Storage structure for indium phosphide single crystal production

By designing a combined structure of base plate, slider, placement component, adjustment component and sliding column, the problem of bumps and detachment of indium phosphide single crystal storage structure during transportation was solved, achieving stable transportation and convenient installation.

CN223751444UActive Publication Date: 2026-01-02QINGDAO JIAXING HIGH-TECH DEVELOPMENT CO LTD
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Patent Information

Application Number
CN202520302547.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-25
Publication Date
2026-01-02
Estimated Expiration
2035-02-25

AI Technical Summary

Technical Problem

Existing storage structures for indium phosphide single crystal production are prone to being bumped and detached during transportation, causing inconvenience in use.

Method used

A storage structure including a base plate, a slider, a placement component, an adjusting component, and a sliding column is designed. The slider and sliding column are moved by the control column, and the adjusting component is released from contact with the inner cavity, which facilitates the disassembly and installation of the placement component. The spring is used to reset and fix it to prevent it from falling off.

Benefits of technology

Stable transportation of indium phosphide single crystals has been achieved, avoiding bumps and detachment, and improving ease of use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a storage structure for indium phosphide single crystal production, which relates to the technical field of indium phosphide single crystal production, and comprises a bottom plate, a sliding block, a placing piece, an adjusting piece and a sliding column, the whole bottom plate is of a rectangular structure, and pulleys are arranged at the bottom of the bottom plate. The sliding block is arranged in the bottom plate, and the top of the sliding block is of a wedge-shaped structure. The placing piece is arranged at the top of the bottom plate; the two adjusting pieces are arranged in the containing piece, and round holes are formed in the bottoms of the adjusting pieces. The sliding column is arranged in the middle of the containing piece, the top of the sliding column is of a cylindrical structure with the middle protruding, the bottom of the sliding column is of a wedge-shaped structure, and the bottom of the sliding column makes contact with the top of the sliding block. The storage structure for indium phosphide single crystal production solves the problems that when an existing storage structure for indium phosphide single crystal production is used, after storage, transportation is inconvenient, bumping is likely to happen when the storage structure is placed on a transfer trolley, the storage structure is likely to fall off from the transfer trolley, and then use is inconvenient.
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Description

Technical Field

[0001] This utility model belongs to the field of indium phosphide single crystal production technology, and more specifically, it relates to a storage structure for indium phosphide single crystal production. Background Technology

[0002] Indium phosphide single crystal is a group III-V compound semiconductor in the periodic system; its chemical formula is InP; it is covalently bonded and has a certain ionic bond component; it has a zincblende type structure, is a complex lattice, and has a lattice constant of 0.58688 nm.

[0003] Based on existing technology, it has been found that the existing storage structure for indium phosphide single crystal production is inconvenient to transport after storage. It is easily bumped and knocked off when placed on a transfer vehicle, and the storage structure is also prone to falling off on the transfer vehicle, which makes it inconvenient to use. Utility Model Content

[0004] To address the aforementioned technical problems, this invention provides a memory structure for producing indium phosphide single crystals, thereby resolving the issues raised in the background art.

[0005] The memory structure for producing indium phosphide single crystals of this invention is achieved through the following specific technical means:

[0006] A storage structure for producing indium phosphide single crystals includes a base plate, a slider, a placement component, an adjusting component, and a sliding column. The base plate is generally rectangular and has a pulley at its bottom. The slider is located inside the base plate and has a wedge-shaped top. The placement component is located on top of the base plate. Two sets of adjusting components are located inside the placement component and have circular holes at their bottoms. The sliding column is located in the middle of the placement component, with a cylindrical top that protrudes in the middle and a wedge-shaped bottom, the bottom of which contacts the top of the slider.

[0007] Furthermore, the base plate includes a sliding groove; the sliding groove is located in the middle of the base plate and has a wedge-shaped structure, and a spring is provided inside the sliding groove. A slider is inserted into the sliding groove through the spring, and a through hole penetrating the base plate is provided in the middle of one side of the sliding groove.

[0008] Furthermore, the slider includes a control post; the control post is provided on one side of the slider through the pupil of the sliding groove, and the control post is surrounded by a spring with a sliding groove.

[0009] Further, the placing piece comprises a placing groove, a rectangular block, an inner cavity and a moving groove; the placing groove is arranged at the middle position inside the placing piece and has a rectangular structure; the rectangular block is arranged inside the placing groove and has a rectangular structure; the inner cavity is arranged at the middle position of the bottom of the rectangular block and has a concave structure; two groups of rotating shafts are arranged inside the inner cavity and are inserted into the round holes of the adjusting piece; the inner side of the inner cavity is in contact with the outer side of the adjusting piece; the moving groove is arranged at the middle position of the top of the rectangular block and has a cylindrical structure, and the top of the sliding column is inserted into the moving groove.

[0010] Further, the adjusting piece comprises an adjusting groove.

[0011] Further, the sliding column comprises an insertion groove.

