Wet gel container
By incorporating a partition structure and a heat-conducting mechanism within the wet gel container, simultaneous external and internal heating of the wet gel is achieved, solving the problem of low drying efficiency in cylindrical containers and improving both drying efficiency and actual filling capacity.
Patent Information
- Application Number
- CN202520174652.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-26
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2035-01-26
AI Technical Summary
In existing technologies, when using a cylindrical container to hold wet gel for drying, the heat conduction from the outside to the center is slow, resulting in reduced drying efficiency of the wet gel.
A wet gel container is used, which has multiple partitions spaced apart along the length to form non-communicating containment areas, and is equipped with a detachable heat-conducting mechanism that extends from the bottom to the opening, enabling simultaneous external and internal heating of the wet gel.
It improves the drying efficiency of wet gel, shortens the drying time, increases the actual filling capacity, and avoids space waste caused by the gaps between the spherical particles of wet gel.
Smart Images

Figure CN223673165U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to wet gel drying technical field, concretely relates to wet gel containing container. BACKGROUND
[0002] The approximate manufacturing process of the aerogel powder is as follows: other raw materials are added in the hydrolysis solution to form a jelly-like wet gel, and then the wet gel is made into wet gel spherical particles with a relatively large diameter; then a certain amount of wet gel spherical particles are contained in a round barrel, and the round barrel is installed in a drying kettle; finally, the hot air device of the drying kettle is started, the hot air stream blown by the hot air device directly blows the peripheral wall of the round barrel, and the wet gel spherical particles in the round barrel are gradually dried; finally, the dried spherical particles are made into aerogel powder.
[0003] However, in the drying process of blowing hot air into the round barrel, heat is conducted from the outside to the center of the round barrel, and the drying speed of the wet gel spherical particles in the center of the round barrel is slow, resulting in a long time required for completely drying all the wet gel spherical particles in the round barrel. Therefore, using the round barrel to contain the wet gel for drying will result in a decrease in the drying efficiency of the wet gel. SUMMARY
[0004] The utility model aims at overcoming the problem of the prior art that using the round barrel to contain the wet gel for drying will result in a decrease in the drying efficiency of the wet gel.
[0005] In order to achieve the above-mentioned purpose, the utility model provides a wet gel containing container, which comprises: a container body, the inside of the container body is provided with a plurality of separation structures distributed along the length direction thereof, all the separation structures separate the accommodating cavity in the inside of the container body into a plurality of accommodating areas which are not communicated with each other, and the top of the container body is provided with an opening communicated with the accommodating areas; the front wall plate and the rear wall plate of the container body are respectively arranged as plane plate members; and a plurality of heat conduction mechanisms, the plurality of heat conduction mechanisms are respectively and one-to-one correspondingly detachably installed in the plurality of accommodating areas, and the heat conduction mechanisms extend from the bottom of the container body to the opening.
[0006] In some embodiments, the heat conduction mechanism comprises a top plate, a bottom plate and a cross-shaped connecting rod, the top plate is arranged at the opening and in contact with the top of the container body, the bottom plate is arranged in the accommodating area and in contact with the bottom wall plate of the container body, and the two ends of the cross-shaped connecting rod are fixedly connected with the top plate and the bottom plate respectively.
[0007] In some embodiments, a plurality of air holes are arranged on the top plate in a spaced distribution manner, and a steel wire mesh is laid on the top surface of the top plate, the steel wire mesh covering all the air holes.
[0008] In some embodiments, the inside of the cross-shaped connecting rod is provided with a cross-shaped cavity extending along the length direction thereof, and the front wall plate and the rear wall plate of the container body are respectively in contact with the cross-shaped connecting rod.
[0009] In some embodiments, the top surface of the top plate is provided with a pair of spaced-apart pull tabs that are rotatable relative to the top plate.
[0010] In some embodiments, the container body comprises a front wall plate, a rear wall plate, a bottom wall plate and two side wall plates, the two sides of the front wall plate and the two sides of the rear wall plate are connected by the side wall plates, the bottom of the front wall plate and the bottom of the rear wall plate are connected by the bottom wall plate, the accommodation area is located between the front wall plate, the rear wall plate, the bottom wall plate and the two side wall plates, and the front wall plate, the rear wall plate and the bottom wall plate are respectively sealedly connected with the partition structure.
[0011] In some embodiments, the partition structure comprises two partition plates spaced apart along the length direction of the container body, and the front wall plate, the rear wall plate and the bottom wall plate are respectively sealedly connected with the partition plates.
