Transportation hoisting device for light partition wall supporting system
By designing a multi-point fixed and dynamically supported lightweight partition wall support system lifting device, the stability and safety issues in the lightweight partition wall lifting process are solved, flexible adaptation and protection of different wall panels are achieved, and construction risks and costs are reduced.
Patent Information
- Application Number
- CN202510815414.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-18
- Publication Date
- 2025-08-26
AI Technical Summary
The existing lightweight partition wall lifting equipment has poor stability during transportation and lifting, is susceptible to external forces, cannot adapt to wall panels of different sizes and shapes, and lacks effective buffering and shock absorption measures, resulting in high construction risks.
A transportation and lifting device with a lightweight partition wall support system is designed, including a lifting cross frame, a fixed clamping assembly, a stable pulling mechanism, an extrusion resistance assembly, a flexible lifting assembly and a height control assembly. Through multi-point fixing, dynamic support, buffering and height adjustment, the stability and safety of the wall panel are ensured.
It improves the stability and safety of the lifting process, reduces the damage rate and construction cost of wall panels, enhances the versatility and applicability of lifting equipment, and adapts to wall panels of different shapes and structures.
Smart Images

Figure CN120534849A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of hoisting equipment, in particular to a transportation and hoisting device for a lightweight partition wall support system. Background Art
[0002] With the continuous development of the construction industry, lightweight partition walls have been widely used in modern architecture due to their light weight, convenient construction, and environmentally friendly advantages. Lightweight partition walls are typically assembled from prefabricated wall panels. The stability and safety of these panels require special attention during transportation and hoisting to avoid damage or deformation caused by improper handling. However, existing lightweight partition wall hoisting technologies typically use simple lifting equipment, such as cranes equipped with hooks or slings.
[0003] However, since lightweight partition wall panels usually have a large area and a thin thickness, they are easily affected by external forces such as wind and vibration during the hoisting process, causing the wall panels to shake or even be damaged. Traditional hoisting equipment cannot effectively solve this problem, which increases construction risks. At the same time, since the size and shape of the wall panels may vary depending on design requirements, traditional hoisting equipment cannot be flexibly adjusted according to the specific height of the wall panels, resulting in a loose fit between the wall panels and the hoisting equipment during the hoisting process, further affecting the hoisting stability. Moreover, during the hoisting process, the wall panels may be subjected to impact or vibration, especially during the lifting and lowering process. Traditional hoisting equipment lacks effective buffering and shock absorption measures, which can easily cause scratches on the wall panel surface or structural damage. In addition, when there are door and window openings or other special structures on the wall panels, traditional hoisting equipment cannot provide targeted fixing and protection measures, which increases the difficulty of construction and the risk of wall panel damage.
[0004] How to solve the above technical problems is the subject faced by the present invention. Summary of the Invention
[0005] In order to address the shortcomings of the existing technology, the present invention provides a transportation and lifting device for a lightweight partition wall support system with a reasonable design, safety and reliability. The main purpose is to provide a solution that can effectively improve the stability and safety of lightweight partition walls during transportation and lifting, while ensuring convenient operation.
[0006] The technical solution adopted by the present invention to solve the technical problem is: a transport and hoisting device for a lightweight partition wall support system, comprising a hoisting horizontal frame, a lifting ring assembly is provided at the top of the hoisting horizontal frame to facilitate the hoisting movement of the hoisting equipment, a fixing clamping assembly is provided on the hoisting horizontal frame for fixing and clamping the wall panel, a stabilizing pulling mechanism is provided on both sides of the hoisting horizontal frame, and an extrusion and resistance assembly is provided on the hoisting horizontal frame to cooperate with the stabilizing pulling mechanism and to further enhance the stability of the wall panel during the hoisting process; The stable holding mechanism includes a holding base, a height adjustment component fixedly connected to the hoisting cross frame is provided on the holding base, two groups of holding connection components connected to the wall panels are symmetrically provided on the holding base, and a flexible lifting component connected to another stable holding mechanism and cooperating with the extrusion and resistance component is provided on the holding base The specific features of the present invention are that the hoisting horizontal frame includes a clamping base frame that cooperates with the fixed clamping assembly, a lifting ring bracket is provided on the top surface of the clamping base frame, and the lifting ring bracket is provided with a lifting ring that facilitates the lifting movement of the lifting equipment; The fixed clamping assembly includes a clamping cavity provided in the clamping base, a plurality of clamping grooves connected to the clamping cavity are evenly provided on the bottom surface of the clamping base along the length direction of the clamping base, a clamping slide is symmetrically provided in the clamping cavity, a clamping plate passing through the clamping groove is provided on the clamping slide, and two groups of clamping drive rods are symmetrically provided in the clamping cavity, and each group of the clamping drive rods is used to drive the clamping slide to perform clamping movement; The extrusion resistance assembly includes a resistance base arranged at the center of the bottom surface of the clamping base, and the two clamping slides are respectively located on both sides of the resistance base. A group of resistance hydraulic rods is arranged in the resistance base, and a group of resistance hydraulic rods includes a plurality of resistance hydraulic rods evenly arranged along the length direction of the resistance base, and the moving end of the resistance hydraulic rod is provided with a resistance plate that contacts the top of the wall panel.
[0007] The present invention also has the specific feature of preferably providing two structural designs of height control components, as follows: In the first structure, the height adjustment component includes a control base frame arranged at the center of one side of the hoisting horizontal frame, a control roller shaft matched with the control base frame is provided on the control base frame, a control winch is provided on the control roller shaft, a control rope connected to the holding base is provided on the control winch, a control motor matched with the control roller shaft is provided on the control base frame, and a shock-absorbing connection unit matched with the control rope is provided on the holding base; The shock-absorbing connection unit includes a shock-absorbing groove passing through the holding base, a shock-absorbing inner cylinder is provided in the shock-absorbing groove, and the shock-absorbing inner cylinder is provided with a plurality of circumferential shock-absorbing parts cooperating with the shock-absorbing groove. A shock-absorbing base plate is provided on the bottom surface of the shock-absorbing inner cylinder, and a connecting circular groove cooperating with the regulating hinge rope is provided on the shock-absorbing base plate. An anchor cooperating with the shock-absorbing base plate is provided on the regulating hinge rope, and a shock-absorbing ring plate in contact with the bottom surface of the holding base is provided directly above the shock-absorbing base plate, and a plurality of shock-absorbing screws are provided between the shock-absorbing ring plate and the shock-absorbing base plate.
