opening 51, and the spacer 52 is located between the opening 51 and the connection pipe 4. The control part 6 for controlling the overturning angle of the clamping block 67 is installed in the holding pipe 5, the control part 6 comprises a pressing block 61, the pressing block 61 is hinged to the cushion block 52 of the holding pipe 5, an auxiliary torsion spring 611 is sleeved on a hinged shaft of the pressing block 61, one end of the auxiliary torsion spring 611 is fixedly connected with the cushion block 52 of the holding pipe 5, the other end of the auxiliary torsion spring 611 is fixedly connected with the pressing block 61, the pressing block 61 protrudes out of the opening 51 of the holding pipe 5, and the torsion of the auxiliary torsion spring 611 is greater than that of the main torsion spring 671.
The pressing block 61 is fixedly connected with a rope 62 on the end face in the holding pipe 5, one end of the rope 62 far away from the pressing block 61 is sequentially communicated along the holding pipe 5, the connecting pipe 4, the vertical part of the U-shaped pipe 1 and the pipe depth direction of the extension pipe 2, and after the rope 62 is communicated with the end face of the extension pipe 2 far away from the U-shaped pipe 1, the rope is bound and fixed with the side face of the clamping block 67 far away from the abutting block 12 (as shown in fig. 3).
As shown in fig. 5 to 6, a first pulley 63 is fixedly connected to the circumferential surface of the holding tube 5, the first pulley 63 is disposed opposite to the communication position between the connecting tube 4 and the holding tube 5, and the axis of the first pulley 63 is perpendicular to the axial direction of the holding tube 5 and the connecting tube 4. The inner peripheral surface of the connecting pipe 4 is fixedly connected with a second pulley 64, the axis of the second pulley 64 is perpendicular to the axis direction of the connecting pipe 4, the inner peripheral surface of the U-shaped pipe 1 is fixedly connected with a third pulley 65, the axis direction of the third pulley 65 is perpendicular to the pipe depth direction of the vertical part of the U-shaped pipe 1, and the second pulley 64 and the third pulley 65 are opposite to the communication position of the connecting pipe 4 and the U-shaped pipe 1.
As shown in fig. 4 and 7, the inner peripheral surface of the extension pipe 2 is fixedly connected with a fourth pulley 66, the axial direction of the fourth pulley 66 is perpendicular to the pipe depth direction of both ends of the extension pipe 2, and the fourth pulley 66 is located at the corner position of the extension pipe 2 and is arranged opposite to the abutment block 12. The rope 62 is sequentially wound around the outer circumferential surfaces of the first pulley 63, the second pulley 64, the third pulley 65 and the fourth pulley 66 in the direction from the holding pipe 5 to the extension pipe 2. So as to tension the rope 62, reduce the mutual friction of the inner peripheral surfaces of the telescopic holding tube 5, the connecting tube 4, the U-shaped tube 1 and the extension tube 2, and improve the traction guidance of the rope 62.
Since the torsion force of the secondary torsion spring 611 is greater than that of the primary torsion spring 671, when the pressing block 61 is pressed, the pressing block 61 sinks into the opening 51, so that the pressing block 61 is turned around the hinge axis between the pressing block 61 and the cushion block 52 in a direction approaching the connecting pipe 4, thereby resetting the primary torsion spring 671, and further turning the clamping block 67 in a direction approaching the abutting block 12, so that the clamping block 67 clamps the floor tile.
As shown in fig. 4 and 8, two movable wheels 7 are mounted on one side of the U-shaped pipe 1 close to the ground, the rotating shafts of the two movable wheels 7 coaxially rotate to form a same transmission shaft 71, and the rotating shaft is rotatably connected with a rotating plate 72. A fixed plate 13 is fixedly connected to one side of the U-shaped pipe 1 close to the rotating plate 72, and a scissor mechanism 8 for adjusting the distance between the fixed plate 13 and the rotating plate 72 is installed between the fixed plate 13 and the rotating plate 72.
As shown in fig. 4 and 8, the scissors mechanism 8 includes a main rod 83 and an auxiliary rod 84, the middle portions of which are hinged to each other, two ends of the main rod 83 are respectively hinged to a main slider 831 and a main moving block 832, the cross sections of the main slider 831 and the main moving block 832 are both in a dovetail shape, two ends of the auxiliary rod 84 are respectively hinged to an auxiliary slider 841 and an auxiliary moving block 842, and the cross sections of the auxiliary slider 841 and the auxiliary moving block 842 are both in a dovetail shape. The end surface of the fixed plate 13 facing the rotating plate 72 is provided with a main dovetail groove 131, the main dovetail groove 131 extends along the axial direction of the movable wheel 7, and both the main slider 831 and the sub slider 841 slide in a snap-fit manner with the main dovetail groove 131 of the fixed plate 13. The end surface of the rotating plate 72 facing the fixed plate 13 is provided with an auxiliary dovetail groove 721, the auxiliary dovetail groove 721 extends along the axial direction of the movable wheel 7, and the main moving block 832 and the auxiliary moving block 842 are both clamped and slide with the rotating plate 72.