[0012] In some embodiments, the front wall plate and the rear wall plate are respectively provided with a plurality of spaced-apart perforations, and the perforations are arranged between the two partition plates.
[0013] In some embodiments, all the perforations of the front wall plate and all the perforations of the rear wall plate are aligned one by one.
[0014] In some embodiments, the container body further comprises two connectors corresponding to the two side wall plates respectively; the connector comprises a first connecting plate, a second connecting plate and a third connecting plate, one side of the first connecting plate and one side of the second connecting plate are respectively connected to the corresponding side wall plate, and the first connecting plate and the second connecting plate are perpendicular to each other, the other side of the first connecting plate and the other side of the second connecting plate are respectively connected with the third connecting plate, and the third connecting plate is provided with a mounting hole.
[0015] The above technical scheme of the utility model has the following technical effects:
[0016] The hydrolysis liquid mixed with other raw materials is first added into the container body, and the hydrolysis liquid is distributed in each accommodation area, and the partition structure separates the adjacent accommodation areas, so that the adjacent accommodation areas are not communicated. Then, the plurality of heat conduction mechanisms are installed in the plurality of accommodation areas one by one, so that a part of the heat conduction mechanisms is immersed in the hydrolysis liquid. Then, the hydrolysis liquid is waited to form a wet gel. When the hydrolysis liquid forms a jelly-like wet gel, a part of the heat conduction mechanism extends into the inside of the wet gel. Then, the container body provided with the heat conduction mechanism is installed in the drying oven for drying. The hot air device of the drying oven blows hot air flow, the hot air flow directly blows the front wall plate of the container body, and the front wall plate and other wall plates of the container body can heat the wet gel from the outside of the wet gel. Moreover, since the front wall plate of the container body is a plane plate, the container body has a large hot air contact surface, so that the heat conduction efficiency of the container body is improved, and the drying efficiency of the wet gel is improved. In addition, the heat conduction mechanism extends into the wet gel, and the heat in the drying oven is conducted to the inside of the wet gel through the heat conduction mechanism, so that the inside of the wet gel is synchronously heated. Therefore, the wet gel container of the utility model can realize synchronous heating of the outside and the inside of the wet gel, so as to improve the drying efficiency of the wet gel. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 is a three-dimensional schematic view of a wet gel container in an embodiment of the utility model;
[0018] Figure 2 is an assembly schematic view of the container body and the heat conduction mechanism in an embodiment of the utility model;
[0019] Figure 3 is a three-dimensional schematic view of the heat conduction mechanism in an embodiment of the utility model;
[0020] Figure 4 is a three-dimensional schematic view of the cross-shaped connecting rod in an embodiment of the utility model;
[0021] Figure 5 is a three-dimensional schematic view of the container body in an embodiment of the utility model;
[0022] Figure 6 is Figure 5 a partial enlarged view of part A in the figure;
[0023] Figure 7 is a distribution schematic view of the accommodation area in an embodiment of the utility model;
[0024] Figure 8 is Figure 7 a partial enlarged view of part B in the figure.
[0025] BRIEF DESCRIPTION OF DRAWINGS
[0026] 1, container body; 11, partition structure; 111, partition plate; 12, containing area; 13, front wall plate; 14, rear wall plate; 15, bottom wall plate; 16, side wall plate; 17, perforation; 18, connecting piece; 181, first connecting plate; 182, second connecting plate; 183, third connecting plate;
[0027] 2, heat conduction mechanism; 21, top plate; 211, air hole; 22, bottom plate; 23, cross-shaped connecting rod; 231, cross-shaped cavity; 24, pull ring. DETAILED DESCRIPTION
[0028] The features and exemplary embodiments of each aspect of the present application will be described in detail below, in order to make the purpose, technical scheme and advantages of the present application more clear and apparent, the present application will be described in further detail below in combination with the drawings and specific embodiments. It should be understood that the specific embodiments described herein are intended to explain the present application, rather than to limit the present application. For those skilled in the art, the present application can be implemented without some of these specific details. The following description of the embodiments is merely intended to provide a better understanding of the present application by showing examples of the present application.
[0029] As shown in Figure 1 and Figure 2 The present application provides a wet gel container, which comprises a container body 1 and a plurality of heat conduction mechanisms 2. The inside of the container body 1 is provided with a plurality of partition structures 11 distributed along the length direction thereof, all the partition structures 11 separate the containing cavity inside the container body 1 into a plurality of containing areas 12 which are not in communication with each other, and the top of the container body 1 is provided with an opening in communication with the containing areas 12; the front wall plate 13 and the rear wall plate 14 of the container body 1 are respectively arranged as planar plate members. The plurality of heat conduction mechanisms 2 are respectively and correspondingly detachably installed in the plurality of containing areas 12, and the heat conduction mechanisms 2 extend from the bottom of the container body 1 to the opening.
