An electrophoresis hanger to prevent parts from falling off and deforming
By introducing a hanging part and a blocking part into the electrophoresis hanger, the problem of downtime and equipment damage caused by parts detaching from the hook in the production line is solved, and the stable hanging and safe operation of parts in the electrophoresis process is achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 海斯坦普汽车组件(昆山)有限公司
- Filing Date
- 2025-05-09
- Publication Date
- 2026-05-26
Smart Images

Figure CN224280508U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of hanging fixtures, and in particular to an electrophoresis hanging fixture for preventing parts from falling off and deforming. Background Technology
[0002] When electrophoresis hangers are running on the production line, because the parts are relatively large, they are prone to detaching from the hooks when descending into the water tank, causing the parts to fall into the tank, resulting in production line shutdown and equipment damage.
[0003] Chinese patent CN222729925U discloses a multi-layer anti-fall-off hanger that uses multiple hooks to hold car parts, with the hooks preventing the car parts from sliding through V-shaped grooves. However, if this hanger tilts, it poses a significant risk of tipping over, and the car parts can easily come off the hooks, causing the aforementioned problems.
[0004] Therefore, a new electrophoresis apparatus is needed to solve the above problems. Utility Model Content
[0005] The main purpose of this utility model is to provide an electrophoresis hanger that prevents parts from falling off and deforming. It can use a blocking part to prevent parts from falling off the hook and ensure the safe conduct of the electrophoresis process.
[0006] This utility model achieves the above-mentioned objective through the following technical solution: an electrophoresis hanger for preventing parts from falling off and deforming, comprising a frame and a plurality of hanging parts disposed on the upper part of the frame. The hanging parts include an X-direction crossbeam and a plurality of hooks disposed along the X direction at the lower part of the X-direction crossbeam for hanging parts. The hooks on adjacent hanging parts are positioned correspondingly. Each end of the X-direction crossbeam is provided with a vertical plate. A blocking part is rotatably disposed between the two vertical plates along the X-axis. When the blocking part rotates to the lowest point, it abuts against the upper edge of the part. The X direction is located in the horizontal plane.
[0007] Specifically, the blocking part includes two side plates and two connecting rods. The length direction of the two connecting rods is along the X direction. The two side plates are respectively connected to the two ends of the two connecting rods in the X direction. Each side plate is rotatably connected to its nearest upright plate. Several fixed rods are connected between the two connecting rods.
[0008] Specifically, the frame includes a base, two support columns, and a Y-direction crossbeam. The two support columns are respectively erected on both sides of the base in the Y direction, the Y-direction crossbeam is erected between the two support columns, and the X-direction crossbeam is fixed on the Y-direction crossbeam. The Y direction is located in the horizontal plane and is perpendicular to the X direction.
[0009] Furthermore, two XY diagonal connecting ribs are respectively provided at both ends of the X-direction crossbeam and the Y-direction crossbeam, and two XZ diagonal connecting ribs connected to the base are respectively provided on both sides of the upper end of the support column, and upper YZ diagonal connecting ribs are provided on the inner side of the corner between the support column and the Y-direction crossbeam, with the Z direction being the vertical direction.
[0010] Furthermore, the base includes two long side profiles, two short side profiles, two X-direction connecting profiles, two Y-direction connecting profiles, and two lower YZ diagonal connecting ribs. The two long side profiles and the two short side profiles are spliced together to form a rectangular frame. The two X-direction connecting profiles are each connected between the two long side profiles. The two Y-direction connecting profiles are each connected to the middle of an X-direction connecting profile and the middle of the short side profile closest to it. The lower YZ diagonal connecting ribs are connected to the support column and the inner corner of the Y-direction connecting profile closest to it.
[0011] The beneficial effects of this utility model's technical solution are:
[0012] This electrophoresis hanger uses a blocking part to press down on the parts hanging on the hook, thereby preventing the parts from falling off the hook when descending into the water tank, ensuring the safe conduct of the electrophoresis process. Attached Figure Description
[0013] Figure 1 This is a perspective view of the electrophoresis apparatus used in an embodiment;
[0014] Figure 2 This is a diagram showing the positional relationship between the hanging part and the blocking part;
[0015] Figure 3 A three-dimensional diagram of the frame;
[0016] Figure 4 This is a partial sectional view of the part's suspension position.
