New nano material surface scratch detection device

By introducing a drive component and a negative pressure dust extraction system into the surface scratch detection device for nanomaterials, the problem of debris splashing was solved, achieving efficient debris cleaning and a stable detection process.

CN223883381UActive Publication Date: 2026-02-06GUANGDONG STARSCREAM NANO NEW MATERIAL CO LTD
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Patent Information

Application Number
CN202423141625.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-19
Publication Date
2026-02-06
Estimated Expiration
2034-12-19

AI Technical Summary

Technical Problem

Existing nanomaterial surface scratch detection devices suffer from debris scattering during cleaning, resulting in poor cleaning performance.

Method used

The device uses a drive assembly to move the blade head for scratch detection, while a blower generates negative pressure to remove debris through a suction nozzle. During the blade head's movement, brushes are used to agitate the debris, which is then collected using a filter box.

Benefits of technology

It achieves rapid cleaning of debris, avoids debris splashing, improves cleaning effect, and ensures the stability and efficiency of testing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of nano new materials, in particular to a nano new material surface scratch detection device which comprises a base, support plates are fixed on two sides of the top of the base, a driving component is mounted between the two support plates, and the tail end of the driving component is connected with a tool bit; and dust suction nozzles are fixedly connected to the two side walls of the tool bit, an exhaust fan and a filter box are fixed to the outer wall of one supporting plate, one end of the exhaust fan communicates with the bottom of the filter box, and the top of the filter box communicates with the two dust suction nozzles through dust suction pipes correspondingly. The tool bit is driven by the driving assembly to move, so that the tool bit can be used for detecting scratches on the surface of a material, meanwhile, the dust collection nozzle can be driven to move in the moving process of the tool bit, then the suction fan is used for enabling the filter box to generate negative pressure, and scraps generated by scratches can be sucked away through the dust collection nozzle. And therefore, rapid cleaning is achieved, chippings can be prevented from splashing to other places, and the cleaning effect can be improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to nanometer new material technical field, concretely to a nanometer new material surface scratch detection device. BACKGROUND

[0002] Nanometer new material is one of new materials, through a series of research processes such as physical research, material design, material processing, test evaluation, create the technology of new material that can satisfy various needs, and nanometer scratch test is a material mechanics performance testing means.

[0003] The prior art patent CN202322482151.2 discloses a nanometer new material surface scratch detection device, and relates to the technical field of new material performance detection.

[0004] The above-mentioned patent in the actual realization process, through the cleaning brush to the chippings, but the cleaning process, the cleaning brush and the chippings contact can cause the chippings splash, thereby causing the chippings splash to other places, thereby there is the situation that the cleaning effect is not good. Therefore, we propose a nanometer new material surface scratch detection device. UTILITY MODEL CONTENTS

[0005] The utility model aims at providing a nanometer new material surface scratch detection device, and solves the problems in the background art.

[0006] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: a nanometer new material surface scratch detection device, including the base, the top of the base both sides are fixed with the support board, and the horizontal plate is fixed between two support boards, and the first electric push rod is fixedly connected to the top of the horizontal plate.

[0007] The dust collection nozzle is fixedly connected to the both sides of the cutter head, the outer wall of one of the support boards is fixed with an air extractor and a filter box, one end of the air extractor is communicated with the bottom of the filter box, and the top of the filter box is communicated with two dust collection nozzles through dust collection pipes.

[0008] By adopting the technical scheme, the nanometer material sample is placed on the top of the base, then the first electric push rod drives the driving assembly to descend, so that the cutter head is attached to the surface of the nanometer material sample, then the driving assembly drives the cutter head to move, so that the scratch operation is realized on the surface of the nanometer material, and in the scratch operation, the suction fan works, so that the filter box generates negative pressure, the dust suction nozzle generates negative pressure, and then the dust suction nozzle can suck the debris generated in the scratch operation, and then the debris is introduced into the filter box for filtering and collecting, so that the cleaning is realized by using the negative pressure suction, the cleaning effect is improved, and the debris is prevented from splashing to other places.

