Electroplated part drying device

By combining the mesh cylinder with the rotating component, the electroplated parts are automatically flipped and locked by the self-locking component, which solves the problem of incomplete drying of electroplated parts and improves drying efficiency and effect.

CN223954553UActive Publication Date: 2026-02-27TAICANG HAIFENG ELECTROPLATING CO LTD
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Patent Information

Application Number
CN202520090119.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-15
Publication Date
2026-02-27
Estimated Expiration
2035-01-15

AI Technical Summary

Technical Problem

In existing electroplated parts drying equipment, the contact surface between the electroplated parts and the tray is difficult to dry completely during the drying process, requiring manual flipping to ensure that the entire surface is dry, resulting in low efficiency.

Method used

By combining a mesh cylinder structure with rotating components, the electroplated parts inside the mesh cylinder automatically flip, and combined with a self-locking component and a lifting mechanism, an automated drying process is achieved.

Benefits of technology

It improves the drying efficiency of electroplated parts, ensures uniform drying of the entire surface, reduces the need for manual operation, and allows for adjustment of drying effect and efficiency.

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Abstract

The utility model relates to an electroplated part drying device, and relates to the technical field of electroplating. The electroplated part drying device comprises a machine box, an infrared heating lamp is arranged in the machine box, a net cylinder is further arranged in the machine box, the net cylinder is located under the infrared heating lamp, the axis of the net cylinder is horizontally arranged, the net cylinder is rotationally connected with the machine box, and the space in the net cylinder is used for containing an electroplated part to be dried. A rotating piece is further arranged on the machine box and used for driving the net cylinder to rotate along the axis of the net cylinder. The electroplating part drying device has the effect of improving the electroplating part drying efficiency.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of electroplating, in particular to an electroplated part drying device. BACKGROUND

[0002] Electroplating is a process of plating a thin layer of other metals or alloys on the surface of certain metals by using electrolysis principle, which has the effects of preventing metal oxidation, improving metal wear resistance and enhancing aesthetics. In the production process of electroplated parts, the electroplated parts need to be cleaned after electroplating and dried after cleaning.

[0003] There is an electroplated part drying device in the prior art, which comprises a cabinet, an infrared heating lamp, a tray and a rotating part are arranged in the cabinet, the infrared heating lamp is installed at the top of the cabinet and is used for heating the cavity in the cabinet. The tray is located at the bottom of the cavity in the cabinet, the rotating part is used for driving the tray to rotate, and the electroplated parts to be dried are placed on the tray. The outer wall of the cabinet is also provided with a heat dissipation hole. In use, the electroplated parts are placed on the tray, and the rotating part is turned on to drive the tray to rotate. At this time, the infrared heating lamp heats the cavity where the electroplated parts are located, thereby realizing the drying of the electroplated parts.

[0004] For the related technology in the above, since the bottom wall of the electroplated parts placed on the tray is fully attached to the surface of the tray, in the actual drying process, the side of the electroplated parts attached to the tray is difficult to be completely dried, which requires the related personnel to turn over the electroplated parts on the tray after a certain time of drying, so as to completely dry all surfaces of the electroplated parts, which reduces the drying efficiency of the electroplated parts, and needs to be improved. Invention content

[0005] In order to improve the drying efficiency of the electroplated parts, the present application provides an electroplated part drying device.

[0006] The electroplated part drying device provided by the present application adopts the following technical scheme:

[0007] An electroplated part drying device, comprising a cabinet, an infrared heating lamp is arranged in the cabinet, a mesh cylinder is also arranged in the cabinet, the mesh cylinder is located directly below the infrared heating lamp, the axis of the mesh cylinder is horizontally arranged and is rotationally connected with the cabinet, the space in the mesh cylinder is used for placing the electroplated parts to be dried, a rotating part is also arranged on the cabinet, and the rotating part is used for driving the mesh cylinder to rotate along the axis thereof.

