Bio-based material detection device

By using a disc-shaped detection plate and a ball bearing structure with positioning holes, the problem of complex structure and large space occupation of existing bio-based material detection devices is solved, and simple and continuous detection of multiple groups of materials is realized.

CN223711481UActive Publication Date: 2025-12-23BAOFENG CHANGJIANG BIOTECHNOLOGY CO LTD
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202422966611.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-03
Publication Date
2025-12-23
Estimated Expiration
2034-12-03

AI Technical Summary

Technical Problem

Existing bio-based material detection devices are complex in structure, require multiple motors and lead screws, and occupy a large space, making it difficult to achieve continuous detection of multiple sets of bio-based materials.

Method used

It adopts a disc-shaped detection plate with multiple detection slots around its circumference. By rotating the detection plate, multiple sets of materials can be continuously detected. The detection slots can be switched by using positioning holes and ball bearings. The structure is simple and the operation is convenient.

Benefits of technology

It enables continuous detection of multiple sets of bio-based materials, reduces space requirements, is easy to operate, and is highly practical.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223711481U_ABST
    Figure CN223711481U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of bio-based material detection, and discloses a bio-based material detection device which comprises a base, a supporting rod is arranged on the base, an X-ray diffractometer and a detection probe are arranged on the supporting rod, the supporting rod is arranged in the middle of the base, a supporting part is coaxially arranged on the outer side of the supporting rod, and the X-ray diffractometer and the detection probe are arranged on the supporting rod. A detection plate is rotationally arranged on the supporting part, the detection plate is of a disc-shaped structure, and a plurality of detection grooves are formed in the detection plate at equal intervals in the circumferential direction; the detection probe corresponds to one of the detection grooves below in an initial state, and the detection probe detects materials in different detection grooves in sequence along with rotation of the detection plate during working; the device is simple in structure, flexible and convenient to use, low in space requirement, capable of realizing continuous detection of multiple groups of bio-based materials, and high in practicability.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of biological base material detection, especially to a biological base material detection device. BACKGROUND

[0002] Biological base material refers to a kind of new material manufactured by biological, chemical, physical and other means using renewable biomass, including corn, legume, straw, bamboo powder, animal fur waste and the like. Due to its excellent characteristics of green, environment-friendly, renewable raw materials and biodegradable, it is widely used in fashion, home, outdoor and industrial fields, and gradually moves towards industrial scale practical application and industrialization stage.

[0003] The device for analyzing and evaluating the properties and quality of biological base material in the prior art can only detect single biological base material, and is inconvenient for continuous detection of multiple groups of biological base material. Based on the above problem, the patent document with the patent number CN221707341U discloses a biological base material detection device, which comprises a base, a vertical plate, an X-ray diffractometer, a detection probe and a rectangular plate. The bottom of the base is provided with a lower horizontal plate near the center. The first servo cylinder is arranged at one end of the top of the lower horizontal plate through the fixing seat. The output shaft of the first servo cylinder is connected with the first lead screw. The first lead screw is provided with a first lead block outside. The first lead block is connected with the upper horizontal plate at the top. The second servo cylinder is arranged at one side of the top of the upper horizontal plate through the mounting seat. The output shaft of the second servo cylinder is connected with the second lead screw. The second lead screw is provided with a second lead block outside. The second lead block is welded with the rectangular plate at the top. The rectangular plate is provided with a fixed grid at the top.

[0004] The first lead screw and the second lead screw arranged vertically can realize multi-position movement of the rectangular plate, and further realize batch continuous detection of biological base material, which solves the above problem to a certain extent. However, the structure of the application is relatively complex, and multiple motors and multiple lead screws need to be matched to realize the work. Moreover, the rectangular plate occupies a large space when moving. Therefore, there is an urgent need for a biological base material detection device with simple structure, low space requirement and capable of detecting multiple groups of biological base material. UTILITY MODEL CONTENT

[0005] The utility model aims to provide a kind of biological base material detection device, structure is simple, it is flexible and convenient to use, and it is not high to the requirement of space, can realize the continuous detection of multiple groups of biological base material, and it is practical.

[0006] The utility model adopts the following technical solutions:

[0007] A kind of bio-based material detection device, including base, the base is provided with support, X-ray diffractometer and detection probe are arranged on the support, the support is arranged at the middle position of the base, its outside coaxial support part is arranged, detection plate is rotatably arranged on the support part, the detection plate is disc structure, multiple detection grooves are equidistantly opened on it along the circumferential direction;Initial state detection probe corresponds with the detection groove of one of the lower side, when working, detection probe is sequentially detected to the material in different detection groove with the rotation of detection plate.

[0008] Preferably, the cross section of the support part is circular structure, positioning hole is arranged on the side wall along the circumferential direction, the position of the positioning hole corresponds with the detection groove;Positioning plate is arranged on the detection plate, ball is elastically arranged on the positioning plate, as the ball enters different positioning hole, the switching of the detection groove under the detection probe is realized.

