Equipment for detecting Maillard reaction pollutants of dairy products
By incorporating a protective cover and a detachable extension handle into the Maillard reaction contaminant detection equipment for dairy products, the problems of sensor damage and inconvenient storage have been solved, achieving both equipment stability and ease of operation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-29
- Publication Date
- 2026-03-10
AI Technical Summary
Existing Maillard reaction contaminant detection equipment for dairy products has sensors that are easily damaged and difficult to deploy quickly, and the extension rod is inconvenient to store.
The design includes a protective sleeve to safeguard the sensor body and a detachable extension handle, allowing for easy installation and removal via inserts and a locking mechanism.
It effectively protects sensors, extends equipment life, facilitates operation and storage, and improves detection efficiency.
Smart Images

Figure CN223986070U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of detection equipment technology, specifically to a device for detecting Maillard reaction contaminants in dairy products. Background Technology
[0002] The Maillard reaction is a common reaction in food processing, especially during heating. It's a complex reaction between reducing sugars and amino acids or proteins that produces aroma and color changes, but can also generate harmful substances such as acrylamide and 5-hydroxymethylfurfural (HMF). Dairy products are prone to this reaction during high-temperature processing, such as sterilization or concentration, so it's necessary to test for these contaminants.
[0003] Currently, existing detection methods generally employ low-cost electrochemical sensors. These contaminants possess unique chemical structures or physical properties, enabling sensors to accurately distinguish them from other substances. However, existing detection equipment typically lacks sensor protection, making it susceptible to damage from impacts. Furthermore, with varying container depths, sensors are not easily lowered quickly into the container for detection. Extending the sensor with a long rod makes storage inconvenient when not in use. To address these shortcomings, this invention provides a device for detecting Maillard reaction contaminants in dairy products, thus resolving the aforementioned problems. Utility Model Content
[0004] To address the shortcomings of existing technologies, this utility model provides a device for detecting Maillard reaction contaminants in dairy products. The protective sleeve effectively protects the sensor body, preventing interference and damage from the external environment and extending the device's service life. Furthermore, the detachable design of the extended handle allows users to flexibly install and remove it as needed, facilitating operation in different scenarios and making the contaminant detection process convenient. It also facilitates storage when the device is no longer in use.
[0005] To achieve the above objectives, this utility model is implemented through the following technical solution: a device for detecting Maillard reaction contaminants in dairy products, comprising a detector body, a connecting cable, a sensor base, a sensor body, a protective sleeve, and an extension handle;
[0006] The detector body contains a controller motherboard, which is the basis for detecting Maillard reaction contaminants in dairy products;
[0007] The connecting cable is located on the main board inside the detector body;
[0008] The sensor base is located at the end of the connecting cable furthest from the detector body;
[0009] The sensor body is mounted on the sensor base and connected to the internal motherboard of the detector body via a connecting cable;
[0010] The protective sleeve is installed on the sensor base and is used to protect the sensor body;
[0011] The extension handle is detachably mounted on the sensor base.
[0012] Preferably, the sensor base is provided with a docking seat, the extension handle is provided with a plug, the plug is movably inserted into the docking seat, and the docking seat is provided with a locking mechanism for limiting the position of the plug.
[0013] Preferably, the insert block has a locking hole, and the locking mechanism includes:
[0014] A hollow seat is disposed on the docking seat;
[0015] The slider is slidably connected inside the hollow seat;
[0016] A locking rod is mounted on the slider and movably inserted into the lock hole.
[0017] Preferably, a spring is provided between the two sets of sliders.
[0018] Preferably, the sensor body is provided with a nut seat, and the sensor base is provided with a connecting platform for connecting cable, and the connecting platform is threadedly connected to the nut seat.
[0019] Preferably, the sensor base is provided with a spiral tube, and the protective sleeve is threadedly connected to the spiral tube.
[0020] This utility model discloses a device for detecting Maillard reaction contaminants in dairy products, which has the following beneficial effects:
[0021] This device for detecting Maillard reaction contaminants in dairy products features a protective cover that effectively protects the sensor body from external environmental interference and damage, extending the device's lifespan. Additionally, the detachable extension handle allows users to flexibly install and remove it as needed, facilitating operation in different scenarios and making the contaminant detection process convenient. It also facilitates storage when the device is no longer in use. Attached Figure Description
[0022] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0023] Figure 2 This is a disassembly diagram of the protective sleeve of this utility model;
[0024] Figure 3This is a disassembly diagram of the sensor body of this utility model;
[0025] Figure 4 This is a disassembly diagram of the extended handle of this utility model;
[0026] Figure 5 This is a schematic diagram of the locking mechanism of this utility model.
