A saddle for cold-rolled galvanized steel coils
By designing a cold-rolled galvanized steel coil saddle linked by sliding parts and flip plates, the problem of poor stability of existing steel coil saddles on different diameters is solved, achieving stable support effect and reducing transportation risks.
Patent Information
- Application Number
- CN202210636489.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-06-07
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2042-06-07
AI Technical Summary
The existing steel coil saddles have poor stability when placing steel coils of different diameters, which can easily lead to container damage or safety accidents during transportation.
A cold-rolled galvanized steel coil saddle including a bracket assembly, a press plate assembly and an angle adjustment plate group is designed. Through the linkage structure of the slider and the flip plate, the deflection angle of the flip plate is adjusted using the self-weight of the steel coil to adapt to steel coils of different diameters and weights.
It achieves stable support for steel coils of different diameters and weights, reducing damage and safety risks during transportation.
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Figure CN114987938B_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of steel coil saddles, and particularly relates to a cold-rolled galvanized steel coil saddle. Background Art
[0002] To facilitate loading, unloading and lifting, steel coils are mostly placed horizontally in containers or on the ground. If the fixing method is not appropriate, the steel coils may slide or roll during transportation and hit the inner wall of the container, causing damage to the container, or rolling on the site and causing safety accidents. Common methods for fixing steel coils include warehouse stacking and the use of special saddles or special brackets.
[0003] Currently, the existing steel coil saddles on the market are all one-piece molded designs, and the V-angle in their V-shaped structures is fixed, which results in poor stability when placing steel coils of different diameters. Summary of the Invention
[0004] In view of the deficiencies in the prior art, an object of the embodiments of the present invention is to provide a cold-rolled galvanized steel coil saddle to solve the problems in the above-mentioned background technology.
[0005] To achieve the above object, the present invention provides the following technical solutions:
[0006] A cold-rolled galvanized steel coil saddle comprises a bracket assembly, wherein the bracket assembly comprises a main base, a transverse groove and a rack, wherein the transverse grooves are symmetrically arranged on both sides of the main base, and the rack is symmetrically arranged on the bottom end of the main base;
[0007] A pressure plate assembly, comprising a pressure plate, a driving block and a driving slot. The pressure plate is slidably inserted into the middle of the main base, and driving blocks are assembled at both ends of the pressure plate. The driving blocks are provided with driving slots.
[0008] The angle adjustment plate group includes a sliding member, a follower, a bottom gear and a flip plate. The sliding member is elastically slidably assembled in the transverse groove, and a follower is assembled at one end of the sliding member. The follower is slidably assembled in the driving groove. The bottom gear is arranged at the bottom of the sliding member and is meshed with the rack. A flip plate is also assembled on the top of the sliding member, and the flip plate is linked to the bottom gear.
[0009] As a further solution of the present invention, the bracket assembly also includes a positioning groove and a guide rod. The positioning groove is arranged in the middle of the main base to limit the sliding trajectory of the pressure plate, and the guide rod is fixedly arranged in the transverse groove to limit the sliding trajectory of the sliding part.
[0010] As a further solution of the present invention, the driving groove is arranged obliquely in the driving block.
[0011] As a further solution of the present invention, the angle adjustment plate group also includes a transmission gear and a transmission chain. The transmission gear is assembled on one side of the bottom gear and is meshed with the bottom gear. One end of the transmission chain is assembled with the transmission gear, and the other end is assembled with the flip plate to drive the rotation of the flip plate.
[0012] As a further solution of the present invention, the indexing diameters of the bottom gear and the transmission gear are matched.
[0013] In summary, the embodiments of the present invention have the following beneficial effects compared with the prior art:
[0014] The present invention uses sliding parts slidably arranged on both sides of the main base and flip plates rotatably assembled on the sliding parts. During the placement of the steel coil, the weight of the steel coil can press the pressure plate to move, thereby pushing the sliding parts to slide horizontally in the main base, thereby adjusting the deflection angle of the flip plate, so that the device can adapt to steel coils of different diameters and weights and have a more stable support effect. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 This is a schematic structural diagram of a cold-rolled galvanized steel coil saddle provided in one embodiment of the present invention;
[0016] Figure 2 This is a schematic structural diagram of the cold-rolled galvanized steel coil saddle shown in FIG. 1 , which is an embodiment of the present invention;
[0017] Figure 3 A schematic diagram of the three-dimensional structure of a middle pressure plate of a cold-rolled galvanized steel coil saddle provided in one embodiment of the present invention;
[0018] Figure markings: 1-bracket assembly, 101-main base, 102-transverse groove, 103-positioning groove, 104-guide rod, 105-rack, 2-pressure plate assembly, 201-pressure plate, 202-driving block, 203-driving groove, 3-angle adjustment plate group, 301-sliding part, 302-driven part, 303-bottom gear, 304-transmission gear, 305-transmission chain, 306-flip plate. DETAILED DESCRIPTION
[0019] In order to more clearly illustrate the structural features and effects of the present invention, the present invention is described in detail below with reference to the accompanying drawings and specific embodiments.
