Package of aerogel

By designing an aerogel package containing gears, telescopic rods and buffer springs, the problem that the prior art cannot effectively fix aerogels of different sizes and provide good protection is solved, and stable fixation and efficient protection of aerogels are achieved.

CN223031665UActive Publication Date: 2025-06-27BAORUNDA SMART COLD CHAIN TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422175820.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-05
Publication Date
2025-06-27
Estimated Expiration
2034-09-05

AI Technical Summary

Technical Problem

Existing aerogel packages cannot effectively fix aerogels of different sizes and provide good protection during transportation, making them prone to damage due to external impact.

Method used

A package including a protective case, partition, gear, rotary rod, slide rod, telescopic rod and buffer spring is designed. The aerogel is fixed through the coordination of the gear and the telescopic rod, and the force of external impact is reduced through the buffer spring.

Benefits of technology

Simple fixation of aerogels of different sizes is achieved, the practicality of packaging is improved, and the protective effect of aerogel is improved through the buffering mechanism to prevent damage caused by accidental impact.

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Abstract

The utility model relates to the field of aerogel, and provides an aerogel package which comprises a protective shell, the partition plate is fixedly arranged on the inner wall of the protection shell, and two groove plates are fixedly arranged on one side of the partition plate. When the packaging bag is used for packaging, aerogel is placed in the protection shell, the protection effect is improved during transportation, at the moment, the aerogel is placed in a gap between the two pressing plates, the two pressing plates are loosened, and the aerogel can be stored in the gap between the two pressing plates; two pressing plates are pushed by elastic force of a plurality of extrusion springs, so that the two pressing plates clamp the two sides of the aerogel, first gears drive the two first gears to move in the opposite directions of two groove plates, the two pressing plates are further moved through two connecting plates, when a rotating plate cannot rotate, the aerogel is fixed, and when a bag is used for packaging, the aerogel can be fixed through the two pressing plates. The fixing mode of the aerogel is simple, meanwhile, the aerogel of different sizes can be fixed, and the packaging practicability is improved.
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Description

Technical Field

[0001] This application relates to the field of aerogels, and particularly to a packaging for aerogels. Background Art

[0002] An aerogel is an extremely light porous material with a very low density and excellent heat insulation properties. It is usually made of materials such as silicates, aluminates, or carbon, and has a high porosity and excellent thermal insulation ability. When transporting an aerogel, the packaging of the aerogel encapsulates the aerogel material in a protective shell to prevent it from being damaged or contaminated during transportation.

[0003] When placing the aerogel inside the packaging, it needs to be fixed to prevent it from moving during transportation. Some existing packagings can only fix aerogels of a single specification size, and the fixing method is relatively complex. When facing aerogels of other specification sizes, they cannot provide a good fixing effect. Moreover, during transportation, the packaging may be accidentally impacted externally, and the protection effect of the packaging is not very good, which may cause the packaging to be damaged, further resulting in damage to the aerogel. Utility Model Content

[0004] The packaging for an aerogel provided by this application has a simple fixing method for the aerogel, and at the same time can fix aerogels of different sizes, improving the practicality of the packaging. When using the packaging, the protection effect of the packaging is better, preventing the aerogel from being accidentally impacted and damaged.

[0005] To achieve the above object, this application adopts the following technical solution: A packaging for an aerogel, the packaging includes:

[0006] A protective shell;

[0007] A partition, fixedly arranged at the inner wall of the protective shell, and two groove plates are fixedly arranged on one side of the partition;

[0008] Two racks, respectively slidably arranged at the inner walls of the two groove plates, and a first gear is meshed and connected to the opposite sides of the two racks. The two racks can slide at the inner walls of the two groove plates. When the first gear rotates in different directions, the moving directions of the two racks are also different;

[0009] A rotating rod, arranged on one side of the protective shell through a bearing, and a rotating plate is fixedly arranged at one end of the rotating rod. The rotating rod can rotate through the bearing, and rotating the rotating plate drives the rotating rod to rotate;

[0010] A sliding rod, slidably arranged on one side of the protective shell, and a second gear is fixedly arranged at one end of the sliding rod;

[0011] Two connecting plates are respectively fixedly arranged on one side of the two racks, and supporting plates are fixedly arranged on one side of the two connecting plates. The two supporting plates are moved by the two connecting plates;

[0012] A plurality of first telescopic rods are respectively fixedly arranged on one side of the two supporting plates, and a second telescopic rod is movably sleeved on the outer surface of each of the plurality of first telescopic rods. The plurality of second telescopic rods can slide on the outer surfaces of the plurality of first telescopic rods respectively.