[0008] Compared with the prior art, the electroplated part to be dried is placed on the tray, and the related personnel need to turn over the electroplated part on the tray after drying for a certain time, so that each surface of the electroplated part is completely dried. According to the present application, the electroplated part is placed in the mesh cylinder, and the rotating member drives the mesh cylinder to rotate, so that the electroplated part is automatically turned over on the surface of the mesh cylinder, replacing the manual turning over of the related personnel, so that the related personnel do not need to take out and turn over the electroplated part, effectively increasing the drying efficiency of the electroplated part and ensuring the drying effect.

[0009] Preferably, an opening is further formed in the side wall of the mesh cylinder, and a switch door is further arranged on the mesh cylinder, one end of the switch door is rotatably connected with the mesh cylinder, the switch door is used for closing the opening on the mesh cylinder, and a locking mechanism is further arranged on the mesh cylinder, and the locking mechanism is used for locking the mesh cylinder and the switch door when the switch door is in a closed state.

[0010] According to the above technical scheme, the switch door and the locking mechanism are arranged, so that the related personnel can place the electroplated part to be dried in the mesh cylinder after the switch door is opened, and the locking mechanism can lock the switch door after the switch door is closed, so as to fix the switch door and the mesh cylinder, effectively facilitating the placement of the electroplated part by the related personnel.

[0011] Preferably, the locking mechanism comprises a locking frame and a self-locking assembly, one end of the locking frame extends out of the mesh cylinder and is inserted into the end of the switch door, and the self-locking assembly is used for driving the locking frame to slide along the sliding direction of the locking frame and achieving self-locking after the locking frame is inserted into the switch door.

[0012] According to the above technical scheme, the locking mechanism is specifically arranged, so that the locking frame can slide under the driving of the self-locking assembly when the switch door is closed, so that the locking frame is inserted into one end of the switch door, and the switch door is locked. The existence of the self-locking assembly can also achieve self-locking after the switch door is locked, effectively facilitating the operation of the related personnel and reducing the probability of accidental opening of the switch door.

[0013] Preferably, the self-locking assembly comprises a rotating frame and a transmission frame, one end of the rotating frame is rotatably connected with the mesh cylinder, the other end of the rotating frame is rotatably connected with one end of the transmission frame, and the other end of the transmission frame is rotatably connected with the locking frame.

[0014] By adopting the above technical scheme, the specific setting of the self-locking assembly enables relevant personnel to drive the rotating frame to rotate, so that the rotating frame drives the locking frame to slide through the transmission frame, and then the locking frame is inserted or moved away from the door, thereby achieving the driving of the locking frame and effectively facilitating the operation of relevant personnel.

[0015] As a preferred, when the locking frame abuts against the inner wall of the door, the rotating frame and the transmission frame are not in the same straight line, and the self-locking assembly further comprises an abutting frame, the abutting frame is connected with the meshing tube, and the abutting frame is used for abutting against the side of the rotating frame away from the transmission frame after the rotating frame and the transmission frame pass the straight line state.

[0016] By adopting the above technical scheme, the setting of the abutting block enables the rotating frame to abut against the abutting frame after the locking frame abuts against the inner wall of the door, so that the rotating frame and the transmission frame pass the straight line state and abut against the abutting frame, thereby fixing the position of the rotating frame and the transmission frame, effectively achieving the self-locking of the self-locking assembly, and further facilitating the operation of relevant personnel, while reducing the probability of accidental opening of the door.

[0017] As a preferred, the case further comprises a lifting mechanism, the lifting mechanism comprises a lifting plate and a lifting assembly, the lifting plate is slidably connected with the case, and the sliding direction of the lifting plate is the height direction of the case, the infrared heating lamp is installed on the lifting plate, and the lifting assembly is used for driving the lifting plate to slide.

[0018] By adopting the above technical scheme, the setting of the lifting mechanism enables relevant personnel to drive the lifting plate to lift through the lifting assembly, so as to change the distance between the infrared heating lamp and the meshing tube, and then change the distance between the infrared heating lamp and the to-be-dried electroplated part, thereby achieving the adjustment of the drying efficiency and the drying effect.

