Hanging assembly for hole sealing of metal piece
By designing suspension components with extended tracks and multi-track structures, the problem of inconvenient parts replacement in the prior art is solved, and the efficiency and operational convenience of metal parts sealing are improved.
Patent Information
- Application Number
- CN202421821255.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-30
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2034-07-30
AI Technical Summary
In the prior art, the suspension assembly needs to send the entire assembly back to the starting position when replacing the parts, resulting in inconvenient operation, high labor intensity and low sealing efficiency.
A suspension assembly including a relatively vertical vertical frame and a horizontal frame is designed, by providing an extension track, the clamping portion can be moved to the extension track for part replacement, and the position of the hanging parts is changed through the first track and the second track.
It realizes the convenience of parts replacement, reduces the labor intensity of operators, and improves the efficiency of metal parts sealing operation.
Smart Images

Figure CN222878089U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of metal piece sealing processing, and particularly relates to a suspension component used for metal piece sealing. Background Art
[0002] The sealing of metal parts is a crucial process step. Sealing is not only related to the quality and service life of metal parts, but also a key measure to protect the surface of metal parts and improve their corrosion resistance and aesthetics. During the treatment process, the load-bearing metal parts of the suspension assembly can be moved to different reaction tanks for treatment during the sealing process.
[0003] The transfer method of the suspension assembly in the prior art is mainly to move vertically above the reaction tank. This vertical movement is inconvenient when replacing some parts. When a part needs to be replaced, the parts on the entire suspension assembly need to be returned to the starting position before they can be disassembled and replaced. This not only increases the labor intensity of the operator, but also greatly reduces the efficiency of the sealing operation. Utility Model Content
[0004] In view of the above problems, the utility model discloses a suspension assembly for sealing holes in metal parts, comprising a vertical frame and a horizontal frame which are relatively perpendicular to each other, wherein both ends of the horizontal frame have a first sliding connection part; the vertical frame has a first track arranged along the vertical direction, and the first sliding connection part is passed through the first track; the horizontal frame also includes: a horizontal frame plate body, the horizontal frame body is provided with the first sliding connection part, the horizontal frame body is provided with a second track along the horizontal direction, the second track is passed through the second sliding connection part, and a clamping part extends from the other side of the second sliding connection part; wherein, the second track is also provided with an extension track, and the extension track extends from any one of the first sliding connection parts toward the outside of the vertical frame, and the extension track is located on the outside of the horizontal frame.
[0005] In some exemplary technical solutions, the clamping portion has a first width along the horizontal direction, and the length of the extended track is not less than the first width.
[0006] In some exemplary technical solutions, the second rail includes an upper rail and a lower rail, and the upper rail and the lower rail are both fixedly arranged on the horizontal frame body and are arranged up and down; the second sliding connection part includes: an upper connection part, the upper connection part is matched with the upper rail and slides relative to the upper connection part; and a lower connection part, the lower connection part is matched with the lower rail and slides relative to the lower connection part.
[0007] In some exemplary technical solutions, the upper connecting part and the lower connecting part are connected via a fixing plate, the fixing plate is provided with a driver, the driver is externally connected to a power source, and a gripper is provided at one end of the driver.
[0008] In some exemplary technical solutions, the driver is a cylinder and the power source is an external air pump.
[0009] In some exemplary technical solutions, the upper rail is a cylindrical rail, and the lower rail is a long strip structure with a groove body; the upper connecting part is a V-shaped roller, and the groove in the V-shaped roller matches the cylindrical rail; the lower connecting part is a conventional roller, and the rolling direction of the conventional roller is consistent with the direction of the lower rail.
[0010] In some exemplary technical solutions, a rotation driving device is further provided on the fixed plate, and the upper connecting part and the lower connecting part are further connected with a transmission shaft, and the transmission shaft is passed through the rotation driving device.
[0011] In some exemplary technical solutions, the upper connecting portion and the lower connecting portion are both connected to the transmission shaft via a universal joint.
