Electrophoretic coating rack

By designing a moving mechanism and using components such as servo motors and hydraulic rods for electrophoretic coating racks, the problem of traditional coating racks being unable to move has been solved, enabling convenient handling of workpieces and improving operational efficiency.

CN223866785UActive Publication Date: 2026-02-03DONGGUAN JINGPENGFENG HARDWARE PRODUCTS CO LTD
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Patent Information

Application Number
CN202520071112.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-13
Publication Date
2026-02-03
Estimated Expiration
2035-01-13

AI Technical Summary

Technical Problem

Traditional painting racks lack flexibility and cannot be moved, making material handling inconvenient.

Method used

Design an electrophoretic coating material rack that includes a main body and a moving mechanism. The coating rack can be moved and raised and lowered by components such as limit rods, fixed frames, moving boxes, slide bars, crossbars, hooks, and rollers. Combined with the use of servo motors and hydraulic rods, it can facilitate the picking and placing of workpieces.

Benefits of technology

It enables flexible movement of the painting rack and convenient loading and unloading of workpieces, improving operational efficiency and convenience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an electrophoretic coating material rack, and belongs to the technical field of electrophoretic coating. Comprising a main body and a moving mechanism, the main body comprises a pair of bottom frames, limiting rods are installed on the two sides of the upper ends of the bottom frames, the moving mechanism comprises a pair of fixing frames, the two sides of the bottom ends of the pair of fixing frames are slidably connected with the two pairs of limiting rods correspondingly, and moving boxes are installed at the upper ends of the pair of fixing frames; sliding rods are installed at the upper ends of the moving boxes correspondingly, a cross rod is slidably installed between the pair of sliding rods, a plurality of hanging rods are installed at the bottom end of the cross rod, a pair of hooks are installed on the bottom sides of the hanging rods correspondingly, moving grooves are formed in the outer sides of the moving boxes correspondingly, and supporting frames are installed at the two ends of the cross rod correspondingly. The two opposite faces of the pair of supporting frames are rotationally connected with rolling wheels, and the rolling wheels are slidably connected with the moving grooves. According to the utility model, the practicability of the electrophoretic coating material rack can be effectively improved, and the electrophoretic coating material rack has higher practical value.
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Description

Technical Field

[0001] This utility model relates to the field of electrophoretic coating technology, specifically to an electrophoretic coating material rack. Background Technology

[0002] In industrial production, electrophoretic coating is a widely used surface treatment technology. It involves depositing charged paint particles onto the workpiece surface under the influence of an electric field to form a uniform, aesthetically pleasing coating with good protective properties. Based on this, the inventors have identified the following problems: traditional coating racks lack structural flexibility, are mostly fixed in specific locations, and cannot be moved freely. When the electrophoretic coating process is complete and the rack needs to be lifted out of the electrophoretic pool, the problem becomes apparent. Because it cannot be moved, operators can only perform material retrieval within a limited space, often making the process extremely inconvenient. Therefore, in view of this, the inventors have researched and improved upon existing structures and their shortcomings, providing an electrophoretic coating rack with greater practical value. Utility Model Content

[0003] The purpose of this utility model is to provide an electrophoretic coating material rack to solve the problems mentioned in the background art.

[0004] By adopting the above technical solution, the painting rack can be moved, making it easier for users to pick up materials.

[0005] In view of the above problems, the technical solution proposed by this utility model is as follows:

[0006] An electrophoretic coating material rack includes a main body and a moving mechanism. The main body includes a pair of base frames, each with limit rods installed on both sides of its upper end. The moving mechanism includes a pair of fixed frames, each with its bottom sides slidably connected to the two pairs of limit rods. Each pair of fixed frames has a movable box installed on its upper end, and each movable box has a sliding rod installed on its upper end. A crossbar is slidably installed between the pair of sliding rods. Several hanging rods are installed at the bottom of the crossbar, and each hanging rod has a pair of hooks installed on its bottom side. A moving groove is formed on the outer side of each movable box. Support frames are installed at both ends of the crossbar. Rollers are rotatably connected to the two opposite surfaces of each pair of support frames, and the rollers are slidably connected to the moving groove.

[0007] Furthermore, the two opposite sides of the movable box are provided with motion grooves, and a lead screw is rotatably connected inside the motion groove.

