Glass hoisting vertical transportation device
By designing a detachable glass hoisting vertical transportation device, the problem of existing equipment being bulky and inconvenient to move and transport has been solved, enabling convenient movement and transportation of the equipment and improving the operational efficiency of the construction site.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HEBEI JIANGONGJITUAN DECORATION ENG CO LTD
- Filing Date
- 2025-05-09
- Publication Date
- 2026-04-21
AI Technical Summary
Existing glass hoisting equipment occupies a large volume during use, making it inconvenient to move and transport.
A glass hoisting vertical transportation device was designed, including a mobile frame, a winch, a crossbeam, and a counterweight frame. Through detachable connection and installation, each part can be disassembled and moved individually, reducing the space occupied.
It enables convenient movement and transportation of equipment, reduces space occupation, and improves the operational efficiency of the construction site.
Smart Images

Figure CN224147610U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of hoisting equipment technology, specifically relating to a vertical transport device for glass hoisting. Background Technology
[0002] During interior decoration or glass curtain wall installation, hoisting equipment is typically used to lift doors, windows, or glass to a designated floor before installing the glass and the glass curtain wall. Therefore, during construction, hoisting equipment needs to be installed at the windows on the designated floor to facilitate the transport of doors, windows, or glass from the ground to the construction site. Since the hoisting equipment needs to be moved to the next floor after the completion of a single floor's construction, most existing hoisting equipment uses welded connections, resulting in a large volume and inconvenience for overall transportation, causing inconvenience to on-site construction. Utility Model Content
[0003] This utility model provides a glass hoisting vertical transportation device, which aims to solve the problem that existing glass hoisting equipment occupies a large volume and is inconvenient to move and transport during use.
[0004] To achieve the above objectives, the technical solution adopted by this utility model is: to provide a glass hoisting vertical transportation device, comprising:
[0005] A mobile frame, on which vertical poles are detachably mounted;
[0006] A winch cart is provided at an interval from the mobile frame, and a winch is installed on the winch cart.
[0007] A crossbeam is detachably installed between the movable frame and the winch, for connecting the winch and the movable frame. A hoisting frame is also installed between the crossbeam and the upright.
[0008] A counterweight frame is inserted into the side of the winch car away from the moving frame.
[0009] In one possible implementation, the movable frame includes horizontal and vertical bars arranged perpendicularly to each other, with one end of the vertical bar fixedly installed in the middle of the horizontal bar, and the vertical bar inserted inside the horizontal beam.
[0010] In one possible implementation, locking casters are installed at both ends of the crossbar and at the end of the longitudinal bar furthest from the crossbar.
[0011] In one possible implementation, the winch includes a mounting frame for mounting the winch, the bottom of the mounting frame having a positioning groove for accommodating the crossbeam, and the mounting frame also having a fastener for fixing the crossbeam.
[0012] In one possible implementation, the fasteners are provided on both sides of the crossbeam, and the fasteners include two wing plates that are detachably mounted on the crossbeam and the mounting bracket, respectively.
[0013] In one possible implementation, at least two sleeves are also installed at the bottom of the mounting bracket, and a plug rod that can be inserted into the sleeve is fixedly installed on the counterweight frame, the plug rod extending out of the end of the sleeve.
[0014] In one possible implementation, two parallel side plates are fixedly installed on the top of the mobile frame, and two parallel upright plates are fixedly installed between the two side plates. The upright is inserted between the two upright plates, and fixing holes are provided between the upright plates and the upright.
[0015] In one possible implementation, the hoisting frame includes:
[0016] A connecting bracket is detachably mounted on the top of the upright;
[0017] An extension rod, one end of which is detachably mounted on the connecting frame, and the other end of which extends outward;
[0018] The rear support rod is detachably mounted on the connecting frame at one end and hinged to the crossbeam at the other end.
[0019] In one possible implementation, a front support rod is hinged to the end of the extension rod away from the connecting frame, and the front support rod is detachably mounted between the two side plates.
[0020] In one possible implementation, a diagonal support rod is hinged to the middle of the rear support rod, and one end of the diagonal support rod is detachably installed between the two side plates.
