Titanium alloy plate turnover device
By designing a titanium alloy plate flipping device, and utilizing the cooperation of support frame, buffer structure and hoisting equipment, the safe flipping of titanium alloy plates is achieved, which solves the safety hazards and damage problems of flipping operations in the existing technology, and improves the flipping efficiency and safety.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HUNAN XIANGTOU GOLDSKY TITANIUM IND TECH CO LTD
- Filing Date
- 2025-06-04
- Publication Date
- 2026-05-12
AI Technical Summary
The lack of a dedicated titanium alloy plate flipping device in the existing technology leads to safety hazards during the flipping operation and can easily cause damage to the surface of the titanium plate.
A titanium alloy plate flipping device was designed, including a first support frame and a second support frame, which are connected by a central shaft and equipped with rollers and a buffer structure. By using a hoisting structure in conjunction with lifting equipment, the titanium alloy plate can be safely flipped over, avoiding direct contact damage.
This improves the safety of the flipping operation, reduces the risk of damage to the titanium alloy plate, and enhances both flipping efficiency and safety.
Smart Images

Figure CN224223584U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of workshop auxiliary equipment technology, and in particular to a titanium alloy plate flipping device. Background Technology
[0002] After hot-rolled titanium alloy plates undergo annealing heat treatment, the oxide layer and other defects on the surface need to be polished. Currently, a surface water grinder is generally used for water grinding. After one side is polished, the titanium alloy plate needs to be flipped over before polishing the other side. Since there is no dedicated flipping machine, on-site workers can only use steel chains or slings to flip the titanium alloy plates. However, using the above method not only poses safety hazards but also easily damages the surface of the titanium plate during the flipping process. Utility Model Content
[0003] This invention aims to solve at least one of the technical problems existing in the prior art. To this end, this invention proposes a titanium alloy plate flipping device, which facilitates the flipping of titanium alloy plates, offers high safety, and does not cause damage to the surface of the titanium plate.
[0004] The titanium alloy plate flipping device according to an embodiment of the present utility model includes:
[0005] The first support frame has a first connecting structure at the first end in the length direction, a first hoisting structure at the second end in the length direction, and a first buffer structure installed in the middle.
[0006] The second support frame has a second connecting structure at the first end in the length direction, a second hoisting structure at the second end in the length direction, and a second buffer structure installed in the middle.
[0007] A central axis passes through the first connecting structure and the second connecting structure to connect the first connecting structure and the second connecting structure;
[0008] A roller is mounted on the central shaft and rotates about its own axis;
[0009] When the first support frame and the second support frame are parallel, the first buffer structure corresponds to the second buffer structure to clamp the titanium alloy plate located between the first support frame and the second support frame; the first hoisting structure and the second hoisting structure are used to connect the hoisting equipment.
[0010] The titanium alloy plate flipping device according to the embodiment of this utility model has at least the following beneficial effects:
[0011] The titanium alloy plate is clamped between the first and second support frames, which restricts the movement of the titanium alloy plate and improves the safety of the flipping operation. At the same time, it avoids direct contact between the steel chain or sling and the titanium alloy plate, thus preventing damage. The contact between the first and second buffer structures and the clamped titanium alloy plate further reduces the damage to the titanium alloy plate.
[0012] According to some embodiments of the present invention, the first buffer structure includes a first support plate and a first adjusting bolt. The first adjusting bolt passes through the first support frame and is threadedly connected to the first support frame. The first support plate is connected to the end of the first adjusting bolt.
[0013] According to some embodiments of the present invention, a first buffer layer is installed on the first support plate.
[0014] According to some embodiments of the present invention, a first support block is provided at the first end of the first support frame in the length direction, and a first buffer pad is installed on the side of the first support block facing the second end of the first support frame in the length direction.
[0015] The first support block is used to support and limit the titanium alloy plate located between the first support frame and the second support frame.