[0030] Specifically, the hydrolysis liquid mixed with other raw materials is first added into the container body 1, and the hydrolysis liquid is distributed in each containing area 12, and the partition structure 11 separates the adjacent containing areas 12, so that the adjacent containing areas 12 are not communicated with each other. Then, the plurality of heat conduction mechanisms 2 are installed in the plurality of containing areas 12 one by one, so that a part of the heat conduction mechanism 2 is immersed in the hydrolysis liquid. Then, the hydrolysis liquid is waited to form a wet gel. When the hydrolysis liquid forms a wet gel in the shape of jelly, a part of the heat conduction mechanism 2 extends into the inside of the wet gel. Then, the container body 1 provided with the heat conduction mechanism 2 is installed in the drying oven for drying. The hot air device of the drying oven blows hot air flow, and the hot air flow directly blows the front wall plate 13 of the container body 1, and the front wall plate 13 and other wall plates of the container body 1 can heat the wet gel from the outside of the wet gel. Moreover, since the front wall plate 13 of the container body 1 is a flat plate, the container body 1 has a large hot air contact surface, so that the heat conduction efficiency of the container body 1 is improved, and the drying efficiency of the wet gel is improved. In addition, the heat conduction mechanism 2 extends into the wet gel, and the heat in the drying oven is conducted to the inside of the wet gel through the heat conduction mechanism 2, so that the inside of the wet gel is synchronously heated. Therefore, the wet gel container of the utility model can realize synchronous heating of the outside and the inside of the wet gel, so as to improve the drying efficiency of the wet gel.
[0031] In addition, the wet gel container of the utility model can directly form a wet gel in its inside without first making wet gel spherical particles for containing, so that the drying efficiency of the wet gel is improved. Moreover, there are gaps between the wet gel spherical particles, which reduces the actual containing capacity of the barrel. However, the wet gel container of the utility model can directly form a wet gel in its inside without gaps, so that the actual containing capacity is increased, and the overall drying efficiency is improved.
[0032] As shown in Figure 3 In some embodiments of the utility model, the heat conduction mechanism 2 includes a top plate 21, a bottom plate 22 and a cross-shaped connecting rod 23, the top plate 21 is arranged at the opening and in contact with the top of the container body 1, the bottom plate 22 is arranged in the containing area 12 and in contact with the bottom wall plate 15 of the container body 1, and the two ends of the cross-shaped connecting rod 23 are fixedly connected with the top plate 21 and the bottom plate 22 respectively.
[0033] Specifically, the cross-shaped connecting rod 23 is projected in the length direction and has a cross shape. The heat conduction mechanism 2 has a large contact surface, so that more parts of the middle part of the wet gel are in full contact with the cross-shaped connecting rod 23 and the bottom plate 22, so that more heat is conducted to the inside of the wet gel per unit time, and the drying efficiency is improved.
[0034] In some embodiments, the container body 1 and the heat conducting mechanism 2 are both made of a common metal material with good heat conducting performance, such as stainless steel or copper-zinc alloy, etc.
[0035] As shown in Figure 3 some embodiments of the present application, the top plate 21 is provided with a plurality of spaced-apart air holes 211, and a steel wire mesh is laid on the top surface of the top plate 21, covering all the air holes 211.
[0036] Specifically, during the heating and drying process of the wet gel, gas will be generated. The air holes 211 help to accelerate the discharge of the gas out of the container body 1. In addition, the steel wire mesh covering the air holes 211 can prevent the partially dried wet gel from flying out of the container body 1, and also prevent external pollutants from entering the container body 1. Of course, a steel wire mesh with fine and dense mesh is preferred to improve the protection effect.
[0037] As shown in Figure 4 some embodiments of the present application, the cross-shaped connecting rod 23 is provided with a cross-shaped cavity 231 extending along the length direction thereof, and the front wall plate 13 and the rear wall plate 14 of the container body 1 are in contact with the cross-shaped connecting rod 23, respectively.
[0038] Specifically, the cross-shaped cavity 231 provided in the cross-shaped connecting rod 23 can reduce the weight of the cross-shaped connecting rod 23, and increase the heat dissipation surface of the cross-shaped connecting rod 23, thereby improving the heat dissipation effect of the heat conducting mechanism 2.
[0039] As shown in Figure 3 some embodiments of the present application, the top surface of the top plate 21 is provided with a pair of spaced-apart pull rings 24, and the pull rings 24 can rotate relative to the top plate 21.