[0013] As a further improvement of the present application: the second gear meshes with the first gear, and a push plate is fixedly arranged on the side of the sliding rod away from the second gear. When the second gear and the first gear are engaged together, the first gear cannot rotate, and the push plate facilitates the pushing of the sliding rod.

[0014] As a further improvement of the present application: the plurality of second telescopic rods are evenly divided into two groups, and pressing plates are fixedly arranged on one side of each of the two groups of second telescopic rods. A compression spring is movably sleeved on the outer surface of each of the plurality of first telescopic rods. The aerogel is placed at the middle gap between the two pressing plates, and the elastic forces of the plurality of compression springs push the two pressing plates, so that the two pressing plates clamp both sides of the aerogel.

[0015] As a further improvement of the present application: bottom plates are fixedly arranged on both sides of the protective shell, and concave plates are fixedly arranged on one side of each of the two bottom plates by screws. The two concave plates are fixed on the two bottom plates by rotating a plurality of screws.

[0016] As a further improvement of the present application: two first connecting shafts are fixedly arranged on the inner walls of the two concave plates, and a transmission rod is movably sleeved on the outer surface of each of the plurality of first connecting shafts. A second connecting shaft is movably embedded on the outer surface of each of the plurality of transmission rods. The plurality of transmission rods can rotate respectively with the plurality of first connecting shafts or the plurality of second connecting shafts as axes.

[0017] As a further improvement of the present application: sliding cylinders are fixedly arranged on one side of each of the plurality of second connecting shafts. The plurality of sliding cylinders are grouped in pairs, and cross bars are movably embedded on the inner walls of each of the two groups of sliding cylinders. The plurality of sliding cylinders can slide on the outer surfaces of the two cross bars respectively.

[0018] As a further improvement of the present application: protective plates are fixedly arranged at both ends of the two cross bars, and the protective plates provide protection for the aerogel and the package.

[0019] As a further improvement of the present application: buffer springs are fixedly arranged on one side of each of the plurality of sliding cylinders. The plurality of buffer springs are respectively movably sleeved on the outer surfaces of the two cross bars. The plurality of buffer springs can slide, and when the plurality of buffer springs are compressed to generate a reverse force, a part of the force will be reduced.

[0020] Compared with the prior art, the advantages and positive effects of the present application are as follows.

[0021] 1. In the present application, when using a package for encapsulation, by placing the aerogel inside the protective shell, the protection effect is improved during transportation. When fixing the aerogel, multiple second telescopic rods can slide on the outer surfaces of multiple first telescopic rods respectively, and push two pressing plates respectively, so that the multiple second telescopic rods slide to squeeze multiple compression springs. At this time, the aerogel is placed in the middle gap between the two pressing plates. After releasing the two pressing plates, the elastic force of the multiple compression springs pushes the two pressing plates, so that the two pressing plates clamp both sides of the aerogel. The rotating rod can rotate through the bearing, and the sliding rod can slide on one side of the protective shell. At this time, the sliding rod is pushed by the push plate to further move the second gear, so that the second gear and the first gear are not engaged together. At this time, the rotating plate is rotated to drive the rotating rod to rotate clockwise, further enabling the first gear to drive two first gears to move in the opposite directions of the two groove plates, and further moving the two pressing plates through two connecting plates. When the rotating plate cannot be rotated, the fixation of the aerogel is completed. At this time, the push plate is pulled to move the second gear so that it meshes with the first gear. Therefore, when using the package for encapsulation, the fixing method of the aerogel is simple, and aerogels of different sizes can be fixed at the same time, improving the practicability of the package for encapsulation.