[0016] According to some embodiments of the present invention, a first diagonal brace is connected between the first support block and the first support frame.
[0017] According to some embodiments of the present invention, a second support block is provided at the first end of the second support frame in the length direction, and a second buffer pad is installed on the side of the second support block facing the second end of the second support frame in the length direction.
[0018] The second support block is used to support and limit the titanium alloy plate located between the first support frame and the second support frame.
[0019] According to some embodiments of the present invention, a first bumper is installed at the second end of the first support frame in the length direction, and a first bumper pad is installed at the end of the first bumper.
[0020] A second stop block is installed at the second end of the second support frame along its length, and a second stop pad is installed at the end of the second stop block;
[0021] The first and second bump blocks are arranged opposite to each other, and the first and second bump pads are made of elastic material.
[0022] According to some embodiments of the present invention, at least one side of the first support frame in the width direction is provided with a first pull ring protruding from its surface, and at least one side of the second support frame in the width direction is provided with a second pull ring protruding from its surface.
[0023] According to some embodiments of the present invention, the first support frame includes two first main rods and at least one first secondary rod, the two first main rods are spaced apart, and the first secondary rod is disposed between the two first main rods for connecting the two first main rods.
[0024] According to some embodiments of this utility model, rollers are installed at both ends and the middle of the central shaft.
[0025] Additional aspects and advantages of this invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. Attached Figure Description
[0026] The present invention will be further described below with reference to the accompanying drawings and embodiments, wherein:
[0027] Figure 1 This is a side view of the flip-plate device in the clamping state of the titanium alloy plate according to an embodiment of this application;
[0028] Figure 2 for Figure 1 Enlarged view of point A in the middle;
[0029] Figure 3 for Figure 1 Enlarged view of point B in the middle;
[0030] Figure 4 This is a front view of the flap device in the unfolded state according to an embodiment of this application.
[0031] Icon labels:
[0032] First support frame 100, first main rod 101, first auxiliary rod 102, first connecting structure 110, first hoisting structure 120, first buffer structure 130, first support plate 131, first adjusting bolt 132, first buffer layer 133, first support block 140, first buffer pad 141, first diagonal brace 142, first bumper block 150, first bumper pad 151, first pull ring 160;
[0033] Second support frame 200, second connecting structure 210, second hoisting structure 220, second buffer structure 230, second support block 240, second buffer pad 241, second diagonal brace 242, second bumper block 250, second bumper pad 251, second pull ring 260;
[0034] Central axis 300;
[0035] 400 rollers. Detailed Implementation
[0036] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this utility model, and should not be construed as limiting this utility model.
[0037] In the description of this utility model, it should be understood that the directional descriptions, such as up, down, etc., indicating the directional or positional relationship, are based on the directional or positional relationship shown in the drawings and are only for the convenience of describing this utility model and simplifying the description, and are not intended to indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model.
[0038] In the description of this utility model, "multiple" refers to two or more. The use of "first" and "second" is for distinguishing technical features only and should not be construed as indicating or implying relative importance, or implicitly indicating the number of technical features or their sequential relationship.
[0039] In the description of this utility model, unless otherwise explicitly defined, terms such as "setting," "installation," and "connection" should be interpreted broadly, and those skilled in the art can reasonably determine the specific meaning of the above terms in this utility model in conjunction with the specific content of the technical solution.
[0040] Reference Figures 1 to 4 This utility model discloses a titanium alloy plate flipping device, comprising a first support frame 100 and a second support frame 200, which are hinged together. When the first support frame 100 and the second support frame 200 are close together, they can clamp the titanium alloy plate located between them, thereby restricting the movement of the titanium alloy plate, improving the safety of the flipping operation, and preventing the steel chain or sling from directly contacting and damaging the titanium alloy plate. The first support frame 100 is equipped with a first buffer structure 130, and the second support frame 200 is equipped with a second buffer structure 230, which are correspondingly arranged. When the first support frame 100 and the second support frame 200 clamp the titanium alloy plate located between them, the first buffer structure 130 and the second buffer structure 230 abut against the two sides of the titanium alloy plate, further reducing damage to the titanium alloy plate.