[0008] The advantage of adopting the above-mentioned further solution is that by opening a motion groove on the opposite side of the moving box and rotating the connecting screw inside it, the screw can be easily rotated.

[0009] Furthermore, each lead screw is threadedly connected to a slider, and a connecting plate is installed on one side of each slider. The top of the connecting plate is connected to the crossbar.

[0010] The beneficial effect of adopting the above-mentioned further solution is that by threading a slider onto the lead screw and installing a connecting plate on one side of it, with the top of the connecting plate connected to the crossbar, the crossbar can be moved by the connecting plate when the slider moves.

[0011] Furthermore, a servo motor is installed at one end of each of the mobile boxes, and the output end of the servo motor is connected to a lead screw drive.

[0012] The advantage of adopting the above-mentioned further solution is that by installing a servo motor, it can drive the lead screw to rotate when it is working.

[0013] Furthermore, hydraulic rods are embedded at the center of the upper end face of the base frame, and the top of the hydraulic rods is connected to the bottom of the fixed frame.

[0014] The advantage of adopting the above-mentioned further solution is that by installing a hydraulic rod, it can drive the fixed frame to rise and fall when it is working.

[0015] Furthermore, several reinforcing blocks are installed on the bottom side of the base frame, and all reinforcing blocks are wedge-shaped. The beneficial effect of adopting the above-mentioned further solution is that by installing reinforcing blocks and setting them in a wedge shape, the strength and support effect of the base frame can be improved.

[0016] Furthermore, each roller is fitted with a rubber ring on its outer side.

[0017] The beneficial effect of adopting the above-mentioned further solution is that by fitting a rubber ring on the outside of the roller, the service life and movement effect of the roller can be improved.

[0018] The beneficial effects of this utility model are as follows: This utility model provides an electrophoretic coating material rack through the above design. By installing limiting rods on both sides of the upper end of the base frame, it slidably connects to both sides of the bottom end of the fixed frame, facilitating the vertical sliding of the fixed frame. This allows workpieces hung on hooks to be submerged into or raised from the electrophoretic pool. A movable box is installed at the upper end of the fixed frame, with sliding rods at its upper end. Crossbars are slidably installed between the sliding rods, facilitating the sliding of the crossbars between a pair of crossbars. This allows workpieces raised from inside the electrophoretic pool to be moved to one side of the pool for easy retrieval by the user. Several hanging rods are installed at the bottom of the crossbars, with a pair of hooks on their bottom sides, allowing the user to hang workpieces on the hooks, facilitating the submersion of the workpieces into the electrophoretic pool for processing. A moving groove is opened on the outside of the movable box, and support frames are installed at both ends of the crossbars. Rollers are rotatably connected to the inner side of the support frames, and the rollers are slidably connected to the moving groove. The rollers support the crossbars, reducing the pressure on the sliding rods and facilitating their movement. Attached Figure Description

[0019] Figure 1 This is a three-dimensional structural diagram of the electrophoretic coating material rack disclosed in an embodiment of the present invention. Figure 1 ;

[0020] Figure 2 This is a three-dimensional structural diagram of the electrophoretic coating material rack disclosed in an embodiment of the present invention. Figure 2 ;

[0021] Figure 3 This is a three-dimensional structural diagram of the electrophoretic coating material rack disclosed in an embodiment of the present invention. Figure 3 ;

[0022] Figure 4 This is a three-dimensional structural diagram of the crossbar and movable box of the electrophoretic coating material rack disclosed in an embodiment of this utility model.

[0023] In the diagram: 100, main body; 1001, base frame; 1002, limit rod; 1003, hydraulic rod; 1004, reinforcing block; 200, moving mechanism; 2001, fixed frame; 2002, moving box; 2003, servo motor; 2004, slide bar; 2005, crossbar; 2006, hanging rod; 2007, moving groove; 2008, hook; 2009, roller; 2010, motion groove; 2011, lead screw; 2012, slider; 2013, support frame; 2014, connecting plate. Detailed Implementation

