Wall tile paving auxiliary device for building decoration
By pushing the positioning component and the flip plate design, combined with the pushing knocking component and the adjustment component, the offset problem during tile laying is solved, the precise positioning and efficient laying of tiles are achieved, and the laying efficiency and safety are improved.
Patent Information
- Application Number
- CN202511067094.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-31
- Publication Date
- 2025-09-16
AI Technical Summary
In the prior art, the tile laying auxiliary device easily causes the tiles to shift when flipped, affecting the accuracy and safety of the laying position.
An auxiliary device for laying wall tiles for architectural decoration is designed. It includes a push positioning component and a flip plate. The large toothed disc, transmission gear, and transmission belt group cooperate to achieve precise positioning and flipping of tiles. Combined with a push-knocking component, rubber ball knocking vibration is used to improve the mortar bonding effect. Adjustment components and limit columns are used to adapt to different tile widths.
It improves the efficiency and accuracy of tile laying, ensures that the tiles fit smoothly against the wall, reduces the risk of deviation, and improves operational safety and efficiency.
Smart Images

Figure CN120649647A_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of tile paving, and in particular to an auxiliary device for paving wall tiles for building decoration. Background Art
[0002] In the field of architectural decoration, in order to ensure the beauty of the wall, it is usually necessary to use mortar and tiles to stick to the wall to achieve the effect of wall decoration. When laying wall tiles, it is usually necessary to use auxiliary devices to assist in laying, thereby improving the efficiency of tile laying.
[0003] The top end of the fixing plate is provided with a sliding groove, and the sliding groove is provided at the end of the fixing plate, and a slider is embedded in the slide groove. The fixing plate is movably sleeved with a push rod, and the push rod is rotatably connected to the slider toward one end of the slider and is connected to the slider for rotation. The fixing plate is provided with a clamping groove. The wall tile paving auxiliary device has a simple structure, is easy to operate, and has a good paving effect and higher safety. When paving, the supporting plate rests on the top of the tile pasted below, thereby ensuring the horizontality of the tile during paving and ensuring the paving accuracy. The clamping groove is provided on the supporting plate to limit the bottom of the tile to prevent it from accidentally sliding and breaking, thereby improving operation safety.
[0004] In the prior art, a tray is provided to prevent tiles from sliding, and a pushing method is used to achieve the effect of quickly laying tiles. However, when the tray pushes the tiles to change the angle, the tiles are easily offset when flipped, resulting in a problem of offset in the laying position of the tiles.
[0005] Therefore, an auxiliary device for laying wall tiles for building decoration is proposed to solve the problems raised in the background art. Summary of the Invention
[0006] In order to solve the problems raised in the above background technology, the present invention provides an auxiliary device for laying wall tiles for building decoration.
[0007] To achieve the above-mentioned object, the present invention provides the following technical solution: an auxiliary device for laying wall tiles for building decoration, comprising two sets of fan-shaped plates, wherein a push positioning assembly is provided inside one side of the fan-shaped plates;
[0008] The pushing and positioning assembly includes a flip plate, and the flip plate is rotatably arranged on the inner side of the two groups of fan-shaped plates. The front and back sides of the lower end of the flip plate are fixedly installed with spliced shaft sleeves, and the spliced shaft sleeves are spliced and inserted into the inner side of one end of the flip plate away from the flip plate. A large toothed disc is installed on the end of the prismatic shaft away from the flip plate, and a transmission gear is meshed on the top of the large toothed disc. A transmission belt group is fixedly installed on the side of the transmission gear close to the fan-shaped plate, and a cam is fixedly installed on the side of the upper end of the transmission belt group close to the fan-shaped plate through a rotating shaft. The cam is rotatably arranged inside the fan-shaped plate, and a movable plate is movably provided on one side of the cam, and a positioning plug is installed on the side of the movable plate away from the cam.
[0009] Preferably, one side of the transmission belt group is fixedly connected to the sector plate through a bearing, and a group of gear boxes are installed on the side of the large toothed plate, transmission gear and transmission belt group away from the sector plate through a bearing, and the gear box is fixedly installed on the outside of the sector plate.
[0010] Preferably, two sets of movable sleeves are installed on the side of the movable plate away from the positioning plug plate, and a fixed column is slidably provided on the inner side of the movable sleeve, and the fixed column is fixedly installed inside the fan-shaped plate, and two sets of tension springs are installed on the side of the movable plate away from the positioning plug plate, and the tension springs are fixedly connected to the inside of the fan-shaped plate.