[0012] Compared with the prior art, the device has the following beneficial effects:

[0013] In the device, when in use, the control column is pulled, the sliding block is moved in the sliding groove under the control of the control column, the sliding column is moved, the adjusting piece is moved through the insertion groove when the sliding column is moved, the outer end of the adjusting piece is rotated upward through the rotating shaft, the adjusting piece and the inner cavity are separated, the placing piece is separated from the bottom plate, the device is conveniently disassembled and assembled, the placing piece is installed on the top of the bottom plate when in assembly, the sliding block is reset under the driving of the spring, the outer end of the adjusting piece is in contact with the inner side of the inner cavity again, the device is fixed, and falling off is avoided. BRIEF DESCRIPTION OF DRAWINGS

[0014] In order to more clearly illustrate the technical scheme in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiment or the prior art description. Obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can be obtained from the structures shown in the drawings without creative labor.

[0015] Figure 1 is the front view structural schematic diagram of the present application.

[0016] Figure 2 is the cross-sectional structural schematic diagram of the present application.

[0017] Figure 3 is the structural schematic diagram of the device in use.

[0018] Figure 4 is the structural schematic diagram of the bottom plate and the sliding block.

[0019] Figure 5 It is the structure schematic view of the placing piece, the adjusting piece and the sliding column of the utility model.

[0020] In the figure, the corresponding relation of the component name and the drawing number is:

[0021] 1, bottom plate;

[0022] 101, sliding groove;

[0023] 2, sliding block;

[0024] 201, control column;

[0025] 3, placing piece;

[0026] 301, placing groove; 302, rectangular block; 303, inner cavity; 304, moving groove;

[0027] 4, adjusting piece;

[0028] 401, adjusting groove;

[0029] 5, sliding column;

[0030] 501, insertion slot. DETAILED DESCRIPTION

[0031] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.

[0032] It should be noted that all directionality indications (such as up, down, left, right, front, back, etc.) in the embodiments of the utility model are only used to explain the relative positional relationship, movement condition, etc. between components in a certain specific posture (as shown in the drawings). If the specific posture changes, the directionality indications will also change accordingly.

[0033] In addition, the description of "first", "second" and the like in the present application is only for the purpose of description, and cannot be understood as indicating or implying the relative importance of the technical features or implicitly indicating the number of the technical features indicated. Therefore, the features limited by "first", "second" can be explicitly or implicitly included at least one of the features. In addition, the technical solutions of each embodiment can be combined with each other, but it must be based on the realization of the ordinary skilled in the art, when the combination of technical solutions appears contradictory or unachievable, it should be considered that the combination of technical solutions does not exist, and is not within the protection scope required by the present application.

[0034] Embodiment:

[0035] As shown in the accompanying Figure 1 to the accompanying Figure 5 As shown:

[0036] The utility model provides a kind of storage structure for indium phosphide single crystal production, including bottom plate 1, sliding block 2, placing piece 3, adjusting piece 4 and sliding column 5;Bottom plate 1 is rectangular structure as a whole, and bottom plate 1 bottom is equipped with pulley;Sliding block 2 is located in bottom plate 1 inside, and the top of sliding block 2 is wedge structure;Placing piece 3 is located in bottom plate 1 top;Two adjusting pieces 4 are located in placing piece 3 inside, and adjusting piece 4 bottom is equipped with round hole;Sliding column 5 is located in the middle position of placing piece 3, and the top of sliding column 5 is the cylindrical structure of middle protrusion, and the bottom of sliding column 5 is wedge structure, and the bottom of sliding column 5 is in contact with the top of sliding block 2.

[0037] Among them, bottom plate 1 includes: sliding slot 101;Sliding slot 101 is located in the middle position of bottom plate 1 inside, and sliding slot 101 is wedge structure, and sliding slot 101 is equipped with spring inside, sliding block 2 is inserted into sliding slot 101 by spring, and through hole that penetrates bottom plate 1 is formed in the middle position of one side of sliding slot 101.

[0038] The above scheme is used to assist sliding block 2 to slide.

[0039] Among them, sliding block 2 includes: control column 201;Sliding block 2 is equipped with control column 201 by the pupil of sliding slot 101 on one side, and the periphery of control column 201 is equipped with the spring of sliding slot 101.

[0040] The above scheme is used to drive sliding block 2 to slide.

[0041] The placing piece 3 comprises a placing groove 301, a rectangular block 302, an inner cavity 303 and a moving groove 304; the placing groove 301 is arranged at the middle position of the inner part of the placing piece 3, and the section of the placing groove 301 is a rectangular structure; the rectangular block 302 is arranged in the placing groove 301, and the rectangular block 302 is a rectangular structure; the inner cavity 303 is arranged at the middle position of the bottom of the rectangular block 302, and the inner cavity 303 is a concave structure; two groups of rotating shafts are arranged in the inner cavity 303, and the rotating shafts are inserted into the round holes of the adjusting piece 4; the inner side of the inner cavity 303 is in contact with the outer side of the adjusting piece 4; the moving groove 304 is arranged at the middle position of the top of the rectangular block 302, and the moving groove 304 is a cylindrical structure; and the top of the sliding column 5 is inserted into the moving groove 304.

