Food component detection equipment based on spectral analysis
By introducing a transposition mechanism and clamping components into the food component detection equipment, rapid and stable detection of multiple samples is achieved, solving the problems of low detection efficiency and poor stability of existing equipment and improving the accuracy of detection results.
Patent Information
- Application Number
- CN202520572634.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-29
- Publication Date
- 2026-03-06
- Estimated Expiration
- 2035-03-29
AI Technical Summary
Existing food component testing equipment has low testing efficiency, cannot observe comparative data of multiple samples in real time, and the stability of samples is difficult to guarantee, affecting the accuracy of test results.
The interchange mechanism enables the main and auxiliary detectors to be quickly interchanged, allowing for the simultaneous processing of two samples. Real-time data comparison is achieved through a spectral probe, and the stability of the samples is ensured by the guide rail and clamping assembly.
It improves detection efficiency, ensures real-time data comparison of multiple samples and sample stability, and enhances the accuracy of test results.
Smart Images

Figure CN223977105U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of food testing technology, specifically a food component detection device based on spectral analysis. Background Technology
[0002] Food composition analysis equipment based on spectral analysis is a specialized device that uses spectral analysis technology to detect the content of various components in food. This equipment emits light of specific wavelengths and receives the reflected or transmitted light, utilizing the spectral characteristics to analyze the components in the food, such as proteins, fats, carbohydrates, vitamins, and minerals. Spectroscopic analysis technology has advantages such as high efficiency, speed, and accuracy, providing a large amount of information in a short time, and is therefore widely used in the field of food composition analysis.
[0003] In existing technologies, food component detection equipment can usually only process samples one by one, resulting in low detection efficiency. After conducting comparative testing on multiple food samples, it is usually only possible to test and record the data one by one, without being able to observe the comparison of each experimental data in real time. This leads to inconvenience in the detection process. At the same time, the stability of the samples during the detection process is also difficult to guarantee, which can easily affect the accuracy of the detection results. In order to address the shortcomings of existing technologies, this utility model provides a food component detection device based on spectral analysis to solve the above problems. Utility Model Content
[0004] To address the shortcomings of existing technologies, this invention provides a food component detection device based on spectral analysis. A switching mechanism allows for the interchange of the main and auxiliary detection seats, enabling the device to process two samples simultaneously. Therefore, when comparing multiple samples, there is no need to record each sample individually; the device can directly switch positions in real time for rapid comparison of various data, improving detection efficiency and ensuring convenient testing. Furthermore, the device ensures sample stability during testing, guaranteeing accurate detection results and meeting usage requirements.
[0005] To achieve the above objectives, this utility model is implemented through the following technical solution: a food component detection device based on spectral analysis, comprising a detection device housing, a spectral probe, a guide rail, a main detection seat, a secondary detection seat, and a switching mechanism;
[0006] The testing equipment housing contains a controller motherboard;
[0007] The spectral probe is housed in the inner cavity of the detection equipment housing and connected to the controller motherboard.
[0008] The guide rail is installed inside the housing of the testing equipment;
[0009] The main detection seat is slidably connected to the guide rail rod;
[0010] The auxiliary detection seat is slidably connected to the guide rail rod and fixedly connected to the main detection seat;
[0011] The switching mechanism is installed on the housing of the testing equipment and is used to switch the main testing seat and the auxiliary testing seat.
[0012] Preferably, the transposition mechanism includes:
[0013] The motor is mounted on the housing of the testing equipment.
[0014] A lead screw is located at the output end of the motor and threadedly connected to the main detection seat.
[0015] Preferably, the main detection seat has a threaded hole and a sliding hole, the guide rail rod is movably inserted into the sliding hole, and the threaded hole engages with the lead screw.
[0016] Preferably, both the main detection seat and the auxiliary detection seat have limiting grooves, which are used to engage the sample disc.
[0017] Preferably, both the main detection seat and the auxiliary detection seat are provided with a clamping component, which is used to clamp and limit the sample tray.
[0018] Preferably, the clamping assembly includes:
[0019] Several sets of positioning seats are respectively set at various positions of the main detection seat and the auxiliary detection seat;
[0020] The slide rod is slidably connected to the positioning seat;
[0021] A clamping plate is provided on the slide rod;
[0022] A spring is disposed between the slide rod and the positioning seat.
[0023] Preferably, a baffle is connected to the slide rod.
