Modular buoyancy material

CN224782262UActive Publication Date: 2026-09-22QINGDAO HAOYI IND CO LTD
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Patent Information

Application Number
CN202522525772.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-28
Publication Date
2026-09-22
Estimated Expiration
2035-11-28

AI Technical Summary

Technical Problem

[0004]为了解决上述技术问题,本实用新型提供一种模块化浮力材料,以解决现有的浮力材料在使用时,人工在对齐进行拼接时需要逐个调整对接顺序,操作繁琐,且现有的浮力材料在使用时,在流动的水面使用时,受到上下移动垂荡力,无法对这部分力进行缓冲,保证使用时的稳定性的问题

Benefits of technology

1、在本装置中,设置了安装件和插件,此处的安装件是滑动设置在滑槽内部的,而插件是插入在安装件上的圆孔内部的,进而使得在使用时,通过将安装件插入到滑槽内部,进而可以将多组主体便捷的连接在一起,同时通过将插件插入到安装件上的圆孔内部,并且卡位件与安装件的圆孔内壁接触时压缩弹簧,通过利用内六角旋转插件,并且通过弹簧复位带动卡位件插入到卡槽内部,从而保证安装件在滑槽内部安装的稳定性,替代传统安装方式;

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Abstract

The utility model provides a modularization buoyancy material relates to buoyancy material technical field to solve the problem that the existing buoyancy material needs to adjust the butt joint order one by one when aligning and splicing in use, and the operation is complicated, and it is difficult, including: the both sides of main part are provided with the sliding slot, installation piece sets up H shape structure, installation piece sliding installation is in the inside of sliding slot, the round hole inside of installation piece is installed in the plug -in spare, is provided with the round hole on the plug -in spare. Through the installation piece is inserted into the inside of sliding slot, and then can connect together many groups of main part conveniently, through the plug -in spare is inserted into the round hole inside on the installation piece, and the compression spring when the clamping piece and the round hole inner wall of installation piece contact, through the use of internal hexagonal rotation plug -in, and through the spring reset drives the clamping piece to insert into the clamping slot inside, so as to guarantee the stability of installation piece installation in the inside of sliding slot, replaces the traditional installation mode.
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Description

Technical Field

[0001] This utility model belongs to the field of buoyancy material technology, and more specifically, it relates to a modular buoyancy material. Background Technology

[0002] Buoyancy materials are a class of solid functional materials with an apparent density lower than that of liquids. Their core function is to use the buoyancy they receive to balance the total weight of themselves and the objects they support, thereby enabling the objects to float or suspend on the surface of the liquid.

[0003] Based on existing technology, it has been found that existing buoyancy materials require manual alignment and splicing, which is cumbersome. Furthermore, when used on flowing water, these materials are subjected to vertical swaying forces and cannot buffer these forces to ensure stability during use. Utility Model Content

[0004] To address the aforementioned technical problems, this utility model provides a modular buoyancy material. This solves the problem that existing buoyancy materials require manual alignment and splicing, which is cumbersome. Furthermore, existing buoyancy materials cannot buffer the vertical swaying force when used on flowing water, thus failing to ensure stability during use.

[0005] This utility model discloses a modular buoyancy material, achieved through the following specific technical means: A modular buoyancy material includes a floating mechanism, an installation mechanism, a fixing mechanism, and a cushioning mechanism; The floating mechanism is provided with an installation mechanism; the fixing mechanism is provided on the installation mechanism; the buffer mechanism is provided on the floating mechanism; The floating mechanism includes: a main body, which is a buoyancy material body; the edges of the main body are set with an arc-shaped structure; and grooves are provided on both sides of the main body; The installation mechanism includes: an installation component, which is configured with an H-shaped structure; the installation component is slidably installed inside a slide groove; The fixing mechanism includes: a plug, which is installed inside a circular hole on the mounting component; the plug is located at the corner of the main body; and the plug has a circular hole.

[0006] Furthermore, the corners of the main body are designed with an arc shape; the main body is made of engineering plastic; and the slide is designed with a T-shaped structure.

[0007] Furthermore, the mounting mechanism also includes: a card slot; The slot is formed on the inner wall of the circular hole of the mounting component; the slot is oriented in the same direction as the mounting component.

[0008] Furthermore, the fixing mechanism also includes: a locking component; The locking component is provided with a spherical protrusion; the locking component is slidably disposed inside the circular hole on the plug-in; the locking component is connected to the plug-in by a spring; the locking component is inserted into the slot.

[0009] Furthermore, the buffer mechanism includes: a mounting rod, a nut, and a limiting member; The mounting rod is threaded; the mounting rod passes through a circular hole in the middle of the main body; the nut is located at the top of the mounting rod; and the limiting member is fixedly mounted on the mounting rod.

[0010] Furthermore, the buffer mechanism also includes: a buffer plate; The buffer plate is located at the bottom of the mounting rod; the buffer plate has a circular hole; the width of the buffer plate is greater than the width of the main body; the edge of the buffer plate is set with an arc-shaped structure.