[0011] Preferably, a push-knocking assembly is provided on one side of the flip plate, and the push-knocking assembly includes four groups of limiting plates, fixed sliding columns are fixedly installed between two groups of the limiting plates, and a group of sliding blocks are slidingly provided on the outer sides of the two groups of fixed sliding columns.
[0012] Preferably, a sliding plate is fixedly installed on the side of the sliding block away from the flip plate, and an auxiliary handle is installed on the side of the sliding plate away from the sliding block. Positioning grooves are provided on the sides of the upper and lower ends of the sliding plate, and a positioning shaft is rotatably provided on the inner side of the positioning groove.
[0013] Preferably, a rotating sleeve is fixedly installed on the side of the positioning shaft away from the sliding plate, and a movable rod is slidingly provided on the inner side of the rotating sleeve, a fixed turntable is fixedly installed on the end of the movable rod away from the sliding plate, and a rotating shaft is fixedly installed on the side of the fixed turntable away from the sliding plate, a fixed sleeve is installed on the middle part of the rotating shaft and the end away from the fixed turntable, and a connecting rod is installed on the top or bottom of the fixed sleeve, a rubber ball is installed on the end of the connecting rod away from the fixed sleeve, a stabilizing bracket is rotatably provided on the outer side of the rotating shaft, and the stabilizing bracket is fixedly installed on the side of the flip plate close to the sliding plate, and a limiting disk is installed on the end of the movable rod away from the fixed turntable.
[0014] Preferably, an arc-shaped groove begins to be formed on the inner side of the upper end of the fan-shaped plate, and a limiting groove is provided through the inner side of the lower end of the fan-shaped plate. The splicing sleeve is rotatably arranged on the inner side of the limiting groove. A support plate is installed on one side of the lower end of the fan-shaped plate. Three groups of limiting columns are fixedly installed on the inner sides of the two groups of fan-shaped plates, and several groups of snap grooves are provided on the side faces of the limiting columns. A group of adjustment components are slidingly provided on the outer sides of the two groups of limiting columns.
[0015] Preferably, the adjustment assembly includes a limit sleeve, and bearing sleeves are installed on the outer sides of both ends of the limit sleeve, a snap sleeve is fixedly installed on the end of the bearing sleeve away from the limit sleeve, and two groups of combination blocks are installed on the inner side of the snap sleeve, the combination blocks are rotatably arranged on the inner side of the snap groove, a welding plate is installed on one side of the two groups of snap sleeves, a positioning screw is rotatably assembled in the middle of the welding plate, and a lifting handle is installed on the side of the upper welding plate away from the limit sleeve.
[0016] Preferably, a fixed plate is installed on the side of the lower end of the flip plate away from the sliding plate, and sliding columns are fixedly installed on the front and back sides of the upper end of the flip plate, and the sliding columns are slidably arranged on the inner side of the arc groove.
[0017] Preferably, a method for using a wall tile paving auxiliary device for building decoration:
[0018] First, it is necessary to adjust the width of the tiles to be installed, remove the three sets of positioning screws, and then control the welding plate to rotate 90 degrees along the middle of the limit column. After rotation, the combination block will be separated from the buckle groove. After separation, the buckle sleeve will lose its restriction. At the same time, the fan-shaped plates on both sides can be pulled outward to adjust the spacing. After adjustment, rotate the welding plate to reset it. After reset, keep the combination block on the inner side of the corresponding buckle groove, and install the positioning screws again to embed them into the inner wall of the limit sleeve to limit it.
[0019] Then, apply mortar to the tiles to be installed and place them on the top of the fixed plate with the smooth surface facing the flip plate, keeping the tiles in an inclined state, and then lift the entire device by grasping the lifting handle and the auxiliary handle. After lifting, place the two sets of support plates on the top of the tiles, keeping the bottom surface of the support plate in close contact with the top surface of the tiles, and then push the grasped auxiliary handle to transmit the pushing force to the flip plate, which will flip along the limit groove at the lower end, flipping and pushing the tiles to contact the wall for paving;
[0020] During the pushing process, the flip plate will drive the splicing shaft sleeve to flip, and during the flipping process, the large toothed plate will be driven to rotate through the prismatic shaft, so that the tooth blocks of the large toothed plate are engaged to drive the transmission gear to rotate, and the transmission gear will drive the cam to rotate through the transmission belt group. When the flip plate is halfway rotated, the protruding part of the cam will push the movable plate and the positioning plug-in plate to extend outward along the fixed column. When extending outward, it will be in a protruding state. The protruding area will align the wall with the tiles that have been laid on the side, which is convenient for the staff to observe and assist in alignment. When the flip plate continues to rotate, the cam will also continue to rotate, and the protruding area of the cam will no longer push the positioning plug-in plate to extend outward. By shrinking, it is avoided that the positioning plug-in plate is close to the wall and blocked when the tiles are laid;
[0021] Finally, after the tiles and mortar come into contact with the wall, hold the auxiliary handle and keep applying thrust to squeeze the mortar. At the same time, use the auxiliary handle to control the sliding plate and sliding block to slide up and down along the fixed sliding column. During the sliding process, the positions of the four sets of rotating sleeves will change, and they will move along the movable rod during the activity. Since one end of the movable rod is in a fixed state, the rotating sleeve will drive the rubber ball connected by the connecting rod to rotate when it slides along the movable rod. During the rotation, it will contact and knock on the flip plate. When the upper rubber ball contacts the flip plate, the lower rubber ball will separate from the flip plate. When the sliding plate is slid downward, the lower rubber ball will knock on the flip plate. The tiles are laid by reciprocatingly controlling the movement of the sliding plate and applying thrust.
