High-frequency vibration screening machine for glass beads

By introducing rotatable fasteners and locking bolts into the high-frequency vibrating glass microsphere screening machine, the problem of inconvenient screen disassembly has been solved, achieving stable installation and convenient disassembly of the screen, and improving equipment maintenance and screening efficiency.

CN223915936UActive Publication Date: 2026-02-17DAZHOU LIANGBO NEW MATERIAL TECH CO LTD
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Patent Information

Application Number
CN202520742699.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-18
Publication Date
2026-02-17
Estimated Expiration
2035-04-18

AI Technical Summary

Technical Problem

Existing high-frequency vibrating screening machines for glass microspheres have an integrated or fixed multi-layer screening structure, which makes it difficult to disassemble when the screen is clogged or worn, resulting in low maintenance efficiency.

Method used

It adopts a rotatable buckle and fastening bolt structure, combined with a tension spring to provide tension, which facilitates the installation and removal of the screen. The conical uniform distribution structure improves the uniform dispersion of glass microspheres and allows for flexible adjustment of the number of screening layers.

Benefits of technology

It enables stable installation and convenient disassembly of the screen, improves maintenance efficiency and screening efficiency, and meets the grading requirements of different particle sizes.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a high-frequency vibration screening machine for glass beads, which relates to the technical field of glass bead screening equipment and comprises a high-frequency vibration screening machine assembly, a feeding assembly and an assembly and disassembly assembly are arranged on the high-frequency vibration screening machine assembly, and the high-frequency vibration screening machine assembly comprises a screening body. A high-frequency vibration motor is mounted at the bottom of the screen body, and the mounting and dismounting assembly comprises a plurality of rotating bases. The rotating seat is used for driving the buckling piece to rotate, the buckling piece is connected with the screen mesh in a clamped mode, the tension spring is used for providing tension, the screen mesh is convenient to assemble and disassemble, then the clamping ring is moved, after the clamping ring moves to a proper position, the fastening bolt is used for being connected to one buckling piece in a threaded mode, limiting is facilitated, and the screen mesh can be conveniently assembled and disassembled. And the installation stability of each layer of screen cloth is guaranteed, all layers of screen cloth on the screen body can be conveniently installed and detached, then all layers of screen cloth can be conveniently and thoroughly cleaned, and the operation convenience is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to glass microsphere screening equipment technical field especially relates to a glass microsphere high -frequency vibration screening machine. BACKGROUND

[0002] Glass microsphere high -frequency vibration screening machine plays an important role in the glass microsphere production and processing process, and it realizes the grading screening of different particle sizes of glass microspheres through high -frequency vibration, and it is the key equipment to guarantee the product granularity qualified.

[0003] The existing glass microsphere high -frequency vibration screening machine adopts multilayer screen structure to realize multistage screening, but the multilayer screening structure of the equipment is usually integrated or fixed design, when the screen is blocked, worn and so on, it is inconvenient to disassemble each layer screening structure, and further causes the problem of low maintenance efficiency. UTILITY MODEL CONTENTS

[0004] The utility model discloses a glass microsphere high -frequency vibration screening machine, which can solve the problem of low maintenance efficiency caused by the integrated or fixed design of the multilayer screening structure of the existing glass microsphere high -frequency vibration screening machine.

[0005] In order to realize the above-mentioned purpose, the utility model adopts the following technical scheme: a glass microsphere high -frequency vibration screening machine, which comprises a high -frequency vibration screening machine assembly, a feeding assembly and a mounting and dismounting assembly are arranged on the high -frequency vibration screening machine assembly, the high -frequency vibration screening machine assembly comprises a screen body, a high -frequency vibration motor is installed at the bottom of the screen body, the mounting and dismounting assembly comprises a plurality of rotating seats, a buckle piece is connected to the outer side of the rotating seat, a clasp is arranged on the outer side of the buckle piece, a fastening bolt penetrates through the inside of the clasp, and the fastening bolt is threadedly connected with one of the buckle pieces.

[0006] Preferably, the feeding assembly comprises a feeding port, a support frame is installed on the outer side of the feeding port, a conical equal -division structure is installed on the side of the support frame, and the conical equal -division structure is arranged below the feeding port.

[0007] Preferably, a limiting plate is arranged on the outer side of the screen body, a tension spring is connected to the inner side of the buckle piece, and one end of the tension spring is connected with the screen body.

