Quality detection device for antibacterial coating
By using an automatic pop-out sample storage drawer and a simple moving mechanism, the problems of cumbersome sample storage and inconvenient equipment movement in antibacterial coating quality testing devices are solved, achieving an efficient and reliable testing process and equipment flexibility.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-13
- Publication Date
- 2026-03-27
AI Technical Summary
The existing antibacterial coating quality testing device has a cumbersome sample storage drawer design, resulting in low operating efficiency, a high risk of sample damage or contamination, and inconvenience in moving the equipment, which affects the accuracy and flexibility of the test.
The device features an automatic pop-out sample storage drawer, a simple moving mechanism, and drawer wheels, simplifying sample placement and improving drawer smoothness. The motor-driven casters enable flexible movement of the equipment.
It significantly improves sample placement efficiency and detection accuracy, reduces the risk of sample damage and contamination, enhances the flexibility and stability of the equipment, and improves detection efficiency and user experience.
Smart Images

Figure CN224045726U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to antibacterial coating quality detection equipment technical field especially relates to a kind of antibacterial coating quality detection device. BACKGROUND
[0002] Antibacterial coating quality detection device is an advanced detection tool, specially designed for evaluating the performance and effect of various antibacterial coatings, the device combines spectral analysis, microbial culture and surface inspection and other technologies, can quickly, accurately measure the antibacterial activity and durability of coating, by comparing with standard sample, the device can real-time monitor the number of microorganisms on coating surface and its growth state, to effectively judge the antibacterial effect of coating, in addition, device is also equipped with data analysis system, can record, store and output detection result, facilitate subsequent quality tracking and promotion suggestion, easy to operate, short detection cycle, suitable for multiple scene applications of laboratory and production line, provide reliable quality guarantee for coating production enterprise, help to improve product competitiveness.
[0003] In the prior art, the sample storage drawer of antibacterial coating quality detection device is relatively complicated, which brings much inconvenience to the operator, specifically, in the process of placing the sample to be detected into the drawer, there are many operation steps, which leads to low efficiency, because the existing drawer usually needs to be slid and positioned for many times to ensure accurate placement of the sample, which not only increases the labor intensity, but also causes damage or contamination of the sample, in addition, the operator will be tired in the busy detection environment due to frequent pulling process, and thus affect the accuracy and efficiency of detection. UTILITY MODEL CONTENT
[0004] The utility model aims at solving the shortcomings in the prior art and provides an antibacterial coating quality detection device.
[0005] In order to achieve the above object, the utility model adopts the following technical scheme: an antibacterial coating quality detection device, including detection device organism and sample storage drawer, detection sample placing groove is set to one side of detection device organism, the sample storage drawer is slidably connected in the inner wall of detection sample placing groove, the first fixed plate is fixed in the inner wall of detection sample placing groove, the second fixed plate is fixed in one side of first fixed plate, two first sliding slots are set in the inner side of second fixed plate, the lock control spare is slidably connected in the inner wall of first sliding slot, the lock control groove is set in the top of lock control spare, the spring is fixed in one side of lock control spare, the other end of spring is fixed in one side of first fixed plate, the lock control rod is rotatably connected in the top of first fixed plate, the first sliding rod is rotatably connected in the other end of lock control rod, the second sliding rod is fixed in one side of lock control spare, the collision cap is fixed in one end of second sliding rod, the second sliding rod is slidably connected in the inner wall of second fixed plate, the second sliding groove is set in the bottom of second fixed plate, the third fixed plate is fixed in the bottom of lock control spare, two third sliding slots are set in the bottom of third fixed plate, two support rods are fixed in the bottom of second fixed plate, the first lock rod is rotatably connected in one side of support rod, the lifting adjustment spare is fixed in the top of first lock rod, the third sliding rod is fixed in both sides of lifting adjustment spare, the third sliding rod is slidably connected in the inner wall of third sliding slot, the second lock rod is fixed in the bottom of sample storage drawer.The sample storage drawer automatic pop-out structure of the antibacterial coating quality detection device is used for solving the problems that the existing antibacterial coating quality detection device has relatively complicated sample storage drawer design, brings inconvenience to the operator, the operation steps are too many during the process of placing the sample to be detected into the drawer, the efficiency is low, the existing drawer usually needs to be slid and positioned for multiple times to ensure accurate placement of the sample, which not only increases the labor intensity, but also causes damage or pollution of the sample, in addition, the operator is prone to work fatigue in the busy detection environment due to the frequent drawer process, and thus the detection accuracy and efficiency are affected, and the sample storage drawer automatic pop-out structure is used to solve the problems, when the sample storage drawer needs to be opened, the sample storage drawer only needs to be pushed, under the pushing of the sample storage drawer, the collision cap drives the second sliding rod to move the locking control part, under the characteristics of the locking control groove, the first sliding rod is released from the limiting of the locking control part, the third fixed plate is driven by the locking control part to move, since the third sliding groove is inclined, the third sliding rod drives the lifting adjusting part to slide, and thus the first locking rod rotates, the first locking rod and the second locking rod are released from the clamping, then under the action of the spring, the locking control part pushes the second sliding rod and the collision cap to push the sample storage drawer to realize the pushing out of the sample storage drawer, the operation steps are significantly simplified, the efficiency and accuracy of sample placement are improved, the simplified design reduces the labor intensity of the operator, reduces the risk of sample damage or pollution, in addition, the convenience of operation is improved, work fatigue is effectively reduced, and thus the detection accuracy and overall efficiency are improved, finally, the optimization ensures that the detection process is more efficient and reliable, and provides more accurate basis for subsequent data analysis.