[0022] 2. In the present application, after the aerogel is fixed, two concave plates are fixed on two bottom plates by rotating multiple screws. The protective plate provides protection for the aerogel and the package for encapsulation. At the same time, when the outer surface of the protective plate is impacted, multiple sliding cylinders can slide on the outer surfaces of two cross bars respectively, and multiple transmission rods can rotate around multiple first connecting shafts or multiple second connecting shafts respectively. At this time, when the protective plate is pressed down by the impact force, multiple transmission rods respectively push multiple sliding cylinders, so that multiple sliding cylinders respectively push multiple buffer springs. The multiple buffer springs are squeezed to generate a reverse force, which will reduce a part of the force received by the protective plate, and further reduce the force received by the package for encapsulation and the aerogel. Therefore, when using the package for encapsulation, the protection effect of the package for encapsulation is good, preventing the aerogel from being accidentally impacted and damaged. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 It is a side perspective structural schematic diagram of a package for encapsulation of an aerogel proposed by the present application.

[0024] Figure 2 It is a perspective structural schematic diagram of a package for encapsulation of an aerogel proposed by the present application with the protective plate removed.

[0025] Figure 3 It is a sectional perspective structural schematic diagram of the protective shell in a package for encapsulation of an aerogel proposed by the present application.

[0026] Figure 4Schematic diagram of the three-dimensional structure of the encapsulation of an aerogel excluding the partition board proposed in this application.

[0027] Figure 5 In this application Figure 3 Enlarged view of part A.

[0028] Figure 6 In this application Figure 4 Enlarged view of part B.

[0029] Legend: 1. Protective shell; 2. Partition board; 201. Grooved plate; 202. Rack; 203. First gear; 204. Rotating rod; 205. Slide bar; 206. Second gear; 207. Push plate; 208. Rotating plate; 209. Connecting plate; 210. Support plate; 211. First telescopic rod; 212. Second telescopic rod; 213. Compression spring; 214. Pressing plate; 3. Bottom plate; 301. Concave plate; 302. First connecting shaft; 303. Transmission rod; 304. Second connecting shaft; 305. Slide cylinder; 306. Cross bar; 307. Buffer spring; 308. Protective plate. Detailed implementation mode

[0030] In order to more clearly understand the above-mentioned objects, features and advantages of this application, the following further describes this application in conjunction with the drawings and embodiments. It should be noted that, without conflict, the embodiments of this application and the features in the embodiments can be combined with each other.

[0031] Many specific details are set forth in the following description in order to fully understand this application. However, this application can also be implemented in other ways different from those described herein. Therefore, this application is not limited by the specific embodiments disclosed in the following specification.

[0032] Embodiment 1, as Figures 1 to 6 shown, this application provides an encapsulation of an aerogel, and the encapsulation includes:

[0033] Protective shell 1;

[0034] Partition board 2, fixedly arranged on the inner wall of the protective shell 1, and two grooved plates 201 are fixedly arranged on one side of the partition board 2;

[0035] Two racks 202 are respectively slidably arranged on the inner walls of the two grooved plates 201, and a first gear 203 is meshed and connected to the opposite sides of the two racks 202. The two racks 202 can slide on the inner walls of the two grooved plates 201. When the first gear 203 rotates in different directions, the moving directions of the two racks 202 are also different;

[0036] The rotating rod 204 is arranged on one side of the protective shell 1 through a bearing, and a rotating plate 208 is fixedly arranged at one end of the rotating rod 204. The rotating rod 204 can rotate through the bearing. Rotating the rotating plate 208 drives the rotating rod 204 to rotate;

[0037] The sliding rod 205 is slidably arranged on one side of the protective shell 1, and a second gear 206 is fixedly arranged at one end of the sliding rod 205;

[0038] Two connecting plates 209 are respectively fixedly arranged on one side of the two racks 202, and a support plate 210 is fixedly arranged on one side of each of the two connecting plates 209. The two support plates 210 are moved through the two connecting plates 209;

[0039] A plurality of first telescopic rods 211 are respectively fixedly arranged on one side of the two support plates 210, and a second telescopic rod 212 is movably sleeved on the outer surface of each of the plurality of first telescopic rods 211. The plurality of second telescopic rods 212 can respectively slide on the outer surfaces of the plurality of first telescopic rods 211.

