Temperature-controllable mould incubator

By using insulation boards and heat-conducting frame structures in the mold incubator, combined with the main heating rod and auxiliary heating rod, the power device and the temperature detector, the problem of temperature unevenness is solved, and uniform temperature control and data accuracy are achieved.

CN223422684UActive Publication Date: 2025-10-10ZHENGZHOU MIAOKE DAIRY CO LTD
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Patent Information

Application Number
CN202422370450.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-27
Publication Date
2025-10-10
Estimated Expiration
2034-09-27

AI Technical Summary

Technical Problem

When existing mold incubators are placed in a large space, the uneven temperature makes it impossible to obtain accurate comparative data.

Method used

It adopts the structure of heat insulation board and heat conduction frame, combined with main heating rod and auxiliary heating rod, realizes uniform temperature control through regulating plate and power device, and uses temperature detector and observation window for real-time monitoring and adjustment.

Benefits of technology

The uniformity of temperature in incubators of different sizes is achieved, ensuring the accuracy and reliability of data.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223422684U_ABST
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Abstract

The utility model belongs to the technical field of electromechanical equipment transportation equipment, and particularly relates to a temperature-controllable mould incubator which is characterized in that a plurality of heat insulation plates are arranged on an incubator body, a heat conduction frame is arranged on the heat insulation plates, a heating chamber is formed between the heat conduction frame and the inner side wall of the incubator body, and a placing chamber is formed between the heat conduction frame and the heat insulation plates; a main heating rod is arranged in the heating chamber; the incubator body is provided with a plurality of sliding grooves corresponding to the heating cavities, the sliding grooves are connected with an adjusting plate in a sliding mode, the adjusting plate is provided with an extending plate arranged in the heating cavities, the extending plate is provided with an auxiliary heating rod, heat insulation telescopic sleeves are arranged between the adjusting plate and the sliding grooves, and the adjusting plate is driven by a power device. The incubator body is provided with a heat preservation door, the heat preservation door is provided with heat preservation blocks corresponding to the containing cavities, the heat preservation blocks are provided with two sets of temperature detectors, and the heat preservation door is provided with observation windows corresponding to the containing cavities.
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Description

Technical Field

[0001] The utility model belongs to the technical field of electromechanical equipment transportation equipment, in particular to a temperature-controllable mold incubator. Background Art

[0002] A mold incubator is a type of incubator used primarily for cultivating organisms and plants. Within a sealed space, the appropriate temperature and humidity are set to allow mold to grow within 4-6 hours. This is used to artificially accelerate mold growth and assess the mold resistance and mold severity of electrical and electronic products. It is a crucial testing tool for artificial, three-proof climates and is essential testing equipment for storing bacterial strains, cultivating organisms, and in research laboratories in universities, medical, military, electronics, chemical, and biological research departments. It is used to test and assess parameters and performance after exposure to changes in humidity and temperature.

[0003] In actual application, the following technical defects exist:

[0004] The mold incubator is equipped with multiple layers of partitions for placing culture containers. The partitions divide the space inside the box into independent layers from top to bottom. During the mold cultivation process, multiple groups of mold boxes need to be placed for comparative analysis. At this time, the placement space of the mold incubator needs to be set larger. If the mold incubator is larger, the space for placing the culture containers will be larger, and the heating temperature of the placement space will be uneven, resulting in the inability to obtain accurate comparative data.

[0005] Therefore, the present invention designs a temperature-controllable mold incubator to solve the technical problems existing in the prior art. Utility Model Content

[0006] In view of the shortcomings of the existing technology, the purpose of the present invention is to provide a temperature-controllable mold incubator to solve the above-mentioned technical problems.

[0007] The solution adopted by the utility model is: a temperature-controllable mold incubator, including an incubator body, characterized in that:

[0008] The incubator body is provided with a plurality of heat insulation boards, a plurality of heat insulation boards are provided with heat conducting frames, a heating chamber is formed between the heat conducting frames and the inner wall of the incubator body, a placement chamber is formed between the heat conducting frames and the heat insulation boards, and a main heating rod is provided in the heating chamber;

[0009] The incubator body is provided with a plurality of sliding grooves corresponding to the heating chambers, and the plurality of sliding grooves are slidably connected to an adjustment plate, the adjustment plate is provided with an extension plate placed in the heating chamber, the extension plate is provided with an auxiliary heating rod, a heat-insulating telescopic sleeve is provided between the adjustment plate and the sliding grooves, and the adjustment plate is driven by a power device;

[0010] The incubator body is provided with a heat preservation door, the heat preservation door is provided with heat preservation blocks corresponding to the placing chamber, the heat preservation blocks are provided with two groups of temperature detectors, and the heat preservation door is provided with observation windows corresponding to the placing chamber.