[0006] Preferably, the detection device body bottom is provided with an X-shaped sliding groove, the inner wall of the X-shaped sliding groove is slidably connected with an X-shaped bearing seat, the bottom of the X-shaped bearing seat is fixedly connected with a universal wheel, the inner wall of the X-shaped sliding groove is rotatably connected with a lead screw, the X-shaped bearing seat is threadedly connected to the surface of the lead screw, the lead screw is driven to rotate by a motor, and the motor is fixed to the inner wall of the X-shaped sliding groove. In the prior art, the antibacterial coating quality detection device is usually designed to be relatively fixed, which has significant disadvantages in moving position. Firstly, the fixedness makes the transfer of the equipment between different working environments or test sites cumbersome, which consumes a lot of manpower and time and affects the work efficiency. In addition, the fixed design limits the flexibility of the equipment, which cannot quickly adapt to different detection requirements and site requirements, thereby affecting the accuracy and timeliness of the test results. Furthermore, the inconvenience of movement also increases the risk of position deviation or damage of the equipment after long-term use, thereby affecting the stability and safety of the detection. In view of the above problems, the utility model adopts a simple moving structure. When the device needs to be moved, the motor is started, the lead screw is rotated under the driving of the motor, and the X-shaped bearing seat connected with the surface screw thread drives the universal wheel to move. After the universal wheel is fully contacted with the ground, the device can be pushed to move. The equipment can be quickly assembled and disassembled in different working environments, which reduces the manpower and time required for equipment transfer and improves the work efficiency. In addition, the flexibility of the equipment enables it to be quickly adjusted according to different detection requirements, ensuring the accuracy and timeliness of the detection process, thereby improving the quality control level of the antibacterial coating. In addition, the optimized moving performance will significantly reduce the damage risk of the equipment caused by position deviation, improve the safety and stability of the detection, not only improve the user experience, but also further enhance the competitiveness of the equipment in the market, promote the wide application of antibacterial coating technology in various industries, and provide more effective protection for public health and safety.
[0007] Preferably, the inner wall of the detection sample placing groove is fixed with a sliding support plate, the top of the sliding support plate is provided with a placing groove, and the inner wall of the placing groove is provided with a plurality of rollers in an array, and the plurality of rollers are rotationally connected to the inner wall of the placing groove. In the prior art, the sliding friction of the sample drawer to be detected is large, which has a significant impact on the experimental results and operation efficiency. Firstly, the large friction will cause the drawer to be not smooth when sliding, which is easy to cause damage or deformation of the sample, thereby affecting the accuracy of detection. Secondly, high friction will also cause the equipment to wear out, increase maintenance cost and downtime. In addition, the operator needs to exert additional force to overcome the friction when using, which increases the labor intensity and reduces the work efficiency. In view of the above problems, the drawer roller structure is adopted in the utility model, when the drawer moves, the rollers located in the inner wall of the placing groove can greatly improve the smoothness of movement and reduce the friction, thereby significantly improving the operation performance and experimental efficiency of the equipment. Firstly, after reducing the friction, the sliding of the drawer will be smoother, reducing the damage and deformation of the sample during movement, thereby improving the accuracy of detection and ensuring the reliability of the experimental results. Secondly, reducing the friction helps to reduce the equipment wear, prolong the service life of the equipment, reduce the maintenance cost and downtime. In addition, the force required by the operator will be reduced, thereby reducing the labor intensity and improving the work efficiency.