[0040] As Figures 1 to 6 shown, the second gear 206 meshes with the first gear 203. A push plate 207 is fixedly arranged on the side of the sliding rod 205 away from the second gear 206. When the second gear 206 and the first gear 203 are engaged together, the first gear 203 cannot rotate. The push plate 207 facilitates the pushing of the sliding rod 205.

[0041] As Figures 1 to 6 shown, the plurality of second telescopic rods 212 are evenly divided into two groups. A pressing plate 214 is fixedly arranged on one side of each of the two groups of second telescopic rods 212. An extrusion spring 213 is movably sleeved on the outer surface of each of the plurality of first telescopic rods 211. The aerogel is placed in the middle gap between the two pressing plates 214. The elastic forces of the plurality of extrusion springs 213 push the two pressing plates 214, so that the two pressing plates 214 clamp both sides of the aerogel.

[0042] As Figures 1 to 6 shown, bottom plates 3 are fixedly arranged on both sides of the protective shell 1. Concave plates 301 are fixedly arranged on one side of each of the two bottom plates 3 by screws. The two concave plates 301 are fixed on the two bottom plates 3 by rotating a plurality of screws.

[0043] As Figures 1 to 6 shown, two first connecting shafts 302 are fixedly arranged on the inner walls of the two concave plates 301. A transmission rod 303 is movably sleeved on the outer surface of each of the plurality of first connecting shafts 302. A second connecting shaft 304 is movably embedded on the outer surface of each of the plurality of transmission rods 303. The plurality of transmission rods 303 can rotate respectively with the plurality of first connecting shafts 302 or the plurality of second connecting shafts 304 as axes.

[0044] As Figures 1 to 6As shown, a sliding cylinder 305 is fixedly arranged on one side of each of the multiple second connecting shafts 304. The multiple sliding cylinders 305 are grouped in pairs. A cross bar 306 is movably embedded in the inner walls of each pair of sliding cylinders 305. The multiple sliding cylinders 305 can slide on the outer surfaces of the two cross bars 306 respectively.

[0045] As Figures 1 to 6 shown, protective plates 308 are fixedly arranged at both ends of the two cross bars 306, and the protective plates 308 provide protection for the aerogel and the package.

[0046] As Figures 1 to 6 shown, a buffer spring 307 is fixedly arranged on one side of each of the multiple sliding cylinders 305. The multiple buffer springs 307 are respectively sleeved on the outer surfaces of the two cross bars 306 movably. The multiple buffer springs 307 can slide. When the multiple buffer springs 307 are squeezed to generate a reverse acting force, part of the force will be reduced.

[0047] Working principle: When using the package encapsulation, by placing the aerogel inside the protective shell 1, its protective effect is improved during transportation. When fixing the aerogel, multiple second telescopic rods 212 can slide on the outer surfaces of multiple first telescopic rods 211 respectively, and respectively push two pressing plates 214, so that the multiple second telescopic rods 212 slide to squeeze multiple compression springs 213. At this time, place the aerogel at the middle gap between the two pressing plates 214, release the two pressing plates 214, and the elastic force of the multiple compression springs 213 pushes the two pressing plates 214, so that the two pressing plates clamp both sides of the aerogel. The rotating rod 204 can rotate through the bearing, and the sliding rod 205 can slide on one side of the protective shell 1. At this time, push the sliding rod 205 through the push plate 207 to further move the second gear 206, so that the second gear 206 and the first gear 203 are not meshed together. At this time, rotate the rotating plate 208 to drive the rotating rod 204 to rotate clockwise, further making the first gear 203 drive the two first gears 203 to move in the opposite direction of the two slot plates 201, and further move the two pressing plates 214 through the two connecting plates 209. When the rotating plate 208 cannot rotate, the fixing of the aerogel is completed. At this time, pull the push plate 207 to move the second gear 206 so that it meshes with the first gear 203. Thus, when using the package encapsulation, the fixing method of the aerogel is simple, and aerogels of different sizes can be fixed at the same time, improving the practicability of the package encapsulation. After the aerogel is fixed, fix the two concave plates 301 on the two bottom plates 3 by rotating multiple screws. The protective plate 308 provides protection for the aerogel and the package encapsulation. At the same time, when the protective plate 308 is impacted on the outer surface, multiple sliding cylinders 305 can slide on the outer surfaces of the two cross bars 306 respectively, and multiple transmission rods 303 can rotate around multiple first connecting shafts 302 or multiple second connecting shafts 304 respectively. At this time, when the protective plate 308 is pressed down by the impact force, multiple transmission rods 303 respectively push multiple sliding cylinders 305, so that the multiple sliding cylinders 305 respectively push multiple buffer springs 307. The multiple buffer springs 307 are squeezed to generate a reverse force, which will reduce a part of the force received by the protective plate 308, and further reduce the force received by the package encapsulation and the aerogel. Thus, when using the package encapsulation, the protective effect of the package encapsulation is good, preventing the aerogel from being accidentally impacted and damaged.

