A suspended fiberglass panel hanging structure
By using a combination of pine cone-shaped inserts and suction cups/needles on fiberglass boards, the problems of difficult positioning and easy detachment of suspended fiberglass board hanging structures are solved, achieving efficient and reliable hanging connections.
Patent Information
- Application Number
- CN202510883500.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-29
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2045-06-29
AI Technical Summary
Existing suspended fiberglass board hanging structures suffer from problems such as difficulty in hoisting and positioning, high construction costs, and easy detachment.
The insert, featuring a pine cone shape and threaded design, combines a suction cup and needle structure to fix the fiberglass board through adsorption and insertion, enhancing the connection strength, and utilizes a negative pressure mechanism to enhance the adsorption force.
It significantly improves the connection strength and reliability of the fiberglass board hanging structure, reduces the risk of detachment, and simplifies the installation process.
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Figure CN120556664B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of fiberglass board hanging technology, specifically to a suspended fiberglass board hanging structure. Background Technology
[0002] Fiberglass boards are primarily used as a base layer for soft wall coverings, which are then covered with materials such as fabric or leather to create aesthetically pleasing wall and ceiling decorations. In addition, fiberglass boards possess sound absorption, sound insulation, heat insulation, environmental friendliness, and flame retardancy properties, making them widely applicable in various decorative fields.
[0003] When fiberglass boards are installed for decorative purposes, they are usually suspended by hanging. The existing suspension structure generally uses a T-shaped keel suspension method.
[0004] However, the T-shaped keel suspension method is difficult to position and install. On the one hand, it requires the addition of a conversion layer to fix the keel, which increases the construction cost. On the other hand, the contact surface is small and the installation accessories will damage the texture of the board, which will easily lead to problems such as falling off later. Therefore, this type of suspension structure is not very practical. For this reason, there is an urgent need for a suspended fiberglass board hanging structure. Summary of the Invention
[0005] The purpose of this invention is to provide a suspended fiberglass board hanging structure to solve the problems mentioned in the background art.
[0006] To achieve the above objectives, the present invention provides the following technical solution: a suspended fiberglass board hanging structure, comprising: a fixing block; an insert fixedly connected to the bottom of the fixing block, the insert being pine cone-shaped and threaded; a first threaded post fixedly connected to the top of the fixing block; a first fixing rod fixedly connected to the top of the first threaded post; a hexagonal recessed hole opened at the top of the first fixing rod; a hanging cavity opened on the outer side wall of the first fixing rod; a nut threaded onto the outer threaded surface of the first threaded post; and a first auxiliary fixing component provided on the fixing block.
[0007] The first auxiliary fixing component includes a vertical moving mechanism, a pushing mechanism, and a plurality of suction cups arranged in a ring at equal angles on the fixing block. The plurality of suction cups are connected to the vertical moving mechanism, and the pushing mechanism pushes the plurality of suction cups downward through the vertical moving mechanism.
[0008] Preferably, the up-and-down moving mechanism includes a first annular groove formed on the outer circumferential surface of the fixed block, a first movable ring movably sleeved on the inner sidewall of the first annular groove, and a plurality of first elastic elements fixedly connected at an equal angle between the bottom of the first movable ring and the inner bottom wall of the first annular groove. The plurality of suction cups are connected to the bottom of the first movable ring. The advantage of this arrangement is that the up-and-down movement of the first movable ring in conjunction with the first elastic elements can stably drive the suction cups to move along the axial direction of the fixed block, thereby ensuring that the suction cups can be tightly adhered to the fiberglass board, improving the reliability of the hanging structure.
[0009] Preferably, the pushing mechanism includes a second annular groove formed on the outer circumferential surface of the fixed block, the second annular groove being located directly above the first annular groove. A second movable ring is movably sleeved on the inner sidewall of the second annular groove. A plurality of second elastic elements are fixedly connected at equal angles in an annular shape between the bottom of the second movable ring and the inner bottom wall of the second annular groove. A push ring is connected to the outer circumferential surface of the second movable ring. A plurality of round rods are fixedly connected at equal angles to the bottom of the push ring, and the plurality of round rods are located directly above the first movable ring. The advantage of this arrangement is that, under the action of the second movable ring and the second elastic elements, the push ring can be conveniently and stably pushed downward, thus ensuring that the suction cup can reliably adhere to the fiberglass board.