[0008] Preferably, the detection device body is provided with a grab groove on both sides. The grab groove improves the operation efficiency and convenience of the moving device body. The design of the grab groove enables the operator to stably and quickly grab and move the device, ensures the stability of the equipment during transfer, and reduces the safety hazards caused by improper operation, thereby enhancing the overall practicality and safety of the equipment.
[0009] Preferably, the sample storage drawer is fixed with a handle on one side. The handle provides a convenient way for the user to take out and put in the sample. When the user needs to take out the drawer, the handle can be easily held, and the drawer can be easily pulled out with the help of the gripping force provided by the handle, without the need for excessive force, ensuring the smoothness and efficiency of the sampling process.
[0010] Preferably, the detection device body is fixed with an anti-skid pad at the bottom. The anti-skid pad effectively enhances the stability of the equipment during use, prevents misoperation or equipment overturning caused by sliding, provides good friction, ensures that the equipment can maintain stability in various working environments, thereby improving the safety and accuracy of the detection process, and provides a more reliable user experience.
[0011] Preferably, the first locking rod and the second locking rod are provided with anti-slip patterns at the hooking parts. The anti-slip patterns effectively enhance the friction between the two, ensuring that they will not easily unhook during use, thereby improving the stability and safety of the locking mechanism.
[0012] Advantages:
[0013] 1、The sample storage drawer of the prior art anti-bacterial coating quality detection device is relatively complicated to design, which brings a lot of inconvenience to the operator. Specifically, during the process of placing the sample to be detected into the drawer, there are many operation steps, which leads to low efficiency. Because the existing drawer usually needs to be slid and positioned multiple times to ensure accurate placement of the sample, which not only increases the labor intensity, but also causes damage or contamination of the sample. In addition, the operator will be tired of work due to the frequent pulling process in a busy detection environment, which will affect the accuracy and efficiency of detection. To solve this problem, the utility model adopts a sample storage drawer automatic ejection structure, which significantly simplifies the operation steps, improves the efficiency and accuracy of sample placement, and the simplified design reduces the labor intensity of the operator and reduces the risk of sample damage or contamination. In addition, by improving the convenience of operation, it can effectively reduce the work fatigue, thereby improving the accuracy and overall efficiency of detection. Ultimately, this optimization will ensure that the detection process is more efficient and reliable, and provide a more accurate basis for subsequent data analysis.
[0014] 2、The anti-bacterial coating quality detection device of the prior art is usually designed to be relatively fixed, which leads to significant drawbacks in terms of moving position. First of all, this fixedness makes it cumbersome to transfer the equipment between different working environments or test sites, which requires a lot of manpower and time, affecting work efficiency. In addition, the fixed design limits the flexibility of the equipment, which cannot quickly adapt to different detection needs and site requirements, thereby affecting the accuracy and timeliness of the test results. Furthermore, the inconvenience of movement also leads to the risk of position deviation or damage of the equipment after long-term use, thereby affecting the stability and safety of detection. To solve this problem, the utility model adopts a simple moving structure, which enables the equipment to be quickly assembled and disassembled in different working environments, reducing the manpower and time required for equipment transfer and improving work efficiency. In addition, the flexibility of the equipment enables it to be quickly adjusted according to different detection needs, ensuring the accuracy and timeliness of the detection process, thereby improving the quality control level of the anti-bacterial coating. In addition, the optimized moving performance will significantly reduce the risk of damage to the equipment due to position deviation, improving the safety and stability of detection. Not only does it improve the user experience, but it also further enhances the competitiveness of the equipment in the market, promoting the widespread application of anti-bacterial coating technology in various industries and providing more effective protection for public health and safety.