[0041] Reference Figure 1 , Figure 4As shown, in this embodiment, the first support frame 100 has a first connecting structure 110 at its first end along its length, and the second support frame 200 has a second connecting structure 210 at its first end along its length. The first connecting structure 110 and the second connecting structure 210 are connected by a central shaft 300, which passes through the first connecting structure 110 and the second connecting structure 210. The first connecting structure 110 and the second connecting structure 210 can rotate around the central shaft 300, which can cause the first support frame 100 and the second support frame 200 to move closer to or further away from each other.
[0042] Reference Figure 1 , Figure 4 As shown, in this embodiment, the second end of the first support frame 100 along its length is provided with a first hoisting structure 120, and the second end of the second support frame 200 along its length is provided with a second hoisting structure 220. The first hoisting structure 120 and the second hoisting structure 220 are used to connect hoisting equipment, such as a gantry crane or a crane. The first hoisting structure 120 and the second hoisting structure 220 can be the same or different. The first hoisting structure 120 and the second hoisting structure 220 can be of various types. Figure 4 The lifting ring structure shown can also be other structures, and is not limited in this embodiment.
[0043] It is conceivable that only the first hoisting structure 120 or only the second hoisting structure 220 could be set.
[0044] Reference Figure 1 , Figure 4 As shown, a roller 400 is mounted on the central shaft 300, and the roller 400 is rotatably mounted on the central shaft 300 around its own axis. The roller 400 facilitates the movement of the flipping device in this embodiment, and when the lifting equipment lifts the flipping device of this embodiment, the roller 400 can roll along the ground to facilitate the flipping of the titanium alloy plate.
[0045] When it is necessary to flip the titanium alloy plate, firstly, the flipping device of this embodiment is closed, and the first connecting structure 110 and the second connecting structure 210 are brought close together to clamp the titanium alloy plate located between them. Then, the first hoisting structure 120 and the second hoisting structure 220 are both connected to the lifting equipment. The lifting equipment drives the second ends of the first support frame 100 and the second support frame 200 in the length direction to rise until the flipping device of this embodiment is in position. Figure 1 After reaching the indicated state, the lifting equipment descends. By setting rollers 400, when the tilting device of this embodiment is in the indicated state... Figure 1 When the plate begins to descend, only a slight manual pull on the bottom of the flipping device is needed for the lifting equipment to descend smoothly and flip the titanium alloy plate, improving the flipping efficiency, reducing the flipping difficulty, and enhancing safety. Without the rollers 400, when the flipping device in this embodiment is in... Figure 1When the device begins to descend, it is necessary to manually pull the bottom of the flipping device to one side. During the descent of the lifting equipment, the operator must constantly pull the bottom of the flipping device to prevent it from contacting the ground and sliding along the ground, which would cause wear and tear. This process is labor-intensive and has poor safety.
[0046] To improve the stability of the 400 roller's rolling motion, refer to Figure 4 As shown, rollers 400 are installed at both ends and in the middle of the central shaft 300.
[0047] To reduce the overall weight and manufacturing cost of the flap device in this embodiment, refer to... Figure 4 As shown in the embodiments of this application, the first support frame 100 includes two first main rods 101 and at least one first secondary rod 102. The two first main rods 101 are spaced apart, and the first secondary rod 102 is disposed between the two first main rods 101 for connecting the two first main rods 101. Correspondingly, the structure of the second support frame 200 is basically the same as that of the first support frame 100. The second support frame 200 includes two second main rods and at least one second secondary rod. The two second main rods are spaced apart, and the second secondary rod is disposed between the two second main rods for connecting the two second main rods. Preferably, multiple first secondary rods 102 and multiple second secondary rods are provided. The multiple first secondary rods 102 are spaced apart along the length direction of the first main rods 101, and the multiple second secondary rods are spaced apart along the length direction of the second main rods.