[0008] The height adjustment component also includes a guide winch arranged on the adjustment roller, and the guide winch is provided with a guide hinge rope connected to the pulling base. Correspondingly, a tying frame connected to the lifting rope hinge rope is provided on the top surface of the pulling base.
[0009] In the second structure, the height adjustment component includes an adjustment base arranged at the center of one side of the lifting horizontal frame, the adjustment base is provided with an adjustment base cylinder, the adjustment base cylinder is provided with an adjustment slide rod which is provided in the adjustment base cylinder and slides with the adjustment base cylinder, the holding base is provided with a connecting locking unit connected to the adjustment slide rod, and the adjustment slide rod is provided with a height adjustment unit for adjusting the height distance between the holding base and the lifting horizontal frame; The connection locking unit includes a locking base cylinder provided on the holding base, and the holding base cylinder is provided with a locking screw that cooperates with the regulating slide rod; The height adjustment unit includes a height hydraulic rod arranged on the adjustment base, the movable end of the height hydraulic rod is fixedly connected to the adjustment slide bar, the adjustment slide bar is provided with a limit slide groove, the upper section of the adjustment slide bar is evenly provided with a plurality of limit strip grooves along the circumferential direction of the adjustment slide bar, a limit rod is provided in the limit slide groove, a limit slide is provided at the top of the limit rod, and a plurality of limit strip rods that rotatably cooperate with the limit strip groove are provided on the limit slide, one end of the limit strip is rotatably connected to the limit slide, the other end of the limit strip is in contact with the inner cylinder surface of the adjustment base cylinder, and the bottom end of the limit rod is provided with a positioning locking piece that cooperates with the adjustment slide bar.
[0010] Preferably, the positioning locking member includes a positioning strip groove starting from the regulating slide rod, a positioning ring plate is sleeved on the regulating slide rod, and a fixing screw is provided on the positioning ring plate, which passes through the positioning strip groove and is connected to the positioning rod; in addition, the positioning locking member includes a through groove opened at the bottom end of the regulating slide rod, the limiting rod passes through the through groove, a positioning cylinder is provided on the regulating slide rod, and a positioning screw cooperating with the limiting rod is provided on the positioning cylinder.
[0011] Preferably, the connecting locking unit also includes two groups of locking guide cylinders symmetrically arranged on the holding base, and the two groups of locking guide cylinders are respectively located at the two ends of the locking base cylinder, and the regulating slide rod is provided with a stabilizing guide frame, and the stabilizing guide frame is provided with a stabilizing sleeve sleeved on the regulating slide rod, and the stabilizing sleeve is provided with a stabilizing screw cooperating with the regulating slide rod, and the stabilizing guide frame is provided with a stabilizing guide rod slidingly cooperating with the locking guide cylinder, and the locking guide cylinder is provided with a guide screw cooperating with the stabilizing guide rod.
[0012] The specific features of the present invention are as follows: the pulling connection assembly includes a pulling bracket arranged on the pulling base, the pulling bracket is provided with a plurality of pulling rotating frames, the pulling rotating frame is provided with a pulling winch, the pulling rotating frame is provided with a pulling motor cooperating with the pulling winch, the pulling winch is provided with a pulling hinge rope, wherein one end of the pulling hinge rope is provided with a clamping connection unit connected to the wall panel, and one end of one of the pulling hinge ropes is provided with a pulling corner protection unit for preventing damage to the wall panel; The clamping connection unit includes a connecting base plate, a clamping connecting plate in an L-shape that cooperates with the connecting base plate is provided on the connecting base plate, a connecting slide is provided on the connecting base plate, a connecting slide is provided in the connecting slide that slides with the connecting slide, a clamping movable plate arranged parallel to the clamping connecting plate is provided on the connecting slide, a fixing screw that cooperates with the connecting base plate is provided on the connecting slide, and a hook that cooperates with the pulling hinge rope is provided on the connecting base plate.
[0013] Two structural designs of the corner protection units are preferably provided, as follows: First, the pulling corner protection unit includes a flexible hanging cloth in a rectangular shape, and two pulling connection grooves are provided at both ends of the flexible hanging cloth; when in use, the two pulling connection grooves in the flexible hanging cloth are staggered and overlapped, and are fixedly connected to the pulling hinge rope.
[0014] Secondly, the corner guard holding unit includes a first base plate, a second base plate in an L-shape that matches the first base plate is provided on the first base plate, corner guard plates connected to the second base plate are provided at both ends of the first base plate, a first slide groove is provided on the first base plate, a second slide groove is provided on the second base plate, the first slide groove and the second slide groove both pass through the corner guard plates, a first slide plate is provided on the first slide groove, a second slide plate is provided in the second slide groove, and connecting slide plates connected to the second slide plate and arranged parallel to the corner guard plates are provided at both ends of the first slide plate; When in use, one of the connecting slides contacts the wall panel, and the other connecting slide is provided with a first hook that cooperates with the pulling hinge rope, and a second hook that cooperates with the pulling hinge rope is provided on the corner guard plate away from the connecting slide with the first hook.
