Anti-adhesion heat preservation storage device
By designing adjustable font-shaped limiting assembly and lifting assembly in the insulation storage device, the problem that existing devices cannot adapt to samples of different sizes and heights is solved, achieving wider adaptability and flexibility.
Patent Information
- Application Number
- CN202422198227.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-06
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2034-09-06
AI Technical Summary
The existing insulation storage device cannot effectively adjust the size of the storage area, resulting in restrictions on the storage of samples or sample containers of different sizes and heights.
An anti-adhesive insulation storage device including a storage box, a refrigerator, a limiting assembly and a lifting assembly is designed. The limiting assembly adopts a zigzag structure, each separated space can be sized and height adjusted by lifting assembly to accommodate samples or sample containers of different sizes and heights.
Through adjustable limiting components and lifting components, the limitations on sample size and height are reduced, and the adaptability of storage devices is improved, making it easier to store and sample containers of different sizes and heights.
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Figure CN223031641U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of storage equipment, and particularly relates to an anti-adhesion heat preservation storage device. Background Art
[0002] After food production, it needs to be tested. For some special foods, such as frozen foods, etc., they need to be stored in a heat-preserved manner during quality inspection and transportation to avoid affecting the quality inspection results.
[0003] In order to prevent the samples from sticking, the existing heat preservation storage devices usually choose to place the samples separately. However, although the existing heat preservation storage devices divide the storage area, the size of each storage area cannot be adjusted, and it can only accommodate samples or containers containing samples with the same size as the storage area, resulting in limited sampling.
[0004] Therefore, we propose an anti-adhesion heat preservation storage device. Summary of the Invention
[0005] In view of the above deficiencies of the prior art, the utility model provides an anti-adhesion heat preservation storage device.
[0006] To achieve the above invention purpose, the technical solution adopted by the utility model is as follows:
[0007] An anti-adhesion heat preservation storage device, comprising: a storage box body, in which a heat preservation layer is provided in the box wall and is closed by a hinged closing door; a refrigerator, arranged on the top of the storage box body and the output end is communicated with the inside of the storage box body; a limiting component, arranged in the storage box body through a lifting component, the limiting component is in a cross shape, and the size of each separated space can be adjusted.
[0008] By setting a cross-shaped limiting component, and the size of each separated space can be adjusted, the limiting component can limit samples or containers containing samples of different sizes to prevent them from tipping or rolling, reducing the limitation of sampling and preservation. Moreover, the height of the limiting component can be adjusted through the lifting component to adapt to samples or sample containers of different heights, with a wider adaptability.
[0009] Further defined, the lifting component includes a lifting motor, a lifting lead screw, a guide rod and a lifting frame; the lifting lead screw and the guide rod are respectively arranged vertically on the left and right sides inside the storage box body, the two ends of the guide rod are fixedly arranged on the storage box body, the bottom end of the lifting lead screw is rotatably connected to the bottom of the storage box body, the top end passes through the top of the storage box body and is fixedly connected to the output shaft of the lifting motor, the lifting motor is arranged vertically on the top of the storage box body, one end of the lifting frame is threadedly connected to the lifting lead screw, and the other end is sleeved on the guide rod through a set through hole. The width of the lifting frame matches the internal width of the storage box body, and the limiting component is horizontally slidably arranged on the lifting frame.
[0010] The lifting motor drives the lifting lead screw to rotate. One end of the lifting frame is threadedly connected to the lifting lead screw, and the other end is sleeved on the guide rod. During the rotation of the lifting lead screw, the lifting frame will not rotate due to the limitation of the guide rod and the inner wall of the storage box, but will slide up and down on the lifting lead screw. And the limiting component is horizontally slidably arranged on the lifting frame. The lifting frame will drive the limiting component to move up and down. Slidingly connecting the limiting component to the lifting frame not only facilitates the removal, adjustment and maintenance of the limiting component, but also facilitates the pushing out of a part of the sample or sample component for convenient taking and storage.
[0011] Further limited, the lifting frame is in a concave shape with the opening facing the closing door. Sliding grooves are provided on the inner walls of both sides of the lifting frame. Both ends of the limiting component are provided with sliding strips matching the sliding grooves; the sliding out and sliding in of the limiting component are realized by the sliding of the sliding strips in the sliding grooves, with simple structure and convenient use.
