Wide-body long component assembly type hoisting device
By designing a prefabricated hoisting device for wide-body long components that includes main lifting lugs and distribution beam trusses, the problems of deformation and safety hazards during the hoisting process of wide-body long components are solved, and the effect of stress distribution and stable hoisting is achieved. It is suitable for steel structure and metal roof construction in building construction.
Patent Information
- Application Number
- CN202520349719.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-28
- Publication Date
- 2026-01-20
- Estimated Expiration
- 2035-02-28
AI Technical Summary
In existing technologies, wide and long components are prone to deformation and safety hazards during hoisting, especially component quality problems and safety risks caused by stress concentration.
A wide-body, long-component prefabricated hoisting device is adopted, including a main lifting lug, a first-layer force-distributing beam truss, left and right second-layer force-distributing beam trusses, as well as connecting rope assemblies and lifting rope hooks, forming an expanded stable force-bearing system to distribute the force and ensure the stability and safety of hoisting.
It achieves stress distribution and stability during the hoisting of wide-body and long components, ensuring component quality and hoisting safety. The design is simple, the manufacturing is easy, the cost is low, and it is suitable for large-scale promotion and application.
Smart Images

Figure CN223813265U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of building construction, especially the technical field of assembly hoisting, and specifically relates to a wide-body long-component assembly hoisting device. BACKGROUND
[0002] Building construction refers to the production activities in the implementation stage of engineering construction, is the building process of various buildings, and can also be said to be the process of changing various lines on design drawings into real objects at specified locations. It includes foundation engineering construction, main structure construction, roof engineering construction, decoration engineering construction, etc.
[0003] In the construction process of steel structures and metal roofs, the overall hoisting operation project of wide-body long components is often involved. Conventional components can be directly hoisted through the connection of steel wires. However, for components with poor overallity, wide width, long length, easy deformation, or permanent deformation, stress concentration occurs when directly hoisted by steel wires, which can easily lead to component deformation during hoisting, affecting component quality, and even causing the risk of falling, even causing permanent damage to the component structure, not only affecting the quality of the component itself, but more importantly, there is a great safety hazard.
[0004] Therefore, it is desirable to provide a wide-body long-component assembly hoisting device that can realize the hoisting of wide-body long components while ensuring stress dispersion and stability, ensuring component quality, and hoisting safety and reliability. UTILITY MODEL CONTENTS
[0005] In order to overcome the shortcomings of the above-mentioned prior art, one object of the utility model is to provide a wide-body long-component assembly hoisting device that can realize the hoisting of wide-body long components while ensuring stress dispersion and stability, ensuring component quality, and hoisting safety and reliability, and is suitable for large-scale popularization and application.
[0006] Another object of the utility model is to provide a wide-body long-component assembly hoisting device that is ingenious in design, simple in structure, easy to manufacture, low in manufacturing cost, and suitable for large-scale popularization and application.
[0007] To achieve the above objects, the utility model provides a wide-body long-component assembly hoisting device, characterized in that it comprises a main lifting lug, a first layer of force distribution beam truss, a left second layer of force distribution beam truss, a right second layer of force distribution beam truss, a first layer of connecting rope assembly, a left second layer of connecting rope assembly, a right second layer of connecting rope assembly, a left front lifting rope, a left rear lifting rope, a left front lifting hook, a left rear lifting hook, a right front lifting rope, a right rear lifting rope, a right front lifting hook, and a right rear lifting hook, wherein:
[0008] The one-layer force distribution beam truss is horizontally arranged and arranged along the left-right direction, the main lifting lug is vertically arranged and located above the middle position of the one-layer force distribution beam truss, and the one-layer connecting rope assembly is located between the main lifting lug and the one-layer force distribution beam truss and respectively connected with the main lifting lug and the one-layer force distribution beam truss;
[0009] The left two-layer force distribution beam truss and the right two-layer force distribution beam truss are both horizontally arranged and arranged along the left-right direction and arranged left and right with each other, the left half and the right half of the one-layer force distribution beam truss are respectively located above the right end of the left two-layer force distribution beam truss and the left end of the right two-layer force distribution beam truss, the left two-layer connecting rope assembly is located between the left half of the one-layer force distribution beam truss and the left two-layer force distribution beam truss and respectively connected with the left half of the one-layer force distribution beam truss and the left two-layer force distribution beam truss, the right two-layer connecting rope assembly is located between the right half of the one-layer force distribution beam truss and the right two-layer force distribution beam truss and respectively connected with the right half of the one-layer force distribution beam truss and the right two-layer force distribution beam truss, the number of the left two-layer connecting rope assembly and the number of the right two-layer connecting rope assembly are both two, and the two left two-layer connecting rope assemblies and the two right two-layer connecting rope assemblies are arranged front and back with each other;
[0010] The left front lifting rope and the left rear lifting rope are both vertically arranged and arranged front and back with each other, the upper ends of the left front lifting rope and the left rear lifting rope are both located below the left two-layer force distribution beam truss and connected with the left two-layer force distribution beam truss, the left front lifting hook and the left rear lifting hook are both vertically arranged and arranged front and back with each other, the left front lifting hook and the left rear lifting hook are respectively located below the lower ends of the left front lifting rope and the left rear lifting rope and respectively connected with the lower ends of the left front lifting rope and the left rear lifting rope and respectively used for hooking the front side and the rear side of the horizontally arranged and arranged along the left-right direction wide body long member, the number of the left front lifting rope is multiple, the left front lifting ropes are arranged left and right with each other, the number of the left rear lifting rope, the number of the left front lifting hook and the number of the left rear lifting hook are all the same as the number of the left front lifting rope, and the left rear lifting rope, the left front lifting hook, the left rear lifting hook and the left front lifting rope are arranged one by one corresponding;
[0011] The right front lifting ropes and the right rear lifting ropes are vertically arranged and spaced apart from each other in the front-rear direction, the upper ends of the right front lifting ropes and the right rear lifting ropes are located below the right two-story force distribution beam trusses and connected to the right two-story force distribution beam trusses, the right front lifting hooks and the right rear lifting hooks are vertically arranged and spaced apart from each other in the front-rear direction, the right front lifting hooks and the right rear lifting hooks are located below the lower ends of the right front lifting ropes and the right rear lifting ropes respectively and connected to the lower ends of the right front lifting ropes and the right rear lifting ropes respectively and used for hooking the front side of the wide body long member and the rear side of the wide body long member respectively, the number of the right front lifting ropes is multiple, the multiple right front lifting ropes are spaced apart from each other in the left-right direction, the number of the right rear lifting ropes, the number of the right front lifting hooks and the number of the right rear lifting hooks are the same as the number of the right front lifting ropes, and the right rear lifting ropes, the right front lifting hooks, the right rear lifting hooks and the right front lifting ropes are arranged in one-to-one correspondence.
[0012] Preferably, the one-story connecting rope assembly includes a left one-story connecting rope and a right one-story connecting rope, the left one-story connecting rope and the right one-story connecting rope are both arranged obliquely along the left-right direction and arranged in a spread-toe shape along the left-right direction, the right end of the left one-story connecting rope and the left end of the right one-story connecting rope are both connected to the main lifting lug, and the left end of the left one-story connecting rope and the right end of the right one-story connecting rope are both connected to the one-story force distribution beam truss.
[0013] Preferably, the left two-story connecting rope assembly includes a first left two-story connecting rope, an intermediate left two-story connecting rope and a second left two-story connecting rope, the first left two-story connecting rope and the second left two-story connecting rope are both arranged obliquely along the left-to-right direction towards the right upper side and spaced apart from each other in the left-right direction, the angle between the first left two-story connecting rope and the horizontal plane is smaller than the angle between the second left two-story connecting rope and the horizontal plane, the left end and the right end of the first left two-story connecting rope are connected to the left end of the left two-story force distribution beam truss and the left end of the left half of the one-story force distribution beam truss respectively, the left end and the right end of the second left two-story connecting rope are connected to the right end of the left two-story force distribution beam truss and the right end of the left half of the one-story force distribution beam truss respectively, the intermediate left two-story connecting rope is vertically arranged and located between the first left two-story connecting rope and the second left two-story connecting rope, and the upper end and the lower end of the intermediate left two-story connecting rope are connected to the intermediate position of the left half of the one-story force distribution beam truss and the right end of the left two-story force distribution beam truss respectively.