[0009] As a preferred embodiment of the utility model, the driving assembly includes a lifting plate, the lifting plate and the tail end of the push rod of the first electric push rod are fixedly connected, the bottom of the lifting plate is provided with a first sliding groove, one end face of the first sliding groove is fixedly provided with a first screw rod motor, the outer end of the transmission shaft of the first screw rod motor is fixedly connected with a first screw rod, the outer end of the first screw rod is rotatably connected with the inner wall of the first sliding groove, and the outer wall of the first screw rod is sleeved with a matched first screw rod sliding block.

[0010] By adopting the technical scheme, the first screw rod motor drives the first screw rod to rotate, so as to drive the first screw rod sliding block to move, and then the cutter head is driven to move, so that the cutter head is driven to perform the scratch operation.

[0011] As a preferred embodiment of the utility model, the dust suction nozzle is connected with a brush plate on the outer wall, the tail end of the brush plate is fixedly provided with bristles, the outer wall of the dust suction nozzle is provided with a second sliding groove, the top of the second sliding groove is fixedly provided with a second screw rod motor, the outer end of the transmission shaft of the second screw rod motor is fixedly connected with a second screw rod, the outer end of the second screw rod is rotatably connected with the bottom of the second sliding groove, the outer wall of the second screw rod is sleeved with a matched second screw rod sliding block, and the outer wall of the second screw rod sliding block is fixedly connected with the brush plate.

[0012] By adopting the technical scheme, in the process of moving and washing dust by the dust suction nozzle, when the dust suction nozzle moves from the left side to the right side, the second screw rod motor is used to drive the second screw rod to rotate, so that the second screw rod sliding block moves, the left brush plate is lowered to be attached to the surface of the material, and the right brush plate is lifted to be separated from the surface of the material, so that the bristles can brush the debris, the adhered debris is brushed down, the dust suction effect is improved, and the same principle is applied to the reverse movement, the right brush plate is lowered, and the left brush plate is lifted, so that the debris can be brushed in the reverse movement.

[0013] As a preferred embodiment of the utility model, the outer wall of the supporting plate is fixedly provided with a second electric push rod, and the push rod of the second electric push rod penetrates through the supporting plate and is fixedly connected with a clamping plate.

[0014] By adopting the technical scheme, the clamping plates are driven to move by the second electric push rod, so that the material sample can be clamped and fixed by the two clamping plates, and the stability during scratch detection is ensured.

[0015] As a preferred embodiment of the utility model, the top of the lifting plate is fixed with a limiting rod on both sides, and the limiting rod is movably penetrated through the horizontal plate.

[0016] As a preferred embodiment of the utility model, the inner cavity of the filter box is fixed with a filter screen.

[0017] Compared with the prior art, the utility model has the beneficial effects as follows:

[0018] The nano new material surface scratch detection device provided by the technical scheme can drive the cutter head to move through the driving assembly, so that the cutter head can be used for scratch detection on the surface of the material, and the dust suction nozzle can be driven to move in the process of movement of the cutter head, then the filter box is made to generate negative pressure by the air suction machine, and then the dust suction nozzle can be used for sucking and removing the debris generated by the scratch, so that rapid cleaning is realized, debris can be prevented from splashing to other places, and the cleaning effect can be improved.

[0019] The outer wall of the dust suction nozzle is connected with a brush plate, so that when the cutter moves from one end to the other end, the brush plate on one side is lowered and the brush plate on the other side is lifted, so that the debris on the material can be brushed by the bristles on the brush plate, and then the adhered debris can be brushed off from the material, so that the debris can be sucked and removed, and then the cleaning effect can be improved again. BRIEF DESCRIPTION OF DRAWINGS

[0020] Other features, objects and advantages of the utility model will become more apparent through reading the detailed description of the non-limiting embodiments with reference to the following drawings:

[0021] Figure 1 It is a whole structure schematic view of the nano new material surface scratch detection device of the utility model;

[0022] Figure 2 It is an enlarged structure schematic view of A of the nano new material surface scratch detection device of the utility model;

[0023] Figure 3 It is a driving assembly structure schematic view of the nano new material surface scratch detection device of the utility model;

[0024] Figure 4 It is a filter box inner cavity structure schematic view of the nano new material surface scratch detection device of the utility model;

[0025] Figure 5The utility model provides a kind of dust suction nozzle outer wall structure schematic diagram of nano new material surface scratch detection device.