[0019] As a preferred, the lifting assembly comprises a lifting piece and a lead screw, the axis direction of the lead screw is the same as the sliding direction of the lifting plate, the lead screw is rotatably connected with the case, one end of the lead screw penetrates through the lifting plate and is threadedly connected with the lifting plate, and the lifting piece is used for driving the lead screw to rotate.

[0020] By adopting the above technical scheme, the specific setting of the lifting assembly enables the lifting piece to drive the lead screw to rotate, so that the lead screw drives the lifting plate to slide, thereby achieving the driving of the lifting plate, and the existence of the lead screw can realize the multi-range adjustment of the height of the lifting plate, thereby facilitating the operation of relevant personnel.

[0021] As a preferred, the lifting mechanism further comprises a guide rod, the guide rod is arranged in parallel with the lead screw, the guide rod is connected with the case, and the guide rod penetrates through the lifting plate and is slidably connected with the lifting plate.

[0022] By adopting the technical scheme, the guide rod is arranged to guide the sliding of the lifting plate and ensure the stability of the sliding of the lifting plate, thereby ensuring the stability of the sliding of the infrared heating lamp.

[0023] In summary, the present application has at least one of the following beneficial technical effects:

[0024] 1. The net cylinder and the rotating member are arranged, so that the relevant personnel can place the electroplated part in the net cylinder, and the rotating member drives the net cylinder to rotate, so that the electroplated part is automatically turned over on the surface of the net cylinder, replacing the manual turning over of the relevant personnel, so that the relevant personnel do not need to take out and turn over the electroplated part, effectively increasing the drying efficiency of the electroplated part, and ensuring the drying effect;

[0025] 2. The switch door and the locking mechanism are arranged, so that the relevant personnel can drive the locking frame to slide through the self-locking assembly when the switch door is closed, so that the locking frame is inserted into one end of the switch door, and the locking of the switch door is realized; the self-locking assembly can also realize self-locking after the switch door is locked, effectively facilitating the operation of the relevant personnel, and reducing the probability of accidental opening of the switch door;

[0026] 3. The lifting mechanism is arranged, so that the relevant personnel can drive the lifting plate to lift through the lifting assembly, so as to change the distance between the infrared heating lamp and the net cylinder, and then change the distance between the infrared heating lamp and the electroplated part to be dried, so as to adjust the drying efficiency and drying effect. BRIEF DESCRIPTION OF DRAWINGS

[0027] Figure 1 is a schematic view of the electroplated part drying device in the embodiment of the present application.

[0028] Figure 2 is a structural schematic view of the lifting mechanism in the embodiment of the present application.

[0029] Figure 3 is a structural schematic view of the net cylinder in the embodiment of the present application.

[0030] Figure 4 is a structural schematic view of the self-locking assembly in the embodiment of the present application.

[0031] Explanation of reference signs: 1, case; 11, drying cavity; 2, case door; 3, infrared heating lamp; 4, mesh cylinder; 41, mounting portion; 411, embedded groove; 5, rotating piece; 6, lifting mechanism; 61, lifting plate; 62, lifting assembly; 621, lifting piece; 622, lead screw; 63, guide rod; 7, switch door; 71, locking groove; 8, locking mechanism; 81, locking frame; 811, extension portion; 82, self-locking assembly; 821, rotating frame; 8211, rotating portion; 8212, connecting portion; 822, transmission frame; 823, abutting frame. DETAILED DESCRIPTION

[0032] The following will be described in detail below with reference to the accompanying drawings. Figures 1-3 The present application is further described in detail.

[0033] The present application discloses a kind of electroplated piece drying device. Refer to Figure 1 And Figure 2 Electroplated piece drying device includes case 1, drying cavity 11 is set on the side wall of case 1, case 1 is also provided with case door 2, case door 2 is connected with case 1 by pin shaft rotation, and is used to close drying cavity 11. Drying cavity 11 is also provided with infrared heating lamp 3 and mesh cylinder 4, mesh cylinder 4 is located directly below infrared heating lamp 3, the axis of mesh cylinder 4 is horizontally arranged, and is connected with case 1 rotation. The space in mesh cylinder 4 is used to place the electroplated piece to be dried. Case 1 is also provided with rotating piece 5, rotating piece 5 is used to drive mesh cylinder 4 to rotate along its axis.

