Heat preservation box
By introducing limiting blocks and support components into the insulated box, the partitions can be raised, lowered, and tilted for layered storage, solving the problem of damage to items below when stacked, and improving the storage stability and protection of items.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-07
- Publication Date
- 2026-03-06
AI Technical Summary
When items are stacked in existing insulated boxes, direct contact between the boxes and the stacked items makes the items underneath susceptible to damage from gravity.
An insulated box was designed, which includes an internal limiting block, a lifting groove and a support assembly. Layered storage is formed by the lifting and deflection of the partition plates, and the support assembly supports the partition plates to avoid direct contact with pressure.
This allows for three-dimensional placement of items, preventing damage to items below due to direct contact and stacking, thus improving storage stability and protection.
Smart Images

Figure CN223973002U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of insulated boxes, and more specifically, to an insulated box. Background Technology
[0002] An insulated box is a sealed container with an inner wall that slows down heat loss, thereby keeping the contents warm.
[0003] However, when placing items in existing insulated boxes, if there are many items, they are stacked. Direct contact between the stacked items causes the items on top to exert pressure on the items below, which can easily cause the items at the bottom to be crushed and damaged. Utility Model Content
[0004] The purpose of this utility model is to provide an insulated box that solves the problem that when items are stacked in an insulated box, the direct contact between the stacked items causes gravity to be applied to the items below, making the items below easily damaged by pressure.
[0005] This utility model is achieved through the following technical solution:
[0006] This utility model provides an insulated box, including a main body, with limiting blocks on both sides inside the main body, lifting grooves on both sides inside the main body, partition plates connected to both sides inside the main body, a connecting shaft at one end of the partition plate, the connecting shaft cooperating with the lifting groove, and support components connected to both sides of the inner wall of the main body, the support components swinging along the shaft.
[0007] Preferably, the limiting block is a protrusion provided on both sides of the inner wall of the body.
[0008] Preferably, the lifting groove is a groove disposed between the limiting block and the inner wall of the main body.
[0009] Preferably, the thickness of the partition plate matches the spacing between the defining block and the inner wall of the main body.
[0010] Preferably, the support assembly includes a support block, an inclined surface, a hinge shaft, and a deflection groove. The deflection groove is disposed on both sides of the inner wall of the body, the support block is connected in the deflection groove, the inclined surface is disposed on one side of the support block, and the hinge shaft is disposed at the bottom of the support block.
[0011] Preferably, the support block is a block connected to the deflection groove via a bottom hinge shaft, and torsion springs are provided at both ends of the hinge shaft.
[0012] Preferably, one side of the inclined surface of the support block protrudes at the opening of the deflection groove.
[0013] The technical solution of this utility model has at least the following advantages and beneficial effects:
[0014] 1. The partition plate in the device can create upper and lower layers within the body after upward deflection, thereby separating the placement of items and preventing the lower items from being squeezed and damaged due to direct stacking of items.
[0015] 2. The device is also equipped with a support component, which can stabilize the angle of the partition plate after deflection, so that the partition plate will not bend or tilt due to pressure after deflection due to suspension. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the overall structure of this utility model.
[0017] Figure 2 This is a side view sectional structural diagram of the present invention.
[0018] Figure 3 This is a frontal cross-sectional view of the present invention.
[0019] Figure 4 This utility model Figure 3 A magnified structural diagram of point A in the middle.
[0020] Reference numerals: 1-body, 101-limiting block, 102-lifting groove, 103-support block, 1031-inclined surface, 1032-hinge shaft, 104-deflection groove, 1041-limiting block, 2-partition plate, 201-connecting shaft. Detailed Implementation
[0021] The following is combined Figures 1 to 4 This utility model will be described in detail.
[0022] An insulated box includes a body 1. Limiting blocks 101 are provided on both sides of the interior of the body 1. Lifting grooves 102 are provided on both sides of the interior of the body 1. A partition plate 2 is connected to both sides of the interior of the body 1. A connecting shaft 201 is provided at one end of the partition plate 2, and the connecting shaft 201 cooperates with the lifting groove 102. Support components are connected to both sides of the inner wall of the body 1, and the support components swing along the shaft. The limiting blocks 101 are protrusions provided on both sides of the inner wall of the body 1. The lifting groove 102 is a groove provided between the limiting blocks 101 and the inner wall of the body 1. The thickness of the partition plate 2 matches the distance between the limiting blocks 101 and the inner wall of the body 1.
[0023] First, place the items that need to be stored and transported under heat into the interior of the main body 1, and then transport the items in a unified manner.