[0014] Preferably, the right two-layer connecting rope assembly comprises a first right two-layer connecting rope, a middle right two-layer connecting rope and a second right two-layer connecting rope, the second right two-layer connecting rope and the first right two-layer connecting rope are both arranged obliquely upwards leftwards along the right-to-left direction and are arranged left and right with each other, the angle between the first right two-layer connecting rope and the horizontal plane is smaller than the angle between the second right two-layer connecting rope and the horizontal plane, the right end and the left end of the first right two-layer connecting rope are connected with the right end of the right two-layer force distribution beam truss and the right end of the right half of the one-layer force distribution beam truss respectively, the right end and the left end of the second right two-layer connecting rope are connected with the left end of the right two-layer force distribution beam truss and the left end of the right half of the one-layer force distribution beam truss respectively, the middle right two-layer connecting rope is arranged vertically and is located between the second right two-layer connecting rope and the first right two-layer connecting rope, the upper end and the lower end of the middle right two-layer connecting rope are connected with the middle position of the right half of the one-layer force distribution beam truss and the right end of the right two-layer force distribution beam truss respectively.
[0015] Preferably, the number of the left front hanging ropes and the number of the right front hanging ropes are both 7.
[0016] Preferably, the left front hanging hook, the left rear hanging hook, the right front hanging hook and the right rear hanging hook are all S-shaped hanging hooks.
[0017] Preferably, the main hanging lug comprises a front fixed plate, a rear fixed plate, a first fixed rod, a second fixed rod and a third fixed rod, the front fixed plate and the rear fixed plate are both arranged vertically and are arranged along the left-right direction and are arranged front and back with each other, the first fixed rod, the second fixed rod and the third fixed rod are all arranged along the front-back direction and are all located between the front fixed plate and the rear fixed plate and are all connected with the front fixed plate and the rear fixed plate respectively, the second fixed rod and the third fixed rod are arranged left and right with each other and are located left and right of the lower position of the first fixed rod respectively, the one-layer connecting rope assembly is connected with the second fixed rod and the third fixed rod respectively.
[0018] Preferably, the one-layer force distribution beam truss comprises a one-layer distribution beam upper main beam, a front one-layer distribution beam lower main beam, a rear one-layer distribution beam lower main beam and a one-layer distribution beam connecting piece assembly, wherein:
[0019] The upper beam of the first distribution beam is horizontally arranged and arranged along the left-right direction, the upper beam of the first distribution beam and the upper beam of the second distribution beam are both horizontally arranged and arranged along the left-right direction and arranged in front of and behind each other, the upper beam of the first distribution beam and the upper beam of the second distribution beam are located in front of and behind the lower position of the upper beam of the first distribution beam respectively, the first distribution beam connector assembly is located between the upper beam of the first distribution beam, the upper beam of the first distribution beam and the upper beam of the second distribution beam and is connected to the upper beam of the first distribution beam, the upper beam of the first distribution beam and the upper beam of the second distribution beam respectively, and the number of the first distribution beam connector assembly is multiple, and multiple layer distribution beam connector assemblies are arranged in sequence from left to right.
[0020] The upper beam of the first distribution beam is horizontally arranged and arranged along the left-right direction, the upper beam of the first distribution beam and the upper beam of the second distribution beam are both horizontally arranged and arranged along the left-right direction and arranged in front of and behind each other, the upper beam of the first distribution beam and the upper beam of the second distribution beam are located in front of and behind the lower position of the upper beam of the first distribution beam respectively, the first distribution beam connector assembly is located between the upper beam of the first distribution beam, the upper beam of the first distribution beam and the upper beam of the second distribution beam and is connected to the upper beam of the first distribution beam, the upper beam of the first distribution beam and the upper beam of the second distribution beam respectively, and the number of the first distribution beam connector assembly is multiple, and multiple layer distribution beam connector assemblies are arranged in sequence from left to right.
[0021] Preferably, the left two-layer force distribution beam truss comprises a left front two-layer distribution beam main beam, a left rear two-layer distribution beam main beam and a left two-layer force distribution beam connector assembly, wherein:
[0022] The left front two-layer distribution beam main beam and the left rear two-layer distribution beam main beam are arranged along the left-right direction and are arranged in front of and behind each other, the left half of the one-layer force distribution beam truss is located above the right end of the left front two-layer distribution beam main beam and the right end of the left rear two-layer distribution beam main beam respectively, the left two-layer force distribution beam connector assembly is located between the left front two-layer distribution beam main beam and the left rear two-layer distribution beam main beam and connects the left front two-layer distribution beam main beam and the left rear two-layer distribution beam main beam respectively, the number of the left two-layer force distribution beam connector assembly is multiple, multiple left two-layer force distribution beam connector assemblies are arranged in sequence from left to right, the two left two-layer connecting rope assemblies are connected to the left front two-layer distribution beam main beam and the left rear two-layer distribution beam main beam respectively, and the upper ends of the left front hoisting rope and the left rear hoisting rope are located below the left front two-layer distribution beam main beam and the left rear two-layer distribution beam main beam respectively and are connected to the left front two-layer distribution beam main beam and the left rear two-layer distribution beam main beam respectively.
[0023] Preferably, the right two-layer force distribution beam truss comprises a right front two-layer distribution beam main beam, a right rear two-layer distribution beam main beam and a right two-layer force distribution beam connector assembly, wherein:
[0024] The right front two-layer distribution beam main beam and the right rear two-layer distribution beam main beam are arranged along the left-right direction and are arranged in front of and behind each other, the right half of the one-layer force distribution beam truss is located above the left end of the right front two-layer distribution beam main beam and the left end of the right rear two-layer distribution beam main beam respectively, the right two-layer force distribution beam connector assembly is located between the right front two-layer distribution beam main beam and the right rear two-layer distribution beam main beam and connects the right front two-layer distribution beam main beam and the right rear two-layer distribution beam main beam respectively, the number of the right two-layer force distribution beam connector assembly is multiple, multiple right two-layer force distribution beam connector assemblies are arranged in sequence from left to right, the two right two-layer connecting rope assemblies are connected to the right front two-layer distribution beam main beam and the right rear two-layer distribution beam main beam respectively, and the upper ends of the right front hoisting rope and the right rear hoisting rope are located below the right front two-layer distribution beam main beam and the right rear two-layer distribution beam main beam respectively and are connected to the right front two-layer distribution beam main beam and the right rear two-layer distribution beam main beam respectively.
[0025] The utility model discloses the beneficial effect mainly lies in:
[0026] 1. The wide body long component assembly type hoisting device adopts a two-layer distribution hierarchical structure, the main lifting lug is connected with the first layer distribution beam truss through a first layer connecting rope assembly, the first layer distribution beam truss is connected with the left second layer force distribution beam truss and the right second layer force distribution beam truss through the left second layer connecting rope assembly and the right second layer connecting rope assembly respectively, forming an expanded stable stress system, the left second layer force distribution beam truss is connected with the left front hook and the left rear hook through the left front lifting rope and the left rear lifting rope, the right second layer force distribution beam truss is connected with the right front hook and the right rear hook through the right front lifting rope and the right rear lifting rope, the left front hook and the left rear hook and the right front hook and the right rear hook are respectively hooked in the holes on the front side and the rear side of the wide body long component, so that the hoisting of the wide body long component is realized, therefore, the wide body long component can be hoisted, the stress is dispersed and stable, the component quality is guaranteed, the hoisting is safe and reliable, and the wide body long component assembly type hoisting device is suitable for large-scale popularization and application.