[0020] like Figure 1-3As shown, a cold-rolled galvanized steel coil saddle in one embodiment of the present invention includes a bracket assembly 1, the bracket assembly 1 includes a main base 101, a transverse groove 102 and a rack 105, the transverse grooves 102 are symmetrically arranged on both sides of the main base 101, and the rack 105 is symmetrically arranged on the bottom end of the main base 101; a pressure plate assembly 2, the pressure plate assembly 2 includes a pressure plate 201, a driving block 202 and a driving groove 203, the pressure plate 201 is slidably inserted in the middle of the main base 101, and the driving blocks 202 are assembled at both ends of the pressure plate 201, and the driving blocks 202 are arranged on the driving blocks 202. The movable groove 203; and the angle adjustment plate group 3, the angle adjustment plate group 3 includes a sliding member 301, a follower 302, a bottom gear 303 and a flip plate 306, the sliding member 301 is elastically slidably assembled in the transverse groove 102, and one end of the sliding member 301 is equipped with a follower 302, the follower 302 is slidably assembled in the driving groove 203, the bottom gear 303 is arranged at the bottom of the sliding member 301, and is meshed with the rack 105, and the top of the sliding member 301 is also equipped with a flip plate 306, and the flip plate 306 is linked to the bottom gear 303.
[0021] In actual application of this embodiment, when the saddle is needed to support the galvanized steel coil, the steel coil is hoisted onto the main base 101 and then placed on the pressure plate 201. When the pressure plate 201 slides toward one side of the main base 101 under pressure, the driving blocks 202 on both sides of the pressure plate 201 slide toward one side of the main base 101 synchronously, and the driving groove 203 arranged in the driving block 202 can synchronously drive the follower 302 assembled in the driving groove 203 to move, so that the follower 302 pushes the sliding member 301 in the transverse groove 102. Sliding, when the sliding member 301 is in the process of horizontal sliding, the bottom gear 303 at the bottom of the sliding member 301 is directional rotated during the process of meshing with the rack 105, and the bottom gear 303 can synchronously drive the flip plate 306 on the other side of the sliding member 301 to rotate during rotation, thereby adjusting the deflection angle of the flip plate 306 relative to the sliding member 301. For steel coils of different diameters and weights, the deflection angle of the flip plate 306 can be adaptively changed, thereby achieving a stable support effect, and the steel coil can be automatically reset after being hoisted and moved away, which is convenient for placing subsequent steel coils.
[0022] like Figure 1 As shown, in a preferred embodiment of the invention, the bracket assembly 1 also includes a positioning groove 103 and a guide rod 104. The positioning groove 103 is arranged in the middle of the main base 101 to limit the sliding trajectory of the pressure plate 201, and the guide rod 104 is fixedly arranged in the transverse groove 102 to limit the sliding trajectory of the sliding member 301.
[0023] In actual application of this embodiment, the positioning groove 103 is arranged in the middle of the main base 101, which is used to limit the sliding trajectory of the pressure plate 201, and the guide rod 104 is fixedly arranged in the transverse groove 102, and is assembled and connected to the sliding member 301, which is used to limit the movement trajectory of the sliding member 301, and an elastic member can be assembled on the guide rod 104 to drive the elastic reset of the sliding member 301.
[0024] like Figure 1 and 2 As shown, in a preferred embodiment of the invention, the driving groove 203 is arranged obliquely in the driving block 202.
[0025] In actual application of this embodiment, since the driving groove 203 is arranged at an angle in the driving block 202, when the pressure plate 201 drives the driving block 202 to move longitudinally, the driving groove 203 can synchronously drive the follower 302 to move horizontally, and the inclination direction of the driving groove 203 is matched with the movement direction of the sliding member 301.
