Crystal packaging structure

By using a double-layer shell structure and a circulating heat dissipation system, the stability and heat dissipation efficiency problems of traditional crystal packaging structures under temperature changes are solved, achieving the effects of efficient heat insulation of crystals and reduced production costs.

CN224069102UActive Publication Date: 2026-03-31BEIJING SHENGTONGHEJING SCI & TECH
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-22
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

Traditional crystal packaging structures are easily affected by external environmental factors when the temperature changes. In particular, in fields such as astrophysics and oil well exploration, large-size insulation layers are required, resulting in high production costs and complex processes.

Method used

The shell adopts a double-layer structure, with the crystal placed in the inner layer and connected to the outer protective shell through a connecting plate. The inner cooling chamber is filled with coolant to absorb heat, and combined with the circulation pipe for heat dissipation. The outer layer is equipped with cooling holes and a filter to improve heat dissipation efficiency and stability.

Benefits of technology

It effectively isolates the crystal from the effects of external temperature changes, improves the crystal's lifespan and enhances heat dissipation efficiency, and reduces production costs and maintenance complexity.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of crystal packaging, in particular to a crystal packaging structure which comprises a shell with an opening in the top, the top of the shell is movably connected with a cover plate, the shell comprises a protective shell with an opening in the top, a placing box with an opening in the top is arranged in the protective shell, and the cover plate is movably connected with the protective shell. The upper end of the protective shell is connected with the placing box through a square connecting plate, the inner surface of the protective shell below the connecting plate and the outer surface of the placing box form a cooling cavity, and the shell of a double-layer structure is arranged and divided into the placing box and the protective box, so that during use, a crystal can be placed in the placing box; and the placing box and the protective shell are connected only through the connecting plate at the upper end, and the contact area between the internal placing box and the protective box is small, so that the crystal in the placing box is basically not influenced by the external temperature change.
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Description

Technical Field

[0001] This utility model relates to the field of crystal packaging technology, and in particular to a crystal packaging structure. Background Technology

[0002] Traditional crystal packaging structures mostly use metal housings, placing the crystal inside. The inside of the housing is in direct contact with the crystal, while the outside is in direct contact with the external environment. Temperature changes in the external environment will directly affect the crystal through the housing, and temperature changes in the crystal will directly affect the test results.

[0003] In existing technologies, a separate insulation layer is used, installed on the outside of the encapsulation structure, to prevent external temperature changes from affecting the crystals inside the encapsulation structure. However, in fields such as astrophysics and oil well exploration, the encapsulation structures are generally large in size, which requires a larger insulation layer, resulting in higher production costs and additional assembly and maintenance processes.

[0004] Therefore, it is necessary to provide a crystal packaging structure to solve the above-mentioned technical problems. Utility Model Content

[0005] To solve the above-mentioned technical problems, this utility model provides a crystal packaging structure.

[0006] This utility model provides a crystal packaging structure, comprising: a shell with a top opening, a cover plate movably connected to the top of the shell, a protective shell with a top opening, a placement box with a top opening inside the protective shell, the upper end of the protective shell and the placement box being connected by an "U"-shaped connecting plate, the inner surface of the protective shell below the connecting plate and the outer surface of the placement box forming a cooling cavity, the lower ends of the two opposite outer surfaces of the protective shell being respectively provided with a liquid inlet and a liquid outlet, one end of the liquid inlet and the liquid outlet respectively penetrating to the two sides inside the cooling cavity, a circulation box connected to the outer surface of the protective shell, a circulation pipe placed inside the circulation box, the liquid inlet being connected to one end of the circulation pipe through a liquid inlet pipe and a liquid inlet solenoid valve, and the liquid outlet being connected to the other end of the circulation pipe through a liquid outlet pipe, a liquid outlet solenoid valve, and a circulation pump.

[0007] Preferably, the bottom of the cover plate is provided with an opening-shaped connecting block, and the inner surface of the protective shell above the connecting plate and the outer surface of the placement box form a connecting groove, and the connecting block is slidably connected to the inside of the connecting groove.

[0008] Preferably, a sealing block is installed at the bottom of the cover plate, and the sealing block is slidably connected to the upper end of the box.