[0011] Preferably, the power device comprises a plurality of lead screws rotatably connected to the incubator body, the plurality of lead screws are threadedly connected with a plurality of adjusting plates, the incubator body is fixedly connected with a plurality of electric motors, the lead screws are driven by the electric motors, and the plurality of electric motors are electrically connected with a controller.

[0012] Preferably, the heating chamber is provided with two groups of main heating rods, the two groups of main heating rods are located on two side walls of the heating chamber, and the auxiliary heating rod is located on the top of the heating chamber.

[0013] Preferably, the two groups of temperature detectors are centrally symmetrically arranged on the heat preservation blocks, and the observation windows are arranged between the two groups of temperature detectors.

[0014] Preferably, the bottom of the incubator body is provided with a wear-resistant pad.

[0015] The additional aspects and advantages of the present application will be partially given in the following description, partially become obvious from the following description, or be known by the practice of the present application. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 is one of the perspective views of the utility model.

[0017] Figure 2 is one of the perspective views of the utility model.

[0018] Figure 3 is Figure 2 the A local enlarged view.

[0019] Figure 4 is one of the perspective views of the utility model.

[0020] Fig. 1 is an incubator body; 2 is a heat insulation plate; 3 is a heat conduction frame; 4 is a heating chamber; 5 is a placing chamber; 6 is a main heating rod; 7 is a sliding groove; 8 is an adjusting plate; 9 is an extension plate; 10 is an auxiliary heating rod; 11 is a heat insulation telescopic sleeve; 12 is a heat preservation door; 13 is a heat preservation block; 14 is a temperature detector; 15 is an observation window; 16 is a lead screw; 17 is an electric motor. DETAILED DESCRIPTION

[0021] The foregoing and other technical contents, characteristics and effects of the utility model will be described in the following with reference to the accompanying drawings. Figure 1-4The detailed description of the embodiments will clearly show that the structural contents mentioned in the following embodiments are all based on the accompanying drawings.

[0022] Various exemplary embodiments of the present invention will be described below with reference to the accompanying drawings.

[0023] Example 1, a temperature-controllable mold incubator, including an incubator body 1, characterized in that:

[0024] The incubator body 1 is provided with a plurality of heat insulation boards 2, and a heat conduction frame 3 is provided on the plurality of heat insulation boards 2. A heating chamber 4 is formed between the heat conduction frame 3 and the inner wall of the incubator body 1, and a placement chamber 5 is formed between the heat conduction frame 3 and the heat insulation board 2. A main heating rod 6 is provided in the heating chamber 4;

[0025] The incubator body 1 is provided with a plurality of sliding grooves 7 corresponding to the heating chamber 4. The plurality of sliding grooves 7 are slidably connected to an adjustment plate 8. The adjustment plate 8 is provided with an extension plate 9 placed in the heating chamber 4. The extension plate 9 is provided with an auxiliary heating rod 10. A heat-insulating telescopic sleeve 11 is provided between the adjustment plate 8 and the sliding grooves 7. The adjustment plate 8 is driven by a power device.

[0026] The incubator body 1 is provided with an insulation door 12, the insulation door 12 is provided with an insulation block 13 corresponding to the placement chamber 5, the insulation block 13 is provided with two groups of temperature detectors 14, and the insulation door 12 is provided with an observation window 15 corresponding to the placement chamber 5.

[0027] As an optional solution of Example 1, the power device includes a plurality of screws 16 rotatably connected to the incubator body 1, a plurality of the screws 16 are threadedly connected to a plurality of adjustment plates 8, a plurality of motors 17 are fixedly connected to the incubator body 1, the screws 16 are driven by the motors 17, and the plurality of motors 17 are electrically connected to the controller.