[0008] Preferably, a buffer shock damper is installed at the bottom of the screen body, and a base is installed at the bottom of the buffer shock damper.

[0009] Preferably, the support frame is arranged at the top of the screen body.

[0010] Preferably, the side of the screen body is provided with a discharge port.

[0011] Compared with the prior art, the high-frequency vibration screening machine has the advantages and positive effects that,

[0012] 1、In the utility model, through the rotation seat, the buckle is rotated, the buckle is connected with the screen, the tension spring provides tension, the screen is convenient to assemble and disassemble, then the clasp ring is moved to the appropriate position, the fastening bolt is screwed on one of the buckles, the position is limited, the stability of each layer of screen is ensured, each layer of screen on the screen body is convenient to assemble and disassemble, each layer of screen is completely cleaned, the screen of different specifications is convenient to replace or the number of screening layers is adjusted, the different particle size classification of glass beads is met.

[0013] 2、In the utility model, the glass beads are poured into the inside of the feeding port, then the glass beads flow into the inside of the screen through the slots distributed on the conical uniform distribution structure, the glass beads are uniformly distributed in the inside of the screen, the accumulation of the glass beads is reduced, and the screening efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 A three-dimensional structure schematic diagram of the high-frequency vibration screening machine for glass beads is provided for the utility model;

[0015] Figure 2 Another angle structure schematic diagram of the high-frequency vibration screening machine for glass beads is provided for the utility model;

[0016] Figure 3 A partial structure schematic diagram of the high-frequency vibration screening machine for glass beads is provided for the utility model;

[0017] Figure 4 A partial exploded structure schematic diagram of the high-frequency vibration screening machine for glass beads is provided for the utility model.

[0018] Legend: 1, high-frequency vibration screening machine assembly; 101, screen body; 102, buffer shock damper; 103, high-frequency vibration motor; 104, base; 105, discharge port; 2, feeding assembly; 201, feeding port; 202, support frame; 203, conical uniform distribution structure; 3, assembly and disassembly assembly; 301, rotation seat; 302, buckle; 303, tension spring; 304, fastening bolt; 305, clasp ring; 306, limiting plate. DETAILED DESCRIPTION

[0019] To better understand the above-mentioned objectives, features, and advantages of this utility model, the present utility model will be further described below with reference to the accompanying drawings and embodiments. It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments can be combined with each other.

[0020] Many specific details are set forth in the following description in order to provide a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Therefore, the present invention is not limited to the specific embodiments disclosed in the following specification.

[0021] Example 1: As Figures 1-4 As shown, this utility model provides a technical solution: a high-frequency vibration screening machine for glass microspheres, including a high-frequency vibration screening machine assembly 1, a feeding assembly 2 and an installation / removal assembly 3. The high-frequency vibration screening machine assembly 1 includes a screen body 101, and a high-frequency vibration motor 103 is installed at the bottom of the screen body 101. The installation / removal assembly 3 includes multiple rotating seats 301, and a fastening member 302 is connected to the outside of the rotating seat 301. A retaining ring 3 is provided on the outside of the fastening member 302. 05. A fastening bolt 304 passes through the inside of the retaining ring 305. The fastening bolt 304 is threadedly connected to one of the fastening parts 302. A limiting plate 306 is provided on the outside of the screen body 101. A tension spring 303 is connected to the inside of the fastening part 302. One end of the tension spring 303 is connected to the screen body 101. A buffer damper 102 is installed at the bottom of the screen body 101. A base 104 is installed at the bottom of the buffer damper 102. A discharge port 105 is provided on the side of the screen body 101.

[0022] In this embodiment, the high-frequency vibration motor 103 generates vibration, which facilitates the vibration of the screen body 101. The screen body 101 is equipped with multiple layers of screens of different sizes, thus facilitating the vibration screening of glass microspheres. The discharge port 105 facilitates the feeding of glass microspheres of different particle sizes. The buffer damper 102 provides buffering and shock absorption. The rotating seat 301 further facilitates the rotation of the locking member 302, which is connected to the screen. The tension spring 303 provides tension, facilitating the installation and removal of the screen. Subsequently, the moving retaining ring 3... 05 After the retaining ring 305 moves to the appropriate position, it is threaded onto one of the fastening parts 302 using the fastening bolt 304. This facilitates positioning and ensures the stability of each layer of screen installation. It also makes it easy to install and remove each layer of screen on the screen body 101, which in turn facilitates thorough cleaning of each layer of screen. Furthermore, by making it easy to install and remove each layer of screen, it is possible to flexibly replace screens of different specifications or adjust the number of screening layers to meet the requirements for different particle size classification of glass microspheres. The limiting plate 306 helps to limit the retaining ring 305 and prevents it from falling off.