[0022] Compared with the prior art, the present invention has the following beneficial effects:
[0023] The present invention facilitates the achievement of the effect of assisting in aligning the paving position during the pushing process by setting a pushing positioning component and a flip plate. By pushing the flip plate to rotate along the splicing shaft sleeve, the prismatic shaft and the large toothed disc can be driven to rotate, and the large toothed disc will engage and drive the transmission gear to rotate. Since the transmission ratio of the large toothed disc and the transmission gear is four to one, when the large toothed disc rotates forty-five degrees, it will drive the transmission gear to rotate one hundred and eighty degrees. The transmission gear will synchronously drive the cam to rotate through the transmission belt group, and the convex arc structure of the cam rotation can be used to push the movable plate and the positioning plug-in plate to expand. During the expansion process, the inclined area of the positioning plug-in plate will first contact the edge of the tile that has been laid. Continuous pushing can squeeze the overall structure to move horizontally to achieve the effect of auxiliary fine-tuning. Continuous rotation of the flip plate can control the positioning plug-in plate to reset. Automatic positioning of the pushing positioning component during the pushed tile paving process can effectively improve the paving efficiency.
[0024] The present invention cooperates with a pushing and knocking component and a flip plate, which is beneficial to controlling the rubber ball to knock and vibrate by sliding up and down while pushing and squeezing, and improves the mortar bonding effect. The limit plate and the fixed sliding column can provide support and sliding restriction for the sliding block and the sliding plate, and the driving force can be provided during the up and down sliding of the sliding plate. The movable rod can be controlled to flip along the fixed turntable by adjusting the rotating sleeve at the corresponding position up and down. During the flipping process, the connecting rod and the rubber ball at the end can be driven to knock on the tile. The knocking of the rubber ball and the continuous squeezing of the tile by pushing the flip plate can effectively spread the mortar between the tile and the wall to increase the contact area and the bonding effect.
[0025] The present invention facilitates the replacement of the corresponding flip plate structure according to tiles of different widths by setting the cooperation of the adjustment component and the limit column, thereby ensuring that the push positioning component and the push knocking component can be used normally, and the sector plates on both sides can be connected by using the cooperation of the limit column and the limit sleeve. The cross-section of the sector column and the limit sleeve is a diamond structure with arcs on the upper and lower parts, and the rotatable combination block at the end of the limit sleeve can achieve the positioning effect by rotating ninety degrees and clamping it on the inner side of the positioning groove. The welding plate and the limit sleeve are then combined by the positioning screw to achieve locking to prevent rotation. The range of the sector plate can be flexibly adjusted by using the adjustment component to adapt to different needs, thereby ensuring that the push positioning component and the push knocking component can be used normally. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] Figure 1 It is a schematic diagram of the overall structure of the present invention;
[0027] Figure 2 This is a schematic diagram of the explosion structure of the push-and-strike assembly of the present invention;
[0028] Figure 3 For the present invention Figure 2 A in the middle is an enlarged structural diagram;
[0029] Figure 4 For the present invention Figure 2 The enlarged structural diagram at B in the middle;
[0030] Figure 5 This is a schematic diagram of the structure of the push-knocking component of the present invention;
[0031] Figure 6 For the present invention Figure 5 The enlarged structural diagram at C in the middle;
[0032] Figure 7 It is a schematic diagram of the sliding plate structure of the present invention;
[0033] Figure 8 This is a schematic structural diagram of the rubber ball of the present invention;
[0034] Figure 9 Schematic diagram of the cross-sectional structure of the regulating assembly of the present invention;
[0035] Figure 10 This is a schematic diagram of the fan-shaped plate structure of the present invention;
[0036] Figure 11 For the present invention Figure 10 The enlarged structural diagram at D in the middle;
[0037] Figure 12 It is a schematic diagram of the overall structure of the other side of the present invention.
