Deplating machine

By designing a deplating machine with a flip plate and a clamping assembly, the problem of large deplating liquid usage in the prior art is solved, and less deplating liquid is used and a more efficient deplating effect is achieved.

CN223373244UActive Publication Date: 2025-09-23HEBEI NATAI CHEM IND CO LTD
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Patent Information

Application Number
CN202422589716.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-25
Publication Date
2025-09-23
Estimated Expiration
2034-10-25

AI Technical Summary

Technical Problem

The existing laboratory small-scale spherical metal stripping machine needs to completely immerse the spherical metal in the stripping solution during the stripping process, resulting in a large amount of stripping solution used and causing waste.

Method used

A deplating machine was designed. By cooperating with a flip plate and a clamping assembly, the spherical metal in the beaker was only in contact with the deplating liquid at half its height. The flipping and rotation of the beaker were used to achieve alternating contact between the spherical metal surface and the deplating liquid, thus reducing the amount of deplating liquid used.

Benefits of technology

The invention realizes that less deplating liquid is used in a single deplating process, thus reducing the waste of deplating liquid and improving the deplating efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of deplating machines, in particular to a deplating machine which comprises a turnover plate arranged on a bottom plate, and the turnover plate is driven by a turnover assembly to turn over. The first driving source is arranged on the upper surface of the overturning plate, and a first rotating shaft is arranged at the power output end of the first driving source; the rotating disc is arranged at the free end of the first rotating shaft, and a plurality of clamping assemblies are arranged on the rotating disc in the circumferential direction of the rotating disc. Wherein the overturning assembly comprises a worm gear which is arranged on the lower surface of the overturning plate, a worm is horizontally arranged on the bottom plate, the worm is meshed with the worm gear, the worm is driven by the second driving source to rotate, a connecting shaft is arranged on one side of the overturning plate and connected with a first supporting plate rotating shaft arranged on the bottom plate, and the connecting shaft and the worm gear are coaxially arranged. The deplating device has the advantages that the usage amount of deplating liquid during single deplating is reduced, and the like.
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Description

Technical Field

[0001] The utility model relates to the technical field of stripping machines, in particular to a stripping machine. Background Art

[0002] A stripping machine is a device used to remove the coating from the surface of metal. It is widely used in many industries, including metal processing, electronics manufacturing, aerospace, etc.

[0003] When conducting experiments in the laboratory, it is necessary to conduct experiments on spherical metals. Before conducting experiments on spherical metals, the spherical metals need to be stripped to ensure the accuracy of subsequent experiments. When using the existing small-scale spherical metal stripping machine for laboratories, the spherical metal is placed in a beaker, and a stripping solution is added. The stripping solution must completely cover the spherical metal. The beaker is then placed on a rotating disk and rotated, so that the spherical metal and the stripping solution come into intense contact, thereby stripping the spherical metal.

[0004] Although the above-mentioned stripping method is suitable for laboratories, when using the stripping solution, the spherical metal needs to be completely submerged. Therefore, a large amount of stripping solution is required to strip the spherical metal. Since the stripping solution used in the laboratory is generally thrown away after one use, using a large amount of stripping solution will result in a waste of the stripping solution. Utility Model Content

[0005] In view of this, the utility model provides a stripping machine, which aims to solve the technical problem in the prior art that a large amount of stripping liquid is required to strip the spherical metal during a single stripping operation.

[0006] To achieve the above objectives, the present invention is implemented through the following technical solutions: a stripping machine, comprising:

[0007] A bottom plate, on which a flip plate is provided, wherein the flip plate flips under the drive of the flip assembly;

[0008] A first driving source is provided on the upper surface of the flip plate, and a first rotating shaft is provided at a power output end of the first driving source;

[0009] A rotating disk is provided at a free end of the first rotating shaft, and a plurality of clamping assemblies are provided on the rotating disk along its circumference;

[0010] Wherein, the flip assembly includes:

[0011] The worm gear is arranged on the lower surface of the flip plate,

[0012] A worm is horizontally arranged on the base plate, the worm is engaged with the worm wheel, and the worm is driven by the second driving source to rotate.