[0023] Embodiment 2: as Figures 1-4 As shown, the feeding assembly 2 comprises a feeding port 201, a support frame 202 is mounted outside the feeding port 201, a conical distribution structure 203 is mounted on the side of the support frame 202, the conical distribution structure 203 is arranged below the feeding port 201, and the support frame 202 is arranged on the top of the sieve body 101.

[0024] In this embodiment, by pouring the glass beads into the inside of the feeding port 201, and then making the glass beads flow into the inside of the sieve body 101 through the slots distributed on the conical distribution structure 203, the glass beads are evenly dispersed into the inside of the sieve body 101, the accumulation of the glass beads is reduced, and the screening efficiency is improved.

[0025] The working principle of this embodiment is as follows: in use, first, the glass beads are poured into the inside of the feeding port 201, and then the glass beads flow into the inside of the sieve body 101 through the slots distributed on the conical distribution structure 203, which is beneficial to evenly disperse the glass beads into the inside of the sieve body 101, and then the high-frequency vibration motor 103 works to generate vibration, which is beneficial to drive the sieve body 101 to vibrate, the sieve body 101 is provided with multiple layers of different size screens, which is beneficial to vibration screening of the glass beads, the buffer shock damper 102 is beneficial to provide a buffer shock effect, the discharge port 105 facilitates the discharge of glass beads of different particle sizes, the rotating seat 301 is used to drive the buckle 302 to rotate, the buckle 302 is connected with the screen clamping, the tension spring 303 is beneficial to provide tension, which facilitates the installation and disassembly of the screen, then the clasp 305 is moved to the appropriate position, the fastening bolt 304 is screwed on one of the buckles 302, which is beneficial to limiting, ensuring the stability of the installation of each layer of screen, facilitating the installation and disassembly of each layer of screen on the sieve body 101, and facilitating the complete cleaning of the disassembly of each layer of screen, improving the convenience of operation.

[0026] The above is only a preferred embodiment of the present application, and is not intended to limit the present application in other forms. Any skilled person in the art can modify or change the above disclosed technical content to equivalent embodiments applied to other fields, but any simple modification, equivalent change and modification of the above embodiments made according to the technical essence of the present application without departing from the technical scheme of the present application shall fall within the protection scope of the present application.

Claims

1. A glass microbead high frequency vibrating sifter comprising a high frequency vibrating sifter assembly (1), characterized in that: The high-frequency vibration screening machine assembly (1) is provided with a feeding assembly (2) and a mounting and dismounting assembly (3), the high-frequency vibration screening machine assembly (1) comprises a screen body (101), a high-frequency vibration motor (103) is installed at the bottom of the screen body (101), the mounting and dismounting assembly (3) comprises a plurality of rotating seats (301), buckle members (302) are connected to the outer sides of the rotating seats (301), clamping rings (305) are arranged on the outer sides of the buckle members (302), fastening pins (304) penetrate through the clamping rings (305), and the fastening pins (304) are threadedly connected with one of the buckle members (302).

2. The glass microbead high-frequency vibrating sifter according to claim 1, characterized by: The feeding assembly (2) comprises a feeding port (201), a supporting frame (202) is installed on the outer side of the feeding port (201), a conical uniform distribution structure (203) is installed on the side of the supporting frame (202), and the conical uniform distribution structure (203) is arranged below the feeding port (201).

3. The glass microbead high-frequency vibrating sifter according to claim 1, characterized by: A limiting plate (306) is arranged on the outer side of the screen body (101), and a tension spring (303) is connected to the inner side of the buckle member (302), one end of the tension spring (303) is connected with the screen body (101).

4. The glass microsphere high-frequency vibration sifter according to claim 1, characterized by: A buffer damping damper (102) is installed at the bottom of the screen body (101), and a base (104) is installed at the bottom of the buffer damping damper (102).

5. The glass microbead high-frequency vibrating sifter according to claim 2, characterized by: The supporting frame (202) is arranged on the top of the screen body (101).

6. The glass microsphere high-frequency vibration sifter according to claim 1, characterized by: A discharging port (105) is arranged on the side of the screen body (101).