[0012] The beneficial effect of the utility model is that, by providing the extension track, the clamping part can be moved to the extension track for parts replacement, which is convenient for operation. And the position of the hanging parts can be changed by cooperating with the first track and the second track. In addition, the second movable track includes the upper track and the lower track, so that the clamping part can also maintain stable movement when moving to the extension track.
[0013] In some cases, the metal parts used in the metal parts sealing process can be moved. By moving the vertical frame and the horizontal frame, the corresponding metal parts can be moved to the reaction tank and taken out. In some cases, the metal parts are moved to the extension track, and the parts can be inspected or replaced temporarily.
[0014] Other features and advantages of the utility model will be described in the following description, and partly become apparent from the description, or understood by implementing the utility model. The purpose and other advantages of the utility model can be realized and obtained by the structures indicated in the description, claims and drawings. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] In order to more clearly illustrate the embodiments of the utility model or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of the utility model. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.
[0016] Figure 1 A suspension assembly for sealing a hole of a metal part according to an embodiment of the utility model is shown;
[0017] Figure 2 A partial structural schematic diagram of a suspension assembly for sealing a hole in a metal part according to an embodiment of the utility model is shown;
[0018] Figure 3 A schematic structural diagram of a suspension assembly for sealing a hole in a metal part according to an embodiment of the utility model is shown.
[0019] In the attached figure:
[0020] 1-vertical frame 2-horizontal frame 3-clamping part 4-reaction tank
[0021] 101-First Track
[0022] 201-first sliding connection part 202-second track 203-horizontal frame body 204-extension track
[0023] 2021-upper track 2022-lower track
[0024] 2041-upper connection part 2042-lower connection part
[0025] 301- second sliding connection part 2031- fixed plate
[0026] 300-gripper 301-clamping rod 302-clamping plate 303-cylinder 304-motor 305-transmission shaft 306-universal joint. DETAILED DESCRIPTION
[0027] In order to make the purpose, technical solution and advantages of the embodiment of the utility model clearer, the technical solution in the embodiment of the utility model will be clearly and completely described below in conjunction with the drawings in the embodiment of the utility model. Obviously, the described embodiment is a part of the embodiment of the utility model, not all of the embodiments. Based on the embodiment of the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.
[0028] First embodiment
[0029] This example discloses a suspension assembly for sealing a hole in a metal part, referring to Figure 1-3 It is understood that the vertical frame 1 and the horizontal frame 2 are relatively vertical, and the two ends of the horizontal frame 2 have a first sliding connection part 201; the vertical frame 1 has a first track 101 arranged along the vertical direction, and the first sliding connection part 201 is inserted into the first track 101. It is not difficult to understand that the first sliding connection part 201 slides along the first track 101.
[0030] The horizontal frame 2 also includes: a horizontal frame plate body 203, the horizontal frame body 203 is provided with the first sliding connection part 201, the horizontal frame body 203 is provided with a second track 202 along the horizontal direction, the second track 202 is penetrated by a second sliding connection part 301, and the other side of the second sliding connection part 301 extends out a clamping part 3; wherein, the second track 202 is also provided with an extension track 204, the extension track 204 extends from any one of the first sliding connection parts 201 toward the outside of the vertical frame, and the extension track 204 is located on the outside of the horizontal frame 2.
[0031] As mentioned above, the clamping part 3 is connected to the second sliding connection part 301, and the second sliding connection part 301 passes through the second track 202 and extends out of the clamping part 3. When the clamping part 3 is started, during the movement of the clamping part 3, the first sliding connection part 201 slides along the first track 101 to maintain a stable connection between the vertical frame 1 and the horizontal frame 2 and adjust the height. Then, the second sliding connection part 301 starts to move along the second sliding track, and the clamped parts move the horizontal frame 2 to the desired position. After completing the corresponding metal parts closing work, the clamping hand 300 continues to move to the extension track 204, which is located on the outside of the horizontal frame 2, providing an additional sliding path for the clamping part 3.