[0015] 3、In the prior art, the sliding friction force of the sample drawer to be detected is large, which has a significant impact on the experimental results and operation efficiency. Firstly, the large friction force will cause the drawer to be not smooth when sliding, which is easy to cause damage or deformation of the sample, thereby affecting the accuracy of detection. Secondly, high friction force will also cause the equipment to wear out, increase maintenance cost and downtime. In addition, the operator needs to exert additional force to overcome the friction when using, which increases the labor intensity and reduces the work efficiency. In view of such problems, the drawer roller structure is adopted in the utility model, which significantly improves the operation performance and experimental efficiency of the equipment. Firstly, after reducing the friction, the sliding of the drawer will be more smooth, reducing the damage and deformation of the sample in the moving process, thereby improving the accuracy of detection and ensuring the reliability of the experimental results. Secondly, reducing the friction force helps to reduce the equipment wear and tear, prolong the service life of the equipment, reduce the maintenance cost and downtime. In addition, the force required by the operator will be reduced, thereby reducing the labor intensity and improving the work efficiency. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is a three-dimensional structure schematic view of the utility model;
[0017] Figure 2 It is a sectional view of the sample drawer automatic ejection structure of the utility model;
[0018] Figure 3 It is a sectional view of the roller structure of the utility model;
[0019] Figure 4 It is a three-dimensional structure schematic view of the simple moving structure of the utility model;
[0020] Figure 5 It is a sectional view of the simple moving structure of the utility model;
[0021] Figure 6 It is Figure 2 It is an enlarged view of A in the middle;
[0022] Figure 7 It is Figure 3 It is an enlarged view of B in the middle.
[0023] LEGEND:
[0024] 1, Detection device machine body; 101, Detection sample placement slot; 102, First fixed plate; 103, Second fixed plate; 104, First sliding slot; 105, Locking control piece; 106, Locking control slot; 107, Spring; 108, Locking control rod; 109, First sliding rod; 110, Second sliding rod; 111, Collision cap; 112, Sample storage drawer; 113, Second sliding slot; 114, Third fixed plate; 115, Third sliding slot; 116, Support rod; 117, First locking rod; 118, Lifting adjustment piece; 119, Third sliding rod; 120, Second locking rod; 2, X-shaped sliding slot; 201, X-shaped bearing seat; 202, Universal wheel; 203, Screw rod; 204, Motor; 3, Sliding support plate; 301, Placement slot; 302, Roller; 4, Grab slot; 5, Handle. DETAILED DESCRIPTION
[0025] In order to make the technical means, creative features, purposes and effects realized by the utility model easy to understand, the utility model is further described below in combination with specific embodiments and drawings, but the following embodiments are only preferred embodiments of the utility model, not all. Based on the embodiments in the embodiments, other embodiments obtained by those skilled in the art without creative labor belong to the protection scope of the utility model.
[0026] The specific embodiments of the utility model are described below in combination with the drawings. Specific embodiments:
[0028] Reference Figures 1-7The utility model relates to an antibacterial coating quality detection device, including detection device body 1 and sample storage drawer 112, detection device body 1 one side is equipped with detection sample placement groove 101, sample storage drawer 112 is connected in the inner wall of detection sample placement groove 101 and slides, the inner wall of detection sample placement groove 101 is fixed with first fixed plate 102, and first fixed plate 102 one side is fixed with second fixed plate 103, and second fixed plate 103 inside is equipped with two first sliding slot 104, and the inner wall of first sliding slot 104 is slidably connected with locking control piece 105, and locking control piece 105 top is equipped with locking control groove 106, and locking control piece 105 one side is fixed with spring 107, and spring 107 other end is fixed in first fixed plate 102 one side, and first fixed plate 102 top is rotatably connected with locking control rod 108, and locking control rod 108 other end is rotatably connected with first sliding rod 109, and locking control piece 105 one side is fixed with second sliding rod 110, and second sliding rod 110 one end is fixed with collision cap 111, and second sliding rod 110 is slidably connected in the inner wall of second fixed plate 103, and second fixed plate 103 bottom is equipped with second sliding groove 113, and locking control piece 105 bottom is fixed with third fixed plate 114, and third fixed plate 114 bottom is equipped with two third sliding slot 115, and second fixed plate 103 bottom is fixed with two support rod 116, and support rod 116 one side is rotatably connected with first locking rod 117, and first locking rod 117 top is fixed with lift adjustment part 118, and lift adjustment part 118 both sides are fixed with third sliding rod 119, and third sliding rod 119 is slid in the inner wall of third sliding slot 115, and sample storage drawer 112 bottom is fixed with second locking rod 120.The sample storage drawer automatic pop-out structure is adopted in the utility model, when the sample storage drawer needs to be opened, the sample storage drawer 112 is only pushed, under the pushing of the sample storage drawer 112, the second sliding rod 110 is pushed to drive the second sliding rod 110 to move, under the shape characteristics of the locking control groove 106, the first sliding rod 109 is removed from the limiting of the locking control piece 105, the third fixed plate 114 is driven to move by the locking control piece 105, since the third sliding groove 115 is inclined, the third sliding rod 119 drives the lifting adjusting piece 118 to slide, and then the first locking rod 117 is rotated, the first locking rod 117 and the second locking rod 120 are removed from the clamping, and then the locking control piece 105 pushes the second sliding rod 110 and the collision cap 111 to push the sample storage drawer 112 to realize the pushing out of the sample storage drawer.