[0009] Preferably, the end of the positioning hole along the moving direction of the ball is arranged as inclined slope to the outside of the support part.

[0010] Preferably, the diameter of the detection plate is greater than the diameter of the support part.

[0011] Preferably, detection box is movably placed in each detection groove.

[0012] Preferably, the support part is hollow structure, the support part is arranged through the support, the support inside the support part is rotatably arranged with the placement plate for placing detection box, the support is provided with taking and placing opening, and the sealing door is hinged at the taking and placing opening.

[0013] Preferably, the placement plate is net structure, the support part below the placement plate is provided with collection groove, the collection groove is communicated with the discharge groove provided on the base, and the discharge groove is inclinedly arranged on the side wall of the base.

[0014] Preferably, multiple limiting rods for placing detection box are uniformly arranged on the placement plate.

[0015] Preferably, the support is provided with cover plate that can cover the detection groove, the cover plate is provided with one detection hole, and the diameter of the detection hole is not less than the diameter of the detection groove;When working, the detection hole corresponds with different detection groove sequentially with the rotation of the detection plate.

[0016] Preferably, the cover plate is adjustably arranged on the support.

[0017] The utility model discloses the beneficial effect compared with prior art is: the utility model discloses a disc -shaped detection plate is rotationally arranged on the support portion of base, and a plurality of detection grooves are arranged on the detection plate, and the continuous detection of the material in different detection grooves can be realized only by rotating the detection plate, and the utility model discloses simple structure, easy and simple and fast operation, and the practicality is strong, in addition, because the disc -shaped setting of detection plate, the space occupation is relatively fixed, when the support pole is the center axle rotation adjustment, will not extra occupy the space, and the demand to space is relatively lower. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 It is the structural schematic diagram of the embodiment of the application;

[0019] Figure 2 It is Figure 1 The structural schematic diagram of the embodiment of the application;

[0020] Figure 3 It is the structural schematic diagram of the detection box of the embodiment of the application;

[0021] Figure 4 It is Figure 2 The enlarged view of A in the embodiment of the application; Specific embodiments

[0022] The utility model will be described clearly and completely in the following with the drawings and the embodiment:

[0023] As Figures 1 to 4 The utility model discloses a kind of biological base material detection devices, including base 1, base 1 preferably disc-shaped structure, base 1 is provided with support pole 2, support pole 2 is provided with X-ray diffractometer 3 and detection probe 4;Support pole 2 is arranged at the middle position of base 1, its outside coaxially is provided with support portion 5, support portion 5 is rotationally arranged with detection plate 6 by bearing, detection plate 6 is disc-shaped structure, multiple detection grooves 7 are equidistantly arranged on it along circumferential direction, for placing different biological base materials to be detected;Detection probe 4 corresponds with one of detection grooves 7 below in initial state, when working, detection probe 4 detects material in different detection grooves 7 in succession with the rotation of detection plate 6. Structure is simple, easy to operate;The disc-shaped setting of detection plate 6, when working, circumferentially rotates with support pole 2 as center axis, will not occupy additional space, reduces the expansion use of space in working process.

[0024] Further, the support part 5 is in a circular structure in cross section, and a positioning hole 8 is arranged on the side wall of the support part 5 in the circumferential direction, the number of the positioning hole 8 matches the number of the detection groove 7, and the position of the positioning hole 8 corresponds to the position of the detection groove 7; the detection plate 6 is provided with a positioning plate 9, the positioning plate 9 is provided with a positioning block 10 through a spring, and the positioning block 10 is movably provided with a ball 11; during work, the ball 11 can enter different positioning holes 8, so that the switching of the detection groove 7 below the detection probe 4 can be realized, which can not only provide a warning for the rotation of the detection plate 6 to the position, but also ensure the stability of the detection plate 6. Preferably, the end of each positioning hole 8 along the moving direction of the ball 11 is provided as an inclined slope to the outside of the support part 5, so that the ball 11 entering the positioning hole 8 can be smoothly removed from the positioning hole 8.

[0025] Further, in the embodiment, the diameter of the detection plate 6 is greater than the diameter of the support part 5, so as to provide a hand holding point for the rotation adjustment of the detection plate 6, and then facilitate the rotation adjustment of the detection plate 6. In addition, a detection box 12 is movably placed in each detection groove 7, so as to take out the detection box 12 to clean the detected biological base material. A convex edge 13 is preferably arranged on the inner wall of the detection groove 7, and the detection box 12 is provided with an outward convex support edge 14 at the top end. When the detection box 12 is placed in the detection groove 7, the support edge 14 is supported by the convex edge 13 to complete the placement of the detection box 12 in the detection groove 7. The top of the support edge 14 does not protrude from the top of the detection groove 7 after the detection box 12 is placed in the detection groove 7, and is preferably flush with the top of the detection groove 7.