[0048] In embodiments of this application, at least one side of the first support frame 100 in the width direction is provided with a first pull ring 160 protruding from its surface, and at least one side of the second support frame 200 in the width direction is provided with a second pull ring 260 protruding from its surface. Preferably, both sides of the first support frame 100 and the second support frame 200 in the width direction are provided with first pull rings 160 protruding from their surfaces. The first pull rings 160 and second pull rings 260 are provided to facilitate the operator applying force to the first support frame 100 and the second support frame 200 when the titanium alloy plate is flipped. Furthermore, when flipping small-sized titanium alloy plates, the first pull rings 160 and second pull rings 260 can be connected by ropes to secure the titanium alloy plate located between the first support frame 100 and the second support frame 200; the ropes should preferably not be made of metal. (Refer to...) Figure 1 , Figure 4As shown, multiple first pull rings 160 can be provided on one side of the width direction of the first support frame 100, and the multiple first pull rings 160 on the same side are spaced apart along the length direction of the first support frame 100; correspondingly, multiple second pull rings 260 can be provided on one side of the width direction of the second support frame 200, and the multiple second pull rings 260 on the same side are spaced apart along the length direction of the second support frame 200. The multiple first pull rings 160 and the multiple second pull rings 260 can be connected to each other by multiple ropes to improve the fixing effect of small-sized titanium alloy plates.
[0049] In the embodiments of this application, reference is made to Figure 2 As shown, the first buffer structure 130 includes a first support plate 131 and a first adjusting bolt 132. The first adjusting bolt 132 passes through the first support frame 100 and is threadedly connected to the first support frame 100. The first support plate 131 is connected to the end of the first adjusting bolt 132. A first buffer layer 133 is installed on the first support plate 131. The first buffer layer 133 can be made of materials such as rubber, plastic, or sponge, or an elastic element such as a spring can be installed inside the first buffer layer 133. To reduce manufacturing costs, the second buffer structure 230 is basically the same as the first buffer structure 130. The second buffer structure 230 includes a second support plate and a second adjusting bolt. The second adjusting bolt passes through the second support frame 200 and is threadedly connected to the second support frame 200. The second support plate is connected to the end of the second adjusting bolt, and a second buffer layer is installed on the second support plate.
[0050] In the embodiments of this application, a first support block 140 is provided at the first end of the first support frame 100 along its length, and a first buffer pad 141 is installed on the side of the first support block 140 facing the second end of the first support frame 100 along its length. The first buffer pad 141 can be made of a partially elastic material such as rubber or plastic. The first support block 140 is used to support and limit the titanium alloy plate located between the first support frame 100 and the second support frame 200. Specifically, when the lifting equipment lifts the flipping device of this embodiment upward, the first support frame 100 and the second support frame 200 will gradually switch from a horizontal state to a vertical state, and the titanium alloy plate installed between the first support frame 100 and the second support frame 200 will gradually fall onto the first buffer pad 141 of the first support. That is, when the first support frame 100 is in a horizontal state, the first support block 140 is used to limit the titanium alloy plate, and when the first support frame 100 is in a vertical state, the first support block 140 is used to support the titanium alloy plate.
[0051] Due to the significant weight of the titanium alloy plate, in order to improve the support effect of the first support block 140 and ensure its stability, reference is made to... Figure 1 As shown, a first diagonal brace 142 is connected between the first support block 140 and the first support frame 100.
[0052] It is conceivable that simply setting the first support block 140 on the first support frame 100 would have limited support effect on the titanium alloy plate. Therefore, it is preferable that the second support frame 200 has a second support block 240 at the first end in the length direction, and a second buffer pad 241 is installed on the side of the second support block 240 facing the second end in the length direction of the second support frame 200. The second support block 240 is also used to support and limit the titanium alloy plate located between the first support frame 100 and the second support frame 200.