[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0025] Please see Figure 1 - Figure 4This utility model provides a technical solution: an electrophoretic coating material rack, including a main body 100 and a moving mechanism 200. The main body 100 includes a pair of base frames 1001, with limit rods 1002 installed on both sides of the upper end of each base frame 1001. The moving mechanism 200 includes a pair of fixed frames 2001, with the bottom sides of each fixed frame 2001 slidably connected to the two pairs of limit rods 1002. A movable box 2002 is installed on the upper end of each fixed frame 2001, and a sliding rod 2004 is installed on the upper end of each movable box 2002. A crossbar 2005 is slidably installed, and several hanging rods 2006 are installed at the bottom end of the crossbar 2005. Each hanging rod 2006 has a pair of hooks 2008 installed on its bottom side. A moving groove 2007 is opened on the outer side of the movable box 2002. Support frames 2013 are installed at both ends of the crossbar 2005. Rollers 2009 are rotatably connected to the two opposite faces of each pair of support frames 2013. The rollers 2009 are slidably connected to the moving grooves 2007. Limiting rods 1002 are installed on both sides of the upper end of the base frame 1001 to ensure proper connection with the fixed frame 2001. The bottom two sides are slidably connected, facilitating the vertical sliding of the fixing frame 2001. This allows the workpiece hung on the hook 2008 to be submerged into or raised from the electric pool. A movable box 2002 is installed at the upper end of the fixing frame 2001, with a sliding rod 2004 mounted on its upper end. A crossbar 2005 is slidably installed between the sliding rods 2004, allowing the crossbar 2005 to slide between a pair of crossbars. This moves the workpiece raised from inside the electric pool to one side of the pool, making it easy for the user to retrieve it. Several hanging rods are installed at the bottom of the crossbar 2005. A rod 2006 is provided, with a pair of hooks 2008 installed on its bottom side. This allows the user to hang the workpiece on the hooks 2008, facilitating the submersion of the workpiece into the electric pool for processing. A moving groove 2007 is provided on the outside of the moving box 2002. Support frames 2013 are installed at both ends of the crossbar 2005, with rollers 2009 rotatably connected to their inner sides. The rollers 2009 are slidably connected to the moving groove 2007, providing support for the crossbar 2005, reducing the pressure on the sliding rod 2004, and facilitating the movement of the crossbar 2005. The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present utility model, not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the scope of protection of the present utility model.

[0026] Please see Figure 1 - Figure 4The movable box 2002 has motion slots 2010 on both opposite sides. A lead screw 2011 is rotatably connected inside the motion slot 2010. A slider 2012 is threaded onto each lead screw 2011. A connecting plate 2014 is mounted on one side of each slider 2012. The top of the connecting plate 2014 is connected to a crossbar 2005. A servo motor 2003 is mounted on one end of the movable box 2002. The output end of the servo motor 2003 is connected to the lead screw 2011 for transmission. Through the movement of the movable box 2002... A motion groove 2010 is opened on the opposite side, and a lead screw 2011 is rotatably connected inside it to facilitate the rotation of the lead screw 2011. A slider 2012 is threadedly connected to the lead screw 2011, and a connecting plate 2014 is installed on one side of it. The top of the connecting plate 2014 is connected to the crossbar 2005. When the slider 2012 moves, the connecting plate 2014 can drive the crossbar 2005 to move. A servo motor 2003 is installed so that it can drive the lead screw 2011 to rotate when it is working.

[0027] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0028] Please see Figure 1 - Figure 4 Hydraulic rods 1003 are embedded in the center of the upper end face of the base frame 1001. The top of the hydraulic rods 1003 is connected to the bottom of the fixed frame 2001. Several reinforcing blocks 1004 are installed on the bottom side of the base frame 1001, and the reinforcing blocks 1004 are all wedge-shaped. Rubber rings are fitted on the outer side of the rollers 2009. By installing the hydraulic rods 1003, the fixed frame 2001 can be raised and lowered when working. By installing the reinforcing blocks 1004 and setting them in a wedge shape, the strength and support effect of the base frame 1001 can be improved. By fitting rubber rings on the outer side of the rollers 2009, the service life and movement effect of the rollers 2009 can be improved.