[0017] The numbers in the image represent:
[0018] 100-Electrophoresis Gear
[0019] 1-Frame, 11-Base, 111-Long side profile, 112-Short side profile, 113-X-direction connecting profile, 114-Y-direction connecting profile, 115-Lower YZ diagonal connecting rib, 12-Support column, 13-Y-direction beam, 14-XY diagonal connecting rib, 15-XZ diagonal connecting rib, 16-Upper YZ diagonal connecting rib;
[0020] 2-Suspension part, 21-X-direction crossbeam, 211-Vertical plate, 22-Hook;
[0021] 3-Blocking part, 31-Side plate, 32-Connecting rod, 33-Fixing rod;
[0022] 200 - Part, 201 - Hanging hole. Detailed Implementation
[0023] The present invention will be further described in detail below with reference to specific embodiments.
[0024] Example:
[0025] like Figures 1 to 4 As shown, the electrophoresis hanger 100 of this utility model for preventing parts from falling off and deforming includes a frame 1 and several hanging parts 2 provided on the upper part of the frame 1. The hanging parts 2 include an X-direction crossbeam 21 and several hooks 22 provided along the X direction at the lower part of the X-direction crossbeam 21 for hanging parts 200. The hooks 22 on adjacent hanging parts 2 are positioned correspondingly. Each end of the X-direction crossbeam 21 is provided with a vertical plate 211. A blocking part 3 is provided between the two vertical plates 211 along the X-axis. When the blocking part 3 rotates to the lowest point, it abuts against the upper edge of the part 200. The X direction is located in the horizontal plane.
[0026] The frame 1 forms the basis for the hanging part 2 and the blocking part 3. The hanging part 2 hooks the upper hanging hole 201 of the part 200 via the hook 22, allowing most of the part 200 to hang below the hook 22. The blocking part 3 presses down on the upper edge of the part 200 after it is in place, preventing the part 200 from rising or rotating and thus detaching from the hook 22. The blocking part 3 can limit the angle using elastic components such as springs; the part 200 can only be detached when the worker actively blocks the blocking part 3. Otherwise, the part 200 will remain integrated with the electrophoresis hanger 100. This electrophoresis hanger 100 uses the blocking part 3 to press down on the part 200 hanging on the hook 22, thereby preventing the part 200 from detaching from the hook 22 when descending into the water tank, ensuring the safe conduct of the electrophoresis process.
[0027] like Figure 2 and Figure 4 As shown, the blocking part 3 includes two side plates 31 and two connecting rods 32. The length direction of the two connecting rods 32 is along the X direction. The two side plates 31 are respectively connected to the two ends of the two connecting rods 32 in the X direction. Each side plate 31 is rotatably connected to its nearest upright plate 211. Several fixed rods 33 are connected between the two connecting rods 32.
[0028] The blocking part 3 relies on the connecting rod 32, which is closer to the bottom, to contact the upper edge of the part 200. Because the connecting rod 32 is a relatively slender part, if there is only one, it is easy to bend and deform under the reaction force of the part 200. Therefore, two parallel connecting rods 32 are used, and the distance between them is kept uniform by the fixing rod 33. This allows the connecting rod 32 to maintain its shape and improves the reliability of the part 200 in preventing it from falling off and deforming.
[0029] like Figure 3As shown, the frame 1 includes a base 11, two support columns 12 and a Y-direction crossbeam 13. The two support columns 12 are respectively erected on both sides of the base 11 in the Y direction. The Y-direction crossbeam 13 is erected between the two support columns 12. The X-direction crossbeam 21 is fixed on the Y-direction crossbeam 13. The Y direction is located in the horizontal plane and is perpendicular to the X direction.
[0030] The frame 1 provides a hanging space for the part 200, which can be placed in the middle of the frame 1 from the X direction for hanging.