[0032] Second embodiment
[0033] In this example, based on the above-mentioned embodiment, the clamping portion 3 has a certain width in the horizontal direction, which is represented as a first width in this example, and the length of the extension track 204 is not less than the width of the clamping portion 3 (i.e., the first width). It can be clearly understood that when the extension track 204 is wider than the clamping portion 3, the parts clamped on the clamping portion 3 can be completely located on the extension track 204, so that the parts can be replaced more conveniently.
[0034] For some specific examples, see Figure 1It is understood that the second track 202 includes an upper track 2021 and a lower track 2022, and the upper track 2021 and the lower track 2022 are both fastened to the horizontal frame body 203 and are arranged in an up-and-down manner. The second sliding connection portion 301 includes an upper connection portion 2041 and a lower connection portion 2042. The upper connection portion 2041 matches and fits with the upper track 2021, and can slide relative to the upper connection portion 2041. The lower connection portion 2042 matches and fits with the lower track 2022, and can slide relative to the lower connection portion 2042.
[0035] When driven by an external force, the second sliding connection part 301 begins to move along the path of the second track 202. This movement process is carried out step by step, and adjustments are made along the direction of the track to ensure the stability and accuracy of the clamping part 3. Secondly, as the second sliding connection part 301 moves, the clamping part 3 also moves. After the clamping part 3 reaches the target position, the tasks of the clamping part 3 may be various in different situations. The clamping part 3 can be used to manipulate metal parts, move them to a desired position or perform specific operations.
[0036] Continue to refer Figure 1 Combined with Figure 2 It is understood that the device also includes a fixing plate 2031, through which the upper connecting part 2041 and the lower connecting part 2042 are connected, and the fixing plate 2031 is provided with the clamping hand 300, and the clamping hand 300 is externally connected to a power source. Specifically, the driver is provided with a clamping hand 300 at one end, and in this example, the clamping hand 300 is a hinged gripper, and the end of the clamping hand 300 has a driving rod (not shown in the figure), and the driving rod is externally connected to the driver.
[0037] The hinged gripper also includes a clamping plate, and the clamping plate 302 is connected to the driving rod and has a clamping function for fixing the metal piece. The clamping rod 301 drives the clamping plate 302 to open. Before the clamping starts, the clamping plate 302 is in an open state, and the clamping hand 300 is in an open state, so that the metal piece can be easily put in or taken out. The operator closes the clamping plate 302 through an external driving force or manual operation to achieve clamping.
[0038] exist Figure 2 In the specific example shown, the driver is a cylinder 303, and the power source is an external air pump.
[0039] Third embodiment
[0040] In a specific example, the upper rail 2021 is cylindrical in shape, and the lower rail 2022 is a long strip structure with a groove inside to form a long strip track; the upper connecting part 2041 is a V-shaped roller, and the groove in the long strip track matches the upper rail 2021; the lower connecting part 2042 is a conventional roller, and the rolling direction of the conventional roller is consistent with the direction of the lower rail 2022.
[0041] like Figure 3 As shown, the fixed plate 2031 is also provided with a rotation driving device, and the upper connecting portion 2041 and the lower connecting portion 2042 are also connected with a transmission shaft 305, and the transmission shaft 305 is inserted into the rotation driving device. In some specific examples, the upper connecting portion 2041 and the lower connecting portion 2042 are both connected to the transmission shaft 305 through a universal joint 306. In this example, the driving device is a linear motor 304, and when working, the V-shaped roller and the conventional roller are driven to change the position of the gripper 300.
[0042] In this example, the stability of the movement of the clamping part 3 is improved by the joint movement of the upper rail 2021 and the lower rail 2022, and when the clamping part 3 moves to the extension rail 204, the sliding connection of the two parts can maintain stable movement. In some preferred examples, the fixing plate 2031 also has a certain inclination angle relative to the vertical frame 1 to further increase stability.
[0043] Fourth embodiment
[0044] Based on the previous example, continue to refer to Figure 1-3 It is understood that in this example, the clamping part 3 for metal sealing is used to transfer metal parts. Wherein, the processing tank is directly below the clamping hand 300.
[0045] In this example, in the initial state, the clamping portion 3 is in a stationary state, the clamping hand 300 is in an open state, and the clamping plate 302 is open. The metal piece to be processed is suspended on the processing tank directly below the clamping hand 300. In some specific cases, the clamping portion 3 is located on the extension track 204.