[0027] 2. The wide body long component assembly type hoisting device adopts a two-layer distribution hierarchical structure, the main lifting lug is connected with the first layer distribution beam truss through a first layer connecting rope assembly, the first layer distribution beam truss is connected with the left second layer force distribution beam truss and the right second layer force distribution beam truss through the left second layer connecting rope assembly and the right second layer connecting rope assembly respectively, forming an expanded stable stress system, the left second layer force distribution beam truss is connected with the left front hook and the left rear hook through the left front lifting rope and the left rear lifting rope, the right second layer force distribution beam truss is connected with the right front hook and the right rear hook through the right front lifting rope and the right rear lifting rope, the left front hook and the left rear hook and the right front hook and the right rear hook are respectively hooked in the holes on the front side and the rear side of the wide body long component, so that the hoisting of the wide body long component is realized, therefore, the wide body long component can be hoisted, the stress is dispersed and stable, the component quality is guaranteed, the hoisting is safe and reliable, and the wide body long component assembly type hoisting device is suitable for large-scale popularization and application.
[0028] These and other objects, features, and advantages of the present utility model will become apparent with reference to the following detailed description and drawings, in which: BRIEF DESCRIPTION OF DRAWINGS
[0029] Figure 1 is a front view schematic diagram of the wide body long component assembly type hoisting device of the present utility model in use.
[0030] Figure 2 is Figure 1 a perspective partial schematic diagram of the specific embodiment shown in Figure 1 .
[0031] Figure 3 is Figure 1 a perspective partial schematic diagram of the specific embodiment shown in Figure 2 .
[0032] Figure 4 is Figure 1 perspective view of a specific embodiment shown in Figure 3 .
[0033] Figure 5 is Figure 1 left view sectional view of the structure shown in
[0034] Figure 6 is Figure 1 right view sectional view of the structure shown in
[0035] (Symbol explanation)
[0036] 1 main hanger; 101 front fixed plate; 102 rear fixed plate; 103 first fixed rod; 104 second fixed rod; 105 third fixed rod;
[0037] 2 one layer force distribution beam truss; 201 one layer distribution beam upper main beam; 202 front one layer distribution beam lower main beam; 203 rear one layer distribution beam lower main beam; 204 one layer distribution beam connecting piece assembly; 205 front left connecting rod; 206 front right connecting rod; 207 rear left connecting rod; 208 rear right connecting rod; 209 left side connecting rod; 210 right side connecting rod; 211 connecting diagonal rod;
[0038] 3 left two layer force distribution beam truss; 301 left front two layer distribution beam main beam;
[0039] 4 right two layer force distribution beam truss; 401 right front two layer distribution beam main beam; 402 right rear two layer distribution beam main beam; 403 right two layer force distribution beam connecting piece assembly; 404 second right connecting rod; 405 second right connecting rod; 406 second intermediate diagonal rod;
[0040] 5 one layer connecting rope assembly; 501 left one layer connecting rope; 502 right one layer connecting rope;
[0041] 6 left two layer connecting rope assembly; 601 first left two layer connecting rope; 602 intermediate left two layer connecting rope; 603 second left two layer connecting rope;
[0042] 7 right two layer connecting rope assembly; 701 first right two layer connecting rope; 702 intermediate right two layer connecting rope; 703 second right two layer connecting rope;
[0043] 8 left front hoisting rope; 9 left rear hoisting rope; 10 left front hoisting hook; 11 left rear hoisting hook; 12 right front hoisting rope; 13 right rear hoisting rope; 14 right front hoisting hook; 15 right rear hoisting hook; 16 wide body long member. DETAILED DESCRIPTION
[0044] In order to enable the technical content of the utility model to be more clearly understood, the following embodiments are used for detailed description.
[0045] In the description of the utility model, need understanding is, the terms "upper", "lower", "front", "back", "left", "right", "top", "bottom", "inner", "outer" and so on indicate the orientation or position relation is based on the orientation or position relation shown in the drawing, just is for the convenience of describing the utility model and simplifying the description, and is not indicate or imply that the indicated device or element must have a particular orientation, with a particular orientation structure and operation, therefore cannot be understood as the limitation to the utility model.
[0046] Please see Figures 1-6 As shown in the utility model, in a specific embodiment of the utility model, the utility model wide body long component assembly type hoisting device includes main lifting lug 1, a layer force distribution beam truss 2, left two layer force distribution beam trusses 3, right two layer force distribution beam trusses 4, a layer connecting rope assembly 5, left two layer connecting rope assemblies 6, right two layer connecting rope assemblies 7, left front lifting rope 8, left rear lifting rope 9, left front lifting hook 10, left rear lifting hook 11, right front lifting rope 12, right rear lifting rope 13, right front lifting hook 14 and right rear lifting hook 15, wherein:
[0047] The a layer force distribution beam truss 2 is horizontally arranged and is arranged along the left-right direction, the main lifting lug 1 is vertically arranged and is located above the middle position of the a layer force distribution beam truss 2, and the a layer connecting rope assembly 5 is located between the main lifting lug 1 and the a layer force distribution beam truss 2 and is connected with the main lifting lug 1 and the a layer force distribution beam truss 2 respectively;
[0048] The left two layer force distribution beam trusses 3 and the right two layer force distribution beam trusses 4 are all horizontally arranged and are all arranged along the left-right direction and are arranged with left-right mutual spacing, the left half and the right half of the a layer force distribution beam truss 2 are located above the right end of the left two layer force distribution beam truss 3 and the left end of the right two layer force distribution beam truss 4 respectively, the left two layer connecting rope assemblies 6 are located between the left half of the a layer force distribution beam truss 2 and the left two layer force distribution beam truss 3 and are connected with the left half of the a layer force distribution beam truss 2 and the left two layer force distribution beam truss 3 respectively, the right two layer connecting rope assemblies 7 are located between the right half of the a layer force distribution beam truss 2 and the right two layer force distribution beam truss 4 and are connected with the right half of the a layer force distribution beam truss 2 and the right two layer force distribution beam truss 4 respectively, the number of the left two layer connecting rope assemblies 6 and the number of the right two layer connecting rope assemblies 7 are both two, and the two left two layer connecting rope assemblies 6 and the two right two layer connecting rope assemblies 7 are arranged with front-back mutual spacing;
[0049] The left front hoisting rope 8 and the left rear hoisting rope 9 are vertically arranged and arranged in front of and behind each other, the upper end of the left front hoisting rope 8 and the upper end of the left rear hoisting rope 9 are located below the left two-layer force distribution beam truss 3 and are connected to the left two-layer force distribution beam truss 3, the left front hoisting hook 10 and the left rear hoisting hook 11 are vertically arranged and arranged in front of and behind each other, the left front hoisting hook 10 and the left rear hoisting hook 11 are located below the lower end of the left front hoisting rope 8 and the lower end of the left rear hoisting rope 9 respectively and are connected to the lower end of the left front hoisting rope 8 and the lower end of the left rear hoisting rope 9 respectively and are used for hooking the front side and the rear side of the wide body long member 16 arranged horizontally and in the left-right direction, the number of the left front hoisting rope 8 is multiple, multiple left front hoisting ropes 8 are arranged in front of and behind each other, the number of the left rear hoisting rope 9, the number of the left front hoisting hook 10 and the number of the left rear hoisting hook 11 are the same as the number of the left front hoisting rope 8, the left rear hoisting rope 9, the left front hoisting hook 10, the left rear hoisting hook 11 and the left front hoisting rope 8 are arranged one by one.