[0031] like Figure 2 and Figure 3 As shown, two XY diagonal connecting ribs 14 are respectively installed at both ends of the X-direction crossbeam 21 and the Y-direction crossbeam 13. Two XZ diagonal connecting ribs 15 connected to the base 11 are respectively provided on both sides of the upper end of the support column 12. Upper YZ diagonal connecting ribs 16 are provided on the inner side of the corner between the support column 12 and the Y-direction crossbeam 13. The Z direction is the vertical direction.
[0032] The XY diagonal connecting ribs 14, XZ diagonal connecting ribs 15 and upper YZ diagonal connecting ribs 16 can make the entire frame 1 more stable and prevent the upper part of the frame 1 from tilting or deforming after being loaded.
[0033] like Figure 3 As shown, the base 11 includes two long side profiles 111, two short side profiles 112, two X-direction connecting profiles 113, two Y-direction connecting profiles 114, and two lower YZ diagonal connecting ribs 115. The two long side profiles 111 and the two short side profiles 112 are spliced together to form a rectangular frame. The two X-direction connecting profiles 113 are each connected between the two long side profiles 111. The two Y-direction connecting profiles 114 are each connected to the middle of an X-direction connecting profile 113 and the middle of the short side profile 112 closest to it. The lower YZ diagonal connecting ribs 115 are connected to the support column 12 and the inner corner of the Y-direction connecting profile 114 closest to it.
[0034] The above structure enables the base 11 to have better stability, thereby giving the frame 1 better structural rigidity.
[0035] The above descriptions are merely some embodiments of this utility model. For those skilled in the art, various modifications and improvements can be made without departing from the inventive concept of this utility model, and all such modifications and improvements fall within the protection scope of this utility model.
Claims
1. An electrophoresis hanger for preventing parts from falling off and deforming, comprising a frame and a plurality of hanging parts disposed on the upper part of the frame, each hanging part comprising an X-direction crossbeam and a plurality of hooks disposed along the X-direction at the lower part of the X-direction crossbeam for hanging parts, wherein the hooks on adjacent hanging parts are positioned correspondingly, characterized in that: Each end of the X-direction crossbeam is provided with a vertical plate, and a blocking part is provided between the two vertical plates along the X-axis. When the blocking part is rotated to the lowest point, it abuts against the upper edge of the part. The X-direction is located in the horizontal plane.
2. The electrophoresis hanger for preventing parts from falling off and deforming according to claim 1, characterized in that: The blocking part includes two side plates and two connecting rods. The length direction of the two connecting rods is along the X direction. The two side plates are respectively connected to the two ends of the two connecting rods in the X direction. Each side plate is rotatably connected to its nearest vertical plate. Several fixed rods are connected between the two connecting rods.
3. The electrophoresis hanger for preventing parts from falling off and deforming according to claim 1, characterized in that: The frame includes a base, two support columns, and a Y-direction crossbeam. The two support columns are respectively erected on both sides of the base in the Y direction. The Y-direction crossbeam is erected between the two support columns. The X-direction crossbeam is fixed on the Y-direction crossbeam. The Y direction is located in the horizontal plane and is perpendicular to the X direction.
4. The electrophoresis hanger for preventing parts from falling off and deforming according to claim 3, characterized in that: Two XY diagonal connecting ribs are respectively installed at both ends of the X-direction crossbeam and the Y-direction crossbeam. Two XZ diagonal connecting ribs connected to the base are respectively provided on both sides of the upper end of the support column. An upper YZ diagonal connecting rib is provided on the inner side of the corner between the support column and the Y-direction crossbeam. The Z direction is vertical.
5. The electrophoresis hanger for preventing parts from falling off and deforming according to claim 4, characterized in that: The base includes two long side profiles, two short side profiles, two X-direction connecting profiles, two Y-direction connecting profiles, and two lower YZ diagonal connecting ribs. The two long side profiles and the two short side profiles are spliced together to form a rectangular frame. The two X-direction connecting profiles are each connected between the two long side profiles. The two Y-direction connecting profiles are each connected to the middle of an X-direction connecting profile and the middle of the short side profile closest to it. The lower YZ diagonal connecting ribs are connected to the support column and the inner corner of the Y-direction connecting profile closest to it.