[0021] Compared with the prior art, the solution shown in this application embodiment includes a mobile frame and a winch, both with locking casters installed at their bottoms. A crossbeam is detachably connected between the mobile frame and the winch, and a vertical pole is detachably installed on the top of the mobile frame. A lifting frame is detachably installed between the vertical pole and the crossbeam, and a counterweight frame is inserted on the side of the winch away from the mobile frame. In use, the various parts of this application can be assembled separately. In particular, the mobile frame and winch, being quite heavy, can be disassembled and moved and transported individually. The counterweight frame, vertical pole, crossbeam, and lifting frame can all be stored independently, reducing space occupation and facilitating the transportation and transfer of the entire equipment. Attached Figure Description
[0022] Figure 1A schematic diagram of the structure of the glass hoisting vertical transportation device provided in this embodiment of the utility model;
[0023] Figure 2 A schematic diagram of the connection structure between the movable frame and the upright provided in an embodiment of this utility model;
[0024] Figure 3 This is a schematic diagram of the connection structure between the winch and the crossbeam provided in an embodiment of the present utility model.
[0025] Explanation of reference numerals in the attached figures:
[0026] 1. Moving frame; 11. Horizontal bar; 12. Vertical bar; 13. Vertical bar; 14. Side plate; 15. Vertical plate; 2. Winch; 21. Mounting frame; 22. Fastener; 23. Sleeve; 3. Crossbeam; 4. Lifting frame; 41. Connecting frame; 42. Extension rod; 43. Rear support rod; 44. Front support rod; 45. Diagonal support rod; 5. Counterweight frame; 51. Insert rod; 6. Locking casters. Detailed Implementation
[0027] To make the technical problems, technical solutions, and beneficial effects of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.
[0028] Please refer to the following: Figures 1 to 3 The glass hoisting vertical transport device provided by this utility model will now be described. The glass hoisting vertical transport device includes a movable frame 1, a winch 2, a crossbeam 3, and a counterweight frame 5. A vertical pole 13 is detachably installed on the movable frame 1; the winch 2 is spaced apart from the movable frame 1 and a winch is installed on the winch 2; the crossbeam 3 is detachably installed between the movable frame 1 and the winch 2 to connect the winch 2 and the movable frame 1, and a hoisting frame 4 is also installed between the crossbeam 3 and the vertical pole 13; the counterweight frame 5 is inserted on the side of the winch 2 away from the movable frame 1.
[0029] Compared with the prior art, the glass hoisting vertical transportation device provided in this embodiment is equipped with a movable frame 1 and a winch 2, both with locking casters 6 installed at their bottoms. A crossbeam 3 is detachably connected between the movable frame 1 and the winch 2, and a vertical pole 13 is detachably installed on the top of the movable frame 1. A hoisting frame 4 is detachably installed between the vertical pole 13 and the crossbeam 3, and a counterweight frame 5 is inserted on the side of the winch 2 away from the movable frame 1. In use, the various parts can be assembled, especially the movable frame 1 and the winch 2. Since the movable frame 1 and the winch 2 are heavy, they can be disassembled and moved and transported separately. The counterweight frame 5, the vertical pole 13, the crossbeam 3, and the hoisting frame 4 can all be stored independently to reduce space occupation, thereby facilitating the transportation and transfer of the entire set of equipment.
[0030] Specifically, in this embodiment, the device is divided into multiple modules, which are detachably connected to each other, facilitating assembly and subsequent transportation.
[0031] Specifically, in this embodiment, a winch is installed on the winch trolley 2, and the wire rope on the winch is wound around the hoisting frame 4 for hoisting doors, windows or glass.
[0032] In some embodiments, the aforementioned movable frame 1 may adopt the following... Figure 1 , Figure 2 The structure shown. See also... Figure 1 , Figure 2 The movable frame 1 includes a horizontal bar 11 and a vertical bar 12 arranged perpendicularly to each other. One end of the vertical bar 12 is fixedly installed in the middle of the horizontal bar 11, and the vertical bar 12 is inserted into the crossbeam 3. The end of the vertical bar 12 is fixedly installed in the middle of the horizontal bar 11 by welding. The crossbeam 3 is made of square tubing, and the vertical bar 12 is slidably disposed inside the crossbeam 3. Fixing holes are provided on both the vertical bar 12 and the crossbeam 3. The vertical bar 12 and the crossbeam 3 are connected by bolts passing through the fixing holes and then nuts, thus achieving a detachable connection between the vertical bar 12 and the crossbeam 3.