[0034] Refer to Figure 1 And Figure 2 Drying cavity 11 is also provided with lifting mechanism 6, lifting mechanism 6 includes lifting plate 61, lifting assembly 62 and guide rod 63, lifting assembly 62 includes lifting piece 621 and lead screw 622. In the embodiment of the application, lifting piece 621 is set as servo motor, the servo motor is fixedly installed at the top end of case 1, and the output shaft extends vertically downward, and is fixedly connected with the top end of lead screw 622 through shaft coupling.

[0035] Refer to Figure 1 And Figure 2 Both ends of lead screw 622 are rotationally connected with case 1 through bearing, and the bottom end of lead screw 622 passes through lifting plate 61 and is threadedly connected with lifting plate 61. Guide rod 63 is located on the side of lifting plate 61 away from lead screw 622, guide rod 63 is arranged in parallel with lead screw 622, and both ends are fixedly connected with case 1. The bottom end of guide rod 63 passes through lifting plate 61 and is slidingly connected with lifting plate 61, so as to guide the sliding of lifting plate 61, and at the same time ensure the stability of the driving of lifting plate 61 by lead screw 622.

[0036] Refer to Figure 2The infrared heating lamp 3 is fixedly installed at the bottom of the lifting plate 61, and the heating end is vertically arranged downward. In other embodiments, the top of the lifting plate 61 is also provided with a hose for sleeving the circuit line on the infrared heating lamp 3 to protect the circuit line.

[0037] With reference to Figure 1 and Figure 2 The axis direction of the mesh cylinder 4 is the length direction of the cabinet 1, both ends of the mesh cylinder 4 are rotationally connected with the cabinet 1 through bearings, and one end extends out of the cabinet 1. In the embodiment, the rotating part 5 is a reduction motor which is fixedly installed on the cabinet 1 through bolts, and the output shaft of the reduction motor is fixedly connected with the end of the mesh cylinder 4 extending out of the cabinet 1 through a shaft coupling.

[0038] With reference to Figure 3 and Figure 4 An opening is also formed in the side wall of the mesh cylinder 4 for personnel to put the electroplated part into the mesh cylinder 4. The mesh cylinder 4 is also provided with a switch door 7 and a locking mechanism 8. One end of the switch door 7 is rotationally connected with the mesh cylinder 4 through a pin shaft, and the rotation axis is parallel to the axis of the mesh cylinder 4. When the switch door 7 is closed, the opening in the mesh cylinder 4 is closed.

[0039] With reference to Figure 3 and Figure 4 The mesh cylinder 4 is also provided with a mounting portion 41 which is located at the end of the switch door 7 away from the rotational connection position, and the mounting portion 41 is fixedly connected with the mesh cylinder 4 through welding. The locking mechanism 8 includes a locking frame 81 and a self-locking assembly 82. The self-locking assembly 82 includes a rotating frame 821, a transmission frame 822 and an abutting frame 823.

[0040] With reference to Figure 3 and Figure 4 One end of the locking frame 81 is located in the mounting portion 41 and is slidingly connected with the mounting portion 41, and the sliding direction is perpendicular to the axis direction of the switch door 7. Both ends of the locking frame 81 along the length direction thereof extend with an extension portion 811, and each extension portion 811 extends out of the mounting portion 41. Corresponding two side walls of the mounting portion 41 are provided with a groove for the extension of the extension portion 811.

[0041] With reference to Figure 3 and Figure 4The rotating frame 821 is located at one end of the mounting portion 41 away from the shutter door 7, and is rotatably connected with the mounting portion 41 through a pin shaft, and the rotating axis is parallel to the rotating axis of the shutter door 7. The rotating frame 821 is further provided with a rotating portion 8211, which is integrally formed with the rotating frame 821 and located at one end of the rotating frame 821 away from the shutter door 7. The surface of the mounting portion 41 is further provided with an embedding groove 411, which is used for embedding the rotating portion 8211 after the rotating frame 821 rotates, so as to reduce the probability of accidental rotation of the rotating portion 8211.