[0046] The operator then hangs the parts on the clamping part 3. At this time, since the extension track 204 is located outside the reaction tank 4, it is easy to operate. Specifically, the metal parts can be clamped by the clamping hand 300. The first sliding connection part 201 slides along the first track 101 on the vertical frame 1 to maintain a stable connection between the vertical frame 1 and the horizontal frame 2 and adjust the height. Subsequently, the second sliding connection part 301 starts to move along the second track 202 on the horizontal frame 2. This causes the clamping part 3 to move, moving the horizontal frame 2 to the desired position.
[0047] Once the horizontal frame 2 reaches the target position, the first sliding connection part 201 moves downward along the vertical frame 1 and finally reaches the predetermined reaction position. Similarly, after the reaction is completed, the clamping part 3 will also move to the extension track 204 for easy removal.
[0048] Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some of the technical features therein; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. A suspension assembly for sealing a hole in a metal part, characterized in that: It comprises a vertical frame (1) and a horizontal frame (2) which are relatively vertical, wherein both ends of the horizontal frame (2) have a first sliding connection part (201); the vertical frame (1) has a first track (101) arranged along the vertical direction, and the first sliding connection part (201) is inserted into the first track (101); The horizontal frame (2) further comprises: A horizontal frame body (203), wherein the horizontal frame body (203) is provided with the first sliding connection part (201), the horizontal frame body (203) is provided with a second track (202) along the horizontal direction, the second track (202) is penetrated by a second sliding connection part (301), and a clamping part (3) is extended from the other side of the second sliding connection part (301); The second track (202) is further provided with an extension track (204), wherein the extension track (204) extends from any one of the first sliding connection parts (201) toward the outer side of the vertical frame, and the extension track (204) is located on the outer side of the horizontal frame (2).
2. The suspension assembly for sealing a hole in a metal part according to claim 1, characterized in that: The clamping portion (3) has a first width in the horizontal direction, and the length of the extension track (204) is not less than the first width.
3. The suspension assembly for sealing a metal part according to claim 2, characterized in that: The second track (202) comprises an upper track (2021) and a lower track (2022), and the upper track (2021) and the lower track (2022) are both fixedly arranged on the horizontal frame body (203) and arranged up and down; The second sliding connection part (301) comprises: An upper connecting portion (2041), the upper connecting portion (2041) being matched with the upper track (2021) and sliding relative to the upper connecting portion (2041); A lower connecting portion (2042), wherein the lower connecting portion (2042) matches the lower track (2022) and slides relative to the lower connecting portion (2042).
4. The suspension assembly for sealing a metal part according to claim 3, characterized in that: The upper connecting portion (2041) and the lower connecting portion (2042) are connected via a fixing plate (2031), the fixing plate (2031) is provided with a driver, the driver is externally connected to a power source, and a gripper (300) is provided at one end of the driver.
5. The suspension assembly for sealing a hole in a metal part according to claim 4, characterized in that: The driver is a cylinder (303), and the power source is an external air pump.
6. The suspension assembly for sealing a hole in a metal part according to claim 4, characterized in that: The upper track (2021) is a cylindrical track, and the lower track (2022) is a long strip structure with a groove body; The upper connecting part (2041) is a V-shaped roller, and the groove in the V-shaped roller matches the cylindrical track; The lower connecting portion (2042) is a conventional roller, and the rolling direction of the conventional roller is consistent with the direction of the lower track (2022).
7. The suspension assembly for sealing a hole in a metal part according to claim 6, characterized in that: The fixed plate (2031) is also provided with a rotation driving device, and the upper connecting portion (2041) and the lower connecting portion (2042) are also connected with a transmission shaft (305), and the transmission shaft (305) is passed through the rotation driving device.
8. The suspension assembly for sealing a hole in a metal part according to claim 7, characterized in that: The upper connecting portion (2041) and the lower connecting portion (2042) are both connected to the transmission shaft (305) via a universal joint (306).