[0033] Preferably, in this embodiment, multiple fixing holes are provided on the longitudinal rod 12 along its length, and multiple fixing holes are provided on the crossbeam 3 along its length. The spacing between two adjacent fixing holes on the longitudinal rod 12 is the same as the spacing between two adjacent fixing holes on the crossbeam 3. Multiple bolts can be used to fix the relative positions of the longitudinal rod 12 and the crossbeam 11.
[0034] In some embodiments, the crossbar 11 may be adopted as follows: Figure 1 , Figure 2 The structure shown. See also... Figure 1 , Figure 2Locking casters 6 are installed at both ends of the crossbar 11 and at the end of the longitudinal bar 12 away from the crossbar 11. Three locking casters 6 are provided on the movable frame 1, located at both ends of the crossbar 11 and the end of the longitudinal bar 12, thereby improving the stability of the movable frame 1. At the same time, the locking casters 6 facilitate the movement of the movable frame 1 and its fixed position, saving labor for on-site operators.
[0035] In some embodiments, the winch 2 described above can be as follows: Figure 3 The structure shown. See also Figure 3 The winch trolley 2 includes a mounting frame 21 for mounting the winch. The bottom of the mounting frame 21 has a recessed positioning groove for accommodating the crossbeam 3, and the mounting frame 21 also has a fixing member 22 for fixing the crossbeam 3. The mounting frame 21 is welded from square tubing and includes two parallel square tubing spaced apart, both of which are oriented along the axis of the winch. Positioning grooves are provided at the bottom of both square tubing, allowing the crossbeam 3 to be snapped into the grooves to achieve positional positioning of the crossbeam 3 and the winch trolley 2 along the winch axis. The crossbeam 3 is then fixed to the mounting frame 21 by the fixing member 22, thus achieving a fixed connection between the crossbeam 3 and the mounting frame 21.
[0036] Preferably, in this embodiment, a plurality of locking casters are installed at the bottom of the mounting frame 21 to support the mounting frame 21 and facilitate the movement of the winch 2.
[0037] Specifically, in this embodiment, after the transport device is assembled, the entire transport device is supported by the mobile frame 1 and the winch 2. If the construction space is sufficient, the entire transport device can be moved directly. If the construction space is small, each part can be disassembled and stored and transported separately, thus improving the convenience of moving the entire device.
[0038] In some embodiments, the fastener 22 may be adopted as follows: Figure 3 The structure shown. See also Figure 3 Both sides of the crossbeam 3 are equipped with fixing members 22, and each fixing member 22 includes two detachable flanges that can be detachably mounted on the crossbeam 3 and the mounting bracket 21, respectively. The fixing members 22 are made of angle steel, and each flange has bolt holes. Corresponding threaded holes are provided on both the crossbeam 3 and the mounting bracket 21. When installing the fixing members 22, they can first be bolted to the crossbeam 3, and then the crossbeam 3 can be placed into the positioning groove at the bottom of the mounting bracket 21. Finally, the fixing members 22 are bolted to the bottom of the mounting bracket 21. The fixing members 22 limit the crossbeam 3 within the positioning groove, ensuring the relative position between the crossbeam 3 and the mounting bracket 21.
[0039] In some embodiments, the mounting bracket 21 may be adopted as follows: Figure 3 The structure shown. See also Figure 3 At least two sleeves 23 are installed at the bottom of the mounting frame 21. A rod 51, which can be inserted into the sleeve 23, is fixedly installed on the counterweight frame 5, extending beyond the end of the sleeve 23. Multiple sleeves 23 are arranged parallel to each other at intervals. The rod 51 is also fixedly installed on the counterweight frame 5, inserted into the sleeve 23, thus completing the connection between the counterweight frame 5 and the mounting frame 21. The counterweight frame 5 is used to place heavy objects to maintain the balance of the lifting frame 4 during hoisting. The connection method between the rod 51 and the sleeve 23 facilitates the connection and disassembly between the counterweight frame 5 and the winch 2. The winch 2 and the counterweight frame 5 can be moved independently, facilitating the later movement of the entire device.