[0028] As an optional solution of Example 1, two groups of main heating rods 6 are provided in the heating chamber 4 , the two groups of main heating rods 6 are located on both side walls of the heating chamber 4 , and the auxiliary heating rod 10 is located on the top of the heating chamber 4 .

[0029] As an optional solution of Example 1, the two groups of temperature detectors 14 are arranged symmetrically with respect to the heat preservation block 13 , and the observation window 15 is arranged between the two groups of temperature detectors 14 .

[0030] As an optional solution of Example 1, a wear-resistant pad is provided at the bottom of the incubator body 1.

[0031] When in use, the heat preservation door 12 is opened and the mold box is placed in the placement chamber 5. After placement, the heat preservation door 12 is closed. Under the action of the heat preservation block 13, the placement chamber 5 forms a sealed space. The main heating rods 6 are heated by the controller. Two sets of main heating rods 6 are located on both side walls of the heating chamber 4. The heat generated is transferred to the interior of the heating chamber 4 through the heat conduction frame 3 for cultivating mold;

[0032] If a larger incubator body 1 is used, the placement chamber 5 will be larger, which will cause uneven heating of the temperature inside the incubator body 1. The temperature inside the placement chamber 5 is detected by the temperature detector 14 on the heat preservation block 13. If it is found that the temperature deviation on both sides of the placement chamber 5 is too large, the motor 17 is driven to drive the lead screw 16 to move the adjustment plate 8 to the position where the temperature deviation is too large, and the auxiliary heating rod 10 is started to heat and increase the temperature until the temperature deviation on both sides is within the normal value.

[0033] During the movement of the adjustment plate 8, a heat-insulating telescopic sleeve 11 is provided between the sliding groove 7 and the adjustment plate 8, so that no movement interference occurs, and the adjustment is convenient and easy to operate.

[0034] The above description is only for the purpose of illustrating the present invention. It should be understood that the present invention is not limited to the above embodiments, and various variations that conform to the concept of the present invention are within the scope of protection of the present invention.

Claims

1. A temperature-controllable mold incubator, comprising an incubator body (1), characterized in that: The incubator body (1) is provided with a plurality of heat insulation plates (2), and a heat conduction frame (3) is provided on the plurality of heat insulation plates (2). A heating chamber (4) is formed between the heat conduction frame (3) and the inner wall of the incubator body (1), and a placement chamber (5) is formed between the heat conduction frame (3) and the heat insulation plates (2). A main heating rod (6) is provided in the heating chamber (4); The incubator body (1) is provided with a plurality of sliding grooves (7) corresponding to the heating chamber (4), and the plurality of sliding grooves (7) are slidably connected to an adjustment plate (8), the adjustment plate (8) is provided with a protruding plate (9) placed in the heating chamber (4), the protruding plate (9) is provided with an auxiliary heating rod (10), a heat-insulating telescopic sleeve (11) is provided between the adjustment plate (8) and the sliding groove (7), and the adjustment plate (8) is driven by a power device; The incubator body (1) is provided with a heat-insulating door (12), the heat-insulating door (12) is provided with a heat-insulating block (13) corresponding to the placement chamber (5), the heat-insulating block (13) is provided with two groups of temperature detectors (14), and the heat-insulating door (12) is provided with an observation window (15) corresponding to the placement chamber (5).

2. A temperature-controlled mold incubator according to claim 1, characterized in that: The power device includes a plurality of lead screws (16) rotatably connected to the incubator body (1), a plurality of the lead screws (16) and a plurality of adjustment plates (8) are threadedly connected, a plurality of motors (17) are fixedly connected to the incubator body (1), the lead screws (16) are driven by the motors (17), and the plurality of motors (17) are electrically connected to the controller.

3. The temperature-controllable mold incubator according to claim 1, characterized in that: Two groups of main heating rods (6) are provided in the heating chamber (4), and the two groups of main heating rods (6) are located on both side walls of the heating chamber (4), and the auxiliary heating rod (10) is located on the top of the heating chamber (4).

4. The temperature-controllable mold incubator according to claim 1, characterized in that: The two groups of temperature detectors (14) are centrally symmetrically arranged with respect to the heat preservation block (13), and the observation window (15) is located between the two groups of temperature detectors (14).

5. A temperature-controllable mold incubator according to any one of claims 1 to 4, characterized in that: The bottom of the incubator body (1) is provided with a wear-resistant pad.