[0010] Preferably, the top of the push ring has multiple grooves in a ring shape, and the inner bottom wall of the groove has anti-slip texture. The inner bottom wall of the groove is a concave arc surface that is high on both sides and low in the middle. The advantage of this design is that it allows the operator to push the push ring and the round rod towards the first moving ring more conveniently and stably.
[0011] Preferably, the fixing block is further connected to a second auxiliary fixing component. The second auxiliary fixing component includes a plurality of first needles connected in a ring on the fixing block. A plurality of second needles are fixedly connected in a ring at equal angles on the outer surfaces of the plurality of first needles. The distance between the plurality of second needles on the outer surfaces of each first needle gradually increases from the top end to the bottom end of the second needle. The advantage of this arrangement is that by inserting the first and second needles into the fiberglass board, the adhesion between the suction cup and the fiberglass board can be combined to enhance the connection between the hanging structure and the fiberglass board, thereby preventing the fiberglass board from falling off during long-term hanging and effectively improving the reliability and stability of the hanging structure.
[0012] Preferably, the second auxiliary fixing component further includes a plurality of first limiting tubes fixedly connected to the outer circumferential surface of the fixing block at an angle via a connecting plate. A first straight rod is movably inserted into the top of the first limiting tube, and a circular plate is fixedly connected to the top of the first straight rod. A third elastic element is fixedly connected between the bottom of the circular plate and the top of the first limiting tube. The bottom end of the first straight rod passes through the first limiting tube and is fixedly connected to the top of the first needle. The circular plate is located directly below the push ring. The advantage of this arrangement is that, with the cooperation of the first limiting tube, the first straight rod, and the circular plate, while the push ring pushes the suction cup to adsorb the fiberglass board, the first needle and the second needle can be simultaneously pushed into the fiberglass board. This makes the connection operation of the hanging structure simple and convenient, effectively improving the practicality and convenience of the hanging structure.
[0013] Preferably, the second needle is made of a metal material with a certain degree of elasticity, and the thickness of the second needle gradually decreases from the direction close to the first needle to the direction away from the first needle. The advantage of this setting is that as the second needle penetrates deeper into the fiberglass board, it will rotate slightly away from the first needle, thereby enhancing the connection between the second needle and the fiberglass board and greatly improving the reliability of the hanging structure.
[0014] Preferably, the second auxiliary fixing component further includes a set of barbs fixedly connected to the side of the second needle away from the first needle. The advantage of this arrangement is that, as the barbs penetrate the fiberglass board along with the second needle, the second needle can be more firmly inserted into the fiberglass board, further enhancing the hanging stability of the hanging structure and preventing the fiberglass board from falling off during long-term suspension.
[0015] Preferably, the fixing block is also provided with a negative pressure extraction mechanism, which can extract the air from the suction cup. The advantage of this setting is that it can further enhance the adsorption connection strength between the suction cup and the fiberglass board, and effectively improve the hanging firmness and reliability of the hanging structure.
