Part surface deoxidation equipment

By using a rotary drive element and an eccentric disk design, combined with a stabilizer and an infusion mechanism, the problem of incomplete deoxidation of components inside the basket is solved, achieving thorough deoxidation of component surfaces and saving pickling solution.

CN223705747UActive Publication Date: 2025-12-23CHONGQING XINKELONG MACHINERY MANUFACTURING CO LTD
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Patent Information

Application Number
CN202520035558.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-08
Publication Date
2025-12-23
Estimated Expiration
2035-01-08

AI Technical Summary

Technical Problem

When existing descaling equipment for automotive parts places a large number of parts in the basket, the parts at the bottom of the basket receive less impact, resulting in incomplete descaling.

Method used

A rotary drive element is used to drive the eccentric disk to rotate. Combined with the infusion mechanism and stabilizer design, the rotation of the basket generates centrifugal force to remove the oxide layer. The auxiliary unit saves the amount of pickling solution and prevents the basket from shifting.

Benefits of technology

It achieves complete removal of the oxide layer on the surface of parts, saves on the amount of pickling solution used, improves the deoxidation effect, and is more environmentally friendly.

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Abstract

The utility model relates to the technical field of deoxidation equipment, in particular to part surface deoxidation equipment which comprises an equipment body, a basket, a liquid conveying mechanism and a deoxidation assembly, and the deoxidation assembly comprises a rotary driving element, an eccentric disc, an annular frame, a stabilizing frame and an auxiliary unit. The rotation driving element is started, the output end of the rotation driving element drives the eccentric disc to rotate, the eccentric disc can rotate on the annular frame when rotating along with the rotation driving element, then the basket is driven to rotate, meanwhile, the liquid conveying mechanism is started, and the pickling solution is conveyed into the basket along the equipment body; the eccentric disc is driven by the rotary driving element to rotate, so that the basket rotates along with the eccentric disc to generate centrifugal force, oxide layers on the surfaces of the parts are thrown away, and therefore the problem that the parts at the bottom of an existing automobile part oxide skin removing device are subjected to small impact, and consequently deoxidation is not thorough is solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to deoxidation equipment technical field, concretely relates to a kind of component surface deoxidation equipment. BACKGROUND

[0002] Oxide is the corrosion product formed by the oxidation of steel at high temperature, which can cause metal loss. The existing method is to use pickling to remove oxide, but the automobile parts and pickling solution cannot be fully contacted during rinsing, and the effect of removing oxide is not good.

[0003] At present, the prior art (CN219586189U) discloses an automobile parts oxide removal equipment, which comprises a device main body, a filter box, a circulating pump and a basket frame. The basket frame is arranged inside the device main body, and a hook is fixed on the outer wall of one side of the basket frame. A telescopic drive is installed on the outer wall of one side of the device main body, and the output end of the telescopic drive extends into the interior of the device main body and is fixed with a push-pull plate. A support frame is fixed inside the device main body below the basket frame. The filter box is arranged below the device main body, and the circulating pump is installed on one side of the device main body. A drain pipe is installed on the outer wall of the bottom of the filter box. The device not only increases the rinsing force, making the automobile parts and pickling solution contact more fully, and the effect of removing oxide is good, the pickling solution can be reused, more energy-saving and environmentally friendly, and the convenience of cleaning the oxide residue is improved.

[0004] However, the above-mentioned method is used to place the parts to be deoxidized in the basket, and at the same time, the pickling solution is placed in the device main body, and the telescopic drive is started to drive the basket to move linearly on the support frame, thereby generating an impact force to deoxidize the surface of the parts in the basket with the pickling solution. However, when deoxidizing, more parts are placed in the basket, so that when the telescopic drive is used to move linearly, the parts at the bottom of the basket receive less impact, resulting in incomplete deoxidization. UTILITY MODEL CONTENTS

[0005] The utility model aims to provide a kind of component surface deoxidation equipment, to solve the problem that more parts are placed in the basket of the existing automobile parts oxide removal equipment, so that when the telescopic drive is used to move linearly, the parts at the bottom of the basket receive less impact, resulting in incomplete deoxidization.