[0029] The X-shaped sliding groove 2 is provided at the bottom of the detection device body 1, the X-shaped bearing seat 201 is slidably connected to the inner wall of the X-shaped sliding groove 2, the universal wheel 202 is fixed to the bottom of the X-shaped bearing seat 201, the screw rod 203 is rotatably connected to the inner wall of the X-shaped sliding groove 2, the X-shaped bearing seat 201 is threadedly connected to the surface of the screw rod 203, the screw rod 203 is driven to rotate by the motor 204, and the motor 204 is fixed to the inner wall of the X-shaped sliding groove 2. The utility model adopts simple moving structure, when the device needs to be moved, the motor 204 is started, under the driving of the motor 204, the screw rod 203 is rotated, and then the X-shaped bearing seat 201 which is threadedly connected to the surface drives the universal wheel 202 to move, after the universal wheel 202 is fully contacted with the ground, the device can be pushed to move.
[0030] The inner wall of the detection sample placing groove 101 is fixed with a sliding support plate 3, the top of the sliding support plate 3 is provided with a placing groove 301, and a plurality of rollers 302 are arranged on the inner wall of the placing groove 301 and are rotationally connected to the inner wall of the placing groove 301. In the prior art, the sliding friction of the sample drawer to be detected is large, which has a significant influence on the experimental results and operation efficiency. Firstly, the large friction will cause the drawer to be not smooth when sliding, which is easy to cause damage or deformation of the sample, and then affect the accuracy of detection. Secondly, high friction will also cause the equipment to be worn out, increase the maintenance cost and downtime. In addition, the operator needs to exert additional force to overcome the friction when using, which increases the labor intensity and reduces the work efficiency. In view of such problems, the drawer roller structure is adopted in the utility model, when the drawer moves, the rollers located on the inner wall of the placing groove 301 can greatly improve the smoothness of movement and reduce the friction.
[0031] The detection device body 1 is provided with a grab groove 4 on both sides, which improves the operation efficiency and convenience of the detection device body. The design of the grab groove enables the operator to stably and quickly grab and move the device, ensures the stability of the device during transfer, and reduces the safety hazards caused by improper operation, thereby enhancing the overall practicality and safety of the device. The sample storage drawer 112 is fixed with a handle 5 on one side, which provides a convenient way for users to take out and put in samples. When the user needs to take out the drawer, the handle can be easily held, and the drawer can be easily pulled out by the gripping force provided by the handle without excessive force, ensuring the smoothness and efficiency of the sampling process. The detection device body 1 is fixed with an anti-skid pad at the bottom, which effectively enhances the stability of the device during use, prevents misoperation or device overturning caused by sliding, and provides good friction to ensure that the device can remain stable in various working environments, thereby improving the safety and accuracy of the detection process and providing users with a more reliable use experience. The first locking rod 117 and the second locking rod 120 are provided with anti-skid lines at the hooking position, which effectively enhances the friction between the two, ensures that they will not be easily unhooked during use, and thereby improves the stability and safety of the locking mechanism.
[0032] The utility model discloses a working principle: when needing to open sample storage drawer, only need to push sample storage drawer 112, under the push of sample storage drawer 112, push collision cap 111 drive second sliding rod 110 to make locking control piece 105 move, under the shape characteristics of locking control groove 106, release the location of first sliding rod 109 to locking control piece 105, make locking control piece 105 drive third fixed plate 114 move, because the shape of third sliding groove 115 is inclined, make third sliding rod 119 drive lifting adjustment piece 118 slide, and then make first locking lever 117 rotate, make first locking lever 117 and second locking lever 120 release the engagement, and then under the action of spring 107 make locking control piece 105 push second sliding rod 110 and collision cap 111 push sample storage drawer 112 realize the push-out of sample storage drawer, when needing to move the device, start motor 204, under the drive of motor 204, screw rod 203 rotate, and then make surface screw thread connection's X type bearing seat 201 drive universal wheel 202 move, after universal wheel 202 and ground fully contact, can push the device and move, when the drawer moves, the roller in the inner wall of placing groove 301 can greatly improve the fluency of movement, and reduce friction.