[0048] The above are only the preferred embodiments of the application, and it is not a limitation of the present invention in other forms. Any person skilled in the art may use the technical content disclosed above to make changes or modifications into equivalent embodiments with equivalent changes and apply them to other fields. However, as long as it does not depart from the technical solution content of the present invention, any simple modification, equivalent change and modification made to the above embodiments according to the technical essence of the present invention still belong to the protection scope of the technical solution of the present invention.

Claims

1. An aerogel package, characterized in that: The package includes: Protective case (1); A partition plate (2) is fixedly arranged on the inner wall of the protective shell (1), and two groove plates (201) are fixedly arranged on one side of the partition plate (2); The two racks (202) are respectively slidably disposed on the inner walls of the two slot plates (201), and the first gear (203) is meshedly connected to opposite sides of the two racks (202). A rotating rod (204) is arranged on one side of the protective shell (1) via a bearing, and a rotating plate (208) is fixedly arranged on one end of the rotating rod (204); A sliding rod (205) is slidably disposed on one side of the protective shell (1), and a second gear (206) is fixedly disposed on one end of the sliding rod (205); Two connecting plates (209) are respectively fixedly arranged on one side of the two racks (202), and a support plate (210) is fixedly arranged on one side of the two connecting plates (209); A plurality of first telescopic rods (211) are respectively fixedly arranged on one side of the two support plates (210), and a second telescopic rod (212) is movably sleeved on the outer surfaces of the plurality of first telescopic rods (211).

2. The aerogel package according to claim 1, characterized in that: The second gear (206) is meshed with the first gear (203), and a push plate (207) is fixedly provided on a side of the slide bar (205) away from the second gear (206).

3. The aerogel package according to claim 1, characterized in that: The plurality of second telescopic rods (212) are evenly divided into two groups, one side of each of the two groups of second telescopic rods (212) is fixedly provided with a pressure plate (214), and the outer surfaces of the plurality of first telescopic rods (211) are movably sleeved with a compression spring (213).

4. The aerogel package according to claim 1, characterized in that: Bottom plates (3) are fixedly provided on both sides of the protective shell (1), and concave plates (301) are fixedly provided on one side of the two bottom plates (3) by screws.

5. The aerogel package according to claim 4, characterized in that: Two first connecting shafts (302) are fixedly arranged on the inner walls of the two concave plates (301), transmission rods (303) are movably sleeved on the outer surfaces of the plurality of first connecting shafts (302), and second connecting shafts (304) are movably embedded on the outer surfaces of the plurality of transmission rods (303).

6. The aerogel package according to claim 5, characterized in that: A slide cylinder (305) is fixedly provided on one side of each of the plurality of second connecting shafts (304), and the plurality of slide cylinders (305) are grouped in pairs, and a cross bar (306) is movably embedded in the inner walls of the two groups of slide cylinders (305).

7. The aerogel package according to claim 6, characterized in that: Protective plates (308) are fixedly provided at both ends of the two cross bars (306).

8. The aerogel package according to claim 6, characterized in that: A buffer spring (307) is fixedly arranged on one side of each of the plurality of slide cylinders (305), and the plurality of buffer springs (307) are movably sleeved on the outer surfaces of the two cross bars (306).