[0016] Preferably, the negative pressure suction mechanism includes multiple fixed tubes that are fixedly inserted into the top of the push ring in a ring at equal angles. Each fixed tube has an air chamber inside. A hollow tube is fixedly inserted into the bottom end of each fixed tube, and the top end of the hollow tube extends into the air chamber. A connector is fixedly connected to the bottom end of the hollow tube. A suction cup is fixedly sleeved on the outer surface of the connector. An air suction hole is provided at the bottom of the connector, with its bottom end communicating with the internal space of the suction cup and its top end communicating with the inner hole of the hollow tube. A vent hole is provided at the bottom end of the fixed tube, with its top end communicating with the air chamber. A piston ring is movably sleeved on the outer circumference of the hollow tube. Two push rods are symmetrically fixedly connected to the top of the piston ring. The top ends of the push rods penetrate the top wall of the fixed tube and are fixedly connected to a push plate. A limit ring is fixedly sleeved on the top of the hollow tube. The piston ring is located between the limit ring and the inner bottom wall of the fixed tube. The negative pressure suction mechanism includes multiple fixed tubes that are fixedly inserted into the top of the hollow tube. Multiple drive blocks are fixedly connected to the bottom of the push ring at an angle. Each drive block has a limiting groove at its bottom with an arc-shaped cross-section. The limiting groove allows the push plate to be engaged. The negative pressure suction mechanism also includes multiple through cavities at an angle, ring-shaped on the top of the push ring. The push plate can pass through the limiting groove and extend to the upper side of the push ring. This design allows the push ring to be rotated after the suction cup is adsorbed onto the glass limiting plate, causing the push plate to engage in the limiting groove. Then, the push ring is pushed again towards the fiberglass board. At this time, the drive blocks can push the piston ring downwards, increasing the space between the hollow tube's inner hole and the air chamber. This allows the gap between the suction cup and the side of the fiberglass board to be removed, reducing the air pressure between them. This makes the suction cup more firmly adsorbed onto the fiberglass board under external atmospheric pressure, further improving the hanging connection's strength and reliability.
[0017] Compared with the prior art, the beneficial effects of the present invention are:
[0018] This invention utilizes a pine cone-shaped and threaded insert design, which allows the insert to be firmly connected to the fiberglass board after being spirally inserted. This reduces the degree of damage to the internal fiber structure of the fiberglass board caused by the insert, thereby significantly reducing the risk of the insert falling off the fiberglass board. In conjunction with the first auxiliary fixing component, the suction cup can be adsorbed onto the fiberglass board, further enhancing the connection strength between the hanging structure and the fiberglass board, effectively improving the connection firmness and reliability of the hanging structure. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the first structure of the present invention;
[0020] Figure 2 This is a schematic diagram of the second structure of the present invention;
[0021] Figure 3 This is a schematic diagram of the first partial cross-sectional structure of the present invention;
[0022] Figure 4 This is a schematic diagram of the second partial cross-sectional structure of the present invention;
[0023] Figure 5 This is a schematic diagram of the third partial cross-sectional structure of the present invention;
[0024] Figure 6 This is a schematic diagram of a first partial cross-sectional view of the negative pressure extraction structure in this invention;
[0025] Figure 7 This is a schematic diagram of a first partial cross-sectional view of the negative pressure extraction structure in this invention;
[0026] Figure 8 This is a schematic diagram of the structure of the second auxiliary fixing component in this invention;
[0027] Figure 9 In this invention Figure 3 Enlarged view of point A in the middle;
[0028] Figure 10 In this invention Figure 8 Enlarged diagram of point B in the middle.
[0029] In the diagram: 1. Fixing block; 2. Insert; 31. First threaded post; 32. First fixing rod; 321. Hanging cavity; 33. Nut; 34. Hanging piece; 35. Second threaded post; 36. Connecting piece; 4. First auxiliary fixing assembly; 41. Up-down moving mechanism; 411. First moving ring; 412. First elastic element; 42. Pushing mechanism; 421. Second moving ring; 422. Second elastic element; 423. Push ring; 424. Round rod; 43. Suction cup; 5. Second auxiliary fixing component; 51. First limiting tube; 52. First straight rod; 53. Round plate; 54. Third elastic element; 55. First piercing needle; 56. Second piercing needle; 57. Barb; 6. Negative pressure suction mechanism; 61. Fixing tube; 611. Vent hole; 62. Hollow tube; 63. Connector; 631. Suction hole; 64. Piston ring; 65. Push rod; 66. Push plate; 67. Limiting ring; 68. Drive block; 681. Limiting groove; 69. Through cavity. Detailed Implementation
[0030] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0031] Please see Figures 1-10 The diagram shows a suspended fiberglass board hanging structure, comprising: a fixing block 1; an insert 2 fixedly connected to the bottom of the fixing block 1, the insert 2 being a cone-shaped and threaded design; a first threaded post 31 fixedly connected to the top of the fixing block 1; a first fixing rod 32 fixedly connected to the top of the first threaded post 31; a hexagonal recessed hole at the top of the first fixing rod 32 (existing technology, not shown in the diagram); a hanging cavity 321 on the outer side wall of the first fixing rod 32; a nut 33 threadedly fitted onto the outer thread surface of the first threaded post 31; and a first auxiliary fixing component 4 on the fixing block 1.