[0011] Compared with the prior art, the present invention has the following beneficial effects: 1. In this device, an installation component and a plug are provided. The installation component is slidably set inside the slide groove, while the plug is inserted into the round hole on the installation component. This allows multiple main bodies to be easily connected together by inserting the installation component into the slide groove during use. At the same time, when the plug is inserted into the round hole on the installation component, the spring is compressed when the locking component contacts the inner wall of the round hole of the installation component. By rotating the plug using an internal hexagon and the spring returning to its original position, the locking component is inserted into the slot, thereby ensuring the stability of the installation component inside the slide groove, replacing the traditional installation method. 2. In this device, a mounting rod and a buffer plate are provided. The mounting rod is located inside the circular hole on the main body, while the buffer plate is located at the bottom of the mounting rod. This allows for the selection of a suitable length of mounting rod and the bonding of the limiting component to the mounting rod during use. The main body is connected to the mounting rod by insertion, and the limiting component provides stable positioning. The nut locks the main body to the top of the mounting rod. During use, the buffer plate is submerged below the water surface. During the up-and-down oscillation, the buffer plate provides a damping effect. The circular hole on the buffer plate allows water to flow through the plate, generating more complex and smaller-scale vortices, increasing vortex dissipation, and thus enhancing the damping effect. Attached Figure Description

[0012] Figure 1 This is a front-view three-dimensional structural schematic diagram of the present invention.

[0013] Figure 2 This is a three-dimensional structural diagram of the present invention viewed from below.

[0014] Figure 3 This is an exploded three-dimensional structural diagram of the buffer mechanism and the floating mechanism of this utility model.

[0015] Figure 4 This is a partially exploded three-dimensional structural diagram of the present invention.

[0016] Figure 5 This utility model is composed of Figure 4 A schematic diagram of the enlarged portion of section A.

[0017] In the diagram, the correspondence between component names and drawing numbers is as follows: 1. Floating mechanism; 101. Main body; 102. Slide groove; 2. Installation mechanism; 201. Installation component; 202. Slot; 3. Fixing mechanism; 301. Insert; 302. Positioning component; 4. Buffer mechanism; 401. Installation rod; 402. Nut; 403. Limiting component; 404. Buffer plate. Detailed Implementation

[0018] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples.

[0019] Example: As attached Figure 1 To be continued Figure 5 As shown: This utility model provides a modular buoyancy material, including a floating mechanism 1, an installation mechanism 2, a fixing mechanism 3, and a buffer mechanism 4; The floating mechanism 1 is equipped with an installation mechanism 2; the fixing mechanism 3 is installed on the installation mechanism 2; and the buffer mechanism 4 is installed on the floating mechanism 1. The floating mechanism 1 includes: a main body 101, which is a buoyancy material body; the edge of the main body 101 is set with an arc structure; and sliding grooves 102 are provided on both sides of the main body 101; the main body 101 is used to float on the water surface, and the sliding grooves 102 are used to slide the mounting parts 201. The mounting mechanism 2 includes: a mounting component 201, which is configured as an H-shaped structure; the mounting component 201 is slidably installed inside the slide groove 102; the mounting component 201 is used to insert into the slide groove 102 of the two opposing main bodies 101 to complete the docking of the mounting component 201, and the mounting component 201 is adapted to the total length of the combined main bodies 101. The fixing mechanism 3 includes: a plug 301, which is installed inside a round hole on the mounting part 201; the plug 301 is located at the corner of the main body 101; the plug 301 has a round hole; the plug 301 is used to limit the mounting part 201 by inserting it into the round hole on the mounting part 201 and into the round hole formed by the combined main body 101, and there is a certain friction in the contact so that it cannot be easily pulled out.

[0020] Among them, such as Figure 1 As shown, the corners of the main body 101 are set with arc-shaped structures; the main body 101 is made of engineering plastic material; the slide 102 is set with a T-shaped structure.

[0021] Among them, such as Figure 4 As shown, the mounting mechanism 2 also includes: a slot 202; the slot 202 is formed on the inner wall of the circular hole of the mounting component 201; the direction of the slot 202 is the same as that of the mounting component 201; the slot 202 here is used to install the positioning component 302, and the direction is the same as that of the mounting component 201 to ensure that if the mounting component 201 vibrates, the positioning component 302 will not deviate from the slot 202.

[0022] Among them, such as Figure 4 As shown, the fixing mechanism 3 also includes: a locking member 302; the locking member 302 is provided with a spherical protrusion; the locking member 302 is slidably disposed inside the circular hole on the insert 301; the locking member 302 is connected to the insert 301 by a spring; the locking member 302 is inserted into the slot 202; here the locking member 302 is used to compress the spring by contacting the circular hole of the mounting member 201 through the spherical protrusion, and by rotating the insert 301 with an internal hexagon and driving the locking member 302 to be inserted into the slot 202 by the spring reset, ensuring the stability of the mounting member 201 installation.