[0038] In the figure: 100, fan-shaped plate; 101, arc-shaped groove; 102, limit groove; 103, support plate; 104, limit column; 105, buckle groove;
[0039] 200, flip plate; 201, splicing sleeve; 202, fixed plate; 203, sliding column;
[0040] 001, push positioning assembly; 300, positioning plug plate; 301, prismatic shaft; 302, large toothed disc; 303, transmission gear; 305, transmission belt assembly; 306, cam; 307, movable plate; 308, movable sleeve; 309, fixed column; 310, tension spring; 311, gear box;
[0041] 002, push knock assembly; 400, sliding plate; 401, limit plate; 402, fixed sliding column; 403, sliding block; 404, auxiliary handle; 405, positioning groove;
[0042] 500, rubber ball; 501, positioning shaft; 502, rotating sleeve; 503, movable rod; 504, fixed turntable; 505, rotating shaft; 506, fixed sleeve; 507, connecting rod; 508, stabilizing bracket; 509, limit plate;
[0043] 003, adjustment assembly; 600, combination block; 601, limit sleeve; 602, bearing sleeve; 603, snap sleeve; 604, welding plate; 605, positioning screw; 606, lifting handle. DETAILED DESCRIPTION
[0044] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0045] like Figures 1 to 12As shown, the present invention provides a wall tile laying auxiliary device for building decoration, comprising two sets of fan-shaped plates 100, wherein a pushing and positioning component 001 is provided inside one side of the fan-shaped plate 100;
[0046] The pushing and positioning component 001 includes a flip plate 200, and the flip plate 200 is rotatably arranged on the inner side of the two groups of fan-shaped plates 100. The front and back sides of the lower end of the flip plate 200 are fixedly installed with splicing sleeves 201, and the splicing sleeves 201 are spliced and inserted into the inner side of one end of the flip plate 200, and a large toothed disc 302 is installed on the end of the prismatic shaft 301 away from the flip plate 200, and a transmission gear 303 is meshed on the top of the large toothed disc 302. A transmission belt group 305 is fixedly installed on the side of the transmission gear 303 close to the fan-shaped plate 100, and a cam 306 is fixedly installed on the side of the upper end of the transmission belt group 305 close to the fan-shaped plate 100 through a rotating shaft. The cam 306 is rotatably arranged inside the fan-shaped plate 100, and a movable plate 307 is movably arranged on one side of the cam 306, and a positioning plug plate 300 is installed on the side of the movable plate 307 away from the cam 306.
[0047] The above scheme is adopted: the flip plate 200 is used to stick the tiles to the wall by pushing and flipping to achieve the effect of assisting paving, and the splicing sleeve 201 can be embedded in the inner side of the limit groove 102 at the lower end of the fan-shaped plate 100 to achieve the effect of limiting the flip plate 200 and assisting flipping, and the prismatic shaft 301 can transmit the flipping kinetic energy of the flip plate 200 by splicing with the splicing sleeve 201, and the large toothed disc 302 can be engaged to drive the transmission gear 303 to rotate, and the transmission belt group 305 can cooperate to transmit the flipping kinetic energy to the cam 306, and the convex arc structure of the cam 306 can squeeze the movable plate 307 and the positioning plug plate 300 outward, and the movable sleeve 308 and the fixed column 309 can be combined to ensure the stability of the lateral sliding of the movable plate 307, and the tension spring 310 can pull the movable plate 307 to reset, and by resetting, it is ensured that the next paving can continue to be extended for auxiliary positioning.
[0048] like Figure 2-Figure 4 As shown, one side of the transmission belt group 305 is fixedly connected to the sector plate 100 through a bearing, and the large toothed plate 302, the transmission gear 303 and the transmission belt group 305 are installed with a group of gear boxes 311 through bearings on the side away from the sector plate 100, and the gear box 311 is fixedly installed on the outside of the sector plate 100.
[0049] Two sets of movable sleeves 308 are installed on the side of the movable plate 307 away from the positioning plug plate 300, and a fixed column 309 is slidably provided on the inner side of the movable sleeve 308. The fixed column 309 is fixedly installed inside the fan-shaped plate 100. Two sets of tension springs 310 are installed on the side of the movable plate 307 away from the positioning plug plate 300, and the tension springs 310 are fixedly connected to the inside of the fan-shaped plate 100.
[0050] The above solution is adopted: the gear box 311 can be used to provide protection for the internal transmission structure to avoid direct contact with cement mortar, and the movable sleeve 308 can cooperate with the fixed column 309 to assist the movable plate 307 in sliding stably. By using the tension spring 310, tension can be provided to ensure that the movable plate 307 can be normally retracted and reset.