[0015] Another specific feature of the present invention is that, considering that structures such as windows and doors are provided on the wall panel, the holding base is provided with a holding and locking assembly connected to another holding base and used to penetrate the wall panel, and the holding base is provided with a shock-absorbing and abutting assembly on a side facing the wall panel that cooperates with the holding and locking assembly; The holding and locking assembly includes a locking base arranged on the holding base, a locking screw provided on the locking base, a locking nut matched with the locking base provided on the locking screw, a contact ring plate provided on the holding base, a plurality of telescopic legs in contact with the wall panel evenly provided along the circumferential direction of the contact ring plate, the locking screw sleeve is provided with a connecting ring plate, the connecting ring plate is provided with connecting legs matched one by one with the telescopic legs, a connecting screw connected to another connecting ring plate is provided on the connecting screw, and a connecting nut is provided on the connecting screw; The shock-absorbing and resisting assembly includes a plurality of shock-absorbing rods that are slidably matched with the holding base. A shock-absorbing touch plate is provided at one end of the shock-absorbing rod. A shock-absorbing spring that is matched with the shock-absorbing touch plate is sleeved on the shock-absorbing rod.
[0016] The flexible lifting assembly includes a flexible bracket arranged at the bottom end of the holding base, a flexible roller is arranged on the flexible bracket, a flexible capstan is arranged on the flexible roller, a flexible cloth is arranged on the flexible capstan, and a flexible motor is arranged on the flexible bracket to cooperate with the flexible roller; The lifting ring assembly comprises a lifting ring bracket arranged on the top surface of the lifting horizontal frame, and the lifting ring bracket is provided with a lifting ring for facilitating the lifting movement of the lifting equipment.
[0017] The present invention achieves multi-point fixation and dynamic support of the wall panel by arranging a fixed clamping assembly and an extrusion and resistance assembly on the hoisting cross frame. The clamping assembly drives the clamping slide via a clamping drive rod to firmly clamp the two sides of the wall panel, ensuring that the wall panel does not undergo lateral displacement during the hoisting process. The extrusion and resistance assembly applies an upward resistance force via a resistance hydraulic rod, further enhancing the stability of the wall panel and preventing damage due to vibration or shaking during the hoisting process. This synergistic effect not only improves the stability of the hoisting process, but also effectively protects the structural integrity of the wall panel, reduces the defective rate caused by improper hoisting, and thus reduces construction costs.
[0018] The present invention provides two structural designs of height control components, which are respectively suitable for different lifting scenarios and needs. The first structure drives the control winch through the control motor, and uses the control hinge rope to achieve height adjustment of the pulling base. At the same time, it is equipped with a shock-absorbing connection unit to absorb the vibration and impact force generated during the lifting process. The second structure drives the control sliding rod through the height hydraulic rod to achieve precise height adjustment, and ensures the stability and reliability of the height adjustment through the cooperation of the limit rod and the limit bar. The design of this height control component enables the lifting device to flexibly adapt to wall panels of different heights and shapes, improves the versatility and applicability of the lifting equipment, and reduces the risk of lifting failure due to mismatched wall panel sizes.
[0019] The present invention achieves dual protection for the wall panels by providing a flexible lifting assembly and a pulling connection assembly. The flexible lifting assembly supports the bottom of the wall panel with a flexible cloth, providing additional support and cushioning, thereby reducing the impact force on the wall panel during the lifting process. The pulling connection assembly tightens the side of the wall panel through a pulling winch and a pulling motor to prevent the wall panel from lateral shaking during the lifting process. In addition, the design of the pulling corner protection unit can effectively protect the corners of the wall panel and avoid surface damage caused by friction and collision during the lifting process. This dual protection mechanism not only improves the safety of the lifting process, but also significantly reduces the damage rate of the wall panel, thereby improving the construction quality.
[0020] When there are door and window openings or other special structures on the wall panel, the present invention provides targeted fixing and protection measures for these special parts through the tension and locking assembly and the shock-absorbing and resistance assembly. The tension and locking assembly firmly fixes the special parts of the wall panel through the locking screw and locking nut to prevent them from displacement or damage during the lifting process. The shock-absorbing and resistance assembly absorbs the vibration and impact force generated during the lifting process through the shock-absorbing spring and shock-absorbing rod, protecting the structural integrity of the wall panel. This targeted design enables the lifting device to adapt to complex wall panel structures, improves the flexibility and reliability of the lifting equipment, and reduces the difficulty and risk of construction.
[0021] Through the synergistic action of a clamping assembly, a compression and resistance assembly, a height adjustment assembly, a flexible support assembly, and a tension connection assembly, the hoisting device of the present invention achieves comprehensive protection and stable hoisting of lightweight partition wall panels. The close coordination between these components not only improves the stability and safety of the hoisting process, but also significantly reduces the damage rate of the wall panels and construction costs. Furthermore, the device's versatility and adaptability enable it to be widely used for hoisting lightweight partition wall panels of varying sizes, shapes, and structures, demonstrating its high practical value and market potential. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] Figure 1 Schematic diagram of the three-dimensional structure of the present invention at a first viewing angle; Figure 2 is a schematic diagram of a three-dimensional structure under a second viewing angle of the present invention; Figure 3 It is a three-dimensional schematic diagram of a part of the structure of the present invention; Figure 4 It is a top view of the hoisting horizontal frame of the present invention; Figure 5 It is a cross-sectional view taken along line AA of the present invention; Figure 6 An exploded schematic diagram of the hoisting horizontal frame and height adjustment assembly of the present invention; Figure 7 This is a diagram showing the coordination of the holding base, holding connection assembly, and height adjustment assembly of the present invention; Figure 8 It is a top view of the holding base, holding connection assembly and height adjustment assembly of the present invention; Figure 9 BB is a cross-sectional view of the present invention; Figure 10 It is a schematic diagram of A of the present invention; Figure 11 This is a schematic diagram of the cooperation between the double-sided holding base and the holding connection assembly of the present invention; Figure 12 is a three-dimensional schematic diagram of the clamping connection unit of the present invention; Figure 13 It is a three-dimensional schematic diagram of the corner protection unit of the present invention.