[0009] Preferably, a retaining ring is connected to the upper end of the inner surface of the placement box, and the width of the inner side of the retaining ring is smaller than the width of the sealing block.

[0010] Preferably, the outer surface of the circulating box is provided with a plurality of cooling hole groups, and the cooling hole groups comprise a plurality of cooling holes equidistantly distributed on the outer surface of the circulating box.

[0011] Preferably, a filter screen is mounted in the cooling hole.

[0012] Preferably, the outer surface of the protective shell is bonded with a protective layer made of heat insulation material.

[0013] Compared with the related art, the crystal packaging structure has the following beneficial effects:

[0014] 1. The shell body with a double-layer structure is arranged, and the shell body is divided into a placing box and a protective box, the crystal can be placed in the placing box in use, the placing box and the protective shell are connected only through the connecting plate at the upper end, the contact area between the placing box and the protective box is small, therefore, the temperature change outside basically does not affect the crystal in the placing box, the cooling cavity is arranged, the cooling liquid can be filled in the cooling cavity, the heat generated in the working process of the crystal can be absorbed through the heat absorption of the cooling liquid, thereby the service life of the crystal is improved, the circulating pipe is arranged, the cooling liquid after heat absorption can be rapidly cooled through the circulating heat dissipation of the circulating pipe, and the heat dissipation efficiency is improved.

[0015] 2. The connecting block is arranged, the bottom of the connecting block is in contact with the top of the connecting plate, the connecting groove and the connecting block are slidably connected, and the stability and tightness of the connection between the cover plate and the shell body are improved.

[0016] 3. The plurality of cooling hole groups are arranged, the air outside can enter the inside of the circulating box through the cooling holes, the cooling efficiency of the circulating pipe is improved, the filter screen is arranged, the cooling holes are protected through the filter screen, foreign matters are prevented from entering the cooling holes, the circulating pipe is prevented from being damaged, and the subsequent use is affected. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 FIG. 1 is a structural schematic view of a preferred embodiment of the crystal packaging structure provided by the utility model;

[0018] Figure 2 FIG. 2 is a structural schematic view of the protective shell shown in FIG. 1; Figure 1

[0019] FIG. 3 is a structural schematic view of the protective shell inside shown in FIG. 1; Figure 3 Figure 1 FIG. 4 is a structural schematic view of the liquid outlet pipe shown in FIG. 1;

[0020] Figure 4 FIG. 5 is a structural schematic view of the cover plate shown in FIG. 1; Figure 1 ​​

[0021] Fig. the label: 1, the shell; 2, the protective layer; 3, the cover plate; 4, the circulating box; 5, the cooling hole; 6, the filter screen; 7, the protective shell; 8, the placing box; 9, the connecting plate; 10, the blocking ring; 11, the circulating pipe; 12, the liquid inlet pipe; 13, the liquid inlet electromagnetic valve; 14, the liquid outlet pipe; 15, the circulating pump; 16, the liquid outlet electromagnetic valve; 17, the connecting block; 18, the sealing block. DETAILED DESCRIPTION

[0022] In order to make the purpose, technical scheme and advantages of the embodiments of the present application clearer, the technical scheme in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are part of the embodiments of the present application, rather than all the embodiments. The components of the embodiments of the present application described and shown in the drawings can be arranged and designed in various different configurations.

[0023] Therefore, the following detailed description of the embodiments of the present application provided in the drawings is not intended to limit the scope of the claimed present application, but only represents selected embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application.

[0024] It should be noted that: similar labels and letters represent similar items in the following drawings, therefore, once an item is defined in one drawing, it does not need to be further defined and explained in subsequent drawings.

[0025] In the description of the embodiments of the present application, it should be noted that if the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, or the orientation or positional relationship when the product of the present application is usually placed, which is only for the convenience of describing the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the indicated device or element must have a particular orientation, structure and operation, therefore cannot be understood as limiting the present application. In addition, if the terms "first", "second", "third" and the like appear, they are only used for differentiation, and cannot be understood as indicating or implying relative importance.

[0026] In addition, if the terms "horizontal", "vertical", "overhanging" and the like appear, they do not mean that the component must be absolutely horizontal or overhanging, but can be slightly inclined. For example, "horizontal" only means that its direction is relatively more horizontal than "vertical", and does not mean that the structure must be completely horizontal, but can be slightly inclined.