[0051] like Figure 5-Figure 8 As shown, a pushing and knocking component 002 is provided on one side of the flip plate 200, and the pushing and knocking component 002 includes four groups of limiting plates 401, and a fixed sliding column 402 is fixedly installed between two groups of limiting plates 401, and a group of sliding blocks 403 are slidingly provided on the outer sides of the two groups of fixed sliding columns 402.
[0052] A sliding plate 400 is fixedly installed on the side of the sliding block 403 away from the flip plate 200, and an auxiliary handle 404 is installed on the side of the sliding plate 400 away from the sliding block 403. Positioning grooves 405 are opened on the sides of the upper and lower ends of the sliding plate 400, and a positioning shaft 501 is rotatably set on the inner side of the positioning groove 405.
[0053] A rotating sleeve 502 is fixedly installed on the side of the positioning shaft 501 away from the sliding plate 400, and a movable rod 503 is slidingly provided on the inner side of the rotating sleeve 502, and a fixed turntable 504 is fixedly installed on the end of the movable rod 503 away from the sliding plate 400, and a rotating shaft 505 is fixedly installed on the side of the fixed turntable 504 away from the sliding plate 400, a fixed sleeve 506 is installed on the middle part of the rotating shaft 505 and the end away from the fixed turntable 504, and a connecting rod 507 is installed on the top or bottom of the fixing sleeve 506, and a rubber ball 500 is installed on the end of the connecting rod 507 away from the fixed sleeve 506, a stabilizing bracket 508 is rotatably provided on the outer side of the rotating shaft 505, and the stabilizing bracket 508 is fixedly installed on the side of the flip plate 200 close to the sliding plate 400, and a limiting disk 509 is installed on the end of the movable rod 503 away from the fixed turntable 504.
[0054] The above scheme is adopted: the limit plate 401 can fix the fixed sliding post 402 to one side of the flip plate 200 by welding, and the fixed sliding post 402 can be used to limit and assist the sliding block 403 to slide horizontally and adjust the position. The sliding plate 400 can drive the rotating sleeve 502 on the side to adjust the position. The positioning shaft 501 is used to connect the sliding plate 400 and the rotating sleeve 502, keeping the sliding plate 400 able to drive the rotating sleeve 502 to adjust up and down. The movable rod 503 slides along the inner side of the rotating sleeve 502 to drive the fixed turntable 504 to rotate, and the rotation can drive the connected rotating shaft 505 to rotate synchronously, thereby achieving the effect of kinetic energy transmission, and the rubber ball 500 is driven to flip along the rotating shaft 505 through the connecting rod 507. During the flipping process, it hits the flip plate 200 to achieve the effect of knocking the tiles close to the wall, and the limit plate 509 can prevent the rotating sleeve 502 from sliding off.
[0055] like Figures 9-12 As shown, an arc-shaped groove 101 begins to be formed on the inner side of the upper end of the fan-shaped plate 100, and a limiting groove 102 is provided on the inner side of the lower end of the fan-shaped plate 100. The splicing sleeve 201 is rotatably arranged on the inner side of the limiting groove 102. A support plate 103 is installed on one side of the lower end of the fan-shaped plate 100. Three groups of limiting columns 104 are fixedly installed on the inner sides of the two groups of fan-shaped plates 100, and several groups of snap grooves 105 are provided on the side faces of the limiting columns 104. A group of adjustment components 003 are slidingly provided on the outer sides of the two groups of limiting columns 104.
[0056] The adjustment component 003 includes a limit sleeve 601, and bearing sleeves 602 are installed on the outer sides of both ends of the limit sleeve 601, and a snap sleeve 603 is fixedly installed on the end of the bearing sleeve 602 away from the limit sleeve 601, and two groups of combination blocks 600 are installed on the inner side of the snap sleeve 603. The combination block 600 is rotatably set on the inner side of the snap groove 105. A welding plate 604 is installed on one side of the two groups of snap sleeves 603. A positioning screw 605 is rotatably combined in the middle of the welding plate 604, and a lifting handle 606 is installed on the side of the upper welding plate 604 away from the limit sleeve 601.
[0057] A fixed plate 202 is installed on the side of the lower end of the flip plate 200 away from the sliding plate 400 , and sliding columns 203 are fixedly installed on the front and back of the upper end of the flip plate 200 . The sliding columns 203 are slidably arranged on the inner side of the arc groove 101 .