[0032] It also includes a hanging plate 34, which is fixedly connected between the bottom surface of the nut 33 and the top surface of the fixing block 1. A second threaded post 35 is fixedly connected to the top of the hanging plate 34, and a connector 36 is fixedly connected to the top of the second threaded post 35. The connector 36 can be an expansion bolt and is connected to the roof or ceiling.
[0033] A hook can be connected inside the hanging cavity 321. A stainless steel rope is fixedly connected to the hook. The other end of the stainless steel rope is fixedly connected to the connector 36. The connector 36 is connected to the roof or ceiling.
[0034] The first auxiliary fixing component 4 includes a vertical moving mechanism 41, a pushing mechanism 42 and a plurality of suction cups 43 arranged in a ring at equal angles on the fixing block 1. The plurality of suction cups 43 are connected to the vertical moving mechanism 41, and the pushing mechanism 42 pushes the plurality of suction cups 43 downward through the vertical moving mechanism 41.
[0035] See Figures 1-5 The up-and-down moving mechanism 41 includes a first annular groove formed on the outer peripheral surface of the fixed block 1. A first moving ring 411 is movably sleeved on the inner side wall of the first annular groove. A plurality of first elastic elements 412 are fixedly connected at an equal angle between the bottom of the first moving ring 411 and the inner bottom wall of the first annular groove. A plurality of suction cups 43 are connected to the bottom of the first moving ring 411.
[0036] Specifically, the first moving ring 411, in conjunction with the first elastic element 412, moves up and down, which can stably drive the suction cup 43 to move along the axis of the fixed block 1, thereby ensuring that the suction cup 43 can be tightly attached to the fiberglass board and improving the reliability of the hanging structure.
[0037] See Figure 3 and Figure 4The pushing mechanism 42 includes a second annular groove formed on the outer peripheral surface of the fixed block 1. The second annular groove is located above the first annular groove. A second moving ring 421 is movably sleeved on the inner side wall of the second annular groove. A plurality of second elastic elements 422 are fixedly connected at equal angles between the bottom of the second moving ring 421 and the inner bottom wall of the second annular groove. A push ring 423 is connected to the outer peripheral surface of the second moving ring 421. A plurality of round rods 424 are fixedly connected at equal angles to the bottom of the push ring 423. The plurality of round rods 424 are located directly above the first moving ring 411.
[0038] Specifically, under the action of the second moving ring 421 and the second elastic member 422, the push ring 423 can be pushed downward conveniently and stably, thus ensuring that the suction cup 43 can be reliably adsorbed onto the glass fiber plate.
[0039] See Figure 1 and Figure 3 The top of the push ring 423 is provided with multiple grooves 4231 in a ring shape. The inner bottom wall of the groove 4231 is provided with anti-slip texture. The inner bottom wall of the groove 4231 is a concave arc surface that is high on both sides and low in the middle.
[0040] Specifically, this allows staff to more easily and stably push the push ring 423 and the round rod 424 toward the first moving ring 411.
[0041] See Figure 1 , Figure 2 , Figure 3 , Figure 8 and Figure 10 The fixing block 1 is also connected to a second auxiliary fixing component 5. The second auxiliary fixing component 5 includes a plurality of first needles 55 connected in a ring on the fixing block 1. A plurality of second needles 56 are fixedly connected in a ring at equal angles on the outer surface of the plurality of first needles 55. The distance between the plurality of second needles 56 on the outer surface of each first needle 55 gradually increases from the top end to the bottom end of the second needle 56.
[0042] Specifically, by inserting the first needle 55 and the second needle 56 into the fiberglass board, the adhesion between the suction cup 43 and the fiberglass board is enhanced to strengthen the connection between the hanging structure and the fiberglass board, thereby preventing the fiberglass board from falling off during long-term hanging and effectively improving the reliability and stability of the hanging structure.