[0050] The right front hoisting rope 12 and the right rear hoisting rope 13 are vertically arranged and arranged in front of and behind each other, the upper end of the right front hoisting rope 12 and the upper end of the right rear hoisting rope 13 are located below the right two-layer force distribution beam truss 4 and are connected to the right two-layer force distribution beam truss 4, the right front hoisting hook 14 and the right rear hoisting hook 15 are vertically arranged and arranged in front of and behind each other, the right front hoisting hook 14 and the right rear hoisting hook 15 are located below the lower end of the right front hoisting rope 12 and the lower end of the right rear hoisting rope 13 respectively and are connected to the lower end of the right front hoisting rope 12 and the lower end of the right rear hoisting rope 13 respectively and are used for hooking the front side of the wide body long member 16 and the rear side of the wide body long member 16, the number of the right front hoisting rope 12 is multiple, multiple right front hoisting ropes 12 are arranged in front of and behind each other, the number of the right rear hoisting rope 13, the number of the right front hoisting hook 14 and the number of the right rear hoisting hook 15 are the same as the number of the right front hoisting rope 12, the right rear hoisting rope 13, the right front hoisting hook 14, the right rear hoisting hook 15 and the right front hoisting rope 12 are arranged one by one.
[0051] The one-layer connecting rope assembly 5 can have any suitable structure, please refer to Figures 1-3 In a specific embodiment of the utility model, the one-layer connecting rope assembly 5 includes left one-layer connecting rope 501 and right one-layer connecting rope 502, left one-layer connecting rope 501 and right one-layer connecting rope 502 are arranged obliquely along the left-right direction and are arranged in the shape of eight characters along the left-right direction, the right end of left one-layer connecting rope 501 and the left end of right one-layer connecting rope 502 are connected to the main lifting lug 1, the left end of left one-layer connecting rope 501 and the right end of right one-layer connecting rope 502 are connected to the one-layer force distribution beam truss 2.
[0052] The left two-storey connecting rope assembly 6 can have any suitable configuration, see Figure 1 In a specific embodiment of the present application, the left two-storey connecting rope assembly 6 includes a first left two-storey connecting rope 601, a middle left two-storey connecting rope 602, and a second left two-storey connecting rope 603. The first left two-storey connecting rope 601 and the second left two-storey connecting rope 603 are both inclined towards the upper right from the left to right direction and are spaced apart from each other. The angle between the first left two-storey connecting rope 601 and the horizontal plane is smaller than the angle between the second left two-storey connecting rope 603 and the horizontal plane. The left end and the right end of the first left two-storey connecting rope 601 are connected to the left end of the left two-storey force distribution beam truss 3 and the left half of the one-storey force distribution beam truss 2, respectively. The left end and the right end of the second left two-storey connecting rope 603 are connected to the right end of the left two-storey force distribution beam truss 3 and the right half of the one-storey force distribution beam truss 2, respectively. The middle left two-storey connecting rope 602 is vertically arranged between the first left two-storey connecting rope 601 and the second left two-storey connecting rope 603. The upper end and the lower end of the middle left two-storey connecting rope 602 are connected to the middle position of the left half of the one-storey force distribution beam truss 2 and the right end of the left two-storey force distribution beam truss 3, respectively.
[0053] The right two-storey connecting rope assembly 7 can have any suitable configuration, see Figure 1 , Figure 3 and Figure 4 In a specific embodiment of the present application, the right two-storey connecting rope assembly 7 includes a first right two-storey connecting rope 701, a middle right two-storey connecting rope 702, and a second right two-storey connecting rope 703. The second right two-storey connecting rope 703 and the first right two-storey connecting rope 701 are both inclined towards the upper left from the right to left direction and are spaced apart from each other. The angle between the first right two-storey connecting rope 701 and the horizontal plane is smaller than the angle between the second right two-storey connecting rope 703 and the horizontal plane. The right end and the left end of the first right two-storey connecting rope 701 are connected to the right end of the right two-storey force distribution beam truss 4 and the right half of the one-storey force distribution beam truss 2, respectively. The right end and the left end of the second right two-storey connecting rope 703 are connected to the left end of the right two-storey force distribution beam truss 4 and the left half of the one-storey force distribution beam truss 2, respectively. The middle right two-storey connecting rope 702 is vertically arranged between the second right two-storey connecting rope 703 and the first right two-storey connecting rope 701. The upper end and the lower end of the middle right two-storey connecting rope 702 are connected to the middle position of the right half of the one-storey force distribution beam truss 2 and the right end of the right two-storey force distribution beam truss 4, respectively.
[0054] The number of the left front lifting ropes 8 and the number of the right front lifting ropes 12 can be determined as required, and the above "a plurality of" refers to two or more, but does not mean that the number of the left front lifting ropes 8 and the number of the right front lifting ropes 12 are the same, and the number of the left front lifting ropes 8 and the number of the right front lifting ropes 12 can be the same or different, please refer to Figure 1 In a specific embodiment of the utility model, the number of the left front lifting ropes 8 and the number of the right front lifting ropes 12 are both 7.
[0055] The left front lifting hooks 10, the left rear lifting hooks 11, the right front lifting hooks 14 and the right rear lifting hooks 15 can have any suitable shape, please refer to Figures 5-6 In a specific embodiment of the utility model, the left front lifting hooks 10, the left rear lifting hooks 11, the right front lifting hooks 14 and the right rear lifting hooks 15 are all S-shaped hooks.
[0056] The main lifting lug 1 can have any suitable structure, please refer to Figure 2 In a specific embodiment of the utility model, the main lifting lug 1 includes a front fixed plate 101, a rear fixed plate 102, a first fixed rod 103, a second fixed rod 104 and a third fixed rod 105, the front fixed plate 101 and the rear fixed plate 102 are both vertically arranged and arranged along the left-right direction and spaced apart from each other front and rear, the first fixed rod 103, the second fixed rod 104 and the third fixed rod 105 are all arranged along the front and rear direction and are all located between the front fixed plate 101 and the rear fixed plate 102 and are all connected to the front fixed plate 101 and the rear fixed plate 102 respectively, the second fixed rod 104 and the third fixed rod 105 are spaced apart from each other left and right and are located on the left and right sides of the lower position of the first fixed rod 103 respectively, and the one-layer connecting rope assembly 5 is connected to the second fixed rod 104 and the third fixed rod 105 respectively.
[0057] In the case where the one-layer connecting rope assembly 5 includes a left one-layer connecting rope 501 and a right one-layer connecting rope 502, the right end of the left one-layer connecting rope 501 and the left end of the right one-layer connecting rope 502 are connected to the second fixed rod 104 and the third fixed rod 105 respectively. For example, the right end of the left one-layer connecting rope 501 is wrapped around the second fixed rod 104 and fixed to itself by a buckle, and the left end of the right one-layer connecting rope 502 is wrapped around the third fixed rod 105 and fixed to itself by a buckle.
[0058] The one-layer force distribution beam truss 2 can have any suitable structure, please refer to Figure 1 and Figure 3As shown, in a specific embodiment of the present application, the first layer force distribution beam truss 2 comprises a first layer distribution beam upper main beam 201, a first layer distribution beam lower main beam 202, a second layer distribution beam lower main beam 203 and a first layer distribution beam connecting component assembly 204, wherein:
[0059] The first layer distribution beam upper main beam 201 is horizontally arranged and arranged along the left-right direction, the first layer distribution beam lower main beam 202 and the second layer distribution beam lower main beam 203 are both horizontally arranged and arranged along the left-right direction and arranged in front of and behind each other, the first layer distribution beam lower main beam 202 and the second layer distribution beam lower main beam 203 are respectively located in front of and behind the lower position of the first layer distribution beam upper main beam 201, the first layer distribution beam connecting component assembly 204 is located between the first layer distribution beam upper main beam 201, the first layer distribution beam lower main beam 202 and the second layer distribution beam lower main beam 203 and respectively connects the first layer distribution beam upper main beam 201, the first layer distribution beam lower main beam 202 and the second layer distribution beam lower main beam 203, the number of the first layer distribution beam connecting component assembly 204 is multiple, and multiple first layer distribution beam connecting component assemblies are arranged in sequence from left to right.