[0006] To achieve the above-mentioned purpose, the utility model provides a kind of component surface deoxidation equipment, which comprises a device main body, a basket, a liquid delivery mechanism and a deoxidation assembly. The basket is arranged in the device main body. The liquid delivery mechanism is arranged on the side of the device main body. The deoxidation assembly comprises a rotary drive element, an eccentric disc, an annular frame, a stabilizing frame and an auxiliary unit.

[0007] The rotating driving element is fixedly connected with the device body and located in the device body, the eccentric disc is fixedly connected with the output end of the rotating driving element, fixedly connected with the basket and located at the top of the rotating driving element, the eccentric disc has a plurality of through holes, the annular frame is fixedly connected with the device body, rotationally connected with the eccentric disc and located in the device body, the stabilizing frame is fixedly connected with the basket, fixedly connected with the eccentric disc and located at the bottom of the basket, and the auxiliary unit is arranged on one side of the device body.

[0008] The stabilizing frame includes a placement table, an extension rod and a round head, the placement table is fixedly connected with the eccentric disc and the basket and located at the bottom of the basket, the extension rod is fixedly connected with the basket and located on one side of the basket, the round head is rotationally connected with the extension rod and the device body and located on the side of the extension rod away from the basket.

[0009] The extension rod includes a frame, a long barrel and an extension rod, the frame is fixedly connected with the basket and located on the side of the basket close to the placement table, the long barrel is fixedly connected with the frame and located on the side of the frame, and the extension rod is slidingly connected with the long barrel and rotationally connected with the round head and located on the side of the long barrel.

[0010] The auxiliary unit includes a collection frame, a filter screen and a liquid outlet valve, the collection frame is fixedly connected with the device body and located at the bottom of the device body, the filter screen is slidingly connected with the collection frame and located on one side of the collection frame, and the liquid outlet valve is in communication with the collection frame and located on one side of the collection frame.

[0011] The collection frame includes a fixing frame and a storage box, the fixing frame is fixedly connected with the device body and located at the bottom of the device body, and the storage box is fixedly connected with the fixing frame and in communication with the infusion mechanism and located on one side of the fixing frame.

[0012] The utility model discloses a kind of part surface deoxidizing equipment, when the oxidation layer on the surface of part needs to be removed, staff first opens the equipment main body, places part in the basket, and the equipment main body is closed, at this time, the eccentric disc is rotated by the output end of the rotary drive element, so that the eccentric disc can rotate on the annular frame when following the rotary drive element, in turn, the basket is rotated, simultaneously, the infusion mechanism is started, pickling solution is transmitted to the basket along the equipment main body, the eccentric disc is rotated by the rotary drive element, so that the centrifugal force generated when the basket is rotated, the oxidation layer on the surface of part is thrown away, and the basket is rotated by the stabilizing frame fixed on the equipment main body when following the eccentric disc, the basket can avoid deviation, and by the auxiliary unit cooperation infusion mechanism use, pickling solution usage is saved, more energy saving and environmental protection, to solve the problem that the existing automobile part deoxidizing skin equipment is placed more in the basket, when linear reciprocating motion is used by telescopic drive piece, the impact of the part at the bottom of the basket is smaller, leading to incomplete deoxidization. BRIEF DESCRIPTION OF DRAWINGS

[0013] In order to more clearly illustrate the technical scheme in the embodiments of the present application or the prior art, the drawings needed to be used in the embodiment or prior art description will be briefly introduced as follows.

[0014] Figure 1 It is the overall structure schematic view of the part surface deoxidizing equipment of the utility model.

[0015] Figure 2 It is another angle structure schematic view of the overall of the part surface deoxidizing equipment of the utility model.

[0016] Figure 3 It is another angle structure schematic view of the overall of the part surface deoxidizing equipment of the utility model.

[0017] Figure 4 It is the overall sectional view of the part surface deoxidizing equipment of the utility model.