[0040] Specifically, the user can pull the heat conducting mechanism 2 through the pull rings 24, thereby facilitating the movement of the heat conducting mechanism 2.
[0041] As shown in Figure 6 some embodiments of the present application, the container body 1 includes a front wall plate 13, a rear wall plate 14, a bottom wall plate 15 and two side wall plates 16, the two sides of the front wall plate 13 and the two sides of the rear wall plate 14 are connected through the side wall plates 16, the bottom of the front wall plate 13 and the bottom of the rear wall plate 14 are connected through the bottom wall plate 15, the accommodation area 12 is located between the front wall plate 13, the rear wall plate 14, the bottom wall plate 15 and the two side wall plates 16, and the front wall plate 13, the rear wall plate 14 and the bottom wall plate 15 are respectively and sealingly connected with the partition structure 11.
[0042] Specifically, the front wall plate 13 and the rear wall plate 14 are spaced apart in the width direction of the container body 1, and the two side wall plates 16 are spaced apart in the length direction of the container body 1. The front wall plate 13 and the rear wall plate 14 are planar plates, the front wall plate 13 has a large hot air contact surface, and the front wall plate 13 and the rear wall plate 14 have a large heat conduction surface, so the heat conduction effect is good.
[0043] In some embodiments, the bottom of the container body 1 is arc-shaped to facilitate fitting the bottom wall of the drying tank. Specifically, the bottom side edges of the front wall plate 13 and the rear wall plate 14 are arc-shaped, and the bottom wall plate 15 is an arc-shaped plate, and the two sides of the bottom wall plate 15 are connected with the bottom side edges of the front wall plate 13 and the rear wall plate 14, respectively. Correspondingly, the bottom plate 22 is provided as an arc-shaped plate to facilitate fitting the bottom wall plate 15.
[0044] In some embodiments, the top side of the front wall plate 13 and the rear wall plate 14 is stepped, so that the height of the front wall plate 13 and the rear wall plate 14 decreases from the middle to the two sides. At this time, the capacity of the middlemost containing area 12 is the largest, and the capacity of the most side containing area 12 is the smallest, and the capacities of the other containing areas 12 are between the two. Correspondingly, the lengths of these heat conduction mechanisms 2 are also corresponding to be able to adapt to the corresponding containing areas 12.
[0045] As shown in Figure 7 In some embodiments of the present application, the partition structure 11 includes two partition plates 111 spaced apart along the length direction of the container body 1, and the front wall plate 13, the rear wall plate 14 and the bottom wall plate 15 are sealingly connected with the partition plates 111.
[0046] Specifically, the partition structure 11 adopts a double-layer plate structure, which can increase the heat conduction surface and accelerate the drying rate of the wet gel. Of course, the partition structure 11 can also be a single-layer plate structure, which is not limited by the present application.
[0047] As shown in Figure 6 and Figure 8 In some embodiments of the present application, a plurality of spaced-apart perforations 17 are provided on the front wall plate 13 and the rear wall plate 14, respectively, and the perforations 17 are arranged between the two partition plates 111.
[0048] Specifically, the hot air flow can flow through the perforations 17 of the front wall plate 13 to the area between the two partition plates 111, and then the heat of the hot air flow reaches the wet gel through the partition plates 111, thereby accelerating the drying rate of the wet gel. At this time, the partition plates 111 not only separate the areas, but also become heat conduction components.
[0049] In some embodiments of the present application, all the perforations 17 of the front wall plate 13 and all the perforations 17 of the rear wall plate 14 are aligned one by one, so that the hot air flow can continuously and smoothly flow through the perforations 17, thereby accelerating the heat conduction rate.
[0050] As Figure 5 shown, in some embodiments of the present application, the container body 1 further comprises two connecting pieces 18, and the two connecting pieces 18 are respectively corresponding to the two side wall plates 16; the connecting piece 18 comprises a first connecting plate 181, a second connecting plate 182 and a third connecting plate 183, one side of the first connecting plate 181 and one side of the second connecting plate 182 are respectively connected to the corresponding side wall plate 16, and the first connecting plate 181 and the second connecting plate 182 are perpendicular to each other, the other side of the first connecting plate 181 and the other side of the second connecting plate 182 are respectively connected with the third connecting plate 183, and the third connecting plate 183 is provided with a mounting hole.
[0051] Specifically, the third connecting plate 183 can be connected with the turnover device, so that the container body 1 is installed on the turnover device. By operating the turnover device, the angle of the container body 1 can be adjusted, so as to facilitate the extraction of the heat conduction mechanism 2 and the pouring of the gel.