[0012] Further limited, the limiting component includes a rectangular outer frame, an adjusting vertical rod and an adjusting cross rod; the sliding strips are arranged at both ends of the outer frame. Both ends of the adjusting vertical rod are respectively slidably connected to the two cross rods of the outer frame. There are two adjusting cross rods. One ends of the two adjusting cross rods are slidably connected to the adjusting vertical rod, and the other ends are respectively slidably connected to the vertical rods of the outer frame on the corresponding side. Both adjusting cross rods are telescopic rods; by providing an outer frame, the adjusting vertical rod slides horizontally on the outer frame, and the adjusting cross rod slides vertically on the adjusting vertical rod and the outer frame to realize the adjustment of the size of the separated space inside the outer frame, with convenient adjustment.
[0013] Further limited, both ends of the adjusting vertical rod are provided with first sleeves. The inner diameter of the first sleeve and the outer diameter of the cross rod of the outer frame are in clearance fit. Both ends of the adjusting cross rod are respectively provided with a second sleeve and a third sleeve. The inner diameter of the second sleeve and the outer diameter of the adjusting vertical rod are in clearance fit. The inner diameter of the third sleeve and the outer diameter of the vertical rod of the outer frame are in clearance fit, and an opening for the sliding strip to pass through is provided on the third sleeve; the sliding of the adjusting vertical rod is realized by connecting the first sleeve to the outer frame, and the sliding of the adjusting cross rod is realized by connecting the second sleeve to the adjusting vertical rod and the third sleeve to the outer frame, with simple structure and convenient manufacturing.
[0014] Further limited, each adjusting cross rod includes an outer rod in the middle and two inner rods inserted into the inner part of the outer rod from both sides. Telescopic grooves are provided on the rod wall of the outer rod. Positioning rods passing through the telescopic grooves are provided on the corresponding rod walls of the inner rods. The second sleeve and the third sleeve are respectively fixed at the ends of the inner rods on both sides; by providing telescopic grooves on the outer rod and positioning rods on the inner rod, it can prevent the inner rod from slipping out of the outer rod during the stretching process of the adjusting cross rod.
[0015] The beneficial effects of the present utility model are as follows: By providing a limiting component for adjusting the separated space to limit the sample or the container containing the sample, and the height of the limiting component can be adjusted through a lifting component, the limitation on the size and height of the sampled sample is reduced, and the adaptability of the storage device is improved. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 is a schematic structural diagram of the present utility model;
[0017] Figure 2 is a schematic internal structure diagram of the storage box;
[0018] Figure 3 is a top view of the state where the limiting structure cooperates with the lifting frame;
[0019] Figure 4 is a schematic structural diagram of the third collar and the sliding bar.
[0020] The symbols of each component are as follows:
[0021] Storage box 1, heat insulation layer 11, closing door 12, support legs 13, universal wheels 14, refrigerator 2, limiting component 3, outer frame 31, adjusting vertical rod 32, first collar 321, adjusting cross rod 33, second collar 331, third collar 332, outer rod 333, inner rod 334, telescopic groove 335, limiting rod 336, sliding bar 34, threaded hole 35, bolt 36, lifting component 4, lifting motor 41, lifting lead screw 42, guiding rod 43, lifting frame 44, sliding groove 441. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0022] The following describes the specific embodiments of the present utility model to facilitate those skilled in the art of this technical field to understand the present utility model. However, it should be clear that the present utility model is not limited to the scope of the specific embodiments. For those of ordinary skill in the art of this technical field, as long as various changes are within the spirit and scope of the present utility model defined and determined by the appended claims, these changes are obvious, and all utility models created using the concept of the present utility model are within the scope of protection.