[0023] Among them, the accompanying drawings are marked as follows: 100, lifting cross frame; 110, lifting ring assembly; 111, lifting ring bracket; 112, lifting ring; 120, fixed clamping assembly; 121, clamping base; 122, clamping cavity; 123, clamping groove; 124, clamping slide; 125, clamping plate; 126, clamping drive rod; 130, extrusion resistance assembly; 131, resistance base; 132, resistance hydraulic rod; 200, stable holding mechanism; 300, holding base; 400, holding connection assembly; 410, holding bracket; 420, holding winch; 430, holding turntable; 440, Holding hinge rope; 450, clamping connection unit; 451, connecting base plate; 452, clamping connecting plate; 453, connecting slide; 454, connecting slide; 455, clamping movable plate; 456, fixing screw; 457, hook; 460, holding corner protection unit; 461, first base plate; 462, second base plate; 463, corner protection plate; 464, first slide; 465, second slide; 466, first slide; 467, second slide; 468, connecting slide; 469, first hook; 470, second hook; 500, height adjustment component; 510, adjustment base; 511. Control roller; 512. Control winch; 513. Control rope; 514. Control motor; 515. Shock-absorbing connecting unit; 5151. Shock-absorbing groove; 5152. Shock-absorbing inner cylinder; 5153. Circumferential shock-absorbing member; 5154. Shock-absorbing outer cylinder; 5155. Circumferential spring; 5156. Shock-absorbing base plate; 5157. Anchor; 5158. Shock-absorbing ring plate; 5159. Shock-absorbing screw; 5160. Guide winch; 5161. Guide rope; 5162. Lashing frame; 520. Control base; 521. Control base cylinder; 522. Control slide bar; 523. Connection lock Tightening unit; 5231, locking base cylinder; 5232, locking screw; 524, height adjustment unit; 5241, height hydraulic rod; 5242, limiting slide; 5243, limiting strip groove; 5244, limiting rod; 5245, limiting slide; 5246, limiting strip; 5247, positioning locking part; 600, pulling and locking assembly; 610, locking base; 620, locking screw; 630, locking nut; 640, contact ring plate; 650, telescopic support leg; 660, connecting ring plate; 670, connecting support leg; 680, pulling screw; 690, pulling nut. DETAILED DESCRIPTION
[0024] See also Figures 1 to 13As shown, a transport and hoisting device for a lightweight partition wall support system includes a hoisting cross frame 100. A lifting ring assembly 110 is provided at the top of the hoisting cross frame 100 to facilitate the hoisting movement of the hoisting equipment. A fixing clamping assembly 120 is provided on the hoisting cross frame 100 for fixing and clamping the wall panel. Stable holding mechanisms 200 are provided on both sides of the hoisting cross frame 100. The hoisting cross frame 100 is also provided with a squeezing and resisting assembly 130 that cooperates with the stable holding mechanism 200 and is used to further enhance the stability of the wall panel during the hoisting process. The stabilizing pulling mechanism 200 includes a pulling base 300, on which is provided a height adjustment component 500 fixedly connected to the lifting cross frame 100, and on which are symmetrically provided two groups of pulling connection components 400 connected to the wall panels, and on which is provided a flexible lifting component connected to another stabilizing pulling mechanism 200 and cooperating with the extrusion resistance component 130.
[0025] The specific features of the present invention are as follows: the hoisting horizontal frame 100 includes a clamping base frame 121 that cooperates with the fixed clamping assembly 120; a lifting ring bracket 111 is provided on the top surface of the clamping base frame 121; and a lifting ring 112 is provided on the lifting ring bracket 111 to facilitate the lifting movement of the lifting equipment; The fixed clamping assembly 120 includes a clamping cavity 122 provided in the clamping base 121. A plurality of clamping grooves 123 communicating with the clamping cavity 122 are uniformly provided on the bottom surface of the clamping base 121 along the length direction of the clamping base 121. Clamping slides 124 are symmetrically provided in the clamping cavity 122. A clamping plate 125 is provided on the clamping slide 124 and passes through the clamping grooves 123. Two sets of clamping drive rods 126 are symmetrically provided in the clamping cavity 122, and each set of the clamping drive rods 126 is used to drive the clamping slide 124 to perform a clamping movement. The extrusion resistance assembly 130 includes a resistance base 131 arranged at the center of the bottom surface of the clamping base 121, and the two clamping slides 124 are respectively located on both sides of the resistance base 131. A group of resistance hydraulic rods 132 are arranged in the resistance base 131, and a group of resistance hydraulic rods 132 include a plurality of resistance hydraulic rods 132 evenly arranged along the length direction of the resistance base 131. The moving end of the resistance hydraulic rod 132 is provided with a shock-absorbing touch plate that contacts the top of the wall panel.
[0026] Preferably, the clamping slide 124 is provided with a plurality of sliding guide rods that are slidably matched with the other clamping slide 124 , and the other clamping slide 124 is provided with sliding guide grooves that are slidably matched with the sliding guide rods.
[0027] The present invention also has the specific feature of preferably providing two structural designs of the height adjustment assembly 500, as follows: In the first structure, the height adjustment assembly 500 includes an adjustment base 510 provided at the center of one side of the hoisting horizontal frame 100, an adjustment roller 511 coordinated with the adjustment base 510 provided on the adjustment base 510, an adjustment winch 512 provided on the adjustment roller 511, an adjustment rope 513 connected to the holding base 300 provided on the adjustment winch 512, an adjustment motor 514 coordinated with the adjustment roller 511 provided on the adjustment base 510, and a shock-absorbing connection unit 515 coordinated with the adjustment rope 513 provided on the holding base 300; The shock-absorbing connection unit 515 includes a shock-absorbing groove 5151 that passes through the pulling base 300, and a shock-absorbing inner cylinder 5152 is provided in the shock-absorbing groove 5151. The shock-absorbing inner cylinder 5152 is provided with a plurality of circumferential shock-absorbing members 5153 that cooperate with the shock-absorbing groove 5151. A shock-absorbing bottom plate 5156 is provided on the bottom surface of the shock-absorbing inner cylinder 5152, and a connecting circular groove that cooperates with the regulating hinge rope 513 is opened on the shock-absorbing bottom plate 5156. The regulating hinge rope 513 is provided with an anchor 5157 that cooperates with the shock-absorbing bottom plate 5156. A shock-absorbing ring plate 5158 that contacts the bottom surface of the pulling base 300 is provided directly above the shock-absorbing bottom plate 5156, and a plurality of shock-absorbing screws 5159 are provided between the shock-absorbing ring plate 5158 and the shock-absorbing bottom plate 5156.