[0043] See Figure 9 and Figure 10The second auxiliary fixing component 5 also includes a plurality of first limiting tubes 51 that are fixedly connected to the outer peripheral surface of the fixing block 1 at an angle via a connecting plate. A first straight rod 52 is movably inserted into the top end of the first limiting tube 51. A circular plate 53 is fixedly connected to the top end of the first straight rod 52. A third elastic element 54 is fixedly connected between the bottom of the circular plate 53 and the top end of the first limiting tube 51. The bottom end of the first straight rod 52 passes through the first limiting tube 51 and is fixedly connected to the top end of the first needle 55. The circular plate 53 is located directly below the push ring 423. The advantage of this arrangement is that, with the cooperation of the first limiting tube 51, the first straight rod 52 and the circular plate 53, the first needle 55 and the second needle 56 can be simultaneously pushed into the fiberglass board by the push ring 423 while the suction cup 43 is adsorbed. This makes the connection operation of the hanging structure simple and convenient, effectively improving the practicality and convenience of the hanging structure.
[0044] See Figure 10 The second needle 56 is made of a metal material with a certain elasticity, and the thickness of the second needle 56 gradually decreases from the direction close to the first needle 55 to the direction away from the first needle 55.
[0045] Specifically, as the second needle 56 penetrates deeper into the fiberglass board, it rotates slightly away from the first needle 55, thereby strengthening the connection between the second needle 56 and the fiberglass board and greatly improving the reliability of the hanging structure.
[0046] See Figure 10 The second auxiliary fixing component 5 also includes a set of barbs 57 fixedly connected to the side of the second needle 56 away from the first needle 55.
[0047] Specifically, by having the barbs 57 penetrate the fiberglass board along with the second needle 56, the second needle 56 can be more firmly inserted into the fiberglass board, further enhancing the hanging stability of the hanging structure and preventing the fiberglass board from falling off during long-term suspension.
[0048] See Figure 3 , 7 and Figure 8 The fixed block 1 is also equipped with a negative pressure suction mechanism 6, which can suck out the air in the suction cup 43.
[0049] Specifically, it can further enhance the adsorption connection strength between the suction cup 43 and the fiberglass board, effectively improving the hanging stability and reliability of the hanging structure.
[0050] See Figure 7 and Figure 8The negative pressure suction mechanism 6 includes multiple fixed tubes 61 that are fixedly inserted into the top of the push ring 423 in a ring shape at equal angles. Each fixed tube 61 has an air chamber inside. A hollow tube 62 is fixedly inserted into the bottom end of each fixed tube 61, with its top end extending into the air chamber. A connector 63 is fixedly connected to the bottom end of the hollow tube 62. A suction cup 43 is fixedly sleeved on the outer surface of the connector 63. An air intake hole 631 is provided at the bottom of the connector 63, with its bottom end communicating with the internal space of the suction cup 43 and its top end communicating with the inner hole of the hollow tube 62. A vent hole 611 is provided at the bottom end of each fixed tube 61, with its top end communicating with the air chamber. A piston ring 6 is movably sleeved on the outer circumferential surface of the hollow tube 62. 4. Two push rods 65 are symmetrically fixedly connected to the top of the piston ring 64. The top of the push rod 65 passes through the top wall of the fixed tube 61 and is fixedly connected to the push plate 66. The top of the hollow tube 62 is fixedly sleeved with a limiting ring 67. The piston ring 64 is located between the limiting ring 67 and the inner bottom wall of the fixed tube 61. The vacuum mechanism 6 includes multiple drive blocks 68 that are fixedly connected to the bottom of the push ring 423 in an annular shape at equal angles. The bottom of the drive block 68 is provided with a limiting groove 681. The cross-section of the limiting groove 681 is arc-shaped. The limiting groove 681 can hold the push plate 66. The vacuum mechanism 6 also includes multiple through cavities 69 that are opened in an annular shape at equal angles on the top of the push ring 423. The push plate 66 can pass through the limiting groove 681 and extend to the upper side of the push ring 423.