As shown in fig. 4 and 8, a motor 81 is mounted on a side surface of the fixed plate 13 along the axial direction of the moving wheel 7, a screw 82 is coaxially rotated by a rotating shaft of the motor 81, a main male screw 821 and a sub male screw 822 having opposite rotation directions are respectively provided on outer peripheral surfaces of both ends of the screw 82, the main male screw 821 of the screw 82 is screwed with the main slider 831, and the sub male screw 822 of the screw 82 is screwed with the sub slider 841. The end of the holding tube 5 far away from the connecting tube 4 is provided with a switch 9 for controlling the operation of the motor 81.
The working conditions and principles of the embodiment are as follows:
when the tile paving device is used for paving tiles during work, on the premise of ensuring operation safety, firstly, tiles to be paved on a base floor are stacked near an area where the tiles are needed to be paved, then, a base floor is moistened, and then, plain cement or interface bonding agent is brushed on the bottom floor.
The moving wheel 7 is then moved by pushing the gripping tube 5 so that the tile laying device moves to the side of the stack of tiles. Because the distance between the fixed plate 13 and the rotating plate 72 of the tile paving device is in the shortest state, then through the control switch 9, the motor 81 works and drives the screw rod 82 to rotate coaxially with the rotating shaft of the motor 81, so that the main slider 831 is continuously in threaded connection with the main external thread 821 of the screw rod 82, and the auxiliary slider 841 is simultaneously in threaded connection with the auxiliary external thread 822 of the screw rod 82, so that the main slider 831 and the auxiliary slider move to positions close to each other, so that the included angle between the main rod 83 and the auxiliary rod 84 is gradually reduced, so that the main moving block 832 and the auxiliary moving block 842 simultaneously move to positions close to each other, so as to increase the distance between the fixed plate 13 and the rotating plate 72, and further increase the distance between the U-shaped pipe 1 and the ground.
The switch 9 is started until the abutting block 12 and the clamping block 67 are higher than the uppermost floor tile and then stopped, and then the gripping pipe 5 is pushed, so that the abutting block 12 and the clamping block 67 are both located above the uppermost floor tile. The switch 9 is then controlled to activate the motor 81 so that the abutment block 12 and the clamping block 67 are in position between the uppermost tiles, and the switch 9 is closed. Then the binding and fixing state of one end of the rope 62 far away from the pressing block 61 and the clamping block 67 is released, then the distance between the abutting block 12 and the clamping block 67 is conveniently adjusted by extending and retracting the extension pipe 2, so that the abutting block 12 abuts against the floor tile, meanwhile, the clamping block 67 is arranged close to the side face of the floor tile, and then one end of the rope 62 far away from the pressing block 61 and the side face of the clamping block 67 far away from the abutting block 12 are bound and fixed.
Then, the pressing block 61 is pressed, so that the pressing block 61 rotates around the hinge axis between the pressing block 61 and the cushion block 52 toward the first pulley 63, so that the rope 62 is loosened, the main torsion spring 671 is reset, and the clamping block 67 is driven to rotate around the hinge axis between the clamping block 67 and the extension pipe 2 toward the side close to the abutting block 12, so that the clamping block 67 and the abutting block 12 clamp the uppermost floor tile.
Next, the tile paving device is rotated upward about the driving shaft 71 so that the tiles held by the tile paving device are separated from the plurality of stacked tiles, and then the holding pipe 5 is pushed so that the tile paving device is moved to the tile paving area by moving the moving wheel 7. Then, the switch 9 is controlled to make the motor 81 drive the lead screw 82 to rotate, so that the main slider 831 and the auxiliary slider 841 move away from each other, and the U-shaped pipe 1 is gradually arranged close to the ground, and the floor tile is arranged close to the ground base.
Then, the operation of pressing the pressing block 61 is released, the sub torsion spring 611 is reset because the torsion force of the sub torsion spring 611 is greater than that of the main torsion spring 671, and the clamping block 67 is pulled by the rope 62 to perform a rotational movement in a direction away from the abutment block 12 around the hinge axis between the clamping block 67 and the extension pipe 2, so that the operation of clamping the floor tile by the clamping block 67 and the abutment block 12 is released, and the floor tile is laid on the basement floor (see fig. 8). According to the above operation, a plurality of floor tiles are sequentially laid on the base floor, thereby completing the tile laying operation of the tile laying device.
The embodiment of this specific implementation mode is the preferred embodiment of the present invention, not limit according to this the utility model discloses a protection scope, so: all equivalent changes made according to the structure, shape and principle of the utility model are covered within the protection scope of the utility model.