[0060] The first layer connecting rope assembly 5 connects the first layer distribution beam upper main beam 201, the left half of the first layer distribution beam lower main beam 202 and the left half of the second layer distribution beam lower main beam 203 are located above the right end of the left two layer force distribution beam truss 3, the right half of the first layer distribution beam lower main beam 202 and the right half of the second layer distribution beam lower main beam 203 are located above the left end of the right two layer force distribution beam truss 4, the two left two layer connecting rope assemblies 6 are respectively located below the left half of the first layer distribution beam lower main beam 202 and the left half of the second layer distribution beam lower main beam 203 and respectively connect the left half of the first layer distribution beam lower main beam 202 and the left half of the second layer distribution beam lower main beam 203, and the two right two layer connecting rope assemblies 7 are respectively located below the right half of the first layer distribution beam lower main beam 202 and the right half of the second layer distribution beam lower main beam 203 and respectively connect the right half of the first layer distribution beam lower main beam 202 and the right half of the second layer distribution beam lower main beam 203.
[0061] In the case where the first layer connecting rope assembly 5 comprises a left first layer connecting rope 501 and a right first layer connecting rope 502, the left end of the left first layer connecting rope 501 and the right end of the right first layer connecting rope 502 are respectively connected to the left end and the right end of the first layer distribution beam upper main beam 201. For example, the left end of the left first layer connecting rope 501 and the left end of the first layer distribution beam upper main beam 201, and the right end of the right first layer connecting rope 502 and the right end of the first layer distribution beam upper main beam 201 can be connected by lugs.
[0062] In the case that the left two-layer connecting rope assembly 6 comprises a first left two-layer connecting rope 601, a middle left two-layer connecting rope 602 and a second left two-layer connecting rope 603, the right end of the first left two-layer connecting rope 601, the right end of the second left two-layer connecting rope 603 and the upper end of the middle left two-layer connecting rope 602 of the front left two-layer connecting rope assembly 6 are connected to the left end of the left half of the front layer distribution beam lower main beam 202, the right end of the left half of the front layer distribution beam lower main beam 202 and the middle position of the left half of the front layer distribution beam lower main beam 202 respectively, and the right end of the first left two-layer connecting rope 601, the right end of the second left two-layer connecting rope 603 and the upper end of the middle left two-layer connecting rope 602 of the rear left two-layer connecting rope assembly 6 are connected to the left end of the left half of the rear layer distribution beam lower main beam 203, the right end of the left half of the rear layer distribution beam lower main beam 203 and the middle position of the left half of the rear layer distribution beam lower main beam 203 respectively.
[0063] In the case that the right two-layer connecting rope assembly 7 comprises a first right two-layer connecting rope 701, a middle right two-layer connecting rope 702 and a second right two-layer connecting rope 703, the left end of the first right two-layer connecting rope 701, the left end of the second right two-layer connecting rope 703 and the upper end of the middle right two-layer connecting rope 702 of the front right two-layer connecting rope assembly 7 are connected to the right end of the right half of the front layer distribution beam lower main beam 202, the left end of the right half of the front layer distribution beam lower main beam 202 and the middle position of the right half of the front layer distribution beam lower main beam 202 respectively, and the left end of the first right two-layer connecting rope 701, the left end of the second right two-layer connecting rope 703 and the upper end of the middle right two-layer connecting rope 702 of the rear right two-layer connecting rope assembly 7 are connected to the right end of the right half of the rear layer distribution beam lower main beam 203, the left end of the right half of the rear layer distribution beam lower main beam 203 and the middle position of the right half of the rear layer distribution beam lower main beam 203 respectively.
[0064] The number of the layer distribution beam connecting member assemblies 204 can be determined according to the need, and the "multiple" refers to more than two, please refer to Figure 1 In a specific embodiment of the present application, the number of the layer distribution beam connecting member assemblies 204 is 10.
[0065] The layer distribution beam connecting member assemblies 204 can have any suitable structure, please refer to Figure 3As shown in the specific embodiment of the utility model, the one-layer distribution beam connecting piece assembly 204 includes front left connecting rod 205, front right connecting rod 206, rear left connecting rod 207, rear right connecting rod 208, left side connecting rod 209, right side connecting rod 210 and connecting inclined rod 211, wherein:
[0066] The front left connecting rod 205 and the front right connecting rod 206 are respectively inclinedly arranged along the rear-to-front direction towards the left front lower side and the right front lower side and are both located between the one-layer distribution beam upper main beam 201 and the front one-layer distribution beam lower main beam 202 and are both respectively connected to the one-layer distribution beam upper main beam 201 and the front one-layer distribution beam lower main beam 202, the rear left connecting rod 207 and the rear right connecting rod 208 are respectively inclinedly arranged along the front-to-rear direction towards the left rear lower side and the right rear lower side and are both located between the one-layer distribution beam upper main beam 201 and the rear one-layer distribution beam lower main beam 203 and are both respectively connected to the one-layer distribution beam upper main beam 201 and the rear one-layer distribution beam lower main beam 203.
[0067] The left side connecting rod 209 and the right side connecting rod 210 are both arranged along the front-to-rear direction and are left and right spaced apart, the left side connecting rod 209 and the right side connecting rod 210 are both located between the front one-layer distribution beam lower main beam 202 and the rear one-layer distribution beam lower main beam 203 and are both respectively connected to the front one-layer distribution beam lower main beam 202 and the rear one-layer distribution beam lower main beam 203, the connecting inclined rod 211 is inclinedly arranged along the left-to-right direction towards the right rear side and is located between the left side connecting rod 209 and the right side connecting rod 210, the connecting inclined rod 211 is located between the front one-layer distribution beam lower main beam 202 and the rear one-layer distribution beam lower main beam 203 and is respectively connected to the front one-layer distribution beam lower main beam 202 and the rear one-layer distribution beam lower main beam 203.
[0068] Two left and right spaced apart positions of the front one-layer distribution beam lower main beam 202 are respectively connected to the left end of the front left connecting rod 205, the front end of the left side connecting rod 209 and the left end of the connecting inclined rod 211 and the right end of the front right connecting rod 206 and the front end of the right side connecting rod 210, two left and right spaced apart positions of the rear one-layer distribution beam lower main beam 203 are respectively connected to the left end of the rear left connecting rod 207 and the rear end of the left side connecting rod 209 and the right end of the rear right connecting rod 208, the rear end of the right side connecting rod 210 and the right end of the connecting inclined rod 211, one position of the one-layer distribution beam upper main beam 201 is respectively connected to the right end of the front left connecting rod 205, the left end of the front right connecting rod 206, the right end of the rear left connecting rod 207 and the left end of the rear right connecting rod 208.
[0069] Preferably, in the two said one-floor distribution beam connector assemblies 204 adjacent to each other, the right connecting rod 210 of the left said one-floor distribution beam connector assembly 204 and the left connecting rod 209 of the right said one-floor distribution beam connector assembly 204 can be shared and combined into one.
[0070] Figure 3 The connecting inclined rod 211 of the left said one-floor distribution beam connector assembly 204 shown in the middle is inclined in a different direction, which is inclined to the right front in the left-to-right direction.