[0042] The placing groove 301 is used for storing the indium phosphide single crystal, and the moving groove 304 is used for assisting the sliding column 5 to move.

[0043] The adjusting piece 4 comprises an adjusting groove 401; and the top of the adjusting piece 4 is provided with the adjusting groove 401.

[0044] The sliding column 5 comprises an insertion groove 501; and the two sides of the sliding column 5 are provided with the insertion grooves 501, which are matched with the adjusting groove 401.

[0045] The specific use mode and effect of the embodiment are as follows:

[0046] In the utility model, when in use, the control column 201 is pulled, the sliding block 2 is moved in the sliding groove 101 under the control of the control column 201, the sliding column 5 is moved, the adjusting piece 4 is moved through the insertion groove 501 when the sliding column 5 is moved, the outer end of the adjusting piece 4 is rotated upwards through the rotating shaft, the adjusting piece 4 and the inner cavity 303 are released, the placing piece 3 is removed from the bottom plate 1, and then the device is conveniently disassembled; when installing, the placing piece 3 is installed on the top of the bottom plate 1, the sliding block 2 is reset under the driving of the spring, the outer end of the adjusting piece 4 is in contact with the inner side of the inner cavity 303 again, the device is fixed, and then the device is prevented from falling off.

[0047] Of course, the above description is not a limitation of the utility model, and the utility model is not limited to the above examples; the changes, modifications, additions or replacements made by the person skilled in the art within the essential scope of the utility model should also belong to the protection scope of the utility model.

Claims

1. A storage structure for producing indium phosphide single crystal, comprising a base plate (1), a sliding block (2), a placing piece (3), an adjusting piece (4) and a sliding column (5); characterized in that: The bottom plate (1) is a whole rectangular structure, and the bottom plate (1) is provided with a pulley at the bottom; the sliding block (2) is arranged inside the bottom plate (1), and the top of the sliding block (2) is a wedge-shaped structure; the placing piece (3) is arranged at the top of the bottom plate (1); two groups of the adjusting pieces (4) are arranged inside the placing piece (3), and the adjusting pieces (4) are provided with a circular hole at the bottom; the sliding column (5) is arranged at the middle position of the placing piece (3), and the top of the sliding column (5) is a cylindrical structure with a middle protrusion, and the bottom of the sliding column (5) is a wedge-shaped structure, and the bottom of the sliding column (5) is in contact with the top of the sliding block (2).

2. The storage structure for producing indium phosphide single crystal according to claim 1, wherein: The bottom plate (1) comprises a chute (101); the chute (101) is arranged at the middle position inside the bottom plate (1), and the chute (101) is a wedge-shaped structure, and the chute (101) is provided with a spring inside; the chute (101) is inserted with the sliding block (2) through the spring, and a through hole penetrating through the bottom plate (1) is arranged at the middle position of one side of the chute (101).

3. The storage structure for producing indium phosphide single crystal according to claim 2, wherein: The sliding block (2) comprises a control column (201); one side of the sliding block (2) is provided with the control column (201) through the pupil of the chute (101), and the control column (201) is provided with the spring of the chute (101) on the periphery.

4. The storage structure for producing indium phosphide single crystal according to claim 1, wherein: the first and second storage portions are connected to each other by a third storage portion. The placing piece (3) comprises a placing groove (301), a rectangular block (302), an inner cavity (303) and a moving groove (304); the placing groove (301) is arranged at the middle position inside the placing piece (3), and the cross section of the placing groove (301) is a rectangular structure; the rectangular block (302) is arranged inside the placing groove (301), and the rectangular block (302) is a rectangular structure; the inner cavity (303) is arranged at the middle position of the bottom of the rectangular block (302), and the inner cavity (303) is a concave-shaped structure; two groups of rotating shafts are arranged inside the inner cavity (303), and the rotating shafts are inserted into the circular holes of the adjusting pieces (4); the inner side of the inner cavity (303) is in contact with the outer side of the adjusting piece (4); the moving groove (304) is arranged at the middle position of the top of the rectangular block (302), and the moving groove (304) is a cylindrical structure, and the top of the sliding column (5) is inserted into the moving groove (304).

5. A memory structure for producing indium phosphide single crystals as described in claim 1, characterized in that: The adjusting piece (4) comprises an adjusting groove (401); the adjusting groove (401) is arranged at the top of the adjusting piece (4).

6. The storage structure for producing indium phosphide single crystal according to claim 5, wherein: The sliding column (5) comprises an insertion groove (501); the insertion grooves (501) are arranged on both sides of the sliding column (5), and the insertion grooves (501) are matched with the adjusting grooves (401).