[0026] In the drawing:

[0027] 1, base plate;11, support plate;12, cross plate;13, first electric push rod;14, limit rod;15, clamping plate;16, second electric push rod;

[0028] 2, lifting plate;21, tool bit;22, first screw motor;23, first screw;24, first screw slide;

[0029] 3, exhaust fan;31, filter box;32, dust suction nozzle;33, dust suction pipe;34, filter screen plate;35, brush plate;36, second screw motor;37, second screw;38, second screw slide. DETAILED DESCRIPTION

[0030] Please refer to Figures 1-5 The utility model provides a kind of technical scheme: a kind of nano new material surface scratch detection device, including base plate 1, the top of base plate 1 both sides are fixed with support plate 11, two support plates 11 are fixed with cross plate 12, the top of cross plate 12 is fixedly connected with first electric push rod 13, the push rod of first electric push rod 13 penetrates cross plate 12 and is connected with drive assembly, the tail end of drive assembly is connected with tool bit 21;

[0031] The two side walls of tool bit 21 are fixedly connected with dust suction nozzle 32, the outer wall of one support plate 11 is fixed with exhaust fan 3 and filter box 31, one end of exhaust fan 3 and filter box 31 bottom intercommunication, the top of filter box 31 is communicated with two dust suction nozzles 32 respectively by dust suction pipe 33.

[0032] It should be understood that, in actual use, nano material sample is placed on the top of base plate 1, then drive assembly is driven by first electric push rod 13 to descend, so that tool bit 21 is attached to the surface of nano material sample, then drive assembly is driven to move tool bit 21, so that scratch operation is realized on the surface of nano material, when scratch operation, exhaust fan 3 works, so that filter box 31 generates negative pressure, so that dust suction nozzle 32 generates negative pressure, in turn, the debris generated during scratching can be sucked by dust suction nozzle 32, then the debris is introduced into filter box 31 and filtered and collected, so that the cleaning is carried out by the way of negative pressure suction, which is beneficial to improve cleaning effect and avoid debris splashing to other places.

[0033] Further, filter screen plate 34 is fixed in the inner chamber of filter box 31, the setting of filter screen plate 34 can realize the filtration and collection of sucked debris.

[0034] As Figure 1The outer wall of the support plate 11 is fixed with a second electric push rod 16, the push rod of the second electric push rod 16 penetrates through the support plate 11 and is fixedly connected with a clamping plate 15, the clamping plate 15 is driven to move by the second electric push rod 16, so that the material sample can be clamped and fixed by the two clamping plates 15, and the stability during scratch detection is ensured.

[0035] As shown in Figure 1 and 3 ; the driving assembly includes a lifting plate 2, the lifting plate 2 and the tail end of the push rod of the first electric push rod 13 are fixedly connected, the bottom of the lifting plate 2 is provided with a first sliding groove, one end face of the inner cavity of the first sliding groove is fixedly provided with a first lead screw motor 22, the outer end of the transmission shaft of the first lead screw motor 22 is fixedly connected with a first lead screw 23, the outer end of the first lead screw 23 is rotatably connected with the inner wall of the first sliding groove, the outer wall of the first lead screw 23 is sleeved with a matched first lead screw sliding block 24, and the bottom of the first lead screw sliding block 24 is fixedly connected with the tool bit 21.

[0036] The first lead screw motor 22 drives the first lead screw 23 to rotate, so as to drive the first lead screw sliding block 24 to move, and then the tool bit 21 is driven to move, so as to realize the scratch operation of the tool bit 21.

[0037] Further, the top of the lifting plate 2 is fixed with a limiting rod 14 on both sides, the limiting rod 14 movably penetrates through the horizontal plate 12, and the setting of the limiting rod 14 makes the lifting stability of the lifting plate 2 driven by the first electric push rod 13 high.

[0038] As shown in Figure 1 and 2 , 5; the outer side wall of the dust suction nozzle 32 is connected with a brush plate 35, the tail end of the brush plate 35 is fixedly provided with bristles, the outer wall of the dust suction nozzle 32 is provided with a second sliding groove, the top of the inner cavity of the second sliding groove is fixedly provided with a second lead screw motor 36, the outer end of the transmission shaft of the second lead screw motor 36 is fixedly connected with a second lead screw 37, the outer end of the second lead screw 37 is rotatably connected with the bottom of the inner cavity of the second sliding groove, the outer wall of the second lead screw 37 is sleeved with a matched second lead screw sliding block 38, and the outer wall of the second lead screw sliding block 38 is fixedly connected with the brush plate 35.