[0023] Among them, such as Figure 3 As shown, the buffer mechanism 4 includes: a mounting rod 401, a nut 402, and a limiting member 403; the mounting rod 401 is threaded; the mounting rod 401 passes through a round hole in the middle of the main body 101; the nut 402 is located at the top of the mounting rod 401; the limiting member 403 is fixedly mounted on the mounting rod 401; the mounting member 401 is made of engineering material, and the nut 402 and the limiting member 403 are used to ensure the stability of the position of the main body 101 on the mounting rod 401. The nut 402 is also made of engineering material. These materials themselves or the lubricant contained therein provide a low coefficient of friction, allowing them to work without oil without lubrication. The limiting member 403 can be bonded and installed using epoxy resin AB glue as needed, which is waterproof.

[0024] Among them, such as Figure 3As shown, the buffer mechanism 4 also includes: a buffer plate 404; the buffer plate 404 is disposed at the bottom of the mounting rod 401; the buffer plate 404 is provided with a circular hole; the width of the buffer plate 404 is greater than the width of the main body 101; the edge of the buffer plate 404 is set with an arc structure; the buffer plate 404 here is used to be immersed in the water surface, and different lengths of mounting rods 401 can be set according to the water depth for adaptive installation, and the holes provided on the buffer plate 404 can promote water flow through the plate body, generate more complex and smaller scale vortices, increase vortex dissipation, thereby enhance the damping effect and suppress the heave effect.

[0025] The specific usage and function of this embodiment are as follows: In this invention, by inserting the mounting component 201 into the slide groove 102, multiple main bodies 101 can be conveniently connected together. Simultaneously, by inserting the plug 301 into the round hole on the mounting component 201, and when the locking component 302 contacts the inner wall of the round hole of the mounting component 201, a spring is compressed. By rotating the plug 301 using an internal hexagonal screwdriver, and through spring reset, the locking component 302 is inserted into the slot 202, thus ensuring the stability of the mounting component 201 within the slide groove 102. This is achieved by selecting a mounting rod 201 of appropriate length. The limiting component 403 is bonded to the mounting rod 401, and the main body 101 is connected to the mounting rod 401 by insertion. The limiting component 403 can stably limit the movement, and the nut 402 locks it to the top of the mounting rod 401. In use, the buffer plate 404 is submerged below the water surface. During the up-and-down oscillation, the buffer plate 404 can achieve a damping effect. The circular holes on the buffer plate 404 can promote water flow through the plate, generating more complex and smaller-scale vortices, increasing vortex dissipation, and thus enhancing the damping effect.

Claims

1. A modular buoyancy material, characterized in that: It includes a floating mechanism (1), an installation mechanism (2), a fixing mechanism (3), and a buffer mechanism (4); The floating mechanism (1) is provided with an installation mechanism (2); the fixing mechanism (3) is provided on the installation mechanism (2); the buffer mechanism (4) is provided on the floating mechanism (1); The floating mechanism (1) includes: a main body (101), which is a buoyancy material body; the edge of the main body (101) is set as an arc structure; and grooves (102) are provided on both sides of the main body (101). The installation mechanism (2) includes: a mounting component (201), which is configured as an H-shaped structure; the mounting component (201) is slidably installed inside the slide groove (102); The fixing mechanism (3) includes: a plug (301), which is installed inside a round hole on the mounting part (201); the plug (301) is located at the corner of the main body (101); and the plug (301) has a round hole.

2. The modular buoyancy material according to claim 1, characterized in that: The corners of the main body (101) are set with arc-shaped structures; the main body (101) is made of engineering plastic material; the slide (102) is set with a T-shaped structure.

3. The modular buoyancy material according to claim 1, characterized in that: The mounting mechanism (2) further includes: a card slot (202); The slot (202) is formed on the inner wall of the circular hole of the mounting part (201); the slot (202) is set in the same direction as the mounting part (201).

4. The modular buoyancy material according to claim 3, characterized in that: The fixing mechanism (3) further includes: a locking component (302); The locking component (302) is provided with a spherical protrusion; the locking component (302) is slidably disposed inside the circular hole on the plug-in (301); the locking component (302) is connected to the plug-in (301) by a spring; the locking component (302) is inserted into the slot (202).

5. A modular buoyancy material according to claim 1, characterized in that: The buffer mechanism (4) includes: a mounting rod (401), a nut (402), and a limiting member (403); The mounting rod (401) is threaded; the mounting rod (401) passes through a round hole in the middle of the main body (101); the nut (402) is set on the top of the mounting rod (401); the limiting member (403) is fixedly set on the mounting rod (401).

6. A modular buoyancy material according to claim 5, characterized in that: The buffer mechanism (4) further includes: a buffer plate (404); The buffer plate (404) is located at the bottom of the mounting rod (401); the buffer plate (404) has a round hole; the width of the buffer plate (404) is greater than the width of the main body (101); the edge of the buffer plate (404) is set as an arc structure.