Glue bonding structure for 45-degree splicing of rock plates
By designing a 45-degree adhesive bonding structure for the slabs, and utilizing a placement frame and support mechanism to achieve automatic folding and fixing of the slabs, the problem of cumbersome existing slab splicing processes is solved, and the working cost and tape usage are reduced.
Patent Information
- Application Number
- CN202520275283.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-20
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2035-02-20
AI Technical Summary
The existing 45-degree splicing process for slabs is cumbersome, requiring multiple workers to spray glue and use a large amount of tape, resulting in a large workload and high cost.
A 45-degree adhesive bonding structure for sintered stone slabs was designed, including a placement frame, a support mechanism, and a control mechanism. Through the cooperation of the limiting frame of the placement frame and the support mechanism, the sintered stone slabs can be automatically folded and fixed, reducing the use of adhesive tape.
It simplifies the 45-degree splicing process of slabs, reduces the use of tape, lowers working costs, and improves splicing efficiency.
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Figure CN223609046U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to rock board splicing technical field, concretely relates to rock board 45 degree splicing's glue water bonding structure. BACKGROUND
[0002] Rock board is a new type of material, which is made of natural stone and inorganic clay through special process, has high hardness, wear resistance, corrosion resistance, fire resistance, low water absorption and other characteristics, and has the characteristics of large size, strong plasticity, various colors, high temperature resistance, wear resistance, penetration resistance, acid and alkali resistance, zero formaldehyde, environmental protection and health, and is widely used in home, kitchen board, furniture and other fields.
[0003] The existing rock board 45 splicing is usually completed by multiple workers, the glue is sprayed at the splicing place of the rock board first, then the rock board is fixed by using the adhesive tape, the splicing of the rock board is completed, when the number of rock boards is large, the amount of adhesive tape used will also increase, and uniform spraying needs to be completed by workers before each splicing, which is relatively cumbersome. UTILITY MODEL CONTENTS
[0004] The utility model provides rock board 45 degree splicing's glue water bonding structure just in order to solve above -mentioned problem.
[0005] The utility model realizes the above-mentioned purpose through the following technical scheme:
[0006] Rock board 45 degree splicing's glue water bonding structure, including: the placement frame, both sides in the placement frame are rotationally provided with support mechanisms, two bonding rock boards are symmetrically connected between the two support mechanisms on the top side of the placement frame, and a control mechanism is rotationally arranged through the front side of the placement frame.
[0007] The placement frame includes a slotted frame, support frames are formed on both sides of the top side of the slotted frame, a through slot is formed on the front side of the slotted frame, and a rotating hole is formed in the middle of the front side of the slotted frame.
[0008] Further, the rotating hole extends through the front side of the slotted frame and extends to the through slot, a limiting frame is formed on the top side of the slotted frame, and the limiting frame is in V shape.
[0009] Further, the support mechanism includes two torsion spring rotating rods, a plurality of connecting sleeves are fixedly arranged on the rod body of each torsion spring rotating rod, and a connecting plate is symmetrically arranged on the sleeve body of each connecting sleeve.
[0010] Further, a rotating push rod is rotationally arranged on the top side of the connecting plate, and a limiting sleeve is fixedly arranged on the front side of each torsion spring rotating rod.
[0011] Further, two limiting sleeves are respectively fixedly provided with a short connecting belt and a long connecting belt, one end of the short connecting belt is connected to one of the limiting sleeves, and the other end is connected to the surface of the long connecting belt.
[0012] Further, the control mechanism comprises a rotating shaft, a rotating sleeve is rotatably arranged on the front shaft body of the rotating shaft, a rotating groove is formed on the surface of the rotating sleeve, and a first limiting rod is rotatably arranged on the inner side of the rotating groove.
[0013] Further, a second limiting rod is arranged through the first limiting rod, a plurality of second limiting grooves are formed on the front shaft body of the rotating shaft, and a rotating handle is rotatably arranged on the front side of the rotating shaft.