[0053] In the embodiments of this application, reference is made to Figure 3 As shown, a first bumper 150 is installed at the second end of the first support frame 100 along its length, and a first bumper pad 151 is installed at the end of the first bumper 150; a second bumper 250 is installed at the second end of the second support frame 200 along its length, and a second bumper pad 251 is installed at the end of the second bumper 250; the first bumper 150 and the second bumper 250 are arranged opposite to each other, and the first bumper pad 151 and the second bumper pad 251 are made of elastic material. When the flip-up device of this embodiment switches from the unfolded state to the closed state, the first bumper pad 151 will first contact the second bumper pad 251, and then the first bumper pad 151 and the second bumper pad 251 will undergo elastic deformation, thereby avoiding rigid collision between the first support block 140 and the second support block 240, which would affect the service life of the flip-up device of this embodiment.
[0054] The embodiments of the present utility model have been described in detail above with reference to the accompanying drawings. However, the present utility model is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the spirit of the present utility model.
Claims
1. A titanium alloy plate flipping device, characterized in that, include: The first support frame has a first connecting structure at the first end in the length direction, a first hoisting structure at the second end in the length direction, and a first buffer structure installed in the middle. The second support frame has a second connecting structure at the first end in the length direction, a second hoisting structure at the second end in the length direction, and a second buffer structure installed in the middle. A central axis passes through the first connecting structure and the second connecting structure to connect the first connecting structure and the second connecting structure; A roller is mounted on the central shaft and rotates about its own axis; When the first support frame and the second support frame are parallel, the first buffer structure corresponds to the second buffer structure to clamp the titanium alloy plate located between the first support frame and the second support frame; the first hoisting structure and the second hoisting structure are used to connect the hoisting equipment.
2. The titanium alloy plate flipping device according to claim 1, characterized in that: The first buffer structure includes a first support plate and a first adjusting bolt. The first adjusting bolt passes through the first support frame and is threadedly connected to the first support frame. The first support plate is connected to the end of the first adjusting bolt.
3. The titanium alloy plate flipping device according to claim 2, characterized in that: A first buffer layer is installed on the first support plate.
4. The titanium alloy plate flipping device according to claim 1, characterized in that: A first support block is provided at the first end of the first support frame along its length, and a first buffer pad is installed on the side of the first support block facing the second end of the first support frame along its length. The first support block is used to support and limit the titanium alloy plate located between the first support frame and the second support frame.
5. The titanium alloy plate flipping device according to claim 4, characterized in that: A first diagonal brace connects the first support block to the first support frame.
6. The titanium alloy plate flipping device according to claim 1, characterized in that: The second support frame has a second support block at its first end along its length, and a second buffer pad is installed on the side of the second support block facing the second end along its length. The second support block is used to support and limit the titanium alloy plate located between the first support frame and the second support frame.
7. The titanium alloy plate flipping device according to claim 1, characterized in that: A first contact block is installed at the second end of the first support frame along its length, and a first contact pad is installed at the end of the first contact block; A second stop block is installed at the second end of the second support frame along its length, and a second stop pad is installed at the end of the second stop block; The first and second bump blocks are arranged opposite to each other, and the first and second bump pads are made of elastic material.
8. The titanium alloy plate flipping device according to claim 1, characterized in that: The first support frame has a first pull ring protruding from its surface on at least one side in the width direction, and the second support frame has a second pull ring protruding from its surface on at least one side in the width direction.
9. The titanium alloy plate flipping device according to claim 1, characterized in that: The first support frame includes two first main rods and at least one first secondary rod. The two first main rods are spaced apart, and the first secondary rod is disposed between the two first main rods for connecting the two first main rods.
10. The titanium alloy plate flipping device according to claim 1, characterized in that: The rollers are installed at both ends and in the middle of the central shaft.