[0018] 101-equipment main body, 102-basket, 103-infusion mechanism, 104-deoxidizing assembly, 105-rotary drive element, 106-eccentric disc, 107-annular frame, 108-stabilizing frame, 109-auxiliary unit, 110-through hole, 111-placing table, 112-telescopic rod, 113-round head, 114-frame, 115-long barrel, 116-elongated rod, 117-collection frame, 118-filter screen, 119-liquid outlet valve, 120-fixing frame, 121-storage box. Detailed Implementation

[0019] The embodiments of the present invention are described in detail below. Examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the present invention, but should not be construed as limiting the present invention.

[0020] Please see Figures 1-4 , Figure 1 This is a schematic diagram of the overall structure of a component surface deoxidation device according to this utility model. Figure 2 This is a schematic diagram of the overall structure of a component surface deoxidation device according to this utility model from another angle. Figure 3 This is a schematic diagram of the overall structure of a component surface deoxidation device according to this utility model from another angle. Figure 4 This is an overall cross-sectional view of a component surface deoxidation device according to this utility model.

[0021] This utility model discloses a component surface deoxidation device, comprising a main body 101, a basket 102, an infusion mechanism 103, and an deoxidation component 104. The deoxidation component 104 includes a rotary drive element 105, an eccentric disc 106, an annular frame 107, a stabilizing frame 108, and an auxiliary unit 109. The stabilizing frame 108 includes a placement platform 111, a telescopic rod 112, and a round head 113. The telescopic rod 112 includes a frame 114, a long cylinder 115, and an extension rod 116. The auxiliary unit 109 includes a collection frame 117, a filter screen 118, and an outlet valve 119. The collection frame 117 includes a fixing frame 120 and a storage box 121. The aforementioned solution solves the problem that existing automotive component deoxidation devices place a large number of components in the basket 102, resulting in less impact on the components at the bottom of the basket 102 when the telescopic drive element makes linear reciprocating motion, leading to incomplete deoxidation.

[0022] In this specific embodiment, the basket 102 is disposed inside the main body 101 of the equipment, and the infusion mechanism 103 is disposed on the side of the main body 101 of the equipment. By placing the parts to be deoxidized into the basket 102 and sealing the main body 101, the infusion mechanism 103 is activated to transfer the pickling solution into the main body 101 of the equipment for subsequent processes. The infusion mechanism 103 can be a circulating pump, a ring pipe, and a water outlet. Its specific connection method and usage method are described in detail in the patent document with publication number CN219586189U, which is not within the scope of protection of this application and will not be described again here.

[0023] The rotating driving element 105 is fixedly connected with the equipment body 101 and located in the equipment body 101, the eccentric disc 106 is fixedly connected with the output end of the rotating driving element 105, fixedly connected with the basket 102 and located at the top of the rotating driving element 105, the eccentric disc 106 has a plurality of through holes 110, the annular frame 107 is fixedly connected with the equipment body 101, rotationally connected with the eccentric disc 106 and located in the equipment body 101, the stabilizing frame 108 is fixedly connected with the basket 102, fixedly connected with the eccentric disc 106 and located at the bottom of the basket 102, the auxiliary unit 109 is arranged on one side of the equipment body 101, when it is necessary to remove the oxidation layer on the surface of the parts, the staff first opens the equipment body 101, places the parts in the basket 102 and closes the equipment body 101, at this time, the rotating driving element 105 is started, the output end of the rotating driving element 105 drives the eccentric disc 106 to rotate, so that the eccentric disc 106 can rotate on the annular frame 107 when following the rotation of the rotating driving element 105, thereby driving the basket 102 to rotate, at the same time, the liquid conveying mechanism 103 is started, the pickling liquid is transmitted along the equipment body 101 into the basket 102, the rotating driving element 105 drives the eccentric disc 106 to rotate, so that the basket 102 rotates to generate centrifugal force to throw off the oxidation layer on the surface of the parts, the pickling liquid can fall into the auxiliary unit 109 through the through holes 110 on the eccentric disc 106, when the basket 102 follows the rotation of the eccentric disc 106, the stabilizing frame 108 fixedly connected with the equipment body 101 can avoid the basket 102 from deviating, and the auxiliary unit 109 is used in cooperation with the liquid conveying mechanism 103, which saves the amount of pickling liquid and is more energy-saving and environment-friendly, thereby solving the problem that the existing automobile parts descaling equipment places more parts in the basket 102, so that the parts at the bottom of the basket 102 are less impacted when the telescopic driving element makes linear reciprocating motion, resulting in incomplete descaling. The rotating driving element 105 adopts the existing technology, for example, a motor can be used.