[0014] Further, the width of the second limiting groove is consistent with the diameter of the second limiting rod, and the diameter of the second limiting rod is consistent with the width of the first limiting groove.
[0015] With the above structure, when the staff needs to splice two bonded rock plates together at an angle of 45 degrees, first, the two bonded rock plates are placed in the limiting frame formed on the top side of the placing frame, and are placed symmetrically, and the angle between the two bonded rock plates is 120 degrees and is separated by a certain distance, at this time, the staff can spray glue on the inside of the angle between the two bonded rock plates through the glue sprayer, after uniform spraying, the staff rotates the rotating handle in the control mechanism, so that the rotating shaft rotates clockwise, the long connecting belt sleeved on the rear side of the rotating shaft is loosened, the torsional spring in the torsional spring rotating rod is rotated by the torsional spring, the torsional spring rotating rod on one side is rotated, the short connecting belt fixed on the surface of the long connecting belt is pulled, the two torsional spring rotating rods rotate in different directions and rotate towards the rotating shaft, at this time, the connecting sleeve of the two torsional spring rotating rods rotates towards the inside with the surface connecting plate, and the bonded rock plates are pushed towards the middle by the rotating push rod on the top side of the connecting plate, until the two bonded rock plates are spliced together, finally, the side of the rotating sleeve forming the rotating groove is rotated to the upward direction, and the second limiting rod inside is pushed upward, until the front end is clamped into the first limiting groove and the rear end is clamped into the second limiting groove, the fixing of the rotating shaft is completed, the bonded rock plates are continuously spliced until the internal glue solidifies, and the splicing process of the bonded rock plates is completed.
[0016] In summary, the beneficial effects of the present application are that the limiting frame formed on the top side of the placing frame makes the process of spraying glue on the bonded rock plates more convenient, after the spraying of glue is completed, the control mechanism controls the supporting mechanism, the supporting mechanism changes the inclination angle of the two bonded rock plates, and continuously supports the bonded rock plates until the glue in the two bonded rock plates solidifies to complete the splicing, the process is convenient, and the use of materials such as adhesive tape is reduced, and the working cost is reduced. BRIEF DESCRIPTION OF DRAWINGS
[0017] In order to more clearly illustrate the technical solutions of the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings described in the following are only some of the embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor on the basis of these drawings.
[0018] Figure 1 is the front view of the present application;
[0019] Figure 2 is the shaft side view of the present application;
[0020] Figure 3 is the shaft side view of the present application without installing the bonded rock plate;
[0021] Figure 4 is the front shaft side view of the present application without installing the bonded rock plate;
[0022] Figure 5 is the A enlarged view of the present application Figure 4 .
[0023] The following is the explanation of the reference signs:
[0024] 1, placing frame; 101, slotted frame; 102, support frame; 103, limiting frame; 104, through slot; 105, rotating hole; 106, first limiting groove; 2, bonded rock plate; 3, supporting mechanism; 301, torsion spring rotating rod; 302, connecting sleeve; 303, connecting plate; 304, rotating push rod; 305, limiting sleeve; 306, short connecting belt; 307, long connecting belt; 4, control mechanism; 401, rotating shaft; 402, rotating sleeve; 403, rotating groove; 404, first limiting rod; 405, second limiting rod; 406, second limiting groove; 407, rotating handle. DETAILED DESCRIPTION
[0025] In order to make the purpose, technical scheme and advantages of the present application more clear, the technical scheme of the present application will be described in detail below. Obviously, the described embodiments are only some of the embodiments of the present application, not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor are within the scope of the present application.