[0028] The height adjustment component 500 also includes a guide winch 5160 arranged on the adjustment roller 511, and the guide winch 5160 is provided with a guide hinge rope 5161 connected to the pulling base 300. Correspondingly, a tying frame 5162 connected to the suspension rope hinge rope is provided on the top surface of the pulling base 300.
[0029] Preferably, the circumferential shock-absorbing member 5153 includes a shock-absorbing outer cylinder 5154 in contact with the shock-absorbing groove 5151 , and a plurality of circumferential springs 5155 are provided between the shock-absorbing outer cylinder 5154 and the shock-absorbing inner cylinder 5152 .
[0030] In the second structure, the height adjustment assembly 500 includes an adjustment base 520 arranged at the center of one side of the lifting horizontal frame 100, and an adjustment base cylinder 521 is provided on the adjustment base cylinder 521, and an adjustment slide rod 522 is provided in the adjustment base cylinder 521 and slidably cooperates with the adjustment base cylinder 521. A connecting locking unit 523 connected to the adjustment slide rod 522 is provided on the holding base 300, and a height adjustment unit 524 for adjusting the height distance between the holding base 300 and the lifting horizontal frame 100 is provided on the adjustment slide rod 522; The connection locking unit 523 includes a locking base cylinder 5231 provided on the holding base 300, and a locking screw 5232 is provided on the holding base cylinder to cooperate with the regulating slide rod 522; The height control unit 524 includes a height hydraulic rod 5241 provided on the control base 520, the movable end of the height hydraulic rod 5241 is fixedly connected to the control slide 522, a limiting slot 5242 is provided in the control slide 522, a plurality of limiting strip grooves 5243 are evenly provided at the upper section of the control slide 522 along the circumferential direction of the control slide 522, a limiting rod 5244 is provided in the limiting slot 5242, and the limiting A limiting slide 5245 is provided at the top end of the rod 5244, and a plurality of limiting bars 5246 that rotatably cooperate with the limiting groove 5243 are provided on the limiting slide 5245. One end of the limiting bar 5246 is rotatably connected to the limiting slide 5245, and the other end of the limiting bar 5246 is in contact with the inner cylinder surface of the regulating base cylinder 521. A positioning locking piece 5247 that cooperates with the regulating slide 522 is provided at the bottom end of the limiting rod 5244.
[0031] Preferably, the positioning locking member 5247 includes a positioning strip groove starting from the regulating slide rod 522, a positioning ring plate is provided on the regulating slide rod 522, and a fixing screw is provided on the positioning ring plate, which passes through the positioning strip groove and is connected to the positioning rod; in addition, the positioning locking member 5247 includes a through groove opened at the bottom end of the regulating slide rod 522, the limiting rod 5244 passes through the through groove, a positioning cylinder is provided on the regulating slide rod 522, and a positioning screw cooperating with the limiting rod 5244 is provided on the positioning cylinder.
[0032] Preferably, the connecting locking unit 523 also includes two groups of locking guide cylinders symmetrically arranged on the pulling base 300, and the two groups of locking guide cylinders are respectively located at the two ends of the locking base cylinder 5231, and the regulating slide rod 522 is provided with a stabilizing guide frame, and the stabilizing guide frame is provided with a stabilizing sleeve sleeved on the regulating slide rod 522, and the stabilizing sleeve is provided with a stabilizing screw cooperating with the regulating slide rod 522, and the stabilizing guide frame is provided with a stabilizing guide rod slidingly cooperating with the locking guide cylinder, and the locking guide cylinder is provided with a guide screw cooperating with the stabilizing guide rod.
[0033] The stabilizing holding mechanism 200 is connected to the hoisting crossbeam 100 via a height adjustment assembly 500. In the first height adjustment assembly 500, a control winch 512 is connected to the holding base 300 via a control rope 513. A control motor 514 drives the control roller 511 to rotate, adjusting the height of the holding base 300. Shock absorbers in the shock-absorbing connection unit 515 absorb vibrations, ensuring the stability of the wall panel. In the second height adjustment assembly 500, a control slide 522 is connected to the holding base 300 via a connection and locking unit 523. A height hydraulic rod 5241 drives the control slide 522 up and down, and the limit rod 5244 and limit bar 5246 cooperate to achieve precise height adjustment and locking.
[0034] The specific features of the present invention are as follows: the holding connection assembly 400 includes a holding bracket 410 provided on the holding base 300, a plurality of holding rotatable frames 430 provided on the holding bracket 410, a holding winch 420 provided on the holding rotatable frame, a holding motor cooperating with the holding winch 420 provided on the holding rotatable frame 430, a holding hinge rope 440 provided on the holding winch 420, wherein a clamping connection unit 450 connected to the wall panel is provided at one end of the holding hinge rope 440, and a holding corner protection unit 460 for preventing damage to the wall panel is provided at one end of one of the holding hinge ropes 440; The clamping connection unit 450 includes a connecting base plate 451, on which is provided an L-shaped clamping connecting plate 452 that cooperates with the connecting base plate 451, a connecting slide 453 is provided on the connecting base plate 451, and a connecting slide 454 that slides with the connecting slide 453 is provided in the connecting slide 453, and a clamping movable plate 455 that is arranged parallel to the clamping connecting plate 452 is provided on the connecting slide 454, a fixing screw 456 that cooperates with the connecting base plate 451 is provided on the connecting slide 454, and a hook 457 that cooperates with the pulling hinge 440 is provided on the connecting base plate 451.