[0024] Secondly, the placement table 111 is fixedly connected with the eccentric disc 106 and the basket 102, and is located at the bottom of the basket 102; the telescopic rod 112 is fixedly connected with the basket 102 and is located at one side of the basket 102; the round head 113 is rotatably connected with the telescopic rod 112 and the equipment body 101, and is located at the side of the telescopic rod 112 away from the basket 102; the basket 102 is fixed on the eccentric disc 106 through the placement table 111; when the basket 102 rotates with the eccentric disc 106, the telescopic rod 112 rotates, and the round head 113 on the side of the telescopic rod 112 away from the basket 102 rotates on the equipment body 101, so that the basket 102 rotates more stably with the eccentric disc 106.

[0025] Thirdly, the frame 114 is fixedly connected with the basket 102 and is located at the side of the basket 102 close to the placement table 111; the long barrel 115 is fixedly connected with the frame 114 and is located at the side of the frame 114; the extension rod 116 is slidably connected with the long barrel 115 and rotatably connected with the round head 113, and is located at one side of the long barrel 115; the frame 114 clamps the basket 102; when the basket 102 rotates with the eccentric disc 106, the extension rod 116 extends and retracts in the long barrel 115, so that the basket 102 rotates more stably with the eccentric disc 106 in cooperation with the round head 113 and the frame 114.

[0026] In addition, the collecting frame 117 is fixedly connected with the equipment body 101 and located at the bottom of the equipment body 101, the filter screen 118 is slidably connected with the collecting frame 117 and located at one side of the collecting frame 117, the liquid outlet valve 119 is communicated with the collecting frame 117 and located at one side of the collecting frame 117, the collecting frame 117 is fixedly connected with the equipment body 101 and located at the bottom of the equipment body 101, the filter screen 118 is slidably connected with the collecting frame 117 and located at one side of the collecting frame 117, the liquid outlet valve 119 is communicated with the collecting frame 117 and located at one side of the collecting frame 117, after the pickling liquid removes the oxidation of the parts in the basket 102, the pickling liquid passes through the through hole 110 of the eccentric disc 106 and falls from the bottom of the equipment body 101 to the collecting frame 117, the scale residues in the pickling liquid are filtered through the filter screen 118, at the same time, the liquid conveying mechanism 103 is started, the filtered pickling liquid in the collecting frame 117 is conveyed to the equipment body 101 through the liquid conveying mechanism 103 for recycling, and after the oxidation of the parts is completed, the liquid outlet valve 119 is started to discharge the pickling liquid in the collecting frame 117, the liquid outlet valve 119 adopts the prior art, for example, a ball valve.

[0027] At the same time, the fixed frame 120 is fixedly connected with the equipment body 101 and located at the bottom of the equipment body 101, the storage box 121 is fixedly connected with the fixed frame 120 and communicated with the liquid conveying mechanism 103 and located at one side of the fixed frame 120, the position of the storage box 121 and the filter screen 118 is fixed through the fixed frame 120, after the pickling liquid passes through the filter screen 118, the pickling liquid enters the storage box 121 and is conveyed to the equipment body 101 through the liquid conveying mechanism 103 for recycling, and after the oxidation of the parts is completed, the liquid outlet valve 119 is started to discharge the pickling liquid in the storage box 121.