[0039] It should be understood that, in the process of moving the dust suction nozzle 32 to clean dust, when the dust suction nozzle 32 moves from the left side to the right side, the second lead screw motor 36 is used to drive the second lead screw 37 to rotate, so that the second lead screw sliding block 38 moves, thereby lowering the left brush plate 35 to adhere to the material surface and lifting the right brush plate 35 to separate from the material surface, so that the bristles can brush the debris, and the adhered debris is brushed down, which is beneficial to improve the dust suction effect. Similarly, when moving in the opposite direction, the right brush plate 35 is lowered and the left brush plate 35 is lifted, so that the debris can be brushed when moving in the opposite direction.

[0040] Additionally, relational terms such as first and second and the like can be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus.

[0041] While particular embodiments of the present application have been shown and described, it will be understood, of course, that changes can be made in embodiments without departing from the principles and spirit of the application, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A nano new material surface scratch detection device, comprising a base (1), characterized in that: The top of the base (1) is fixed with a support plate (11) on both sides, two support plates (11) are fixed with a horizontal plate (12), the top of the horizontal plate (12) is fixedly connected with a first electric push rod (13), the push rod of the first electric push rod (13) penetrates the horizontal plate (12) and is connected with a driving assembly, the tail end of the driving assembly is connected with a tool bit (21). The two side walls of the tool bit (21) are fixedly connected with a dust suction nozzle (32), and the outer wall of one of the support plates (11) is fixedly connected with an air extractor (3) and a filter box (31). One end of the air extractor (3) is in communication with the bottom of the filter box (31), and the top of the filter box (31) is in communication with two dust suction nozzles (32) through a dust suction pipe (33).

2. The nano-new material surface scratch detection device according to claim 1, characterized in that: The driving assembly comprises a lifting plate (2), the lifting plate (2) and the tail end of the push rod of the first electric push rod (13) are fixedly connected, the bottom of the lifting plate (2) is provided with a first sliding groove, one end face of the first sliding groove is fixedly connected with a first lead screw motor (22), the outer end of the transmission shaft of the first lead screw motor (22) is fixedly connected with a first lead screw (23), the outer end of the first lead screw (23) is rotatably connected with the inner wall of the first sliding groove, and the outer wall of the first lead screw (23) is sleeved with a matched first lead screw sliding block (24). The bottom of the first lead screw sliding block (24) is fixedly connected with the tool bit (21).

3. The nano-new material surface scratch detection device according to claim 1, characterized in that: The outer wall of the dust suction nozzle (32) is connected with a brush plate (35), the tail end of the brush plate (35) is fixedly connected with a brush, the outer wall of the dust suction nozzle (32) is provided with a second sliding groove, the top of the second sliding groove is fixedly connected with a second lead screw motor (36), the outer end of the transmission shaft of the second lead screw motor (36) is fixedly connected with a second lead screw (37), the outer end of the second lead screw (37) is rotatably connected with the bottom of the second sliding groove, and the outer wall of the second lead screw (37) is sleeved with a matched second lead screw sliding block (38). The outer wall of the second lead screw sliding block (38) is fixedly connected with the brush plate (35).

4. The nano-new material surface scratch detection device according to claim 1, characterized in that: The outer wall of the support plate (11) is fixedly connected with a second electric push rod (16), the push rod of the second electric push rod (16) penetrates the support plate (11) and is fixedly connected with a clamping plate (15).

5. The nano-new material surface scratch detection device according to claim 2, characterized in that: The top of the lifting plate (2) is fixedly connected with a limiting rod (14) on both sides, and the limiting rod (14) movably penetrates the horizontal plate (12).

6. The nano-new material surface scratch detection device according to claim 1, characterized in that: The inner cavity of the filter box (31) is fixedly connected with a filter screen (34).

Citation Information

Patent Citations

  • New nano material surface scratch detection device

    CN221238809U