[0040] Specifically, in this embodiment, the length of the insert rod 51 extending out of the counterweight frame 5 is greater than the length of the sleeve 23, thereby increasing the support force on the counterweight frame 5 and ensuring the stability of the counterweight frame 5 installed on the mounting bracket 21.
[0041] In some embodiments, the aforementioned movable frame 1 may adopt the following... Figure 1 The structure shown. See also Figure 1 Two parallel side plates 14 are fixedly installed at a distance from the top of the movable frame 1. Two parallel upright plates 15 are also fixedly installed between the two side plates 14. An upright 13 is inserted between the two upright plates 15, and fixing holes are provided between both the upright plates 15 and the upright 13. The two side plates 14 are fixedly installed at a distance from the top of the movable frame 1, and are parallel to each other along the length of the crossbar 11. Two upright plates 15 are also fixedly installed between the two side plates 14, and are perpendicular to each other. An upright 13 is inserted between the two upright plates 15, and fixing holes are provided on both the upright plates 15 and the upright 13. When the upright 13 abuts against the movable frame 1, the fixing holes on the upright 13 align with the fixing holes on the upright plates 15, and the fixing holes on the upright 13 penetrate the upright 13, allowing the upright 13 to be fixed between the two upright plates 15 using bolts and nuts.
[0042] Preferably, in this embodiment, multiple fixing holes are provided on both the upright 13 and the upright plate 15. The multiple fixing holes are spaced apart in the vertical direction, and the distance between two adjacent fixing holes is equal. Multiple sets of bolts and nuts can be used to fix the upright 13.
[0043] In some embodiments, the aforementioned lifting frame 4 can be adopted as follows: Figure 1 The structure shown. See also Figure 1The hoisting frame 4 includes a connecting frame 41, an extension rod 42, and a rear support rod 43. The connecting frame 41 is detachably mounted on the top of the upright 13; one end of the extension rod 42 is detachably mounted on the connecting frame 41, and the other end extends outward; one end of the rear support rod 43 is detachably mounted on the connecting frame 41, and the other end is hinged to the crossbeam 3. The upright 13 is hinged to the connecting frame 41 by a pivot pin, so that when the upright 13 is removed from the moving frame 1, it can be stored in a parallel position with the extension rod 42 for easy transportation. The rear support rod 43 is detachably mounted on the connecting frame 41 by a screw, so that the rear support rod 43 can be removed from the connecting frame 41 and stored on the crossbeam 3 for easy transportation.
[0044] Specifically, in this embodiment, the extension rod 42 extends to the outside of the building, and guide wheels for guiding the steel wire rope are provided on both the extension rod 42 and the connecting frame 41. The steel wire on the winch can be guided by the guide wheels to realize the hoisting of glass or doors and windows.
[0045] Preferably, in this embodiment, the lengths of both the upright 13 and the rear support rod 43 are adjustable. Both are assembled from two relatively sliding square tubes, and the positions of the two opposing square tubes are fixed using bolts or pins. By adjusting the lengths of the upright 13 and the rear support rod 43, the height of the extension rod 42 can be adjusted, making it suitable for different construction environments.
[0046] In some embodiments, the extension rod 42 may be adopted as follows: Figure 1 The structure shown. See also Figure 1 A front support rod 44 is hinged to one end of the extension rod 42 away from the connecting frame 41. The front support rod 44 is detachably installed between the two side plates 14. The front support rod 44 is hinged to the middle of the extension rod 42, and its other end is detachably installed between the two side plates 14 via a pin or bolt. The function of the front support rod 44 is to support the extension rod 42 and ensure its strength. Furthermore, the front support rod 44 can be removed from between the two side plates 14 and then stored back onto the extension rod 42.
[0047] Preferably, in this embodiment, the front support rod 44 is hinged to the extension rod 42 by a pin or bolt, and is detachably mounted on the extension rod 42. This allows the front support rod 44 to be removed from the extension rod 42 for separate storage and transportation.