[0051] Specifically, after the suction cup 43 is pushed to adhere to the glass limiting plate, the push ring 423 can be rotated to make the push plate 66 engage in the limiting groove 681. Then, the push ring 423 is pushed towards the glass fiber board again. At this time, the drive block 68 can push the piston ring 64 to move downward. At this time, the space between the inner hole of the hollow tube 62 and the air chamber increases, which can remove the gap between the suction cup 43 and the side of the glass fiber board. This reduces the air pressure between the suction cup 43 and the glass fiber board, so that the suction cup 43 can be more firmly adhered to the glass fiber board under the external atmospheric pressure, further improving the hanging connection firmness and reliability of the hanging structure.
[0052] Working principle: When in use, align the bottom end of the insert 2 with the connection position on the fiberglass board, then press the fixing block 1 firmly to insert the bottom end of the insert 2 into the fiberglass board. Then insert the hexagonal wrench into the hexagonal recess at the top of the first fixing rod 32, and then rotate the hexagonal wrench to drive the insert 2 to rotate until the insert 2 is completely spirally inserted into the fiberglass board.
[0053] Then push the push ring 423 to move downwards. The push ring 423 pushes the round rod 424 to move downwards, thereby pushing the first moving ring 411 to drive the suction cup 43 to move downwards until the suction cup 43 is tightly attached to the glass fiber board. At this time, the first needle 55 and the second needle 56 also simultaneously penetrate into the glass fiber board, so that the hoisting structure and the glass fiber board are firmly connected together.
[0054] Furthermore, as the second needle 56 penetrates deeper into the fiberglass board, it will rotate slightly away from the first needle 55, thereby strengthening the connection between the second needle 56 and the fiberglass board and greatly improving the reliability of the hanging structure.
[0055] Then release the push ring 423 until it returns to its original position. Then rotate the push ring 423 so that the push plate 66 is engaged in the limiting groove 681. Then push the push ring 423 towards the fiberglass board again. At this time, the drive block 68 can push the piston ring 64 downward. At this time, the space between the inner hole of the hollow tube 62 and the air chamber increases, which can remove the gap between the suction cup 43 and the side of the fiberglass board. This reduces the air pressure between the suction cup 43 and the fiberglass board, so that the suction cup 43 can be more firmly attached to the fiberglass board under the external atmospheric pressure, further improving the hanging connection strength and reliability of the hanging structure.
[0056] Finally, connect connector 36 to the ceiling or roof to complete the installation of the fiberglass panel.
[0057] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.
[0058] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A suspended fiberglass panel hanger suspension structure comprising: The utility model provides a fixed block (1), its characterized in be fixedly connected with the insert (2) at the bottom of fixed block (1), the insert (2) is pine cone shape and is screw type design, the top of fixed block (1) is fixedly connected with first threaded column (31), the top of first threaded column (31) is fixedly connected with first fixed rod (32), and the top of first fixed rod (32) is equipped with hexagonal recess, and the outer lateral wall of first fixed rod (32) is equipped with hanging cavity (321), and the outer thread surface of first threaded column (31) is screwed with the nut (33), and first auxiliary fixing assembly (4) is equipped on fixed block (1); The first auxiliary fixing assembly (4) includes an up-down moving mechanism (41), a pushing mechanism (42), and a plurality of suction cups (43) arranged in a ring shape and at equal angles, wherein the plurality of suction cups (43) are connected to the up-down moving mechanism (41), and the pushing mechanism (42) pushes the plurality of suction cups (43) to move downward through the up-down moving mechanism (41); The up-down moving mechanism (41) includes a first annular groove formed on the outer circumferential surface of the fixed block (1), a first moving ring (411) movably sleeved on the inner lateral wall of the first annular groove, a plurality of first elastic members (412) fixedly connected in a ring shape and at equal angles between the bottom of the first moving ring (411) and the inner bottom wall of the first annular groove, and the plurality of suction cups (43) connected to the bottom of the first moving ring (411); The pushing mechanism (42) includes a second annular groove formed on the outer circumferential surface of the fixed block (1), the second annular groove located directly above the first annular groove, a second moving ring (421) movably sleeved on the inner lateral wall of the second annular groove, a plurality of second elastic members (422) fixedly connected in a ring shape and at equal angles between the bottom of the second moving ring (421) and the inner bottom wall of the second annular groove, a pushing ring (423) connected to the outer circumferential surface of the second moving ring (421), a plurality of round rods (424) fixedly connected at equal angles to the bottom of the pushing ring (423), and the plurality of round rods (424) located directly above the first moving ring (411); The top of the pushing ring (423) is annularly provided with a plurality of grooves (4231), the inner bottom wall of each groove (4231) is provided with anti-skid lines, and the inner bottom wall of each groove (4231) is a concave circular arc surface with high sides and a low middle part; The fixed block (1) is further connected to a second auxiliary fixing assembly (5), the second auxiliary fixing assembly (5) includes a plurality of first needles (55) connected in a ring shape to the fixed block (1), a plurality of second needles (56) fixedly connected in a ring shape and at equal angles to the outer lateral surface of each first needle (55), and the distance between the plurality of second needles (56) on the outer lateral surface of each first needle (55) gradually increases from the top to the bottom of each second needle (56).