[0033] In the utility model, unless another definite provision and limitation, first feature is "on" or "under" second feature can include that first and second features are direct contact, also can include that first and second features are not direct contact but contact through other feature between them. Moreover, first feature "on", "above" and "upper surface of" second feature includes that first feature is directly above and obliquely above second feature, or only indicates that the horizontal height of first feature is higher than second feature. First feature "under", "below" and "lower surface of" second feature includes that first feature is directly below and obliquely below second feature, or only indicates that the horizontal height of first feature is less than second feature.
[0034] The basic principle, main features and advantages of the utility model are shown and described above. The skilled in the art should understand that the utility model is not limited by the above-mentioned embodiments, and the above-mentioned embodiments and the description in the specification are only preferred examples of the utility model and do not limit the utility model, and the utility model will have various changes and improvements without departing from the spirit and range of the utility model, and these changes and improvements all fall within the scope of the utility model claimed. The scope of protection of the utility model is defined by the appended claims and their equivalents.
Claims
1. An antibacterial coating quality detection device, comprising a detection device body (1) and a sample storage drawer (112), one side of the detection device body (1) is provided with a detection sample placing groove (101), and the sample storage drawer (112) is slidingly connected to the inner wall of the detection sample placing groove (101), characterized in that: The inner wall of the detection sample placing groove (101) is fixed with a first fixed plate (102), one side of the first fixed plate (102) is fixed with a second fixed plate (103), the inner side of the second fixed plate (103) is provided with two first sliding grooves (104), the inner wall of the first sliding groove (104) is slidably connected with a locking control piece (105), the top of the locking control piece (105) is provided with a locking control groove (106), one side of the locking control piece (105) is fixed with a spring (107), the other end of the spring (107) is fixed to one side of the first fixed plate (102), the top of the first fixed plate (102) is rotatably connected with a locking control rod (108), the other end of the locking control rod (108) is rotatably connected with a first sliding rod (109), one side of the locking control piece (105) is fixed with a second sliding rod (110), one end of the second sliding rod (110) is fixed with a collision cap (111), the second sliding rod (110) penetrates and is slidably connected to the inner wall of the second fixed plate (103), the bottom of the second fixed plate (103) is provided with a second sliding groove (113), the bottom of the locking control piece (105) is fixed with a third fixed plate (114), the bottom of the third fixed plate (114) is provided with two third sliding grooves (115), the bottom of the second fixed plate (103) is fixed with two supporting rods (116), one side of the supporting rod (116) is rotatably connected with a first locking rod (117), the top of the first locking rod (117) is fixed with a lifting adjusting piece (118), the lifting adjusting piece (118) is fixed with a third sliding rod (119) on both sides, the third sliding rod (119) slides in the inner wall of the third sliding groove (115), and the bottom of the sample storage drawer (112) is fixed with a second locking rod (120).
2. The device for detecting the quality of an antibacterial coating according to claim 1, wherein: The bottom of the detection device body (1) is provided with an X-shaped sliding groove (2), the inner wall of the X-shaped sliding groove (2) is slidably connected with an X-shaped bearing seat (201), the bottom of the X-shaped bearing seat (201) is fixed with a universal wheel (202), the inner wall of the X-shaped sliding groove (2) is rotatably connected with a lead screw (203), the X-shaped bearing seat (201) is threadedly connected to the surface of the lead screw (203), and the lead screw (203) is driven to rotate by a motor (204). The motor (204) is fixed to the inner wall of the X-shaped sliding groove (2).
3. The device for detecting the quality of an antibacterial coating according to claim 1, wherein: The inner wall of the detection sample placing groove (101) is fixed with a sliding support plate (3), the top of the sliding support plate (3) is provided with a placing groove (301), and the inner wall of the placing groove (301) is arranged with a plurality of rollers (302). The plurality of rollers (302) are rotatably connected to the inner wall of the placing groove (301).
4. The device for detecting the quality of an antibacterial coating according to claim 2, characterized in that: The both sides of the detection device body (1) are provided with a grab groove (4).
5. The device for detecting the quality of an antibacterial coating according to claim 1, wherein: The sample storage drawer (112) is fixed with a handle (5) on one side.
6. The device for detecting the quality of an antibacterial coating according to claim 1, wherein: The bottom of the detection device body (1) is fixed with a non-slip pad.
7. The device for detecting the quality of an antibacterial coating according to claim 1, wherein: The hooking parts of the first locking rod (117) and the second locking rod (120) are both provided with anti-slip patterns.