[0027] In the diagram: 1. Detector body; 2. Connecting cable; 3. Sensor base; 31. Docking seat; 4. Sensor body; 41. Nut seat; 42. Connecting platform; 5. Protective sleeve; 51. Screw tube; 6. Extension handle; 61. Insert block; 62. Locking hole; 7. Locking mechanism; 71. Hollow seat; 72. Slider; 73. Locking rod; 74. Spring. Detailed Implementation
[0028] 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.
[0029] Example 1:
[0030] Please see Figure 1-5 This utility model provides a technical solution: a device for detecting Maillard reaction contaminants in dairy products, including a detector body 1, a connecting cable 2, a sensor base 3, a sensor body 4, a protective sleeve 5, and an extension handle 6;
[0031] The detector body 1 contains a controller motherboard, which is the basis for detecting Maillard reaction contaminants in dairy products. The detector body 1 is the core control part of the entire equipment. Its internal controller motherboard integrates functional modules such as data processing, signal reception and transmission. It can analyze and process the signals collected by the sensor body 4 to determine the content of Maillard reaction contaminants in dairy products.
[0032] The connecting cable 2 is located on the internal main board of the detector body 1. Serving as a signal transmission channel, the connecting cable 2 accurately transmits the electrical signals collected by the sensor body 4 to the internal main board of the detector body 1. The connecting cable 2 is made of highly conductive and stable materials to ensure that the signal is not distorted or attenuated during transmission, thus guaranteeing the accuracy of the detection data.
[0033] The sensor base 3 is located at the end of the connecting cable 2 away from the detector body 1; the sensor base 3 is provided with a docking seat 31 for connecting with the extension handle 6. At the same time, the sensor base 3 also provides a stable mounting platform for the sensor body 4, ensuring that the sensor body 4 can maintain a stable state during operation.
[0034] The sensor body 4 is mounted on the sensor base 3 and connected to the internal main board of the detector body 1 via the connecting cable 2. The sensor body 4 employs electrochemical sensor technology to detect contaminants in the Maillard reaction. The sensor body 4 utilizes the electrochemical reaction between the contaminant and the electrode to generate a measurable current or potential change; therefore, the sensor body 4 has the specific ability to identify specific products of the Maillard reaction. These products have unique chemical structures that enable the sensor to accurately distinguish them from other substances.
[0035] Once the sensor body 4 detects pollutants involved in the Maillard reaction, it converts these chemical signals into electrical signals. This allows the concentration or state of the pollutants, which was previously difficult to measure directly, to be quantified.
[0036] The converted signal is transmitted to the internal mainboard of the detector body 1 via connecting cable 2. Here, the signal is further processed and analyzed to obtain accurate information about Merard reaction contaminants in dairy products.
[0037] The protective sleeve 5 is set on the sensor base 3 and is used to protect the sensor body 4;
[0038] The extension handle 6 is detachably mounted on the sensor base 3. The extension handle 6 provides users with a more convenient way to operate, making the detection process easier. Because the extension handle 6 adopts a detachable design, it is easy to install extension handles 6 in various shapes according to different situations, ensuring convenient detection. At the same time, when the equipment is not in use, it is also easy to disassemble the extension handle 6, making the whole equipment easy to store.
[0039] The sensor base 3 is provided with a docking seat 31, and the extension handle 6 is provided with a plug 61. The plug 61 is movably inserted into the docking seat 31, and the docking seat 31 is provided with a locking mechanism 7 for limiting the position of the plug 61.
[0040] The device, through the cooperation of the insert 61, the docking seat 31 and the locking mechanism 7, makes the installation and subsequent disassembly of the extension handle 6 convenient.
[0041] The insert 61 has a locking hole 62, and the locking mechanism 7 includes:
[0042] Hollow seat 71 is mounted on docking seat 31;
[0043] Slider 72 is slidably connected inside the hollow seat 71;
[0044] The locking rod 73 is mounted on the slider 72 and is movably inserted into the locking hole 62.