[0058] The above scheme is adopted: the arc groove 101 is used to limit the inner sliding column 203 structure to maintain the sliding stability of the flip plate 200, and the limit groove 102 can be used to limit the splicing shaft sleeve 201 to increase the stability of the flip, and the support plate 103 is used to contact the tiles after bonding to provide auxiliary support. The thickness of the support plate 103 is equal to the thickness of the gap between the tiles after paving. The limit column 104 is used to cooperate with the limit sleeve 601 to adjust the interval of the fan plate 100. The buckle groove 105 can be used to cooperate with the combination block 600 to limit the buckle sleeve 603 to avoid the fan plate 100 from being adjusted after adjustment. The range of the movement changes, the snap sleeve 603 can be adjusted by rotating the combination block 600 to be embedded in the inner side of the snap groove 105 for restriction, the welding plate 604 can fix the two sets of snap sleeves 603 to maintain synchronous rotation adjustment, the positioning screw 605 can lock the adjusted snap sleeve 603 by rotating and inserting, the lifting handle 606 provides a grip for the user, and facilitates the lifting and moving device, the fixed plate 202 can provide support for the tiles, and the sliding column 203 can slide along the inner side of the arc groove 101 to maintain the stability of the flip adjustment of the flip plate 200.
[0059] The working principle and use process of the present invention:
[0060] First, it is necessary to adjust the width of the tiles to be installed, and remove the three sets of positioning screws 605. After removal, the welding plate 604 can be controlled to rotate ninety degrees along the middle of the limiting column 104. After rotation, the assembly block 600 will be separated from the buckle groove 105. After separation, the buckle sleeve 603 will lose its restriction. At the same time, the fan-shaped plates 100 on both sides can be pulled outward to adjust the spacing. After adjustment, the welding plate 604 is rotated to reset. After reset, keep the assembly block 600 on the inner side of the corresponding buckle groove 105, and install and reset the positioning screws 605 so that they are embedded in the inner wall of the limiting sleeve 601 to limit the position.
[0061] Then, the tiles to be installed and laid are coated with mortar and placed on the top of the fixed plate 202 with the smooth surface facing the flip plate 200, keeping the tiles in an inclined state. Then, the entire device is lifted by grasping the lifting handle 606 and the auxiliary handle 404. After lifting, the two sets of support plates 103 are placed on the top of the tiles, keeping the bottom surface of the support plate 103 in close contact with the top surface of the tiles. Then, the grasped auxiliary handle 404 is pushed, and the pushing force is transmitted to the flip plate 200, which will flip along the limiting groove 102 at the lower end, flipping and pushing the tiles to contact the wall for laying.
[0062] During the pushing process, the flip plate 200 will drive the splicing shaft sleeve 201 to flip, and during the flipping process, the large toothed disc 302 will be driven to rotate through the prismatic shaft 301, so that the tooth blocks of the large toothed disc 302 are engaged to drive the transmission gear 303 to rotate, and the transmission gear 303 will drive the cam 306 to rotate through the transmission belt group 305. When the flip plate 200 is halfway rotated, the protruding part of the cam 306 will push the movable plate 307 and the positioning plugboard 300 to extend along the fixed column 309. When extending, it will be in a protruding state. The protruding area aligns the wall with the tiles that have been laid on the side, which is convenient for the staff to observe and assist in alignment. When the flip plate 200 continues to rotate, the cam 306 will also continue to rotate. The protruding area of the cam 306 will no longer push the positioning plugboard 300 to extend, and by contraction, it is avoided that the positioning plugboard 300 is close to the wall and blocked when the tiles are laid;
[0063] Finally, after the tiles and mortar contact the wall, the auxiliary handle 404 is grasped and maintained, and the thrust is kept applied to squeeze the mortar. At the same time, the auxiliary handle 404 is used to control the sliding plate 400 and the sliding block 403 to slide up and down along the fixed sliding column 402. During the sliding process, the positions of the four sets of rotating sleeves 502 will change, and they will move along the movable rod 503 during the activity. Since one end of the movable rod 503 is in a fixed state, when the rotating sleeve 502 slides along the movable rod 503, it will drive the rubber ball 500 connected by the connecting rod 507 to rotate. During the rotation process, it will contact and knock on the flip plate 200. When the upper rubber ball 500 contacts the flip plate 200, the lower rubber ball 500 will separate from the flip plate 200. When the sliding plate 400 is slid downward, the lower rubber ball 500 will knock on the flip plate 200. The tiles are laid by reciprocatingly controlling the movement of the sliding plate 400 and applying thrust.
[0064] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that includes a list of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus.
[0065] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.