[0071] The left two-floor force distribution beam truss 3 can have any suitable structure, please refer to Figure 1 As shown in the figure, in a specific embodiment of the utility model, the left two-floor force distribution beam truss 3 includes a left front two-floor distribution beam main girder 301, a left rear two-floor distribution beam main girder (not shown in the figure) and a left two-floor force distribution beam connector assembly (not shown in the figure), wherein:
[0072] The left front two-floor distribution beam main girder 301 and the left rear two-floor distribution beam main girder are both arranged in the left-right direction and spaced apart front-to-back, the left half of the one-floor force distribution beam truss 2 is located above the right end of the left front two-floor distribution beam main girder 301 and the right end of the left rear two-floor distribution beam main girder respectively, the left two-floor force distribution beam connector assembly is located between the left front two-floor distribution beam main girder 301 and the left rear two-floor distribution beam main girder and connects the left front two-floor distribution beam main girder 301 and the left rear two-floor distribution beam main girder respectively, the number of the left two-floor force distribution beam connector assemblies is multiple, multiple left two-floor force distribution beam connector assemblies are arranged in sequence left and right, the two left two-floor connector cable assemblies 6 connect the left front two-floor distribution beam main girder 301 and the left rear two-floor distribution beam main girder respectively, and the upper end of the left front hoisting cable 8 and the upper end of the left rear hoisting cable 9 are located below the left front two-floor distribution beam main girder 301 and the left rear two-floor distribution beam main girder respectively and connect the left front two-floor distribution beam main girder 301 and the left rear two-floor distribution beam main girder respectively.
[0073] In the case that the left two-layer connecting rope assembly 6 comprises a first left two-layer connecting rope 601, a middle left two-layer connecting rope 602 and a second left two-layer connecting rope 603, the left end of the first left two-layer connecting rope 601 of the front left two-layer connecting rope assembly 6 is connected to the left end of the left front two-layer distribution beam main girder 301, the left end of the second left two-layer connecting rope 603 and the lower end of the middle left two-layer connecting rope 602 of the front left two-layer connecting rope assembly 6 are both connected to the right end of the left front two-layer distribution beam main girder 301, the left end of the first left two-layer connecting rope 601 of the rear left two-layer connecting rope assembly 6 is connected to the left end of the left rear two-layer distribution beam main girder, and the left end of the second left two-layer connecting rope 603 and the lower end of the middle left two-layer connecting rope 602 of the rear left two-layer connecting rope assembly 6 are both connected to the right end of the left rear two-layer distribution beam main girder.
[0074] The number of the left two-layer force distribution beam connecting member assemblies can be determined as required, and in an embodiment of the utility model, the number of the left two-layer force distribution beam connecting member assemblies is six.
[0075] The left two-layer force distribution beam connecting member assemblies can have any suitable structure, and in an embodiment of the utility model, the left two-layer force distribution beam connecting member assemblies comprise a first left connecting rod, a first right connecting rod and a first middle inclined rod, the first left connecting rod and the first right connecting rod are both arranged in the front-rear direction and are arranged left and right from each other, the first left connecting rod and the first right connecting rod are both located between the left front two-layer distribution beam main girder 301 and the left rear two-layer distribution beam main girder and are both connected to the left front two-layer distribution beam main girder 301 and the left rear two-layer distribution beam main girder respectively, the first middle inclined rod is arranged in a right front direction from left to right and is located between the first left connecting rod and the first right connecting rod, and the first middle inclined rod is located between the left front two-layer distribution beam main girder 301 and the left rear two-layer distribution beam main girder and is connected to the left front two-layer distribution beam main girder 301 and the left rear two-layer distribution beam main girder respectively; one position of the left rear two-layer distribution beam main girder is connected to the rear end of the first left connecting rod and the left end of the first middle inclined rod respectively, and one position of the left front two-layer distribution beam main girder 301 is connected to the front end of the first right connecting rod and the right end of the first middle inclined rod respectively.
[0076] Preferably, in the two left two-layer force distribution beam connecting member assemblies adjacent to each other, the first right connecting rod of the left left two-layer force distribution beam connecting member assembly and the first left connecting rod of the right left two-layer force distribution beam connecting member assembly can be shared and combined into one.
[0077] The right two-layer force distribution beam truss 4 can have any suitable structure, please refer to Figure 1 andFigure 4 In a specific embodiment of the present application, the right two-layer force distribution beam truss 4 comprises a right front two-layer distribution beam girder 401, a right rear two-layer distribution beam girder 402 and a right two-layer force distribution beam connector assembly 403, wherein:
[0078] The right front two-layer distribution beam girder 401 and the right rear two-layer distribution beam girder 402 are arranged along the left-right direction and spaced apart front and rear, the right half of the one-layer force distribution beam truss 2 is located above the left end of the right front two-layer distribution beam girder 401 and the left end of the right rear two-layer distribution beam girder 402, the right two-layer force distribution beam connector assembly 403 is located between the right front two-layer distribution beam girder 401 and the right rear two-layer distribution beam girder 402 and connects the right front two-layer distribution beam girder 401 and the right rear two-layer distribution beam girder 402, the number of the right two-layer force distribution beam connector assembly 403 is multiple, multiple right two-layer force distribution beam connector assemblies 403 are arranged in sequence left and right, the two right two-layer connector rope assemblies 7 connect the right front two-layer distribution beam girder 401 and the right rear two-layer distribution beam girder 402 respectively, the upper ends of the right front hoisting rope 12 and the right rear hoisting rope 13 are located below the right front two-layer distribution beam girder 401 and the right rear two-layer distribution beam girder 402 respectively and connect the right front two-layer distribution beam girder 401 and the right rear two-layer distribution beam girder 402 respectively.
[0079] In the case where the right two-layer connector rope assembly 7 comprises a first right two-layer connector rope 701, an intermediate right two-layer connector rope 702 and a second right two-layer connector rope 703, the right end of the first right two-layer connector rope 701 of the front right two-layer connector rope assembly 7 is connected to the right end of the right front two-layer distribution beam girder 401, the right end of the second right two-layer connector rope 703 and the lower end of the intermediate right two-layer connector rope 702 of the front right two-layer connector rope assembly 7 are connected to the left end of the right front two-layer distribution beam girder 401, the right end of the first right two-layer connector rope 701 of the rear right two-layer connector rope assembly 7 is connected to the right end of the right rear two-layer distribution beam girder 402, and the right end of the second right two-layer connector rope 703 and the lower end of the intermediate right two-layer connector rope 702 of the rear right two-layer connector rope assembly 7 are connected to the left end of the right rear two-layer distribution beam girder 402.
[0080] The number of the right two-layer force distribution beam connector assembly 403 can be determined as needed, and in a specific embodiment of the present application, the number of the right two-layer force distribution beam connector assembly 403 is six.
[0081] The right two-layer force distribution beam connector assembly 403 can have any suitable configuration, please refer toFigure 4 As shown in the utility model, in a specific embodiment of the utility model, the right two-layer force distribution beam connecting piece assembly 403 comprises a second left connecting rod 404, a second right connecting rod 405 and a second intermediate inclined rod 406, the second left connecting rod 404 and the second right connecting rod 405 are both arranged along the front-back direction and are arranged left and right and spaced apart from each other, the second left connecting rod 404 and the second right connecting rod 405 are both located between the right front two-layer distribution beam main girder 401 and the right rear two-layer distribution beam main girder 402 and are both connected to the right front two-layer distribution beam main girder 401 and the right rear two-layer distribution beam main girder 402 respectively, the second intermediate inclined rod 406 is arranged obliquely along the direction from left to right towards the right front and is located between the second left connecting rod 404 and the second right connecting rod 405, the second intermediate inclined rod 406 is located between the right front two-layer distribution beam main girder 401 and the right rear two-layer distribution beam main girder 402 and is connected to the right front two-layer distribution beam main girder 401 and the right rear two-layer distribution beam main girder 402 respectively; one of the positions of the right rear two-layer distribution beam main girder 402 is connected to the rear end of the second left connecting rod 404 and the left end of the second intermediate inclined rod 406 respectively, and one of the positions of the right front two-layer distribution beam main girder 401 is connected to the front end of the second right connecting rod 405 and the right end of the second intermediate inclined rod 406 respectively.