[0024] Preferably, the testing equipment housing is provided with a cover plate.
[0025] This utility model discloses a food component detection device based on spectral analysis, which has the following beneficial effects:
[0026] This food component detection device based on spectral analysis uses a switching mechanism to interchange the main and auxiliary detection seats, enabling the device to process two samples simultaneously. Therefore, when sampling and comparing multiple samples, there is no need to record each one individually; the positions can be switched in real time to quickly compare various data, improving detection efficiency and ensuring convenient testing. At the same time, the device can ensure sample stability during testing, guaranteeing the accuracy of the test results and meeting usage requirements. Attached Figure Description
[0027] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0028] Figure 2 This is a schematic diagram of the transposition mechanism of this utility model;
[0029] Figure 3 This is a schematic diagram of the structure of the spectral probe of this utility model;
[0030] Figure 4 This is a schematic diagram of the clamping assembly of this utility model.
[0031] In the diagram: 1. Detection equipment housing; 11. Cover plate; 2. Spectrum probe; 3. Guide rail rod; 4. Main detection seat; 41. Threaded hole; 42. Sliding hole; 5. Secondary detection seat; 6. Positioning mechanism; 61. Motor; 62. Lead screw; 7. Clamping assembly; 71. Positioning seat; 72. Slide rod; 73. Clamping plate; 74. Spring; 75. Baffle; 8. Limiting groove. Detailed Implementation
[0032] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0033] Example 1:
[0034] Please see Figure 1-4 This utility model provides a technical solution: a food component detection device based on spectral analysis, including a detection device housing 1, a spectral probe 2, a guide rail rod 3, a main detection seat 4, a secondary detection seat 5, and a switching mechanism 6;
[0035] The testing equipment housing 1 houses the main controller board; as the main structure of the entire equipment, the main controller board inside housing 1 is responsible for receiving and processing the data from the spectral probe 2. The housing 1 is rationally designed, ensuring the stability and durability of the equipment.
[0036] The spectral probe 2 is installed inside the housing 1 of the detection equipment and connected to the main board of the controller. The spectral probe 2 can emit light of a specific wavelength and receive the reflected light. Through spectral analysis technology, the content of components in food can be detected.
[0037] The guide rail rod 3 is installed in the inner cavity of the housing 1 of the testing equipment; the guide rail rod 3 provides a sliding track for the main testing seat 4 and the auxiliary testing seat 5, ensuring their stability and accuracy during the repositioning process.
[0038] The main detection seat 4 is slidably connected to the guide rail rod 3;
[0039] The auxiliary detection seat 5 is slidably connected to the guide rail rod 3 and fixedly connected to the main detection seat 4;
[0040] Both the main detection seat 4 and the auxiliary detection seat 5 are slidably connected to the guide rail 3, and the main detection seat 4 can be interchanged with the auxiliary detection seat 5 via the switching mechanism 6. This design allows the equipment to process and compare two samples simultaneously, improving detection efficiency.
[0041] The switching mechanism 6 is installed on the housing 1 of the testing equipment and is used to switch the main testing seat 4 and the auxiliary testing seat 5.
[0042] The transposition mechanism 6 includes:
[0043] Motor 61 is mounted on the housing 1 of the testing equipment;
[0044] The lead screw 62 is located at the output end of the motor 61 and is threadedly connected to the main detection seat 4.
[0045] The main testing seat 4 has a threaded hole 41 and a sliding hole 42. The guide rail rod 3 is movably inserted into the sliding hole 42, and the threaded hole 41 is engaged with the lead screw 62.
[0046] The switching mechanism 6 includes a motor 61 and a lead screw 62. The motor 61 drives the lead screw 62 to rotate, and the lead screw 62 engages with the threaded hole 41 on the main detection seat 4, thereby pushing the main detection seat 4 to slide on the guide rail 3, realizing rapid switching detection and data comparison between the main detection seat 4 and the auxiliary detection seat 5.
[0047] The switching mechanism 6 is also equipped with a control switch and a power supply for controlling the motor 61. The positions of the control switch and the power supply are designed according to actual needs.
[0048] Both the main detection seat 4 and the auxiliary detection seat 5 have limit grooves 8, which are used to clamp the sample tray.