Claims
1. A wall tile paving auxiliary device for building decoration, comprising two sets of fan-shaped plates (100), characterized in that: A pushing and positioning component (001) is provided inside one side of the sector plate (100); The pushing and positioning assembly (001) includes a flip plate (200), and the flip plate (200) is rotatably arranged on the inner side of the two sets of fan-shaped plates (100), and the front and back sides of the lower end of the flip plate (200) are fixedly installed with a splicing sleeve (201), and the inner side of the splicing sleeve (201) away from the end of the flip plate (200) is spliced and inserted into a prismatic shaft (301), and the end of the prismatic shaft (301) away from the flip plate (200) is installed with a large toothed disc (302), and the top of the large toothed disc (302) is meshed with a transmission A gear (303) is provided, wherein a transmission belt group (305) is fixedly installed on a side of the transmission gear (303) close to the sector plate (100), a cam (306) is fixedly installed on an upper end of the transmission belt group (305) close to the sector plate (100) via a rotating shaft, the cam (306) is rotatably arranged inside the sector plate (100), and a movable plate (307) is movably arranged on one side of the cam (306), and a positioning plug plate (300) is installed on a side of the movable plate (307) away from the cam (306).
2. The wall tile laying auxiliary device for building decoration according to claim 1, characterized in that: One side of the transmission belt group (305) is fixedly connected to the sector plate (100) via a bearing, and a gear box (311) is installed on the side of the large toothed plate (302), the transmission gear (303) and the transmission belt group (305) away from the sector plate (100) via a bearing, and the gear box (311) is fixedly installed on the outer side of the sector plate (100).
3. The wall tile laying auxiliary device for building decoration according to claim 1, characterized in that: Two sets of movable sleeves (308) are installed on the side of the movable plate (307) away from the positioning plug plate (300), and a fixed column (309) is slidably provided on the inner side of the movable sleeve (308), and the fixed column (309) is fixedly installed inside the fan-shaped plate (100). Two sets of tension springs (310) are installed on the side of the movable plate (307) away from the positioning plug plate (300), and the tension springs (310) are fixedly connected to the inside of the fan-shaped plate (100).
4. The wall tile laying auxiliary device for building decoration according to claim 1, characterized in that: A push-knocking assembly (002) is provided on one side of the flip plate (200), and the push-knocking assembly (002) comprises four groups of limit plates (401), a fixed sliding column (402) is fixedly installed between two groups of the limit plates (401), and a group of sliding blocks (403) is slidably provided on the outer sides of the two groups of the fixed sliding columns (402).
5. The wall tile laying auxiliary device for building decoration according to claim 4, characterized in that: A sliding plate (400) is fixedly mounted on a side of the sliding block (403) away from the flip plate (200), and an auxiliary handle (404) is mounted on a side of the sliding plate (400) away from the sliding block (403). Positioning grooves (405) are provided on the side surfaces of the upper and lower ends of the sliding plate (400), and a positioning shaft (501) is rotatably provided inside the positioning groove (405).
6. The wall tile laying auxiliary device for building decoration according to claim 5, characterized in that: A rotating sleeve (502) is fixedly installed on the side of the positioning shaft (501) away from the sliding plate (400), and a movable rod (503) is slidably provided on the inner side of the rotating sleeve (502), a fixed turntable (504) is fixedly installed on the end of the movable rod (503) away from the sliding plate (400), and a rotating shaft (505) is fixedly installed on the side of the fixed turntable (504) away from the sliding plate (400), and a fixed rod (505) is fixedly installed on the middle part of the rotating shaft (505) and the end away from the fixed turntable (504). A fixed sleeve (506) is provided, and a connecting rod (507) is installed on the top or bottom of the fixed sleeve (506), and a rubber ball (500) is installed on one end of the connecting rod (507) away from the fixed sleeve (506). A stabilizing bracket (508) is provided on the outer side of the rotating shaft (505), and the stabilizing bracket (508) is fixedly installed on a side of the flip plate (200) close to the sliding plate (400). A limiting disc (509) is installed on one end of the movable rod (503) away from the fixed turntable (504).
7. The wall tile laying auxiliary device for building decoration according to claim 1, characterized in that: An arc groove (101) is formed on the inner side of the upper end of the fan-shaped plate (100), and a limiting groove (102) is formed on the inner side of the lower end of the fan-shaped plate (100). The splicing sleeve (201) is rotatably arranged on the inner side of the limiting groove (102). A support plate (103) is installed on one side of the lower end of the fan-shaped plate (100). Three groups of limiting columns (104) are fixedly installed on the inner sides of the two groups of fan-shaped plates (100), and a plurality of buckle grooves (105) are formed on the side surfaces of the limiting columns (104). A group of adjustment components (003) are slidably provided on the outer sides of the two groups of limiting columns (104).