[0013] A connecting shaft is arranged on one side of the flip plate and is connected to the first support plate rotating shaft arranged on the bottom plate. The connecting shaft is coaxially arranged with the worm gear.

[0014] A further improvement of the present invention is that a saddle is provided on the flip plate on one side of the worm gear, the saddle is parallel to and coaxial with the worm gear, the saddle is adapted to the semicircular saddle bridge on the base plate, and the semicircular saddle bridge is slidably connected to the saddle.

[0015] A further improvement of the present invention is that scale marks of multiple angles are evenly arranged on the side surface of the saddle, and an indicator mark is arranged on the side surface of the semicircular saddle bridge on the same side as the scale mark.

[0016] A further improvement of the present invention is that the clamping assembly includes a plurality of clamping plates, which are arranged on the upper surface of the rotating disk and gather or disperse in a circular shape under the drive of the adjusting assembly.

[0017] A further improvement of the present invention is that the adjustment component includes:

[0018] A fixed shaft is provided on the lower surface of the rotating disk, and the plurality of clamping plates are gathered or dispersed around the fixed shaft;

[0019] A plurality of slide rails are provided on the lower surface of the rotating disk and correspond one-to-one to the plurality of clamping plates. The plurality of slide rails are evenly arranged along the circumferential direction of the fixed shaft, and the length direction of the slide rails is parallel to the radial direction of the fixed shaft.

[0020] Multiple sliding plates correspond to the multiple slide rails one by one and are parallel to the slide rails. The sliding plates are arranged on the slide rails. The sliding plates slide along the length direction of the slide rails under the drive of the sliding assembly. The connecting rod set at the first end of the sliding plate passes through the through slot on the rotating disk and is connected to the clamping plate.

[0021] A further improvement of the present invention is that the sliding assembly includes a rotating disk, which is arranged on a fixed shaft. The rotating disk is provided with a plurality of arc-shaped long slot holes along its circumferential direction. A sliding shaft is provided at the second end of each sliding plate. The plurality of sliding shafts correspond one-to-one to the plurality of arc-shaped long slot holes and are slidably connected. The rotating disk rotates under the drive of the rotating assembly.

[0022] A further improvement of the present invention is that the rotating assembly includes:

[0023] a first gear, disposed on the rotating disk;

[0024] The third driving source is arranged on the lower surface of the rotating disk, and the second gear arranged on the power output end of the third driving source is meshed with the first gear.

[0025] A further improvement of the present invention is that a rubber pad is provided on the inner surface of the clamping plate, and an anti-slip pattern is provided on the rubber pad.

[0026] Due to the adoption of the above technical solution, the technical progress achieved by the present invention is:

[0027] The utility model provides a stripping machine, which clamps a plurality of beakers on a rotating disk through a plurality of clamping assemblies. Subsequently, spherical metals and a stripping solution with a height only half that of the spherical metals are placed in the beakers. After preparation, a second driving source drives a worm to rotate, the worm drives a worm gear to rotate, the worm gear drives a flip plate to flip, and the flip plate drives a first driving source, a rotating disk, and beakers to flip synchronously until they flip to a suitable angle so that the beakers are tilted. The second driving source drives the clamping assembly and the beakers to rotate. When the beakers rotate, the surfaces of the spherical metals in the beakers also roll, so that the surfaces of the spherical metals contact the stripping solution in turn. Compared with the prior art, less deplating solution can be used to strip the spheres during a single stripping operation, thereby reducing waste of the deplating solution. BRIEF DESCRIPTION OF THE DRAWINGS

[0028] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the following briefly introduces the drawings required for use in the description of the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative labor.

[0029] Figure 1 This is a schematic diagram of the overall structure of the stripping machine of the present invention;

[0030] Figure 2 This is a schematic diagram of the indication mark of the stripping machine of the utility model;

[0031] Figure 3 This is a schematic structural diagram of the flip assembly of the stripping machine of the present invention;

[0032] Figure 4 This is a schematic diagram of the structure of the rotating assembly of the stripping machine of the present invention;

[0033] Figure 5 This is a schematic diagram of the structure of the adjustment component of the stripping machine of the utility model;

[0034] Figure 6 This is a schematic diagram of the clamping plate of the stripping machine of the present invention.