[0023] Embodiment:
[0024] As Figures 1-4As shown in the figure, an anti-sticking heat preservation storage device includes a storage box body 1, a refrigerator 2, a limiting component 3 and a lifting component 4; a heat preservation layer 11 is provided in the box wall of the storage box body 1, and the storage box body 1 is closed by a hinged closing door 12; supporting legs 13 are provided at the bottom corners of the storage box body 1, and a universal wheel 14 with a locking function is provided at the bottom of each supporting leg 13; the refrigerator 2 is provided on the top of the storage box body 1, and the output end is communicated with the inside of the storage box body 1; the limiting component 3 is arranged in the storage box body 1 through the lifting component 4, the limiting component 3 is in a cross shape, and the size of each separated space can be adjusted; the limiting component 3 includes a rectangular outer frame 31, adjusting vertical rods 32 and adjusting cross rods 33; both ends of the adjusting vertical rod 32 are slidably connected to two cross rods of the outer frame 31, there are two adjusting cross rods 33, one ends of the two adjusting cross rods 33 are slidably connected to the adjusting vertical rod 32, and the other ends are respectively slidably connected to the vertical rods on the corresponding side of the outer frame 31, and both adjusting cross rods 33 are telescopic rods; first collar 321 is provided at both ends of the adjusting vertical rod 32, the inner diameter of the first collar 321 and the outer diameter of the cross rod of the outer frame 31 are in clearance fit, second collar 331 and third collar 332 are respectively provided at both ends of the adjusting cross rod 33, the inner diameter of the second collar 331 and the outer diameter of the adjusting vertical rod 32 are in clearance fit, the inner diameter of the third collar 332 and the outer diameter of the vertical rod of the outer frame 31 are in clearance fit, each adjusting cross rod 33 includes an outer rod 333 in the middle and two inner rods 334 inserted into the outer rod 333 from both sides, a telescopic groove 335 is opened on the rod wall of the outer rod 333, a limiting rod 336 passing through the telescopic groove 335 is provided on the corresponding rod wall of the inner rod 334, and the second collar 331 and the third collar 332 are respectively fixed at the ends of the inner rods 334 on both sides; threaded holes 35 are opened on the first collar 321, the second collar 331 and the third collar 332 for passing bolts 36 to limit the adjustment of the adjusting vertical rod 32 and the adjusting cross rod 33 to make them more stable; the lifting component 4 includes a lifting motor 41, a lifting lead screw 42, a guide rod 43 and a lifting frame 44; the lifting lead screw 42 and the guide rod 43 are respectively vertically arranged on the left and right sides inside the storage box body 1, both ends of the guide rod 43 are fixed on the storage box body 1, the bottom end of the lifting lead screw 42 is rotatably connected to the bottom of the storage box body 1, and the top end passes through the top of the storage box body 1 and is fixedly connected to the output shaft of the lifting motor 41, the lifting motor 41 is vertically arranged on the top of the storage box body 1, one end of the lifting frame 44 is threadedly connected to the lifting lead screw 42, and the other end is sleeved on the guide rod 43 through a through hole provided, and the width of the lifting frame 44 matches the inner width of the storage box body 1; the lifting frame 44 is in a concave shape with the opening facing the direction of the closing door 12, sliding grooves 441 are opened on both inner walls of the lifting frame 44, and sliding strips 34 matching the sliding grooves 441 are provided at both ends of the outer frame 31; an opening for the sliding strip 34 to pass through is opened on the third collar 332.
[0025] By setting the grid-shaped limiting component 3, and the size of each separated space can be adjusted, the limiting component 3 can limit samples or containers containing samples of different sizes to prevent them from tipping or rolling, reducing the limitations of sampling and preservation. Moreover, the height of the limiting component 3 can be adjusted by the lifting component 4 to adapt to samples or sample containers of different heights, with a wider adaptability. The lifting motor 41 drives the lifting screw rod 42 to rotate. One end of the lifting frame 44 is threadedly connected to the lifting screw rod 42, and the other end is sleeved on the guide rod 43. During the rotation of the lifting screw rod 42, the lifting frame 44 will not rotate due to the limitation of the guide rod 43 and the inner wall of the storage box 1, and will slide up and down on the lifting screw rod 42. And the limiting component 3 is horizontally slidably arranged on the lifting frame 44, and the lifting frame 44 will drive the limiting component 3 to move up and down. Slidingly connecting the limiting component 3 with the lifting frame 44 not only facilitates the removal, adjustment and maintenance of the limiting component 3, but also facilitates the pushing out of a part of the sample or sample component for convenient taking and storage. The sliding of the limiting component 3 in and out is realized by the sliding of the sliding bar 34 in the sliding groove 441, with a simple structure and convenient use. By setting an outer frame 31, the adjusting vertical rod 32 slides horizontally on the outer frame 31, and the adjusting cross rod 33 slides vertically on the adjusting vertical rod 32 and the outer frame 31 to realize the adjustment of the size of the separated space in the outer frame 31, which is convenient for adjustment. The sliding of the adjusting vertical rod 32 is realized by connecting the first collar 321 with the outer frame 31, and the sliding of the adjusting cross rod 33 is realized by connecting the second collar 331 with the adjusting vertical rod 32 and connecting the third collar 332 with the outer frame 31, with a simple structure and convenient manufacturing. By providing a telescopic groove 335 on the outer rod 333 and a limiting rod 336 on the inner rod 334, it can prevent the inner rod 334 from disengaging from the outer rod 333 during the stretching process of the adjusting cross rod 33.