[0026] Referring to Figures 1-2As shown, the utility model provides rock board 45 degree splicing's glue water bonding structure, include: the placing frame 1 both sides of inside of placing frame 1 are rotationally provided with support mechanism 3, the top side of placing frame 1 between two support mechanisms 3 is symmetrically provided with two bonding rock boards 2 of clamping, the front side of placing frame 1 middle is rotationally provided with control mechanism 4;
[0027] Adopt above-mentioned technical scheme, when support mechanism 3 does not rotate through control mechanism 4, staff can directly place bonding rock board 2 on the top side of placing frame 1, and place symmetrically, can carry out glue water's spraying to the inside of two bonding rock boards 2, after spraying evenly, through control mechanism 4 to the operation of support mechanism 3, make support mechanism 3 fold two bonding rock boards 2 and splice, until glue solidification, complete the splicing of bonding rock board 2.
[0028] As shown in the figure, Figures 3-5 As shown, the placing frame 1 includes the slot frame 101, the support frame 102 is set on both sides of the top side of the slot frame 101, the through slot 104 is set on the front side of the top side of the slot frame 101, the front side of the slot frame 101 and the through slot 104 are connected, the rotation hole 105 is set in the middle of the front side of the slot frame 101, the first limiting groove 106 is set on the top side of the rotation hole 105, the rotation hole 105 penetrates the front side of the slot frame 101 at the same time, and extends to the through slot 104, the limiting frame 103 is set on the top side of the slot frame 101, and the limiting frame 103 is in V shape.
[0029] When in use, the two support frames 102 set in the slot frame 101 are used to place the two support mechanisms 3, and cooperate with the through slot 104 to make the two support mechanisms 3 be controlled by the control mechanism 4 at the same time, complete the adjustment of the angle of the bonding rock board 2, the rotation hole 105 provides space for the rotation of the control mechanism 4, and the first limiting groove 106 above the rotation hole 105 limits the control mechanism 4, the V-shaped groove set in the limiting frame 103 can directly place the bonding rock board 2 to be spliced symmetrically on the inside, cooperate with the support mechanism 3 to support the bonding rock board 2, and then spray glue on the included angle.
[0030] As shown in the figure, Figure 3 As shown, the support mechanism 3 includes two torsional spring rotating rods 301, a plurality of connecting sleeves 302 are fixedly arranged on the rod bodies of the two torsional spring rotating rods 301, a plurality of connecting plates 303 are symmetrically arranged on the sleeve bodies of the connecting sleeves 302, a rotating push rod 304 is rotationally arranged on the top side of the connecting plate 303, a limiting sleeve 305 is fixedly arranged on the front side of each of the two torsional spring rotating rods 301, a short connecting belt 306 and a long connecting belt 307 are fixedly arranged on the two limiting sleeves 305 respectively, one end of the short connecting belt 306 is connected to one of the limiting sleeves 305, and the other end is connected to the surface of the long connecting belt 307;
[0031] In use, the torsional spring rotating rod 301 is internally provided with a torsional spring, which will automatically rotate and reset when there is no acting force. The torsional spring rotating rod 301 is rotationally arranged between the inner walls of the support frame 102 in the placing frame 1. The connecting sleeves 302 are used to fix the connecting plates 303, and the connecting plates 303 support the rotating push rods 304 on the top side, so that the rotating push rods 304 rotate at a high position. There are six connecting sleeves 302, three on each side of the torsional spring rotating rod 301. The connecting plates 303 and the rotating push rods 304 on the top side of the connecting sleeves 302 are separately arranged. The angles of the connecting sleeves 302 and the rotating push rods 304 are symmetrically arranged on both sides, so that the rotating push rods 304 can support the two bonded rock plates 2. The limiting sleeve 305 fixed on the front side of the torsional spring rotating rod 301 can limit and support the long connecting belt 307 and the short connecting belt 306. The side of the long connecting belt 307 away from the limiting sleeve 305 is connected to the control mechanism 4, and the side of the short connecting belt 306 away from the limiting sleeve 305 is connected to the surface of the long connecting belt 307. The side of the long connecting belt 307 away from the limiting sleeve 305 is sleeved on the surface of the control mechanism 4. When the control mechanism 4 rotates, the remaining part of the long connecting belt 307 falls off the surface and is wound away by the torsional spring characteristic of the torsional spring rotating rod 301. At this time, the long connecting belt 307 pulls the short connecting belt 306, so that the two torsional spring rotating rods 301 rotate symmetrically, and the symmetric rotating push rods push the bonded rock plates 2 inward. The bonded rock plates 2 are spliced.