[0035] Description of reference numerals:

[0036] 10-base plate, 11-flip plate, 12-first driving source, 121-first rotating shaft, 13-rotating disk, 20-flip assembly, 21-worm gear, 22-worm, 23-second driving source, 24-connecting shaft, 25-first support plate, 26-saddle, 261-scale mark, 27-semicircular saddle bridge, 271-indicator mark, 30-adjusting assembly, 31-clamping plate, 32-fixed shaft, 33-slide rail, 34-sliding plate, 341-sliding shaft, 35-through slot, 36-rotating disk, 361-arc-shaped long slot hole, 37-connecting rod, 40-rotating assembly, 41-first gear, 42-third driving source, 43-second gear. DETAILED DESCRIPTION

[0037] The following will be combined with the accompanying drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, in the following description, specific details such as specific system structures and technologies are provided for the purpose of illustration rather than limitation, so as to provide a thorough understanding of the embodiments of the present invention. However, it should be clear to those skilled in the art that the present invention can also be implemented in other embodiments without these specific details. In other cases, detailed descriptions of well-known systems, devices, circuits, and methods are omitted to avoid unnecessary details that hinder the description of the present invention.

[0038] The utility model provides a stripping machine, combined with the instructions attached Figure 1 To the attached Figure 6 It can be seen that a stripping machine mainly includes the following parts or components: a base plate 10 , a first driving source 12 , a rotating disk 13 , a worm gear 21 , a worm 22 , and a connecting shaft 24 .

[0039] In the utility model, the base plate 10 is provided with a flip plate 11, and the flip plate 11 flips under the drive of the flip assembly 20; the first driving source 12 is fixedly provided on the upper surface of the flip plate 11, and the power output end of the first driving source 12 is fixedly provided with a first rotating shaft 121; the rotating disk 13 is fixedly provided at the free end of the first rotating shaft 121, and a plurality of clamping assemblies are provided on the rotating disk 13 along its circumferential direction; wherein, the flip assembly 20 includes a worm gear 21, which is fixedly provided on the lower surface of the flip plate 11, and a worm 22 is horizontally provided on the base plate 10, and the worm 22 is meshed with the worm wheel 21, and the worm 22 rotates under the drive of the second driving source 23, and the connecting shaft 24 is fixedly provided on one side of the flip plate 11 and is connected to the rotating shaft of the first support plate 25 provided on the base plate 10, and the connecting shaft 24 is coaxially provided with the worm gear 21.

[0040] A plurality of beakers (not shown in the figure) are clamped on the rotating disk 13 by a plurality of clamping assemblies. Subsequently, spherical metal and deplating liquid with a height of only half the spherical metal are placed in the beaker. After preparation, the second driving source 23 drives the worm 22 to rotate, the worm 22 drives the worm gear 21 to rotate, the worm gear 21 drives the flip plate 11 to flip, and the flip plate 11 drives the first driving source 12, the rotating disk 13, and the beaker to flip synchronously until they flip to a suitable angle so that the beaker is tilted. The second driving source 23 drives the clamping assembly and the beaker to rotate. When the beaker rotates, the surface of the spherical metal in the beaker also rolls, so that the surface of the spherical metal contacts the deplating liquid in turn. During a single deplating, less deplating liquid can be used to deplating the sphere, thereby reducing the waste of deplating liquid.

[0041] Specifically, the first driving source 12 may be a unidirectional motor or a forward and reverse motor, and the second driving source 23 may be a forward and reverse motor.

[0042] Specifically, the beaker is made of plastic.

[0043] As an embodiment, Figure 2 To the attached Figure 3 As can be seen, a saddle 26 is fixedly mounted on the flip plate 11 on one side of the worm gear 21. The saddle 26 is parallel to and coaxial with the worm gear 21. The saddle 26 mates with a semicircular saddle bridge 27 on the base plate 10, and the semicircular saddle bridge 27 is slidably connected to the saddle 26. Scale markings 261 at multiple angles are evenly distributed on the side of the saddle 26. An indicator mark 271 is provided on the side of the semicircular saddle bridge 27 on the same side as the scale marking 261.