[0035] Preferably, two structural designs of the corner protection unit 460 are provided, as follows: First, the pulling corner protection unit 460 includes a flexible hanging cloth in a rectangular shape, and two pulling connection grooves are provided at both ends of the flexible hanging cloth; when in use, the two pulling connection grooves in the flexible hanging cloth are staggered and overlapped, and are fixedly connected to the pulling hinge rope 440.
[0036] Secondly, the corner guard unit 460 includes a first substrate 461, on which a second substrate 462 is provided in an L-shape that cooperates with the first substrate 461, and corner guards 463 connected to the second substrate 462 are provided at both ends of the first substrate 461, a first slide groove 464 is provided on the first substrate 461, and a second slide groove 465 is provided on the second substrate 462, and the first slide groove 464 and the second slide groove 465 both pass through the corner guard 463, a first slide plate 466 is provided on the first slide groove 464, and a second slide plate 467 is provided in the second slide groove 465, and a connecting slide plate 468 connected to the second slide plate 467 and arranged parallel to the corner guard 463 is provided at both ends of the first slide plate 466; During use, one of the connecting slides 468 contacts the wall panel, and the other connecting slide 468 is provided with a first hook 469 that cooperates with the pulling hinge rope 440, and a second hook 470 that cooperates with the pulling hinge rope 440 is provided on the corner guard plate 463 away from the connecting slide 468 with the first hook 469.
[0037] Another specific feature of the present invention is that, considering that structures such as windows and doors are provided on the wall panel, the holding base is provided with a holding and locking assembly 600 connected to another holding base and used to penetrate the wall panel. The holding base is provided with a shock-absorbing and abutting assembly on a side facing the wall panel, which cooperates with the holding and locking assembly 600. The holding and locking assembly 600 includes a locking base 610 provided on the holding base, a locking screw 620 provided on the locking base 610, a locking nut 630 matched with the locking base 610 provided on the locking screw 620, a contact ring plate 640 provided on the holding base, a plurality of telescopic legs 650 in contact with the wall panel uniformly provided along the circumferential direction of the contact ring plate 640, the locking screw 620 is sleeved with a connecting ring plate 660, the connecting ring plate 660 is provided with connecting legs 670 matched one-to-one with the telescopic legs 650, the connecting ring plate 660 is provided with a connecting screw 680 connected to another connecting ring plate 660, and the connecting screw 680 is provided with a connecting nut 690; The shock-absorbing and resisting assembly includes a plurality of shock-absorbing rods that are slidably matched with the holding base. A shock-absorbing touch plate is provided at one end of the shock-absorbing rod. A shock-absorbing spring that is matched with the shock-absorbing touch plate is sleeved on the shock-absorbing rod.
[0038] The flexible lifting assembly includes a flexible bracket arranged at the bottom end of the holding base, a flexible roller is arranged on the flexible bracket, a flexible capstan is arranged on the flexible roller, a flexible cloth is arranged on the flexible capstan, and a flexible motor is arranged on the flexible bracket to cooperate with the flexible roller; The lifting ring assembly 110 includes a lifting ring bracket 111 disposed on the top surface of the lifting horizontal frame 100 , and the lifting ring bracket 111 is provided with a lifting ring 112 for facilitating the lifting movement of the lifting equipment.
[0039] The usage process is as follows: First, the wallboard of the lightweight partition wall support system is placed in the appropriate position. Then, the fixed clamping assembly 120 is operated to make the clamping slide plate 124 move to the wallboard by controlling the clamping drive rod 126 until the clamping plate 125 firmly clamps the wallboard.
[0040] Next, adjust the height adjustment assembly 500 of the stabilizing and holding mechanism 200 so that the height of the holding connection assembly 400 matches the height of the connection points on both sides of the wallboard. Connect the holding hinge rope 440 to the wallboard through the holding connection unit. If there are areas of the wallboard at risk of damage, connect the holding corner protection unit 460.
[0041] For wall panels with special structures such as windows and doors, the holding locking assembly 600 on the holding base is connected to the holding base on the other side, and the shock-absorbing resistance assembly is adjusted so that the shock-absorbing touch plate contacts the wall panel and applies appropriate preload force.
[0042] Subsequently, the lifting ring assembly 110 is connected to the lifting equipment, the lifting equipment is started, and the entire device together with the fixed wall panel is lifted. When it is lifted to an appropriate height, the squeezing resistance assembly 130 is operated to push the shock-absorbing touch plate close to the top of the wall panel through the resistance hydraulic rod 132 and adjust it to a suitable pressure position. At the same time, the flexible motor in the flexible lifting assembly is operated to make the flexible cloth contact the bottom surface of the wall panel. During the lifting process, the lifting cross frame 100 bears the weight of the wall panel and transmits it to the lifting equipment through the lifting ring assembly 110.
[0043] The holding motor in the stable holding mechanism 200 adjusts the pulling force of the holding winch 420 as needed to keep the wallboard stable in the horizontal direction. The contact plate of the extrusion and contact assembly 130 continuously applies stable pressure to the top of the wallboard to prevent the wallboard from floating or tilting.
[0044] When encountering bumps and other situations, the flexible motor in the flexible lifting component can appropriately adjust the angle of the flexible roller to make the flexible cloth better adapt to the posture of the wall panel. At the same time, the shock-absorbing spring of the shock-absorbing resistance component can buffer the impact force on the wall panel.
[0045] After reaching the designated location, the hoisting equipment slowly lowers the entire assembly. First, operate the squeezing and resisting assembly 130 to move the resisting plate away from the top of the wall panel. Simultaneously, operate the flexible motor in the flexible lifting assembly to release the flexible fabric from the wall panel. Next, adjust the stabilizing and holding mechanism 200, loosening the connection between the holding connection unit and the holding and locking assembly 600 and the wall panel. Finally, operate the fixed clamping assembly 120 to move the clamping slide 124 away from the wall panel, completing the hoisting and placement of the wall panel.