[0045] A spring 74 is provided between the two sets of sliders 72.
[0046] When the extension handle 6 needs to be installed, first pull the slider 72, so that the slider 72 drives the locking rod 73 to move and squeeze the spring 74. Then, the insert block 61 and the docking seat 31 are connected. After the connection is complete, release the slider 72 to make the spring 74 return to its original position and push the slider 72 and the locking rod 73 to move. Finally, the locking rod 73 is inserted into the lock hole 62, thereby realizing the quick installation and positioning of the extension handle 6.
[0047] Example 2:
[0048] Please see Figure 1-5 This utility model provides a technical solution: a device for detecting Maillard reaction contaminants in dairy products, including a detector body 1, a connecting cable 2, a sensor base 3, a sensor body 4, a protective sleeve 5, and an extension handle 6;
[0049] The detector body 1 contains a controller motherboard, which is the basis for detecting Maillard reaction contaminants in dairy products.
[0050] Connecting cable 2 is located on the main board inside detector body 1;
[0051] The sensor base 3 is located at the end of the connecting cable 2 away from the detector body 1;
[0052] The sensor body 4 is mounted on the sensor base 3 and connected to the internal motherboard of the detector body 1 via the connecting cable 2;
[0053] The protective sleeve 5 is set on the sensor base 3 and is used to protect the sensor body 4;
[0054] The extension handle 6 is detachably mounted on the sensor base 3.
[0055] The sensor body 4 is provided with a nut seat 41, and the sensor base 3 is provided with a connecting platform 42 that connects to the connecting cable 2. The connecting platform 42 is threadedly connected to the nut seat 41. This threaded connection method facilitates the installation and disassembly of the sensor body 4, and makes it convenient for the maintenance and replacement of the sensor body 4.
[0056] A solenoid tube 51 is provided on the sensor base 3, and a protective sleeve 5 is threaded onto the solenoid tube 51. The protective sleeve 5 can effectively prevent the sensor body 4 from being interfered with or damaged by the external environment during the detection process, avoid collisions to the sensor body 4, extend the stability and service life of the sensor body 4, and ensure the accuracy of the detection results.
Claims
1. An apparatus for dairy Maillard reaction contaminant detection, characterized in that, The utility model relates to a milk product maillard reaction pollution detector, which comprises the following parts: a detector main body (1) internally provided with a controller mainboard, which is the basis for detecting milk product maillard reaction pollution; a connecting cable (2) arranged on the internal mainboard of the detector main body (1); a sensor base (3) arranged at one end of the connecting cable (2) away from the detector main body (1); a sensor main body (4) arranged on the sensor base (3) and connected to the internal mainboard of the detector main body (1) through the connecting cable (2); a protective sleeve (5) arranged on the sensor base (3) and used for protecting the sensor main body (4); an extension handle (6) detachably arranged on the sensor base (3).
2. A device for detecting contaminants of milk products Maillard reaction according to claim 1, characterized in that, The sensor base (3) is provided with a docking seat (31), the extension handle (6) is provided with an insertion block (61), the insertion block (61) is movably inserted into the docking seat (31), and the docking seat (31) is provided with a locking mechanism (7) for limiting the insertion block (61).
3. A device for detecting contaminants of milk-based Maillard reaction according to claim 2, characterized in that, The insertion block (61) is provided with a lock hole (62), and the locking mechanism (7) comprises: a hollow seat (71) arranged on the docking seat (31); a sliding block (72) slidably connected to the inside of the hollow seat (71); a locking rod (73) arranged on the sliding block (72) and movably inserted into the lock hole (62).
4. A device for detecting contaminants of milk-based Maillard reaction according to claim 3, characterized in that, A spring (74) is arranged between the two groups of sliding blocks (72).
5. A device for detecting contaminants of milk products Maillard reaction according to claim 1, characterized in that, The sensor main body (4) is provided with a nut screw seat (41), the sensor base (3) is provided with a connecting table (42) connected to the connecting cable (2), and the connecting table (42) is screw-connected with the nut screw seat (41).
6. A device for detecting contaminants of milk products Maillard reaction according to claim 1, characterized in that, The sensor base (3) is provided with a screw pipe (51), and the protective sleeve (5) is screw-connected on the screw pipe (51).