[0032] Referring to Figure 5 As shown, the control mechanism 4 comprises a rotating shaft 401, the rotating shaft 401 is rotationally arranged with a rotating sleeve 402 on the front side of the shaft body, the rotating sleeve 402 is provided with a rotating groove 403 on the surface, the first limiting rod 404 is rotationally arranged on the inner side of the rotating groove 403, the second limiting rod 405 is arranged through the first limiting rod 404, the rotating shaft 401 is provided with a plurality of second limiting grooves 406 on the front side of the shaft body, the rotating handle 407 is rotationally arranged on the front side of the rotating shaft 401, the width of the second limiting groove 406 is consistent with the diameter of the second limiting rod 405, and the diameter of the second limiting rod 405 is consistent with the width of the first limiting groove 106;
[0033] With the above embodiment, by rotating the rotating handle 407, the rotating shaft 401 can be rotated, the long connecting belt 307 in the supporting mechanism 3 is wound and connected at the rear side of the shaft body of the rotating shaft 401, the rotating sleeve 402 and the rotating shaft 401 are rotationally connected, the rotating sleeve 402 is not affected by the rotation of the rotating shaft 401, and thus the rotating groove 403 formed in the sleeve body of the rotating sleeve 402 is used for the internal rotation of the first limiting rod 404, and the second limiting rod 405 penetrates the first limiting rod 404, so that the second limiting rod 405 can rotate with the first limiting rod 404, when the rotating shaft 401 rotates with the long connecting belt 307 to a suitable position, the direction of the rotating groove 403 formed in the rotating sleeve 402 is rotated to the upward direction, is aligned with the first limiting groove 106 in the placing frame 1, and finally the second limiting rod 405 is rotated, so that the rear side of the second limiting rod 405 is clamped in the second limiting groove 406 of the shaft body of the rotating shaft 401, and the front side of the second limiting rod 405 is clamped in the first limiting groove 106, so that the rotating shaft 401 cannot continue to rotate, the angle of the supporting mechanism 3 is limited, the supporting mechanism 3 can keep supporting the bonded rock plate 2, until the glue in the bonded rock plate 2 solidifies, when the bonded rock plate 2 is spliced for secondary use, the second limiting rod 405 is laid flat, at this time the torsional springs in the two torsional spring rotating rods 301 pull the rotating shaft 401 to reset, so that the bonded rock plate 2 can be used again.
[0034] With the above structure, when the staff needs to splice two bonded rock plates 2 together at an angle of 45 degrees, first, the two bonded rock plates 2 are placed in the limiting frame 103 formed in the top side of the placing frame 1, and are placed symmetrically, and the angle between the two bonded rock plates 2 is 120 degrees, and there is a certain distance between them, at this time the staff can spray glue inside the angle between the two bonded rock plates 2 by using the glue sprayer, after uniform spraying, the staff rotates the rotating shaft 401 in the clockwise direction by using the rotating handle 407 in the control mechanism 4, the long connecting belt 307 fixed on the surface of the long connecting belt 307 is loosened, and the torsional springs in the torsional spring rotating rods 301 rotate the torsional spring rotating rod 301 on one side, and pull the short connecting belt 306 fixed on the surface of the long connecting belt 307, so that the two torsional spring rotating rods 301 rotate in different directions and rotate towards the rotating shaft 401, at this time the connecting sleeve 302 of the rod body of the two torsional spring rotating rods 301 rotates inwards with the connecting plate 303 on the surface, and the bonded rock plates 2 are pushed towards the middle by the rotating push rod 304 on the top side of the connecting plate 303, until the two bonded rock plates 2 are spliced together, finally, the side of the rotating sleeve 402, on which the rotating groove 403 is formed, is rotated to the upward direction, and the second limiting rod 405 inside is pushed upwards, until the front end of the second limiting rod 405 is clamped in the first limiting groove 106 and the rear end is clamped in the second limiting groove 406, so that the fixing of the rotating shaft 401 is completed, the bonded rock plates 2 can be continuously spliced until the glue inside solidifies, and the splicing process of the bonded rock plates 2 is completed.