[0046] Technical features not described in the present invention can be achieved through or by adopting existing technologies and will not be described in detail here. Of course, the above description is not a limitation of the present invention, and the present invention is not limited to the above examples. Changes, modifications, additions or substitutions made by ordinary technicians in this technical field within the essential scope of the present invention should also fall within the scope of protection of the present invention.
Claims
1. A transport and hoisting device for a lightweight partition wall support system, characterized by: The invention comprises a hoisting cross frame (100), wherein a hoisting ring assembly (110) is provided at the top end of the hoisting cross frame (100) for facilitating the hoisting movement of the hoisting equipment, a fixing clamping assembly (120) is provided on the hoisting cross frame (100) for fixing and clamping the wall panel, a stabilizing pulling mechanism (200) is provided on both sides of the hoisting cross frame (100), and an extrusion and resistance assembly (130) is provided on the hoisting cross frame (100) for cooperating with the stabilizing pulling mechanism (200) and for further enhancing the stability of the wall panel during the hoisting process; The stable holding mechanism (200) includes a holding base (300), the holding base (300) is provided with a height adjustment component (500) fixedly connected to the hoisting cross frame (100), the holding base (300) is symmetrically provided with two groups of holding connection components (400) connected to the wall panels, and the holding base is provided with a flexible lifting component connected to another stable holding mechanism (200) and cooperating with the extrusion and resistance component (130).
2. The transport and hoisting device for a lightweight partition wall support system according to claim 1, characterized in that: The hoisting horizontal frame (100) includes a clamping base frame (121) that cooperates with the fixed clamping assembly (120), a lifting ring bracket (111) is provided on the top surface of the clamping base frame (121), and a lifting ring (112) is provided on the lifting ring bracket (111) for facilitating the lifting movement of the lifting equipment; The fixed clamping assembly (120) includes a clamping cavity (122) provided in the clamping base (121), a plurality of clamping grooves (123) connected to the clamping cavity (122) are evenly provided on the bottom surface of the clamping base (121) along the length direction of the clamping base (121), a clamping slide (124) is symmetrically provided in the clamping cavity (122), a clamping plate (125) passing through the clamping groove (123) is provided on the clamping slide (124), two groups of clamping drive rods (126) are symmetrically provided in the clamping cavity (122), and each group of the clamping drive rods (126) is used to drive the clamping slide (124) to perform a clamping movement; The extrusion resistance assembly (130) includes a resistance base (131) arranged at the center of the bottom surface of the clamping base (121), two clamping slides (124) are respectively located on both sides of the resistance base (131), and a group of resistance hydraulic rods (132) are arranged in the resistance base (131). The group of resistance hydraulic rods (132) includes a plurality of resistance hydraulic rods (132) evenly arranged along the length direction of the resistance base (131), and the movable end of the resistance hydraulic rod (132) is provided with a resistance plate that contacts the top of the wall panel.
3. The transport and hoisting device for a lightweight partition wall support system according to claim 1, characterized in that: The height adjustment component (500) includes a control base (510) provided at the center of one side of the hoisting horizontal frame (100), a control roller (511) matched with the control base (510) provided on the control base (510), a control winch (512) provided on the control roller (511), a control rope (513) connected to the holding base (300) provided on the control winch (512), a control motor (514) matched with the control roller (511) provided on the control base (510), and a shock-absorbing connection unit (515) matched with the control rope (513) provided on the holding base (300); The shock-absorbing connection unit (515) includes a shock-absorbing groove (5151) penetrating the holding base (300), a shock-absorbing inner tube (5152) is provided in the shock-absorbing groove (5151), the shock-absorbing inner tube (5152) is provided with a plurality of circumferential shock-absorbing members (5153) cooperating with the shock-absorbing groove (5151), a shock-absorbing bottom plate (5156) is provided on the bottom surface of the shock-absorbing inner tube (5152), and a shock-absorbing bottom plate (5156) is provided on the shock-absorbing bottom plate (5156). There is a connecting circular groove that cooperates with the regulating hinge rope (513), and the regulating hinge rope (513) is provided with an anchor (5157) that cooperates with the shock-absorbing base plate (5156). A shock-absorbing ring plate (5158) that contacts the bottom surface of the holding base (300) is provided directly above the shock-absorbing base plate (5156), and a plurality of shock-absorbing screws (5159) are provided between the shock-absorbing ring plate (5158) and the shock-absorbing base plate (5156). The height adjustment component (500) further comprises a guide winch (5160) arranged on the adjustment roller (511), the guide winch (5160) being provided with a guide hinge rope (5161) connected to the pulling base (300), and correspondingly, a lashing frame (5162) being provided on the top surface of the pulling base (300) being connected to the suspension rope hinge rope.
4. The transport and hoisting device for a lightweight partition wall support system according to claim 1, characterized in that: The height adjustment component (500) includes an adjustment base (520) arranged at the center of one side of the hoisting horizontal frame (100), the adjustment base (520) is provided with an adjustment base cylinder (521), the adjustment base cylinder (521) is provided with an adjustment slide rod (522) which is provided in the adjustment base cylinder (521) and is slidably matched with the adjustment base cylinder (521), the holding base (300) is provided with a connection locking unit (523) connected to the adjustment slide rod (522), and the adjustment slide rod (522) is provided with a height adjustment unit (524) for adjusting the height distance between the holding base (300) and the hoisting horizontal frame (100); The connection locking unit (523) comprises a locking base cylinder (5231) provided on the holding base (300), and a locking screw (5232) cooperating with the regulating slide rod (522) is provided on the holding base cylinder; The height control unit (524) includes a height hydraulic rod (5241) arranged on the control base (520), the movable end of the height hydraulic rod (5241) is fixedly connected to the control slide bar (522), a limiting slot (5242) is provided in the control slide bar (522), a plurality of limiting strip grooves (5243) are uniformly provided at the upper section of the control slide bar (522) along the circumferential direction of the control slide bar (522), a limiting rod (5244) is provided in the limiting slot (5242), and the limiting A limiting slide (5245) is provided at the top end of the rod (5244), and a plurality of limiting bars (5246) are provided on the limiting slide (5245) and are rotatably engaged with the limiting groove (5243). One end of the limiting bar (5246) is rotatably connected to the limiting slide (5245), and the other end of the limiting bar (5246) is in contact with the inner cylinder surface of the regulating base cylinder (521). A positioning locking member (5247) is provided at the bottom end of the limiting rod (5244) and is engaged with the regulating slide (522).