[0026] Further, the support part 5 is in a hollow structure, the support rod 2 penetrates the support part 5, and a storage plate 15 is rotatably arranged on the support rod 2 in the support part 5, which is used for placing and storing the detection box 12 after detection. A taking and placing opening 16 is arranged on the support part 5, and a sealing door 17 is hingedly connected to the taking and placing opening 16. In addition, the storage plate 15 is in a mesh structure, and a collection groove 18 is arranged on the support part 5 below the storage plate 15. The collection groove 18 is in communication with a discharge groove 19 arranged on the base 1, and the discharge groove 19 is arranged on the side wall of the base 1 in an inclined manner. In this way, after the detection box 12 is washed, it can be inverted on the storage plate 15, and the water droplets falling in the detection box 12 can fall into the collection groove 18 and be discharged through the discharge groove 19. The arrangement of the discharge groove 19 also helps to ventilate and dry the support part 5. A dustproof net can be arranged at the discharge groove 19 to prevent dust from entering the support part 5 and adhering to the storage plate 15 and the detection box 12. In addition, a plurality of limiting rods 20 are uniformly arranged on the storage plate 15, which can be used for placing the detection box 12 in an inverted manner and limiting the detection box 12 to ensure the stability of the detection box 12 during storage.

[0027] Further, the support rod 2 is provided with a cover plate 21 capable of covering the detection groove 7, the cover plate 21 is provided with a detection hole 22, the diameter of the detection hole 22 is not less than the diameter of the detection groove 7; during operation, the detection hole 22 corresponds to different detection grooves 7 in sequence with the rotation of the detection plate 6. The setting of the cover plate 21 can cover the detection grooves 7 outside the detection probe 4 during detection, avoid affecting the detection, and ensure the detection effect. In addition, the top of the cover plate 21 is coaxially provided with a fixing sleeve 23, the fixing sleeve 23 is movably sleeved outside the support rod 2, during operation, the fixing sleeve 23 is fixed on the support rod 2 through a fixing bolt 24; when the detection box 12 needs to be taken out or placed, the fixing bolt 24 can be loosened, the cover plate 21 is moved upwards, and an operation space is reserved.

[0028] During use of the utility model, firstly, the cover plate 21 is moved upwards, the detection box 12 containing the materials to be detected is placed in the detection groove 7, then the cover plate 21 is reset, the end surface of the cover plate 21 is in contact with the end surface of the detection plate 6, finally, the X-ray diffractometer 3 and the detection probe 4 are started, the detection plate 6 is gradually rotated, and the continuous detection of multiple groups of materials in multiple detection grooves 7 is realized. The operation is simple, the structure is simple and compact, and the utility model has high practicability.

Claims

1. A bio-based material detection device, comprising a base, a support rod disposed on the base, and an X-ray diffractometer and a detection probe disposed on the support rod, characterized in that: The support rod is located in the middle of the base, and a support part is coaxially arranged on its outer side. A detection plate is rotatably arranged on the support part. The detection plate has a disc-shaped structure and multiple detection slots are evenly spaced along the circumference. In the initial state, the detection probe corresponds to one of the detection slots below. During operation, as the detection plate rotates, the detection probe sequentially detects the materials placed in different detection slots.

2. The bio-based material detection device according to claim 1, characterized in that: The support portion has a circular cross-section, and positioning holes are provided on its sidewalls along the circumferential direction. The positioning holes correspond to the positions of the detection slots. A positioning plate is provided on the detection plate, and ball bearings are elastically provided on the positioning plate. As the ball bearings enter different positioning holes, the detection slots below the detection probe are switched.

3. The bio-based material detection device according to claim 2, characterized in that: The positioning hole is set as an inclined slope from the end of the ball movement direction to the outside of the support.

4. The bio-based material detection device according to claim 2, characterized in that: The diameter of the detection plate is larger than the diameter of the support portion.

5. The bio-based material detection device according to claim 2, characterized in that: A test box is movably placed in each of the aforementioned test slots.

6. The bio-based material detection device according to claim 5, characterized in that: The support section has a hollow structure, and the support rod is installed through the support section. A shelf for placing the detection box is rotatably installed on the support rod inside the support section. The support section has an opening for taking out and putting in, and a sealing door is hinged to the opening for taking out and putting in.

7. The bio-based material detection device according to claim 6, characterized in that: The shelf is a mesh structure, and a collection groove is provided on the support part below the shelf. The collection groove is connected to the discharge groove provided on the base. The discharge groove is inclinedly provided on the side wall of the base.

8. The bio-based material detection device according to claim 7, characterized in that: The placement plate is evenly provided with multiple limiting rods for placing the detection box upside down.

9. The bio-based material detection device according to claim 1, characterized in that: The support rod is provided with a cover plate that can cover the detection groove. The cover plate is provided with a detection hole, the diameter of which is not less than the diameter of the detection groove. During operation, as the detection plate rotates, the detection hole corresponds to different detection grooves in sequence.

10. The bio-based material detection device according to claim 9, characterized in that: The cover plate is adjustablely mounted on the support rod.

Citation Information

Patent Citations

  • Bio-based material detection device

    CN221707341U