[0035] The above merely describes a specific implementation of the present application, but the protection scope of the present application is not limited thereto, any skilled person in the art can easily think of changes or replacements within the technical range disclosed by the present application, which should be covered in the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.
Claims
1. The glue bonding structure of rock plate 45 degree splicing, it is characterized in that, Include: The placement frame (1) is provided with a support mechanism (3) on both sides of the inside, two support mechanisms (3) are symmetrically connected between the top of the placement frame (1), and a control mechanism (4) is rotatably arranged on the front side of the placement frame (1). The placement frame (1) includes a slotted frame (101), support frames (102) are formed on both sides of the top of the slotted frame (101), a through slot (104) is formed on the front side of the slotted frame (101), and the front side of the slotted frame (101) is provided with a through slot (104). The through slot (104) is connected, a rotating hole (105) is formed in the middle of the front side of the slotted frame (101), and a first limiting groove (106) is formed in the top of the rotating hole (105).
2. The rock plate 45-degree splicing glue bonding structure according to claim 1, characterized in that: The rotating hole (105) penetrates the front side of the slotted frame (101) and extends to the through slot (104), and a limiting frame (103) is formed on the top of the slotted frame (101). The limiting frame (103) is V-shaped.
3. The rock plate 45-degree splicing glue bonding structure according to claim 1, characterized in that: The support mechanism (3) includes two torsion spring rotating rods (301), and a plurality of connecting sleeves (302) are fixedly arranged on the rod body of each torsion spring rotating rod (301). A plurality of connecting sleeves (302) are symmetrically provided with a connecting plate (303).
4. The rock plate 45-degree spliced glue bonding structure according to claim 3, characterized in that: The connecting plate (303) is rotatably provided with a rotating push rod (304) on the top side, and the front side of the torsion spring rotating rod (301) is fixedly provided with a limiting sleeve (305).
5. The rock plate 45-degree spliced glue bonding structure according to claim 4, characterized in that: Two limiting sleeves (305) are respectively fixedly provided with a short connecting belt (306) and a long connecting belt (307), one end of the short connecting belt (306) is connected to one of the limiting sleeves (305), and the other end is connected to the surface of the long connecting belt (307).
6. The rock plate 45-degree spliced glue bonding structure according to claim 1, characterized in that: The control mechanism (4) includes a rotating shaft (401), a rotating sleeve (402) is rotatably arranged on the front side of the shaft body of the rotating shaft (401), a rotating groove (403) is formed in the surface of the rotating sleeve (402), and a first limiting rod (404) is rotatably arranged on the inside of the rotating groove (403).
7. The rock plate 45-degree spliced glue bonding structure according to claim 6, characterized in that: The first limiting rod (404) is provided with a second limiting rod (405) inside, a plurality of second limiting grooves (406) are formed in the front side of the shaft body of the rotating shaft (401), and a rotating handle (407) is rotatably arranged on the front side of the rotating shaft (401).
8. The rock plate 45-degree spliced glue bonding structure according to claim 7, characterized in that: The second limiting groove (406) has the same width as the diameter of the second limiting rod (405), and the diameter of the second limiting rod (405) is the same as the width of the first limiting groove (106).