[0044] When stripping spherical metals of different sizes, the inclination of the beaker is different, and the flip angle of the flip plate 11 is also different. When the worm gear 21 rotates, the saddle 26 slides on the semicircular saddle bridge 27, which can effectively adjust the angle. The setting of the indicator mark 271 and the scale mark 261 can more conveniently know how many degrees the flip is, thereby adapting to the stripping of spherical metals of different sizes.

[0045] As an embodiment, Figure 5 To the attached Figure 6It can be seen that the clamping assembly includes a plurality of clamping plates 31, which are arranged on the upper surface of the rotating disk 13 and gather or disperse in a circular shape under the drive of the adjustment assembly 30. The adjustment assembly 30 includes a fixed shaft 32 fixedly arranged on the lower surface of the rotating disk 13, and the plurality of clamping plates 31 gather or disperse around the fixed shaft 32; a plurality of slide rails 33 fixedly arranged on the lower surface of the rotating disk 13 and corresponding to the plurality of clamping plates 31 one by one, and the plurality of slide rails 33 are evenly arranged along the circumferential direction of the fixed shaft 32, and the length direction of the slide rails 33 is parallel to the radial direction of the fixed shaft 32; a plurality of sliding plates 34 correspond to the plurality of slide rails 33 one by one and are parallel to the slide rails 33. The sliding plates 34 are arranged on the slide rails 33. Under the drive of the sliding assembly, the sliding plates 34 slide on the slide rails 33 along their length direction. The connecting rod 37 fixed at the first end of the sliding plate 34 passes through the through slot 35 on the rotating disk 13 and is connected to the clamping plate 31.

[0046] After placing the beaker between the multiple clamping plates 31, the multiple sliding plates 34 slide along the length direction of the corresponding slide rails 33 under the drive of the sliding assembly. The multiple sliding plates 34 drive the multiple clamping plates 31 to gather or disperse around the fixed axis 32, so that the clamping plates 31 clamp the beaker, which can effectively and conveniently clamp the beaker and can also adapt to beakers of different diameters.

[0047] Specifically, a rubber pad (not shown) is fixedly mounted on the inner surface of the clamping plate 31. The rubber pad has an anti-slip pattern (not shown). When clamping a beaker, the rubber pad reduces damage to the beaker during rigid clamping, and the anti-slip pattern increases friction, providing a better grip on the beaker.

[0048] Specifically, the length direction of the through slot 35 is parallel to the length direction of the slide rail 33 .

[0049] In this embodiment, in conjunction with the appendix of the specification Figure 4 To the attached Figure 5 As can be seen, the sliding assembly includes a rotating disk 36 mounted on the fixed shaft 32. The rotating disk 36 is provided with a plurality of arc-shaped slotted holes 361 along its circumference. Each sliding plate 34 is provided with a sliding shaft 341 at the second end. The plurality of sliding shafts 341 correspond one-to-one with the plurality of arc-shaped slotted holes 361 and are slidably connected thereto. The rotating disk 36 rotates under the drive of the rotating assembly 40. The rotating assembly 40 includes a first gear 41 fixed to the rotating disk 36; a third drive source 42 fixed to the lower surface of the rotating disk 13, with a second gear 43 fixed to its power output end meshing with the first gear 41.

[0050] The third driving source 42 drives the second gear 43 to rotate, the second gear 43 drives the first gear 41 to rotate, and the first gear 41 drives the rotating disk 36 to rotate. The multiple arc-shaped long slots 361 on the rotating disk 36 are slidably connected with the multiple sliding shafts 341, so that the sliding plate 34 slides along the length direction of the slide rail 33.

[0051] Specifically, the third driving source 42 is a forward and reverse rotating motor.