2. A suspended glass fiber panel hanging structure according to claim 1, characterized in that: The second auxiliary fixing assembly (5) further comprises a plurality of first limiting tubes (51) fixedly connected to the outer circumferential surface of the fixing block (1) in an angular ring shape, a first straight rod (52) movably inserted into the top end of the first limiting tube (51), a circular plate (53) fixedly connected to the top end of the first straight rod (52), a third elastic member (54) fixedly connected between the bottom of the circular plate (53) and the top end of the first limiting tube (51), and a first lancet (55) fixedly connected to the bottom end of the first straight rod (52) and penetrating through the first limiting tube (51), wherein the circular plate (53) is located directly below the push ring (423).
3. A suspended glass fiber panel hanging structure according to claim 2, characterized in that: The second lancet (56) is made of a metal material with a certain elasticity, and the thickness of the second lancet (56) gradually decreases from the direction close to the first lancet (55) to the direction away from the first lancet (55).
4. A suspended glass fiber panel hanging structure according to claim 3, characterized in that: The second auxiliary fixing assembly (5) further comprises a group of barbs (57) fixedly connected to the side away from the first lancet (55) of the second lancet (56).
5. A suspended glass fiber panel hanging structure according to claim 4, characterized in that: The fixing block (1) is further provided with a negative pressure suction mechanism (6) capable of sucking out the air in the suction cup (43).
6. A suspended glass fiber panel hanging structure according to claim 5, characterized in that: The negative pressure suction mechanism (6) comprises a plurality of fixed tubes (61) fixedly inserted into the top of the first moving ring (411) in an angular ring shape, a hollow tube (62) fixedly inserted into the bottom end of the fixed tube (61), a connecting head (63) fixedly connected to the bottom end of the hollow tube (62), a suction cup (43) fixedly sleeved on the outer side surface of the connecting head (63), an air suction hole (631) formed in the bottom of the connecting head (63) and in communication with the inner space of the suction cup (43), the top end of the air suction hole (631) and the inner hole of the hollow tube (62), an air hole (611) formed in the bottom end of the fixed tube (61) and in communication with the air cavity, a piston ring (64) movably sleeved on the outer circumferential surface of the hollow tube (62), two push rods (65) fixedly connected to the top of the piston ring (64) in a symmetrical manner, a push plate (66) fixedly connected to the top end of the push rod (65) and penetrating through the top wall of the fixed tube (61), a limiting ring (67) fixedly sleeved on the top end of the hollow tube (62), the piston ring (64) located between the limiting ring (67) and the inner bottom wall of the fixed tube (61), the negative pressure suction mechanism (6) comprising a plurality of driving blocks (68) fixedly connected to the bottom of the push ring (423) in an angular ring shape, a limiting groove (681) formed in the bottom of the driving block (68) and having a circular arc cross section, the limiting groove (681) capable of clamping the push plate (66), and a plurality of through cavities (69) formed in the top of the push ring (423) in an angular ring shape, the push plate (66) capable of penetrating through the through cavities (69) and extending to the upper side of the push ring (423).
Citation Information
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