[0027] In the description of the embodiments of the utility model, it needs to be explained that, unless there is explicit provision and limitation, if the terms "set", "install", "connect", "connect" appear, it should be understood in a broad sense, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected, it can be mechanically connected, or electrically connected, it can be directly connected, or indirectly connected through an intermediate medium, it can be the communication between two elements. For ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.

[0028] The specific implementation of the novel crystal packaging structure is described in detail below in combination with specific embodiments.

[0029] Reference Figures 1 to 4 The utility model provides a kind of crystal packaging structure, comprising: the shell 1 of top opening, the top of the shell 1 is movably connected cover plate 3, the shell 1 includes the protective shell 7 of top opening, the inside of the protective shell 7 is equipped with the placing box 8 of top opening, the upper end between the protective shell 7 and placing box 8 is connected by "mouth" type connecting plate 9, the inner surface of the protective shell 7 below connecting plate 9 and the outer surface of placing box 8 constitute cooling cavity, the lower end of the opposite two outer surfaces of the protective shell 7 is equipped with liquid inlet and liquid outlet respectively, one end of liquid inlet and liquid outlet is respectively penetrated to the inside of cooling cavity, the outer surface of the protective shell 7 is connected with circulating box 4, the inside of circulating box 4 is placed with circulating pipe 11, liquid inlet is connected with one end of circulating pipe 11 by inlet pipe 12 and inlet electromagnetic valve 13, liquid outlet is connected with the other end of circulating pipe 11 by outlet pipe 14, outlet electromagnetic valve 16 and circulating pump 15.

[0030] It needs to be explained that: by setting the shell 1 of double-layer structure, and the shell 1 is divided into placing box 8 and protective box, when using, crystal can be placed in placing box 8, and because placing box 8 and protective shell 7 are only connected by connecting plate 9 at upper end, the contact area between internal placing box 8 and protective box is small, therefore, external temperature change basically does not cause influence to crystal in placing box 8, and by setting cooling cavity, cooling liquid can be filled in cooling cavity, heat generated in the process of crystal operation can be absorbed by cooling liquid, to improve the service life of crystal, and by setting circulating pipe 11, cooling liquid after heat absorption can be rapidly radiated by the circulation of circulating pipe 11, to improve the efficiency of heat dissipation.

[0031] In the embodiments of the utility model, as shown in Figure 4 The inner surface of the protective shell 7 above connecting plate 9 and the outer surface of placing box 8 constitute connecting groove, and the connecting block 17 is slidably connected in the connecting groove.

[0032] It should be noted that: by setting the connecting block 17, the bottom of the connecting block 17 can be in contact with the top of the connecting plate 9, and the sliding connection of the connecting groove and the connecting block 17 can improve the stability and tightness of the connection between the cover plate 3 and the shell 1.

[0033] In the embodiment of the utility model, reference Figure 4 As shown in the figure, the bottom of the cover plate 3 is provided with a sealing block 18, and the sealing block 18 is slidably connected to the upper end inside the placing box 8.

[0034] In the embodiment of the utility model, reference Figure 2 As shown in the figure, the inner surface of the placing box 8 is connected with a blocking ring 10 at the upper end, and the width of the inner side of the blocking ring 10 is smaller than the width of the sealing block 18.

[0035] It should be noted that: by setting the sealing block 18, the upper end of the placing box 8 can be sealed, the heat exchange between the inside of the placing box 8 and the outside can be reduced, and the influence of the external environment on the inside of the placing box 8 can be reduced, and by setting the blocking ring 10, the sealing block 18 can be prevented from descending too deeply and contacting the crystal, causing damage to the crystal.

[0036] In the embodiment of the utility model, reference Figure 1 As shown in the figure, the outer surface of the circulating box 4 is provided with a plurality of cooling hole groups 5, and the cooling hole group 5 comprises a plurality of cooling holes 5 equidistantly distributed on the outer surface of the circulating box 4.

[0037] In the embodiment of the utility model, reference Figure 1 As shown in the figure, the inside of the cooling hole 5 is provided with a filter screen 6.