[0049] Example 2:
[0050] Please see Figure 1-4 This utility model provides a technical solution: a food component detection device based on spectral analysis, including a detection device housing 1, a spectral probe 2, a guide rail rod 3, a main detection seat 4, a secondary detection seat 5, and a switching mechanism 6;
[0051] The controller motherboard is located inside the housing 1 of the testing equipment;
[0052] The spectral probe 2 is installed inside the housing 1 of the detection equipment and is connected to the main board of the controller;
[0053] The guide rail rod 3 is installed inside the housing 1 of the testing equipment;
[0054] The main detection seat 4 is slidably connected to the guide rail rod 3;
[0055] The auxiliary detection seat 5 is slidably connected to the guide rail rod 3 and fixedly connected to the main detection seat 4;
[0056] The switching mechanism 6 is installed on the housing 1 of the testing equipment and is used to switch the main testing seat 4 and the auxiliary testing seat 5.
[0057] Both the main detection seat 4 and the auxiliary detection seat 5 are equipped with clamping components 7, which are used to clamp and limit the sample tray. The design of the clamping components 7 makes it easier to keep the sample tray stable on the main detection seat 4 and the auxiliary detection seat 5.
[0058] Clamping component 7 includes:
[0059] Several sets of positioning seats 71 are respectively set at various positions of the main detection seat 4 and the auxiliary detection seat 5;
[0060] The slide rod 72 is slidably connected to the positioning seat 71;
[0061] The clamping plate 73 is mounted on the slide bar 72;
[0062] Spring 74 is disposed between slide bar 72 and positioning seat 71.
[0063] The clamping assembly 7 includes a positioning seat 71, a slide bar 72, a clamping plate 73, and a spring 74. The spring 74 provides elastic force to keep the clamping plate 73 in close contact with the sample tray, ensuring the stability of the sample tray during the testing process. A baffle 75 is connected to the slide bar 72 to prevent excessive sliding of the slide bar 72 and ensure the reliability of the clamping assembly 7.
[0064] The testing equipment housing 1 is equipped with a cover plate 11. The design of the cover plate 11 makes it easy to close the cover plate 11 when the testing equipment housing 1 is being tested, so as to avoid external interference during the testing process.
Claims
1. A food ingredient detection apparatus based on spectral analysis, characterized by, include: The testing equipment housing (1) contains a controller motherboard; The spectral probe (2) is installed in the inner cavity of the detection equipment housing (1) and connected to the controller motherboard; The guide rail rod (3) is installed in the inner cavity of the housing (1) of the testing equipment; The main detection seat (4) is slidably connected to the guide rail rod (3); The auxiliary detection seat (5) is slidably connected to the guide rail rod (3) and fixedly connected to the main detection seat (4); The switching mechanism (6) is installed on the housing (1) of the testing equipment and is used to switch the main testing seat (4) and the auxiliary testing seat (5).
2. The food ingredient detection apparatus based on spectral analysis according to claim 1, characterized in that, The transposition mechanism (6) includes: The motor (61) is mounted on the housing (1) of the testing equipment; The lead screw (62) is located at the output end of the motor (61) and threadedly connected to the main detection seat (4).
3. The food ingredient detection apparatus based on spectral analysis according to claim 2, characterized in that, The main detection seat (4) is provided with a threaded hole (41) and a sliding hole (42). The guide rod (3) is movably inserted into the sliding hole (42), and the threaded hole (41) meshes with the lead screw (62).
4. The food ingredient detection apparatus based on spectral analysis according to claim 1, characterized in that, Both the main detection seat (4) and the auxiliary detection seat (5) have limiting grooves (8) for locking the sample disc.
5. The food ingredient detection apparatus based on spectral analysis according to claim 4, characterized in that, Both the main detection seat (4) and the auxiliary detection seat (5) are equipped with clamping components (7), which are used to clamp and limit the sample tray.
6. The food ingredient detection apparatus based on spectral analysis according to claim 5, wherein, The clamping assembly (7) includes: Several sets of positioning seats (71) are respectively set at various positions of the main detection seat (4) and the auxiliary detection seat (5); The slide rod (72) is slidably connected to the positioning seat (71); A clamping plate (73) is provided on the slide rod (72); A spring (74) is disposed between the slide rod (72) and the positioning seat (71).
7. The food ingredient detection apparatus based on spectral analysis according to claim 6, wherein, A baffle (75) is connected to the slide bar (72).
8. The food ingredient detection apparatus based on spectral analysis according to claim 1, wherein, The testing equipment housing (1) is provided with a cover plate (11).