[0082] Preferably, in the two right two-layer force distribution beam connecting piece assemblies 403 adjacent left and right, the second right connecting rod 405 of the left right two-layer force distribution beam connecting piece assembly 403 and the second left connecting rod 404 of the right right two-layer force distribution beam connecting piece assembly 403 can be shared and combined into one.
[0083] Figure 4 The second intermediate inclined rod 406 of the left right two-layer force distribution beam connecting piece assembly 403 is inclined in a different direction, and is arranged obliquely along the direction from left to right towards the right rear.
[0084] In use, taking the horizontal arrangement of the wide body long member 16 to be hoisted along the left-right direction as an example, the front side and the rear side of the wide body long member 16 to be hoisted are punched, and a plurality of holes are punched on each side, and the plurality of holes are arranged spaced apart from each other along the left-right direction, the left front hook 10 and the right front hook 14 of the utility model are respectively hooked in the holes on the front side of the wide body long member 16 to be hoisted, the left rear hook 11 and the right rear hook 15 of the utility model are respectively hooked in the holes on the rear side of the wide body long member 16 to be hoisted, and then the main lifting lug 1 can be hoisted by hoisting equipment to hoist the wide body long member 16 to be hoisted as a whole.
[0085] Therefore, this utility model adopts a two-layer distribution hierarchical structure. The main lifting lug is connected to the first-layer distribution beam truss through a first-layer connecting rope assembly. The first-layer distribution beam truss is connected to the second-layer left and second-layer right force distribution beam trusses through the second-layer left and second-layer right connecting rope assemblies, respectively, forming an expanded stable force-bearing system. The second-layer left force distribution beam truss is connected to the front left hook and the rear left hook through the front left and rear left lifting ropes, respectively. The second-layer right force distribution beam truss is connected to the front right hook and the rear right hook through the front right and rear right lifting ropes, respectively. The system is further connected to the front left hook, the rear left hook, and the front right hook. The right and rear hooks are respectively hooked into the holes on the front and rear sides of the wide-body long component, thereby achieving the lateral connection of the wide-body long component through a single-layer distribution beam truss. The lateral connection of the wide-body long component is achieved in sections through the left second-layer force distribution beam truss and the right second-layer force distribution beam truss. The structure is stable and safe and reliable to use. When using this utility model to hoist wide-body long components, the force is distributed and reduced in stages. The hoisting rope does not directly contact the hoisted object, avoiding the problem of permanent structural damage to the hoisted object caused by structural stress concentration. The hoisted object is subjected to reasonable and uniform force and is not prone to deformation. Therefore, it can effectively ensure the quality of the component and realize the hoisting of wide-body long components.
[0086] In summary, the wide-body long component assembly hoisting device of this utility model can achieve the hoisting of wide-body long components while ensuring the distribution and stability of the force, guaranteeing the quality of the components, ensuring safe and reliable hoisting, and featuring ingenious design, simple structure, easy manufacturing, and low manufacturing cost, making it suitable for large-scale promotion and application.
[0087] Therefore, it is evident that the objective of this utility model has been fully and effectively achieved. The function and structural principles of this utility model have been demonstrated and explained in the embodiments. Without departing from the stated principles, any modifications can be made to the implementation methods. Therefore, this utility model includes all modified embodiments based on the spirit and scope of the claims.
Claims
1. A fabricated hoisting device for a wide, long member, characterized by The main lifting lug, a first layer force distribution beam truss, a left second layer force distribution beam truss, a right second layer force distribution beam truss, a first layer connecting rope assembly, a left second layer connecting rope assembly, a right second layer connecting rope assembly, a left front lifting rope, a left rear lifting rope, a left front lifting hook, a left rear lifting hook, a right front lifting rope, a right rear lifting rope, a right front lifting hook and a right rear lifting hook are provided, wherein: The first layer force distribution beam truss is horizontally arranged and arranged along the left-right direction, the main lifting lug is vertically arranged and located above the middle position of the first layer force distribution beam truss, and the first layer connecting rope assembly is located between the main lifting lug and the first layer force distribution beam truss and connected to the main lifting lug and the first layer force distribution beam truss respectively; The left second layer force distribution beam truss and the right second layer force distribution beam truss are both horizontally arranged and arranged along the left-right direction and arranged left and right with each other, the left half and the right half of the first layer force distribution beam truss are located above the right end of the left second layer force distribution beam truss and the left end of the right second layer force distribution beam truss respectively, the left second layer connecting rope assembly is located between the left half of the first layer force distribution beam truss and the left second layer force distribution beam truss and connected to the left half of the first layer force distribution beam truss and the left second layer force distribution beam truss respectively, the right second layer connecting rope assembly is located between the right half of the first layer force distribution beam truss and the right second layer force distribution beam truss and connected to the right half of the first layer force distribution beam truss and the right second layer force distribution beam truss respectively, the number of the left second layer connecting rope assembly and the number of the right second layer connecting rope assembly are both two, and the two left second layer connecting rope assemblies and the two right second layer connecting rope assemblies are arranged left and right with each other; The left front lifting rope and the left rear lifting rope are both vertically arranged and arranged front and back with each other, the upper ends of the left front lifting rope and the left rear lifting rope are both located below the left second layer force distribution beam truss and connected to the left second layer force distribution beam truss, the left front lifting hook and the left rear lifting hook are both vertically arranged and arranged front and back with each other, the left front lifting hook and the left rear lifting hook are located below the lower ends of the left front lifting rope and the left rear lifting rope respectively and connected to the lower ends of the left front lifting rope and the left rear lifting rope respectively and used for hooking the front side and the rear side of the horizontally arranged and arranged along the left-right direction wide body long member respectively, the number of the left front lifting rope is multiple, the left front lifting ropes are arranged left and right with each other, the number of the left rear lifting rope, the number of the left front lifting hook and the number of the left rear lifting hook are the same as the number of the left front lifting rope, and the left rear lifting rope, the left front lifting hook, the left rear lifting hook and the left front lifting rope are arranged one by one. The right front lifting ropes and the right rear lifting ropes are vertically arranged and spaced apart from each other in the front-rear direction, the upper ends of the right front lifting ropes and the right rear lifting ropes are located below the right two-layer force distribution beam trusses and connected to the right two-layer force distribution beam trusses, the right front lifting hooks and the right rear lifting hooks are vertically arranged and spaced apart from each other in the front-rear direction, the right front lifting hooks and the right rear lifting hooks are located below the lower ends of the right front lifting ropes and the right rear lifting ropes and connected to the lower ends of the right front lifting ropes and the right rear lifting ropes respectively and used for hooking the front side of the wide body long member and the rear side of the wide body long member respectively, the number of the right front lifting ropes is multiple, the right front lifting ropes are spaced apart from each other in the left-right direction, the number of the right rear lifting ropes, the number of the right front lifting hooks and the number of the right rear lifting hooks are the same as the number of the right front lifting ropes, and the right rear lifting ropes, the right front lifting hooks, the right rear lifting hooks and the right front lifting ropes are arranged in one-to-one correspondence.
2. The wide flat long member assembly hoist of claim 1 wherein, The one-layer connecting rope assembly comprises left one-layer connecting ropes and right one-layer connecting ropes, the left one-layer connecting ropes and the right one-layer connecting ropes are arranged obliquely along the left-right direction and arranged in a spread-toe shape along the left-right direction, the right ends of the left one-layer connecting ropes and the left ends of the right one-layer connecting ropes are connected to the main lifting lugs, and the left ends of the left one-layer connecting ropes and the right ends of the right one-layer connecting ropes are connected to the one-layer force distribution beam trusses.