Claims
1. An anti-adhesion heat preservation storage device, characterized in that: Comprising: A storage box body (1) with a heat insulation layer (11) provided in the box wall and closed by a hinged closing door (12); A refrigerator (2) provided at the top of the storage box body (1) and having an output end communicated with the inside of the storage box body (1); A limiting component (3) provided in the storage box body (1) through a lifting component (4), the limiting component (3) being in a cross shape and each separated space being capable of size adjustment.
2. The anti-adhesion heat preservation storage device according to claim 1, characterized in that: The lifting component (4) includes a lifting motor (41), a lifting lead screw (42), a guide rod (43) and a lifting frame (44); the lifting lead screw (42) and the guide rod (43) are respectively vertically provided on the left and right sides inside the storage box body (1), both ends of the guide rod (43) are fixedly provided on the storage box body (1), the bottom end of the lifting lead screw (42) is rotatably connected to the bottom of the storage box body (1), the top end passes through the top of the storage box body (1) and is fixedly connected to the output shaft of the lifting motor (41), the lifting motor (41) is vertically provided on the top of the storage box body (1), one end of the lifting frame (44) is threadedly connected to the lifting lead screw (42), the other end is sleeved on the guide rod (43) through a provided through hole, the width of the lifting frame (44) matches the inner width of the storage box body (1), and the limiting component (3) is horizontally slidably provided on the lifting frame (44).
3. The anti-adhesion heat preservation storage device according to claim 2, characterized in that: The lifting frame (44) is in a concave shape with an opening facing the direction of the closing door (12), sliding grooves (441) are provided on both inner walls of the lifting frame (44), and sliding bars (34) matching the sliding grooves (441) are provided at both ends of the limiting component (3).
4. The anti-adhesion heat preservation storage device according to claim 3, characterized in that: The limiting component (3) includes a rectangular outer frame (31), adjusting vertical rods (32) and adjusting cross rods (33); the sliding bars (34) are provided at both ends of the outer frame (31), both ends of the adjusting vertical rods (32) are respectively slidably connected to the two cross rods of the outer frame (31), there are two adjusting cross rods (33), one ends of the two adjusting cross rods (33) are slidably connected to the adjusting vertical rods (32), and the other ends are respectively slidably connected to the vertical rods of the outer frame (31) on the corresponding side, and both of the two adjusting cross rods (33) are telescopic rods.
5. The anti-adhesion heat preservation storage device according to claim 4, characterized in that: First collars (321) are provided at both ends of the adjusting vertical rods (32), the inner diameter of the first collars (321) has a clearance fit with the outer diameter of the cross rods of the outer frame (31), second collars (331) and third collars (332) are respectively provided at both ends of the adjusting cross rods (33), the inner diameter of the second collars (331) has a clearance fit with the outer diameter of the adjusting vertical rods (32), the inner diameter of the third collars (332) has a clearance fit with the outer diameter of the vertical rods of the outer frame (31), and an opening for the sliding bars (34) to pass through is provided on the third collars (332).
6. The anti-adhesion heat preservation storage device according to claim 5, characterized in that: Each of the adjusting cross bars (33) comprises an outer bar (333) in the middle and two inner bars (334) inserted into the outer bar (333) from both sides; a telescopic slot (335) is provided on the bar wall of the outer bar (333); a limiting rod (336) passing through the telescopic slot (335) is provided on the bar wall corresponding to the inner bar (334); and the second ring (331) and the third ring (332) are respectively fixed to the ends of the inner bar (334) on both sides.