8. The wall tile laying auxiliary device for building decoration according to claim 7, characterized in that: The adjustment component (003) includes a limit sleeve (601), and bearing sleeves (602) are installed on the outer sides of both ends of the limit sleeve (601), a snap sleeve (603) is fixedly installed on one end of the bearing sleeve (602) away from the limit sleeve (601), and two groups of combination blocks (600) are installed on the inner side of the snap sleeve (603), the combination blocks (600) are rotatably arranged on the inner side of the snap groove (105), and a welding plate (604) is installed on one side of the two groups of the snap sleeves (603), and a positioning screw (605) is rotatably assembled in the middle of the welding plate (604), and a lifting handle (606) is installed on the upper side of the welding plate (604) away from the limit sleeve (601).
9. The wall tile laying auxiliary device for building decoration according to claim 5, characterized in that: A fixed plate (202) is installed on the side of the lower end of the flip plate (200) away from the sliding plate (400), and sliding columns (203) are fixedly installed on the front and back sides of the upper end of the flip plate (200), and the sliding columns (203) are slidably arranged on the inner side of the arc groove (101).
10. A method for using a wall tile laying auxiliary device for building decoration according to claims 1-9, characterized in that: First, the width of the tiles to be installed needs to be adjusted, and the three sets of positioning screws (605) are disassembled. After disassembly, the welding plate (604) can be controlled to rotate ninety degrees along the middle of the limit column (104). After rotation, the combination block (600) will be separated from the buckle groove (105). After separation, the buckle sleeve (603) will lose its restriction. At the same time, the fan-shaped plates (100) on both sides are pulled outward to adjust the spacing. After adjustment, the welding plate (604) is rotated to reset. After reset, the combination block (600) is kept located on the inner side of the corresponding buckle groove (105). The positioning screw (605) is installed and reset to be embedded in the inner wall of the limit sleeve (601) to limit; Then, the tiles to be installed and laid are coated with mortar and placed on the top of the fixed plate (202) with the smooth surface facing the flip plate (200), keeping the tiles in an inclined state, and then the entire device is lifted by grasping the lifting handle (606) and the auxiliary handle (404). After lifting, the two sets of support plates (103) are placed on the top of the tiles, keeping the bottom surface of the support plate (103) in close contact with the top surface of the tiles, and then the grasped auxiliary handle (404) is pushed. By transmitting the pushing force to the flip plate (200), the flip plate (200) will flip along the limit groove (102) at the lower end, flipping and pushing the tiles to contact the wall for laying; During the pushing process, the flip plate (200) will drive the splicing sleeve (201) to flip, and during the flipping process, the large toothed disc (302) will be driven to rotate through the prismatic shaft (301), so that the tooth blocks of the large toothed disc (302) are engaged to drive the transmission gear (303) to rotate, and the transmission gear (303) will drive the cam (306) to rotate through the transmission belt group (305). When the flip plate (200) is halfway rotated, the protruding part of the cam (306) will push the movable plate (307) and the positioning plug plate (300) to extend along the fixed column (309). When extending, the cam (306) will be in a protruding state. The protruding area will align the wall with the tiles that have been laid on the side, which is convenient for staff to observe and assist in alignment. When the flip plate (200) continues to rotate, the cam (306) will also continue to rotate. The protruding area of the cam (306) will no longer push the positioning plug plate (300) to extend, and the positioning plug plate (300) will be prevented from being close to the wall when the tiles are laid by shrinking. Finally, after the tiles and mortar contact the wall, the auxiliary handle (404) is grasped and maintained, and the thrust is maintained to squeeze the mortar. At the same time, the auxiliary handle (404) is used to control the sliding plate (400) and the sliding block (403) to slide up and down along the fixed sliding column (402). During the sliding process, the positions of the four sets of rotating sleeves (502) will change, and they will move along the movable rod (503) during the activity. Since one end of the movable rod (503) is in a fixed state, the rotating sleeve (502) slides along the movable rod (503). When the sliding plate (400) is moved, the rubber ball (500) connected by the connecting rod (507) will be driven to rotate. During the rotation process, the rubber ball (500) will contact and knock the flip plate (200). When the upper rubber ball (500) contacts the flip plate (200), the lower rubber ball (500) will separate from the flip plate (200). When the sliding plate (400) slides downward, the lower rubber ball (500) will knock the flip plate (200). The tiles are laid by reciprocatingly controlling the movement of the sliding plate (400) and applying thrust.
Citation Information
Patent Citations
Wall tile paving auxiliary device
CN213979796U
Cited By
Building masonry green construction device and method thereof
CN121205401A