3. The wide flat long member assembly hoist of claim 1 wherein, The left two-layer connecting rope assembly comprises first left two-layer connecting ropes, intermediate left two-layer connecting ropes and second left two-layer connecting ropes, the first left two-layer connecting ropes and the second left two-layer connecting ropes are arranged obliquely upwards to the right along the left-to-right direction and spaced apart from each other in the left-right direction, the angle between the first left two-layer connecting ropes and the horizontal plane is smaller than the angle between the second left two-layer connecting ropes and the horizontal plane, the left ends and the right ends of the first left two-layer connecting ropes are connected to the left end of the left two-layer force distribution beam truss and the left end of the left half of the one-layer force distribution beam truss respectively, the left ends and the right ends of the second left two-layer connecting ropes are connected to the right end of the left two-layer force distribution beam truss and the right end of the left half of the one-layer force distribution beam truss respectively, and the intermediate left two-layer connecting ropes are vertically arranged and located between the first left two-layer connecting ropes and the second left two-layer connecting ropes, the upper ends and the lower ends of the intermediate left two-layer connecting ropes are connected to the intermediate position of the left half of the one-layer force distribution beam truss and the right end of the left two-layer force distribution beam truss respectively.
4. The wide flat long member assembly hoist of claim 1 wherein, The right two-layer connecting rope assembly comprises a first right two-layer connecting rope, a middle right two-layer connecting rope and a second right two-layer connecting rope, the second right two-layer connecting rope and the first right two-layer connecting rope are both arranged obliquely upwards leftwards along a right-to-left direction and are arranged left and right with each other, an angle between the first right two-layer connecting rope and a horizontal plane is smaller than an angle between the second right two-layer connecting rope and the horizontal plane, right ends and left ends of the first right two-layer connecting rope are connected with a right end of the right two-layer force distribution beam truss and a right end of a right half of the one-layer force distribution beam truss respectively, right ends and left ends of the second right two-layer connecting rope are connected with a left end of the right two-layer force distribution beam truss and a left end of the right half of the one-layer force distribution beam truss respectively, the middle right two-layer connecting rope is arranged vertically and is located between the second right two-layer connecting rope and the first right two-layer connecting rope, upper ends and lower ends of the middle right two-layer connecting rope are connected with a middle position of the right half of the one-layer force distribution beam truss and the right end of the right two-layer force distribution beam truss respectively.
5. The wide-flange long member assembly hoist of claim 1, wherein, The number of the left front hanging ropes and the number of the right front hanging ropes are both 7.
6. The wide-flange long member assembly hoist of claim 1, wherein, The left front hanging hook, the left rear hanging hook, the right front hanging hook and the right rear hanging hook are all S-shaped hanging hooks.
7. The wide-flange beam assembly hoist of claim 1, wherein: The main hanging lug comprises a front fixed plate, a rear fixed plate, a first fixed rod, a second fixed rod and a third fixed rod, the front fixed plate and the rear fixed plate are both arranged vertically and are both arranged along the left-right direction and are arranged front and back with each other, the first fixed rod, the second fixed rod and the third fixed rod are all arranged along a front-rear direction and are all located between the front fixed plate and the rear fixed plate and are all connected with the front fixed plate and the rear fixed plate respectively, the second fixed rod and the third fixed rod are arranged left and right with each other and are located left and right of a lower position of the first fixed rod respectively, the one-layer connecting rope assembly is connected with the second fixed rod and the third fixed rod respectively.
8. The wide-flange beam assembly hoist of claim 1, wherein: The one-layer force distribution beam truss comprises a one-layer distribution beam upper main beam, a front one-layer distribution beam lower main beam, a rear one-layer distribution beam lower main beam and a one-layer distribution beam connecting piece assembly, wherein: The one-layer distribution beam upper main beam is arranged horizontally and along the left-right direction, the front one-layer distribution beam lower main beam and the rear one-layer distribution beam lower main beam are both arranged horizontally and are both arranged along the left-right direction and are arranged front and back with each other, the front one-layer distribution beam lower main beam and the rear one-layer distribution beam lower main beam are located front and back of a lower position of the one-layer distribution beam upper main beam respectively, the one-layer distribution beam connecting piece assembly is located between the one-layer distribution beam upper main beam, the front one-layer distribution beam lower main beam and the rear one-layer distribution beam lower main beam and is connected with the one-layer distribution beam upper main beam, the front one-layer distribution beam lower main beam and the rear one-layer distribution beam lower main beam respectively, the number of the one-layer distribution beam connecting piece assembly is multiple, and multiple layer distribution beam connecting piece assemblies are arranged left and right in sequence. The one-layer connecting rope assembly connects the upper main beam of the one-layer distribution beam, the left half of the previous one-layer distribution beam lower main beam and the left half of the next one-layer distribution beam lower main beam are located above the right end of the left two-layer force distribution beam truss, the right half of the previous one-layer distribution beam lower main beam and the right half of the next one-layer distribution beam lower main beam are located above the left end of the right two-layer force distribution beam truss, the two left two-layer connecting rope assemblies are respectively located below the left half of the previous one-layer distribution beam lower main beam and the left half of the next one-layer distribution beam lower main beam and are connected to the left half of the previous one-layer distribution beam lower main beam and the left half of the next one-layer distribution beam lower main beam, and the two right two-layer connecting rope assemblies are respectively located below the right half of the previous one-layer distribution beam lower main beam and the right half of the next one-layer distribution beam lower main beam and are connected to the right half of the previous one-layer distribution beam lower main beam and the right half of the next one-layer distribution beam lower main beam.
9. The wide-flange beam assembly hoist of claim 1, wherein, The left two-layer force distribution beam truss comprises a left front two-layer distribution beam main beam, a left rear two-layer distribution beam main beam and a left two-layer force distribution beam connecting member assembly, wherein: The left front two-layer distribution beam main beam and the left rear two-layer distribution beam main beam are arranged along the left-right direction and are spaced apart from each other in the front-rear direction, the left half of the one-layer force distribution beam truss is located above the right end of the left front two-layer distribution beam main beam and the right end of the left rear two-layer distribution beam main beam, the left two-layer force distribution beam connecting member assembly is located between the left front two-layer distribution beam main beam and the left rear two-layer distribution beam main beam and connects the left front two-layer distribution beam main beam and the left rear two-layer distribution beam main beam, the number of the left two-layer force distribution beam connecting member assemblies is multiple, the multiple left two-layer force distribution beam connecting member assemblies are sequentially arranged in the left-right direction, the two left two-layer connecting rope assemblies connect the left front two-layer distribution beam main beam and the left rear two-layer distribution beam main beam, and the upper ends of the left front hoisting rope and the left rear hoisting rope are located below the left front two-layer distribution beam main beam and the left rear two-layer distribution beam main beam and connect the left front two-layer distribution beam main beam and the left rear two-layer distribution beam main beam.
10. The wide-flange beam assembly hoist of claim 1, wherein: The right two-layer force distribution beam truss comprises a right front two-layer distribution beam main beam, a right rear two-layer distribution beam main beam and a right two-layer force distribution beam connecting member assembly, wherein: The right front two-layer distribution beam main girder and the right rear two-layer distribution beam main girder are arranged along the left-right direction and are arranged in front of and behind each other, the right half of the one-layer force distribution beam truss is located above the left end of the right front two-layer distribution beam main girder and the left end of the right rear two-layer distribution beam main girder, the right two-layer force distribution beam connector assembly is located between the right front two-layer distribution beam main girder and the right rear two-layer distribution beam main girder and connects the right front two-layer distribution beam main girder and the right rear two-layer distribution beam main girder, the number of the right two-layer force distribution beam connector assembly is multiple, multiple right two-layer force distribution beam connector assemblies are arranged in sequence from left to right, the two right two-layer connector rope assemblies are connected to the right front two-layer distribution beam main girder and the right rear two-layer distribution beam main girder respectively, and the upper end of the right front hoisting rope and the upper end of the right rear hoisting rope are located below the right front two-layer distribution beam main girder and the right rear two-layer distribution beam main girder respectively and are connected to the right front two-layer distribution beam main girder and the right rear two-layer distribution beam main girder respectively.