[0029] Specifically, the working principle of this electrophoretic coating material rack is as follows: During use, the user first hangs the workpieces to be electrophoretically coated one by one on the hooks 2008 of the hanging rod 2006 at the bottom of the crossbar 2005. At this time, the base frame 1001 provides stable support through its bottom wedge-shaped reinforcing blocks 1004, enhancing the stability of the entire base frame 1001. The servo motor 2003 at one end of the moving box 2002 is then activated, driving the lead screw 2011 to rotate within the motion groove 2010. Since the lead screw 2011 is threadedly connected to the slider 2012, and one side of the slider 2012 is connected to the crossbar 2005 via the connecting plate 2014, the rotation of the lead screw 2011 causes the slider 2012 to move horizontally within the motion groove 2010. This, in turn, drives the crossbar 2005 to slide between a pair of sliding rods 2004 via the connecting plate 2014. The rollers 2009, rotatably connected to the inner sides of the support frames 2013 at both ends of the crossbar 2005, are located in the motion groove 2000 outside the moving box 2002. The inner rolling mechanism assists in the movement of the crossbar 2005, reducing the pressure on the slide bar 2004 and moving the workpiece from one side of the electrophoretic pool to above it. Then, the hydraulic rod 1003, embedded in the center of the upper surface of the base frame 1001, is activated. The hydraulic rod 1003 retracts, causing the fixed frame 2001 connected to its top to slide downwards along the limit rod 1002. The fixed frame 2001 then lowers the moving box 2002, slide bar 2004, crossbar 2005, and the workpiece hanging on the hook 2008 together until the workpiece is completely immersed in the electrophoretic solution in the electrophoretic pool, initiating the electrophoretic coating process. After the electrophoretic coating is completed, the hydraulic rod 1003 rises, causing the fixed frame 2001 to slide upwards along the limit rod 1002, thereby lifting the crossbar 2005, which is full of workpieces, out of the electrophoretic pool. Finally, the servo motor 2003 is activated again, causing it to move the crossbar 2005 to one side of the electrophoretic pool via the slider 2012, facilitating material removal by the user.

Claims

1. An electrophoretic coating material rack, characterized in that, The system includes a main body (100) and a moving mechanism (200). The main body (100) includes a pair of base frames (1001), with limit rods (1002) installed on both sides of the upper end of each base frame (1001). The moving mechanism (200) includes a pair of fixed frames (2001), with the bottom sides of each fixed frame (2001) slidably connected to the two pairs of limit rods (1002). A moving box (2002) is installed on the upper end of each fixed frame (2001), and a sliding rod (2004) is installed on the upper end of each moving box (2002). A crossbar (2005) is slidably installed between the sliding rods (2004). Several hanging rods (2006) are installed at the bottom end of the crossbar (2005). A pair of hooks (2008) are installed on the bottom side of each hanging rod (2006). A moving groove (2007) is opened on the outer side of each movable box (2002). Support frames (2013) are installed at both ends of the crossbar (2005). Rollers (2009) are rotatably connected to the two opposite surfaces of a pair of support frames (2013). The rollers (2009) are slidably connected to the moving grooves (2007).

2. The electrophoretic coating material rack according to claim 1, characterized in that, The movable box (2002) has motion grooves (2010) on both opposite sides, and a lead screw (2011) is rotatably connected inside the motion grooves (2010).

3. The electrophoretic coating material rack according to claim 2, characterized in that, Each lead screw (2011) is threadedly connected to a slider (2012), and a connecting plate (2014) is installed on one side of each slider (2012). The top of the connecting plate (2014) is connected to the crossbar (2005).

4. The electrophoretic coating material rack according to claim 3, characterized in that, Each of the movable boxes (2002) is equipped with a servo motor (2003) at one end, and the output end of the servo motor (2003) is connected to the lead screw (2011) for transmission.

5. The electrophoretic coating material rack according to claim 1, characterized in that, Hydraulic rods (1003) are embedded in the center of the upper end face of the base frame (1001), and the top of the hydraulic rods (1003) is connected to the bottom of the fixed frame (2001).

6. The electrophoretic coating material rack according to claim 1, characterized in that, The bottom side of the base frame (1001) is equipped with several reinforcing blocks (1004), and the reinforcing blocks (1004) are all wedge-shaped.

7. The electrophoretic coating material rack according to claim 1, characterized in that, The outer side of each roller (2009) is fitted with a rubber ring, and the rubber ring is made of rubber.