5. The transport and hoisting device for a lightweight partition wall support system according to claim 4, characterized in that: The connecting locking unit (523) also includes two groups of locking guide cylinders symmetrically arranged on the pulling base (300), and the two groups of locking guide cylinders are respectively located at the two ends of the locking base cylinder (5231). The regulating slide bar (522) is provided with a stabilizing guide frame, and the stabilizing guide frame is provided with a stabilizing sleeve sleeved on the regulating slide bar (522). The stabilizing sleeve is provided with a stabilizing screw that cooperates with the regulating slide bar (522). The stabilizing guide frame is provided with a stabilizing guide rod that slides with the locking guide cylinder, and the locking guide cylinder is provided with a guide screw that cooperates with the stabilizing guide rod.
6. The transport and hoisting device for a lightweight partition wall support system according to claim 1, characterized in that: The pulling connection assembly (400) includes a pulling bracket (410) arranged on the pulling base (300), a plurality of pulling rotating frames (430) are arranged on the pulling bracket (410), a pulling winch (420) is arranged on the pulling rotating frame (430), a pulling motor matched with the pulling winch (420) is arranged on the pulling rotating frame (430), and a pulling hinge rope (440) is arranged on the pulling winch (420), wherein a clamping connection unit (450) connected to the wall panel is arranged at one end of the pulling hinge rope (440), and a pulling corner protection unit (460) for preventing damage to the wall panel is arranged at one end of one of the pulling hinge ropes (440); The clamping connection unit (450) includes a connecting base plate (451), the connecting base plate (451) is provided with an L-shaped clamping connecting plate (452) that cooperates with the connecting base plate (451), the connecting base plate (451) is provided with a connecting groove (453), the connecting groove (453) is provided with a connecting slide (454) that slidably cooperates with the connecting groove (453), the connecting slide (454) is provided with a clamping movable plate (455) arranged parallel to the clamping connecting plate (452), the connecting slide (454) is provided with a fixing screw (456) that cooperates with the connecting base plate (451), and the connecting base plate (451) is provided with a hook (457) that cooperates with the pulling hinge rope (440).
7. The transport and hoisting device for a lightweight partition wall support system according to claim 6, characterized in that: The holding corner protection unit (460) comprises a flexible holding cloth in a rectangular shape, with two holding connection grooves provided at both ends of the flexible holding cloth; when in use, the two holding connection grooves in the flexible holding cloth overlap and are fixedly connected to the holding hinge rope (440).
8. The transport and hoisting device for a lightweight partition wall support system according to claim 6, characterized in that: The holding corner guard unit (460) includes a first substrate (461), a second substrate (462) that cooperates with the first substrate (461) in an L-shape is provided on the first substrate (461), corner guard plates (463) connected to the second substrate (462) are provided at both ends of the first substrate (461), a first slide groove (464) is provided on the first substrate (461), a second slide groove (465) is provided on the second substrate (462), the first slide groove (464) and the second slide groove (465) both pass through the corner guard plate (463), a first slide plate (466) is provided on the first slide groove (464), a second slide plate (467) is provided in the second slide groove (465), and connecting slide plates (468) connected to the second slide plate (467) and provided in parallel with the corner guard plate (463) are provided at both ends of the first slide plate (466); When in use, one of the connecting slides (468) contacts the wall panel, and the other connecting slide (468) is provided with a first hook (469) that cooperates with the pulling hinge rope (440), and a second hook (470) that cooperates with the pulling hinge rope (440) is provided on the corner guard (463) away from the connecting slide (468) with the first hook (469).
9. The transport and hoisting device for a lightweight partition wall support system according to claim 1, characterized in that: The holding base is provided with a holding and locking assembly (600) connected to another holding base and used to penetrate the wallboard, and the holding base is provided with a shock-absorbing and abutting assembly cooperating with the holding and locking assembly (600) on a side facing the wallboard; The holding and locking assembly (600) includes a locking base (610) arranged on the holding base, a locking screw (620) is arranged on the locking base (610), a locking nut (630) that cooperates with the locking base (610) is arranged on the locking screw (620), and a resisting ring plate (640) is arranged on the holding base, and the resisting ring plate (640) is uniformly provided with a plurality of A plurality of telescopic legs (650) in contact with the wall panel, the locking screw (620) being sleeved with a connecting ring plate (660), the connecting ring plate (660) being provided with connecting legs (670) that match the telescopic legs (650) one-to-one, the connecting ring plate (660) being provided with a connecting screw (680) connected to another connecting ring plate (660), and the connecting screw (680) being provided with a connecting nut (690); The shock-absorbing and resisting assembly includes a plurality of shock-absorbing rods that are slidably matched with the holding base. A shock-absorbing touch plate is provided at one end of the shock-absorbing rod. A shock-absorbing spring that is matched with the shock-absorbing touch plate is sleeved on the shock-absorbing rod.
10. The transport and hoisting device for a lightweight partition wall support system according to claim 1, characterized in that: The flexible lifting assembly includes a flexible bracket arranged at the bottom end of the holding base, a flexible roller is arranged on the flexible bracket, a flexible capstan is arranged on the flexible roller, a flexible cloth is arranged on the flexible capstan, and a flexible motor is arranged on the flexible bracket to cooperate with the flexible roller; The lifting ring assembly (110) comprises a lifting ring bracket (111) arranged on the top surface of the lifting horizontal frame (100), and the lifting ring bracket (111) is provided with a lifting ring (112) for facilitating the lifting movement of the lifting equipment.