[0048] Specifically, in this embodiment, the front support rod 44 is an adjustable length structure with the same structure as the rear support rod 43, which can effectively support the extension rod 42 after the height of the extension rod 42 changes.
[0049] In some embodiments, the aforementioned rear support rod 43 may be adopted as follows: Figure 1 The structure shown. See also Figure 1A diagonal support rod 45 is hinged to the middle of the rear support rod 43, with one end of the diagonal support rod 45 detachably installed between the two side plates 14. The diagonal support rod 45 supports the middle of the rear support rod 43, improving its strength. The bottom end of the diagonal support rod 45 is detachably installed between the two side plates 14 via bolts or pins. The top end of the diagonal support rod 45 is hinged to the rear support rod 43, allowing it to be removed from between the two side plates 14 and stored on the rear support rod 43 for easy storage and transportation. Furthermore, the diagonal support rod 45 can be detachably installed in the middle of the rear support rod 43 via bolts or pins, enabling it to be removed separately for storage or relocation.
[0050] Specifically, in this embodiment, the inclined support rod 45 is an adjustable-length structure similar to the rear support rod 43.
[0051] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A glass hoist vertical transport device, characterized by, include: A movable frame (1) is provided, on which a vertical pole (13) is detachably mounted; A winch (2) is provided at an interval from the moving frame (1), and a winch is installed on the winch (2); A crossbeam (3) is detachably installed between the movable frame (1) and the winch (2) for connecting the winch (2) and the movable frame (1). A hoisting frame (4) is also installed between the crossbeam (3) and the upright (13). The counterweight frame (5) is inserted into the winch (2) on the side away from the moving frame (1).
2. The glass hoist vertical transport of claim 1, wherein, The movable frame (1) includes a horizontal bar (11) and a vertical bar (12) arranged perpendicularly to each other. One end of the vertical bar (12) is fixedly installed in the middle of the horizontal bar (11), and the vertical bar (12) is inserted into the crossbeam (3).
3. The glass hoist vertical transport of claim 2, wherein, Locking casters (6) are installed at both ends of the crossbar (11) and at the end of the longitudinal bar (12) away from the crossbar (11).
4. The glass hoist vertical transport of claim 1, wherein, The winch (2) includes a mounting frame (21) for mounting the winch. The bottom of the mounting frame (21) is recessed with a positioning groove for accommodating the crossbeam (3), and the mounting frame (21) is also provided with a fastener (22) for fixing the crossbeam (3).
5. The glass hoist vertical transport of claim 4, wherein, The fixing member (22) is provided on both sides of the crossbeam (3), and the fixing member (22) includes two wing plates that are detachably installed on the crossbeam (3) and the mounting bracket (21).
6. The glass hoist vertical transport of claim 4, wherein, At least two sleeves (23) are also installed at the bottom of the mounting bracket (21). A plug rod (51) that can be inserted into the sleeve (23) is fixedly installed on the counterweight frame (5). The end of the plug rod (51) extending out of the sleeve (23) is provided.
7. The glass hoist vertical transport of claim 1, wherein, The top of the mobile frame (1) is fixedly installed with two parallel side plates (14) spaced apart. Two parallel upright plates (15) are also fixedly installed between the two side plates (14). The upright (13) is inserted between the two upright plates (15), and fixing holes are provided between the upright plates (15) and the upright (13).
8. The glass hoist vertical transport of claim 7, wherein, The hoisting frame (4) includes: A connecting bracket (41) is detachably mounted on the top of the upright (13); An extension rod (42) is detachably mounted on the connecting frame (41) at one end and extends outward at the other end. The rear support rod (43) is detachably mounted on the connecting frame (41) at one end and hinged to the crossbeam (3) at the other end.
9. The glass hoist vertical transport of claim 8, wherein, The extension rod (42) is hinged to a front support rod (44) at one end away from the connecting frame (41), and the front support rod (44) is detachably installed between the two side plates (14).
10. The glass hoist vertical transport of claim 8, wherein, A diagonal support rod (45) is hinged to the middle of the rear support rod (43), and one end of the diagonal support rod (45) is detachably installed between the two side plates (14).