[0042] With reference to Figure 3 and Figure 4 , the rotating frame 821 further extends two connecting portions 8212 away from the rotating portion 8211, each of which is integrally formed with the rotating frame 821 and located at two sides of the mounting portion 41. In the embodiment of the present application, the number of the transmission frames 822 is two, and each of which is correspondingly arranged with the connecting portion 8212. One end of each of the transmission frames 822 is rotatably connected with the corresponding connecting portion 8212 through a pin shaft, and the other end is rotatably connected with the corresponding extension portion 811.

[0043] With reference to Figure 3 and Figure 4 , in the embodiment of the present application, the number of the abutting frames 823 is two, each of which is located at two sides of the mounting portion 41 and correspondingly arranged with the connecting portion 8212. Each of the abutting frames 823 is fixedly connected with the mounting portion 41 through welding. Each of the abutting frames 823 is located below the corresponding connecting portion 8212 and on the displacement path of the corresponding connecting portion 8212, so that the connecting portion 8212 can abut against the corresponding abutting frame 823.

[0044] With reference to Figure 3 and Figure 4 , the end of the shutter door 7 close to the mounting frame is further provided with a locking groove 71. When the locking frame 81 is inserted into the locking groove 71 and the end portion abuts against the inner wall of the locking groove 71, the straight line distance between the rotating connection between the rotating frame 821 and the mounting portion 41 and the extension portion 811 is less than the sum of the length of the rotating frame 821 and the transmission frame 822, so that when the locking frame 81 abuts against the inner wall of the locking groove 71, the rotating connection between the rotating frame 821 and the transmission frame 822 is located above the rotating connection between the rotating frame 821 and the mounting portion 41 and the straight line (hereinafter referred to as the above straight line) connected with the extension portion 811.

[0045] With reference to Figure 3 and Figure 4, and when the transmission frame 822 is in the self-locking state with the rotating frame 821, the rotating connection between the rotating frame 821 and the transmission frame 822 is located below the straight line, at this time, the rotating frame 821 abuts against the abutting frame 823, and the rotating part 8211 is embedded in the embedded groove 411.

[0046] Referring to Figure 3 and Figure 4 , in the initial state, i.e. when the switch door 7 is not closed, the rotating connection between the rotating frame 821 and the transmission frame 822 is located above the straight line. When the switch door 7 is closed, the rotating frame 821 is rotated by the rotating part 8211 to make one end of the rotating connection between the rotating frame 821 and the transmission frame 822 rotate downward. In this process, the rotating frame 821 drives the locking frame 81 to slide through the transmission frame 822, and gradually inserts into the locking groove 71.

[0047] Referring to Figure 3 and Figure 4 , when the locking frame 81 is inserted into the locking groove 71 and the end abuts against the inner wall of the locking groove 71, the rotating frame 821 is continuously rotated, in this process, the length direction of the transmission frame 822 and the rotating frame 821 gradually becomes the same, so that the transmission frame 822 and the rotating frame 821 gradually locate on the same straight line, at this time, the locking frame 81 abuts against the locking groove 71. Thereafter, the rotating frame 821 is continuously rotated to make the transmission frame 822 and the rotating frame 821 pass the current position, and make the rotating connection between the rotating frame 821 and the transmission frame 822 located below the straight line. At this time, the rotating frame 821 abuts against the abutting frame 823, and the rotating part 8211 is embedded in the embedded groove 411, completing the locking of the switch door 7.

[0048] The implementation principle of the electroplated part drying device in the embodiment of the application is as follows: when the electroplated part is placed in the mesh cylinder 4, the switch door 7 needs to be closed, the switch door 7 is rotated to close the opening on the mesh cylinder 4. Then, the rotating frame 821 is rotated, the rotating frame 821 drives the locking frame 81 to slide through the transmission frame 822, and gradually inserts into the locking groove 71 on the switch door 7. In this process, the rotating connection between the rotating frame 821 and the transmission frame 822 gradually locates below the straight line connected by the extension part 811 and the rotating connection between the rotating frame 821 and the mounting part 41. At this time, the rotating frame 821 abuts against the abutting frame 823, and the rotating part 8211 is embedded in the embedded groove 411, and the closing of the switch door 7 is completed.