Claims (8)

1. The utility model provides a tile work device which characterized by: the pipe joint device comprises a U-shaped pipe (1), extension pipes (2) are inserted into two ends of the U-shaped pipe (1), a fastening piece (3) for fixing the extension pipes (2) is arranged on the U-shaped pipe (1), the U-shaped pipe (1) is communicated with two connecting pipes (4), one ends, far away from the U-shaped pipe (1), of the connecting pipes (4) are communicated with a holding pipe (5), a butt joint block (12) is arranged on the U-shaped pipe (1), one ends, far away from the U-shaped pipe (1), of the extension pipes (2) are hinged with clamping blocks (67), hinged shafts of the clamping blocks (67) are sleeved with main torsion springs (671), one ends of the main torsion springs (671) are connected with the extension pipes (2), the other ends of the main torsion springs (671) are connected with the clamping blocks (67), a control piece (6) for controlling the turnover angle of the clamping blocks (67) is arranged in the, when the control piece (6) is controlled, the clamping block (67) is turned in the direction close to the abutting block (12), a moving wheel (7) is arranged on one side, away from the connecting pipe (4), of the U-shaped pipe (1), and a scissor mechanism (8) is arranged between the U-shaped pipe (1) and the moving wheel (7).
2. A tile work apparatus according to claim 1, wherein: an opening (51) is formed in the outer peripheral surface of the holding pipe (5), the control element (6) comprises a pressing block (61), the pressing block (61) is hinged to the inner peripheral surface of the holding pipe (5), the pressing block (61) protrudes out of the opening (51), an auxiliary torsion spring (611) is sleeved on a hinged shaft of the pressing block (61), one end of the auxiliary torsion spring (611) is connected with the inner periphery of the holding pipe (5), the other end of the auxiliary torsion spring (611) is connected with the pressing block (61), a rope (62) is fixedly connected to the pressing block (61), and one end, far away from the pressing block (61), of the rope (62 sequentially penetrates through the holding pipe (5), the connecting pipe (4), the U-shaped pipe (1) and the extension pipe (2) and then is fixedly connected with the clamping block (67); the torsion force of the auxiliary torsion spring (611) is larger than that of the main torsion spring (671); when the pressing block (61) is pressed, the pressing block (61) sinks into the opening (51), and the clamping block (67) is turned in a direction approaching the abutting block (12).
3. A tile work apparatus according to claim 2, wherein: the pipe is characterized in that a first pulley (63) is fixedly connected to the circumferential surface of the holding pipe (5), the first pulley (63) is arranged opposite to the connecting pipe (4), a second pulley (64) is fixedly connected to the inner circumferential surface of the connecting pipe (4), a third pulley (65) is fixedly connected to the inner circumferential surface of the U-shaped pipe (1), the second pulley (64) and the third pulley (65) are arranged opposite to the communication position of the connecting pipe (4) and the U-shaped pipe (1), a fourth pulley (66) is fixedly connected to the inner circumferential surface of the extending pipe (2), the fourth pulley (66) is arranged opposite to the abutting block (12), and the rope (62) is sequentially wound on the outer circumferential surfaces of the first pulley (63), the second pulley (64), the third pulley (65) and the fourth pulley (66).