[0024] Meanwhile, if there are many items that need to be stacked, the partition plate 2 can be raised and lowered by controlling the partition plate 2. It can rise along the lifting groove 102 via the connecting shaft 201 at one end. After rising to a certain height, the partition plate 2 will separate the area of the limiting block 101, so that the partition plate 2 can deflect around the connecting shaft 201 as the axis. The partition plate 2 can be connected horizontally in the body 1. Through the horizontal connection of the two partition plates 2, the middle part of the body 1 can be divided into two layers, so that the items can be placed three-dimensionally without directly pressing on the bottom items, causing the bottom items to be damaged by pressure.
[0025] Furthermore, the support assembly includes a support block 103, an inclined surface 1031, a hinge shaft 1032, and a deflection groove 104. The deflection groove 104 is disposed on both sides of the inner wall of the body 1. The support block 103 is connected in the deflection groove 104. The inclined surface 1031 is disposed on one side of the support block 103. The hinge shaft 1032 is disposed at the bottom of the support block 103. The support block 103 is a block connected to the deflection groove 104 by the bottom hinge shaft 1032. Torsion springs are provided at both ends of the hinge shaft 1032. The side of the support block 103 with the inclined surface 1031 protrudes from the opening of the deflection groove 104.
[0026] At the same time, when the partition plate 2 is deflected laterally, the bottom of the partition plate 2 will abut against the top of the part of the support block 103 that protrudes from the deflection groove 104 to support the partition plate 2. The support block 103 is connected to the inner wall of the body 1 through the hinge shaft 1032 at the bottom. Therefore, the support block 103 can be deflected and retracted into the deflection groove 104 through the hinge shaft 1032 to adapt to the volume of the object placed in it. The support block 103 protrudes at different distances to match. The protruding side of the support block 103 is an inclined surface 1031 so that the bottom of the support block 103 will not protrude into the opening of the deflection groove 104 after deflection.
[0027] The following is a detailed implementation process of this utility model: First, items requiring heat preservation and transportation are placed inside the main body 1. Then, the items are transported uniformly. If there are many items that need to be stacked, the partition plate 2 is raised and lowered by controlling its lifting mechanism. It rises along the lifting groove 102 via a connecting shaft 201. After rising to a certain height, the partition plate 2 separates from the area of the limiting block 101, allowing the partition plate 2 to deflect around the connecting shaft 201. This allows the partition plate 2 to be horizontally connected to the main body 1. Through the horizontal connection of the two partition plates 2, the middle part of the main body 1 can be divided into two layers, thus allowing the items to be placed three-dimensionally without... The pressure is applied directly to the bottom item, causing it to be damaged. When the partition 2 is tilted laterally, the bottom of the partition 2 will abut against the top of the part of the support block 103 that protrudes from the tilting groove 104 to support the partition 2. The support block 103 is connected to the inner wall of the body 1 through the hinge shaft 1032 at the bottom. Therefore, the support block 103 can be tilted and retracted into the tilting groove 104 through the hinge shaft 1032 to adapt to the volume of the object being placed. The support block 103 protrudes at different distances to fit the object. The side of the support block 103 that protrudes is an inclined surface 1031, so that the bottom of the support block 103 will not protrude into the opening of the tilting groove 104 after tilting.
Claims
1. An incubator comprising a body (1), characterized in that, The body (1) is provided with a limiting block (101) on both sides of the inside, and is provided with a lifting groove (102) on both sides of the inside, and is connected with a partition plate (2) on both sides of the inside, and one end of the partition plate (2) is provided with a connecting shaft (201), the connecting shaft (201) is matched with the lifting groove (102), and the inner wall of the body (1) is connected with a supporting assembly on both sides, and the supporting assembly swings along the shaft.
2. The heat preservation box according to claim 1, wherein the limiting block (101) is a protruding block arranged on both sides of the inner wall of the body (1).
3. The heat preservation box according to claim 1, wherein the lifting groove (102) is a groove arranged between the limiting block (101) and the inner wall of the body (1).
4. The heat preservation box according to claim 1, wherein the thickness of the partition plate (2) is matched with the spacing between the limiting block (101) and the inner wall of the body (1).
5. The heat preservation box according to claim 1, wherein the supporting assembly comprises a supporting block (103), an inclined surface (1031), a hinged shaft (1032) and a deflection groove (104), the deflection groove (104) is arranged on both sides of the inner wall of the body (1), the supporting block (103) is connected in the deflection groove (104), the inclined surface (1031) is arranged on one side of the supporting block (103), and the hinged shaft (1032) is arranged at the bottom of the supporting block (103).
6. The heat preservation box according to claim 5, wherein the supporting block (103) is connected to the square block in the deflection groove (104) through the bottom hinged shaft (1032), and both ends of the hinged shaft (1032) are provided with torsional springs.
7. The heat preservation box according to claim 5, wherein the side of the supporting block (103) provided with the inclined surface (1031) protrudes at the opening of the deflection groove (104).