[0026] like Figure 1 and 2 As shown, in a preferred embodiment of this embodiment, the angle adjustment plate group 3 also includes a transmission gear 304 and a transmission chain 305, the transmission gear 304 is assembled on one side of the bottom gear 303 and is meshed with the bottom gear 303, one end of the transmission chain 305 is assembled and connected to the transmission gear 304, and the other end is assembled and connected to the flip plate 306, for driving the rotation of the flip plate 306; the dividing diameters of the bottom gear 303 and the transmission gear 304 are matched.
[0027] In actual application of this embodiment, when the bottom gear 303 is engaged and rotated, it can drive the transmission gear 304 to rotate synchronously, and the transmission gear 304 can drive the flip plate 306 to rotate synchronously through the transmission chain 305, so that the flip plate 306 rotates in a directional manner, and the dividing diameters of the bottom gear 303 and the transmission gear 304 are matched so that the deflection angle of the flip plate 306 is linearly related to the sliding distance of the sliding member 301.
[0028] The above embodiment of the present invention provides a cold-rolled galvanized steel coil saddle, and through the sliding parts 301 slidingly arranged on both sides of the main base 101 and the flip plate 306 rotatably assembled on the sliding parts 301, the pressure plate 201 can be pressed to move by the dead weight of the steel coil during the placement of the steel coil, thereby pushing the sliding part 301 to slide horizontally in the main base 101, thereby adjusting the deflection angle of the flip plate 306, so that the device can adapt to steel coils of different diameters and weights and have a more stable support effect.
[0029] In the description of the present invention, it should be understood that the terms "upper", "one side", "inside", etc. indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the cold-rolled galvanized steel coil saddle or component referred to must have a specific orientation, be constructed and operated in a specific orientation. In addition, it should be noted that, unless otherwise clearly specified and defined, the terms "set", "install", "connect", and "connect" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium; it can be the internal connection of two components or the interaction relationship between two components. Unless otherwise clearly defined, ordinary technicians in this field can understand the specific meanings of the above terms in the present invention according to the specific circumstances.
[0030] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A cold-rolled galvanized steel coil saddle, characterized in that: The cold-rolled galvanized steel coil saddle comprises: A bracket assembly (1), the bracket assembly (1) comprising a main base (101), a transverse groove (102) and a rack (105), the transverse grooves (102) being symmetrically arranged on both sides of the main base (101), and the rack (105) being symmetrically arranged on the bottom end of the main base (101); A pressure plate assembly (2), the pressure plate assembly (2) comprising a pressure plate (201), a driving block (202) and a driving slot (203), the pressure plate (201) being slidably inserted into the middle of the main base (101), and the driving blocks (202) being mounted at both ends of the pressure plate (201), and the driving slot (203) being arranged on the driving block (202); An angle adjustment plate group (3), the angle adjustment plate group (3) comprising a sliding member (301), a driven member (302), a bottom gear (303) and a flip plate (306), the sliding member (301) being elastically slidably assembled in the transverse groove (102), and one end of the sliding member (301) being assembled with the driven member (302), the driven member (302) being slidably assembled in the driving groove, the bottom gear (303) being arranged at the bottom of the sliding member (301) and being meshed with the rack (105), the top of the sliding member (301) being further assembled with a flip plate (306), the flip plate (306) being arranged in linkage with the bottom gear (303); The bracket assembly (1) further comprises a positioning groove (103) and a guide rod (104), wherein the positioning groove (103) is arranged in the middle of the main base (101) and is used to define the sliding track of the pressure plate (201), and the guide rod (104) is fixedly arranged in the transverse groove (102) and is used to define the sliding track of the sliding member (301); The angle adjustment plate assembly (3) further comprises a transmission gear (304) and a transmission chain (305), wherein the transmission gear (304) is assembled on one side of the bottom gear (303) and meshed with the bottom gear (303), and one end of the transmission chain (305) is assembled and connected to the transmission gear (304), and the other end is assembled and connected to the flip plate (306), for driving the rotation of the flip plate (306).
2. The cold-rolled galvanized steel coil saddle according to claim 1, characterized in that: The driving groove (203) is arranged obliquely in the driving block (202).
Citation Information
Patent Citations
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CN107283181A
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CN112441310A