4. A tile work apparatus according to claim 1, wherein: the scissors mechanism (8) comprises a main rod (83) and an auxiliary rod (84) which are mutually hinged at the middle part, the U-shaped pipe (1) is close to one side fixedly connected with a fixing plate (13) of the moving wheel (7), a rotating shaft of the moving wheel (7) is rotatably connected with a rotating plate (72), two ends of the main rod (83) are respectively hinged with a main sliding block (831) and a main moving block (832), two ends of the auxiliary rod (84) are respectively hinged with an auxiliary sliding block (841) and an auxiliary moving block (842), the main sliding block (831) and the auxiliary sliding block (841) are both in clamping sliding with the fixing plate (13), the main moving block (832) and the auxiliary moving block (842) are both in clamping sliding with the rotating plate (72), a motor (81) is installed on the side surface of the fixing plate (13), a lead screw (82) is coaxially rotated on the rotating shaft of the motor (81), main external threads (821) and auxiliary external threads (822) are respectively arranged on the peripheral surfaces of two ends, the rotation directions of the main external thread (821) and the auxiliary external thread (822) are opposite, the main sliding block (831) is in threaded connection with the main external thread (821) of the lead screw (82), and the auxiliary sliding block (841) is in threaded connection with the auxiliary external thread (822).
5. A tile work apparatus according to claim 1, wherein: the fastening piece (3) comprises a fixing bolt (31), a plurality of main screw holes (11) penetrate through the outer peripheral surface of the U-shaped pipe (1), a plurality of auxiliary screw holes (21) penetrate through the outer peripheral surface of the extension pipe (2), and when the auxiliary screw holes (21) are aligned with the main screw holes (11), the fixing bolt (31) is in threaded connection with the main screw holes (11) and the auxiliary screw holes (21).
6. A tile work apparatus according to claim 1, wherein: the side face, facing the clamping block (67), of the abutting block (12) is fixedly connected with a rubber pad (121).
7. The tile paving device according to claim 1, wherein the extension pipe (2) is shaped like L, and one end of the extension pipe (2) far away from the U-shaped pipe (1) is arranged downwards.
8. A tile work apparatus according to claim 4, wherein: and a switch (9) for controlling the motor (81) to work is arranged at one end of the holding pipe (5) far away from the connecting pipe (4).
CN201921814769.1U 2019-10-24 2019-10-24 Tile work device Active CN210976507U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921814769.1U CN210976507U (en) 2019-10-24 2019-10-24 Tile work device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921814769.1U CN210976507U (en) 2019-10-24 2019-10-24 Tile work device

Publications (1)

Publication Number Publication Date
CN210976507U true CN210976507U (en) 2020-07-10

Family

ID=71445987

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921814769.1U Active CN210976507U (en) 2019-10-24 2019-10-24 Tile work device

Country Status (1)

Country Link
CN (1) CN210976507U (en)

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