[0049] The above are preferred embodiments of the application, which do not limit the protection scope of the application, therefore: any equivalent changes made on the structure, shape, principle of the application should be covered within the protection scope of the application.

Claims

1. A kind of electroplating piece drying device, including machine case (1), infrared heating lamp (3) is arranged in the machine case (1), it is characterized by: The cabinet (1) is further provided with a mesh cylinder (4), which is located directly below the infrared heating lamp (3), the axis of the mesh cylinder (4) is horizontally arranged and is rotationally connected with the cabinet (1), the space in the mesh cylinder (4) is used for placing the electroplated parts to be dried, the cabinet (1) is further provided with a rotating part (5), the rotating part (5) is used for driving the mesh cylinder (4) to rotate along the axis thereof; The side wall of the mesh cylinder (4) is further provided with an opening, the mesh cylinder (4) is further provided with a switch door (7), one end of the switch door (7) is rotationally connected with the mesh cylinder (4), the switch door (7) is used for closing the opening on the mesh cylinder (4), the mesh cylinder (4) is further provided with a locking mechanism (8), the locking mechanism (8) is used for locking the mesh cylinder (4) and the switch door (7) when the switch door (7) is in the closed state. The locking mechanism (8) comprises a locking frame (81) and a self-locking assembly (82), the locking frame (81) is slidably connected with the mesh cylinder (4), one end of the locking frame (81) extends out of the mesh cylinder (4) and is inserted into the end portion of the switch door (7), the self-locking assembly (82) is used for driving the locking frame (81) to slide along the sliding direction thereof and achieving self-locking after the locking frame (81) is inserted into the switch door (7).

2. The electroplated part drying apparatus of claim 1, wherein: The self-locking assembly (82) comprises a rotating frame (821) and a transmission frame (822), one end of the rotating frame (821) is rotationally connected with the mesh cylinder (4), the other end is rotationally connected with one end of the transmission frame (822), the other end of the transmission frame (822) is rotationally connected with the locking frame (81).

3. The electroplated part drying apparatus of claim 2, wherein: When the locking frame (81) abuts against the inner wall of the switch door (7), the rotating frame (821) and the transmission frame (822) are not in the same straight line, the self-locking assembly (82) further comprises an abutting frame (823), the abutting frame (823) is connected with the mesh cylinder (4), the abutting frame (823) is used for abutting against the side of the rotating frame (821) away from the transmission frame (822) after the rotating frame (821) and the transmission frame (822) pass the straight line state.

4. The electroplated part drying apparatus of claim 1, wherein: The cabinet (1) is further provided with a lifting mechanism (6), the lifting mechanism (6) comprises a lifting plate (61) and a lifting assembly (62), the lifting plate (61) is slidably connected with the cabinet (1), the sliding direction is the height direction of the cabinet (1), the infrared heating lamp (3) is installed on the lifting plate (61), the lifting assembly (62) is used for driving the lifting plate (61) to slide.

5. The electroplated part drying apparatus of claim 4, wherein: The lifting assembly (62) comprises a lifting part (621) and a lead screw (622), the axis direction of the lead screw (622) is the same as the sliding direction of the lifting plate (61), the lead screw (622) is rotationally connected with the cabinet (1), one end of the lead screw (622) penetrates through the lifting plate (61) and is threadedly connected with the lifting plate (61), the lifting part (621) is used for driving the lead screw (622) to rotate.

6. The electroplated part drying apparatus of claim 5, wherein: The lifting mechanism (6) further comprises a guide rod (63) which is arranged in parallel with the lead screw (622), the guide rod (63) is connected with the case (1), the guide rod (63) passes through the lifting plate (61) and is in sliding connection with the lifting plate (61).