[0052] The utility model provides a stripping machine. When in use, the specific operation process is as follows:

[0053] Multiple beakers are clamped on the rotating disk 13 through multiple clamping assemblies. Subsequently, spherical metals and deplating liquid with only half the height of the spherical metals are placed in the beakers. After preparation, the second driving source 23 drives the worm 22 to rotate, the worm 22 drives the worm gear 21 to rotate, the worm gear 21 drives the flip plate 11 to flip, and the flip plate 11 drives the first driving source 12, the rotating disk 13, and the beakers to flip synchronously until they flip to a suitable angle so that the beakers are tilted. The second driving source 23 drives the clamping assembly and the beakers to rotate. When the beakers rotate, the surface of the spherical metal in the beakers will also roll, so that the surface of the spherical metal is in contact with the deplating liquid in turn. During a single deplating, less deplating liquid can be used to deplating the spheres, reducing the waste of deplating liquid.

[0054] It should be noted that, in this patent application, relational terms such as first and second, etc. are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or apparatus comprising a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or apparatus. In the absence of further restrictions, the sentence "comprising an element defined by ... does not exclude the existence of other identical elements in the process, method, article or apparatus comprising the element".

[0055] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit the same. 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. These modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the various embodiments of the present invention, and should all be included in the scope of protection of the present invention.

Claims

1. A stripping machine, characterized in that, include: A bottom plate, on which a flip plate is provided, wherein the flip plate flips under the drive of the flip assembly; A first driving source is provided on the upper surface of the flip plate, and a first rotating shaft is provided at a power output end of the first driving source; A rotating disk is provided at a free end of the first rotating shaft, and a plurality of clamping assemblies are provided on the rotating disk along its circumference; Wherein, the flip assembly includes: The worm gear is arranged on the lower surface of the flip plate, A worm is horizontally arranged on the base plate, the worm is engaged with the worm wheel, and the worm is driven by the second driving source to rotate. A connecting shaft is arranged on one side of the flip plate and is connected to the first support plate rotating shaft arranged on the bottom plate. The connecting shaft is coaxially arranged with the worm gear.

2. A stripping machine according to claim 1, characterized in that, A saddle is provided on the flip plate on one side of the worm wheel. The saddle is parallel to and coaxial with the worm wheel. The saddle is matched with the semicircular saddle bridge on the bottom plate. The semicircular saddle bridge is slidably connected to the saddle.

3. A stripping machine according to claim 2, characterized in that, Scale marks of multiple angles are evenly arranged on the side surface of the saddle, and an indicator mark is arranged on the side surface of the semicircular saddle bridge on the same side as the scale mark.

4. A stripping machine according to claim 1, characterized in that, The clamping assembly includes a plurality of clamping plates, which are arranged on the upper surface of the rotating disk and gather or disperse in a circular shape under the drive of the adjusting assembly.

5. A stripping machine according to claim 4, characterized in that, The adjustment component includes: A fixed shaft is provided on the lower surface of the rotating disk, and the plurality of clamping plates are gathered or dispersed around the fixed shaft; A plurality of slide rails are provided on the lower surface of the rotating disk and correspond one-to-one to the plurality of clamping plates. The plurality of slide rails are evenly arranged along the circumferential direction of the fixed shaft, and the length direction of the slide rails is parallel to the radial direction of the fixed shaft. Multiple sliding plates correspond to the multiple slide rails one by one and are parallel to the slide rails. The sliding plates are arranged on the slide rails. The sliding plates slide along the length direction of the slide rails under the drive of the sliding assembly. The connecting rod set at the first end of the sliding plate passes through the through slot on the rotating disk and is connected to the clamping plate.

6. A stripping machine according to claim 5, characterized in that, The sliding assembly includes a rotating disk, which is arranged on a fixed shaft. The rotating disk is provided with a plurality of arc-shaped long slots along its circumferential direction. A sliding shaft is provided at the second end of each sliding plate. The plurality of sliding shafts correspond one-to-one to the plurality of arc-shaped long slots and are slidably connected. The rotating disk rotates under the drive of the rotating assembly.

7. A stripping machine according to claim 6, characterized in that, The rotating assembly comprises: a first gear, disposed on the rotating disk; The third driving source is arranged on the lower surface of the rotating disk, and the second gear arranged on the power output end of the third driving source is meshed with the first gear.

8. A stripping machine according to claim 5, characterized in that, The inner surface of the clamping plate is provided with a rubber pad, and the rubber pad is provided with an anti-slip pattern.