[0038] It should be noted that: by setting a plurality of cooling hole groups 5, the outside air can enter the inside of the circulating box 4 through the cooling hole 5, and the cooling efficiency of the circulating pipe 11 can be improved, and by setting the filter screen 6, the filter screen 6 can be used to protect the cooling hole 5 from foreign matter, which can cause damage to the circulating pipe 11 and affect the subsequent use.

[0039] In the embodiment of the utility model, reference Figure 1 As shown in the figure, the outer surface of the protective shell 7 is bonded with a protective layer 2 made of heat insulation material.

[0040] It should be noted that: by setting the protective layer 2 made of heat insulation material, the influence of the external environment on the inside of the protective shell 7 can be reduced through the protective layer 2, and the influence on the inside of the placing box 8 can be reduced.

[0041] The working principle of the crystal packaging structure provided by the utility model is as follows:

[0042] By setting the double-layer structure of the shell 1, and dividing the shell 1 into the placing box 8 and the protection box, the crystal can be placed in the placing box 8 in use, and since the placing box 8 and the protection box are connected only through the connecting plate 9 at the upper end, the contact area between the internal placing box 8 and the protection box is small, therefore, the external temperature change basically has no influence on the crystal in the placing box 8, and by setting the cooling cavity, the cooling liquid can be filled in the cooling cavity, the heat generated in the working process of the crystal can be absorbed through the heat absorption of the cooling liquid, thereby improving the service life of the crystal, and by setting the circulating pipe 11, the heat-absorbed cooling liquid can be rapidly radiated through the circulating radiation of the circulating pipe 11, improving the heat dissipation efficiency.

[0043] The circuit and the control involved in the utility model are prior art, and too much repetition is not performed here.

[0044] The above is only the embodiment of the utility model, and does not limit the patent range of the utility model, and any equivalent structure or equivalent process transformation using the utility model specification and the attached drawing contents, or direct or indirect application in other related technical fields, are also included in the patent protection range of the utility model.

Claims

1. A crystal package structure, characterized by, The utility model relates to a kind of cooling device, including: Top open shell (1), the top movable connection cover plate (3) of the top of the shell (1), the shell (1) includes top open protective shell (7), the inside of the protective shell (7) is equipped with top open placing box (8), the upper end of the protective shell (7) is connected with placing box (8) by "mouth” type connecting plate (9) between, the inner surface of the protective shell (7) below connecting plate (9) and the outer surface of placing box (8) form cooling cavity, the lower end of the opposite two outer surfaces of the protective shell (7) is equipped with liquid inlet and liquid outlet respectively, one end of the liquid inlet and liquid outlet is respectively penetrated to the two of the inside of cooling cavity, the outer surface of the protective shell (7) is connected with circulating box (4), circulating tube (11) is placed in the inside of the circulating box (4), liquid inlet is connected with liquid inlet solenoid valve (13) by liquid inlet pipe (12) and one end of circulating tube (11), liquid outlet is connected with circulating pump (15) by liquid outlet pipe (14), liquid outlet solenoid valve (16) and the other end of circulating tube (11).

2. The crystal package structure of claim 1, wherein The bottom of the cover plate (3) is equipped with mouth type connecting block (17), the inner surface of the protective shell (7) above connecting plate (9) and the outer surface of placing box (8) form connecting groove, the connecting block (17) is slidably connected with the inside of connecting groove.

3. The crystal package structure of claim 2, wherein Sealing block (18) is installed in the bottom of the cover plate (3), the upper end in the inside of placing box (8) is slidably connected with the sealing block (18).

4. The crystal package structure of claim 3, wherein The upper end of the inner surface of the placing box (8) is connected with stop ring (10), the width of the inner side of the stop ring (10) is less than the width of the sealing block (18).

5. The crystal package structure of claim 1, wherein The outer surface of the circulating box (4) is equipped with multiple cooling holes (5) groups, the cooling hole (5) group includes multiple cooling holes (5) equidistantly distributed on the outer surface of the circulating box (4).

6. The crystal package structure of claim 5, wherein Filter screen (6) is installed in the inside of the cooling hole (5).

7. The crystal package structure of claim 1, wherein Heat insulation material is bonded on the outer surface of the protective shell (7) to form protective layer (2).