[0052] In some embodiments, the number of the second connecting plate 182 is two, and the two second connecting plates 182 are spaced apart along the width direction of the container body 1 and parallel to each other, and the mounting hole is located between the two second connecting plates 182.
[0053] The principles and implementation modes of the present application are described by applying specific examples in this paper, and the above examples are only used to help understand the method and core idea of the present application. The above is only the preferred implementation mode of the present application, it should be pointed out that due to the limitedness of the expression, there are infinite specific structures in objective, for ordinary skilled person in the art, without departing from the principles of the present application, some improvements, decorations or changes can be made, and the above technical features can be combined in appropriate way; these improvements, decorations, changes or combinations, or without improvement, directly applying the concept and technical scheme of the present application to other occasions, should be regarded as the protection scope of the present application.
Claims
1. A wet gel holding container characterized by, The application relates to a container body (1) with a plurality of partition structures (11) arranged along the length direction of the container body (1) and separating the internal space of the container body (1) into a plurality of mutually isolated accommodating areas (12), and an opening is arranged on the top of the container body (1) and communicates with the accommodating areas (12); the front wall plate (13) and the rear wall plate (14) of the container body (1) are respectively arranged as plane plate members; and a plurality of heat conduction mechanisms (2) are arranged in the accommodating areas (12) and extend from the bottom of the container body (1) to the opening. The heat conduction mechanism (2) comprises a top plate (21), a bottom plate (22) and a cross-shaped connecting rod (23), the top plate (21) is arranged at the opening and is in contact with the top of the container body (1), the bottom plate (22) is arranged in the accommodating area (12) and is in contact with the bottom wall plate (15) of the container body (1), and the two ends of the cross-shaped connecting rod (23) are fixedly connected with the top plate (21) and the bottom plate (22) respectively. A plurality of air holes (211) are arranged on the top plate (21) and are arranged along the length direction of the container body (1); the top surface of the top plate (21) is paved with a steel wire mesh, and the steel wire mesh covers all the air holes (211). The cross-shaped connecting rod (23) is internally provided with a cross-shaped cavity (231) extending along the length direction of the cross-shaped connecting rod (23); the front wall plate (13) and the rear wall plate (14) of the container body (1) are respectively in contact with the cross-shaped connecting rod (23).
2. The wet gel holding container of claim 1, wherein A pair of spaced-apart pull rings (24) are arranged on the top surface of the top plate (21) and can rotate relative to the top plate (21).
3. The wet gel containment vessel of claim 2, wherein, The container body (1) comprises the front wall plate (13), the rear wall plate (14), a bottom wall plate (15) and two side wall plates (16); the two sides of the front wall plate (13) and the two sides of the rear wall plate (14) are connected through the side wall plates (16), the bottom of the front wall plate (13) and the bottom of the rear wall plate (14) are connected through the bottom wall plate (15), the accommodating areas (12) are located between the front wall plate (13), the rear wall plate (14), the bottom wall plate (15) and the two side wall plates (16), and the front wall plate (13), the rear wall plate (14) and the bottom wall plate (15) are respectively and sealingly connected with the partition structures (11).
4. The wet gel containment vessel of claim 2, wherein, The partition structure (11) comprises two partition plates (111) arranged along the length direction of the container body (1) and sealingly connected with the front wall plate (13), the rear wall plate (14) and the bottom wall plate (15).
5. The wet gel containment vessel of claim 2, wherein, A plurality of spaced-apart perforations (17) are arranged on the front wall plate (13) and the rear wall plate (14) and are arranged between the two partition plates (111).
6. The wet gel container of any one of claims 1-5, wherein, 7. The wet gel container of claim 6, wherein 8. The wet gel containment vessel of claim 7, wherein, 9. The wet gel containment vessel of claim 8, wherein, All the perforations (17) of the front wall plate (13) and all the perforations (17) of the rear wall plate (14) are aligned one by one.
10. The wet gel containment vessel of claim 6, wherein, The container body (1) further comprises two connecting pieces (18), and the two connecting pieces (18) correspond to the two side wall plates (16) one by one; the connecting piece (18) comprises a first connecting plate (181), a second connecting plate (182) and a third connecting plate (183), one side of the first connecting plate (181) and one side of the second connecting plate (182) are connected to the corresponding side wall plate (16) respectively, and the first connecting plate (181) and the second connecting plate (182) are perpendicular to each other, the other side of the first connecting plate (181) and the other side of the second connecting plate (182) are connected with the third connecting plate (183) respectively, and the third connecting plate (183) is provided with a mounting hole.