[0028] The utility model discloses a kind of part surface deoxidation equipment, when the oxidation layer on the surface of part needs to be removed, staff first opens the equipment main body 101, places part in the basket 102, and the equipment main body 101 is closed, at this time, the rotary drive element 105 is started, the output end of the rotary drive element 105 drives the eccentric disc 106 rotation, so that the eccentric disc 106 is rotated with the rotary drive element 105, can be rotated on the annular frame 107, further drive the basket 102 rotation, simultaneously, the infusion mechanism 103 is started, and pickling solution is transmitted to the basket 102 along the equipment main body 101, by the rotary drive element 105 drive eccentric disc 106 rotation, so that the centrifugal force generated by the basket 102 rotation makes the oxidation layer on the surface of part spin off, and the basket 102 is rotated with the eccentric disc 106, the extension rod 116 is telescoped in the long barrel 115, cooperate with the round head 113 and the frame 114, so that the basket 102 is more stable when rotating, and after pickling solution removes the oxidation of part in the basket 102, pickling solution passes the through-hole 110 of the eccentric disc 106, and from the bottom of the equipment main body 101 falls into the collection frame 117, by the filter screen 118 to the oxidation skin residue in pickling solution is filtered, simultaneously, the infusion mechanism 103 is started, and pickling solution in the storage box 121 is transferred to the equipment main body 101 and is recycled, and after completing the deoxidation of part, the liquid valve 119 is started, can discharge pickling solution in the storage box 121, to solve the existing automobile part oxidation skin equipment to place more parts in the basket 102, so that when linear reciprocating motion is adopted by telescopic drive, the impact of the part at the bottom of the basket 102 is smaller, leading to incomplete deoxidation.

[0029] The above disclosed only one or more preferred embodiments of the present application, cannot be limited by the scope of the present application, those skilled in the art can understand that the above-mentioned embodiment is implemented all or part of the process, and equivalent changes made according to the claims of the present application, still belong to the scope covered by the present application.

Claims

1. A kind of part surface deoxidization equipment, including equipment main body, basket and infusion mechanism, the basket is arranged in the equipment main body, the infusion mechanism is arranged in the side of the equipment main body, characterized by, Further comprising deoxidization component; The deoxidization component includes rotating drive element, eccentric disc, annular frame, stabilizer and auxiliary unit; The rotating drive element is fixedly connected with the equipment main body and located in the equipment main body, the eccentric disc is fixedly connected with the output end of the rotating drive element, and is fixedly connected with the basket, and is located at the top of the rotating drive element, the eccentric disc has a plurality of through holes, the annular frame is fixedly connected with the equipment main body, and is rotatably connected with the eccentric disc, and is located in the equipment main body, the stabilizer is fixedly connected with the basket, and is fixedly connected with the eccentric disc, and is located at the bottom of the basket, the auxiliary unit is arranged on one side of the equipment main body.

2. The part surface deoxidization equipment of claim 1, wherein, The stabilizer includes placement table, telescopic rod and round head, the placement table is fixedly connected with the eccentric disc, and is fixedly connected with the basket, and is located at the bottom of the basket, the telescopic rod is fixedly connected with the basket, and is located on one side of the basket, the round head is rotatably connected with the telescopic rod, and is rotatably connected with the equipment main body, and is located on one side of the telescopic rod away from the basket.

3. The part surface deoxidization equipment of claim 2, wherein, The telescopic rod includes frame, long barrel and extension rod, the frame is fixedly connected with the basket, and is located on one side of the basket close to the placement table, the long barrel is fixedly connected with the frame, and is located on the side of the frame, the extension rod is slidably connected with the long barrel, and is rotatably connected with the round head, and is located on one side of the long barrel.

4. The part surface deoxidization equipment of claim 3, wherein, The auxiliary unit includes collection frame, filter screen and liquid outlet valve, the collection frame is fixedly connected with the equipment main body, and is located at the bottom of the equipment main body, the filter screen is slidably connected with the collection frame, and is located on one side of the collection frame, the liquid outlet valve is communicated with the collection frame, and is located on one side of the collection frame.

5. The part surface deoxidization equipment of claim 4, wherein, The collection frame includes fixing frame and storage box, the fixing frame is fixedly connected with the equipment main body, and is located at the bottom of the equipment main body, the storage box is fixedly connected with the fixing frame, and is communicated with the infusion mechanism, and is located on one side of the fixing frame.

Citation Information

Patent Citations

  • Automobile part descaling equipment

    CN219586189U