Pulverizer for manufacturing energy-saving building materials

By introducing screening and cleaning mechanisms into the crusher, the problem of the crusher's lack of screening function is solved, enabling efficient screening and cleaning of crushed material particles and ensuring the production quality of energy-saving building materials.

CN223655191UActive Publication Date: 2025-12-12TIANJIN HUAYUN CO CHUANG TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422795031.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-16
Publication Date
2025-12-12
Estimated Expiration
2034-11-16

AI Technical Summary

Technical Problem

Existing crushers lack the function of screening material particles after crushing, which affects the production quality of energy-saving building materials.

Method used

An energy-saving pulverizer for building material manufacturing, including a screening mechanism and a cleaning mechanism, was designed. Through the combination of a screening plate, a vibrating motor and a moving rod, the pulverized material particles are screened and cleaned, screening out qualified particles and removing unqualified residues.

Benefits of technology

It achieves efficient screening and cleaning of pulverized material particles, ensuring the quality of subsequent energy-saving building materials production.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of crushers, in particular to a crusher for manufacturing energy-saving building materials, which comprises a machine body, a crushing device and a crushing device, and the screening mechanism comprises a screening plate, the screening plate is movably connected to the surface of the crusher, a protective cover is fixedly connected to the surface of the screening plate, a movable rod is fixedly connected to the surface of the protective cover, and a limiting block is fixedly connected to the surface of the movable rod. The material screening plate can be vibrated for material screening through connection of the material screening plate and the mounting plate and connection of the mounting plate and the vibration motor, then normal vibration of the material screening plate on the surface of the crusher is guaranteed through connection of the material screening plate and the movable rod and connection of the movable rod and the vibration groove, and the material screening plate is prevented from vibrating on the surface of the crusher through connection of the movable rod and the limiting block. The position of the movable rod is limited on the surface of the crusher, and then through connection of the material screening plate and the material screening groove, the material particles for energy-saving building material manufacturing with the standard specification are screened out, and the effect of screening the material particles for energy-saving building material manufacturing can be achieved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a pulverizer technical field, concretely is a kind of pulverizer for energy-saving building material production. BACKGROUND

[0002] Pulverizer is the mechanical equipment that solid object is pulverized into required size, is applied to garbage pulverization, feed pulverization and waste pulverization etc.

[0003] In recent years, our country wall material innovation and energy-saving building promotion have made positive progress, energy-saving building material is a kind of material for reducing the energy consumption of building, is welcomed by people, the building using these materials can achieve " winter warm summer cool " effect, both energy saving and comfortable, and the production of energy-saving building material needs to use pulverizer to crush raw materials and then produce, but when using the existing pulverizer, it lacks screening of the material particles after crushing, which affects the production of subsequent energy-saving building materials. UTILITY MODEL CONTENT

[0004] The utility model aims at providing a kind of pulverizer for energy-saving building material production to solve the problem that the pulverizer lacks screening of the material particles after crushing when being used, which affects the production of subsequent energy-saving building materials.

[0005] To achieve the above object, the utility model provides the following technical scheme, a kind of pulverizer for energy-saving building material production, comprising:

[0006] Machine body, including crusher;

[0007] Screening mechanism, including screening plate, the screening plate is movably connected on the surface of crusher, the surface of screening plate is fixedly connected with protective cover, the surface of protective cover is fixedly connected with movable rod, the surface of movable rod is fixedly connected with limit block, the surface of crusher is provided with vibration groove, the surface of screening plate is fixedly connected with mounting plate, the surface of mounting plate is fixedly connected with vibration motor, the surface of screening plate is provided with screening groove;

[0008] Cleaning mechanism, including push handle, the push handle is movably connected below the crusher, the surface of push handle is fixedly connected with push rod, the end, away from push handle, of push rod is fixedly connected with connecting sleeve, the surface of connecting sleeve is fixedly connected with connecting rod, the end, away from connecting sleeve, of connecting rod is fixedly connected with push plate, the surface of movable rod is fixedly connected with guide rod, the surface of screening plate is provided with guide slot.

[0009] Preferably, the vibration grooves are evenly provided on the surface of the crusher, the movable rods are symmetrically distributed in two groups on the surface of the screening plate, and the screening grooves are evenly distributed on the surface of the screening plate.

[0010] Preferably, the sieve plate is movably connected with the surface of the movable rod and the surface of the crusher, and the limiting block is movably connected with the surface of the movable rod and the surface of the vibrating groove.

[0011] Preferably, the mounting plate is symmetrically arranged on the surface of the sieve plate, and the sieve plate is movably connected with the surface of the vibrating motor and the surface of the crusher.

[0012] Preferably, the two ends of the push rod are fixedly connected with the surface of the push handle and the connecting sleeve, the connecting sleeve is sleeved on the surface of the guide rod, and the two ends of the connecting rod are fixedly connected with the surface of the connecting sleeve and the push plate.

[0013] Preferably, the push rod is movably connected with the surface of the push handle and the sieve plate, and the connecting sleeve is movably connected with the surface of the push rod and the guide rod.

[0014] Preferably, the connecting rod is movably connected with the surface of the connecting sleeve and the guide groove, and the push plate is movably connected with the surface of the connecting rod and the sieve plate.

[0015] Compared with the prior art, the utility model has the beneficial effects that:

[0016] 1. The sieve plate and the mounting plate are connected, the mounting plate and the vibrating motor are connected, the sieve plate can be vibrated to screen materials, then the sieve plate and the movable rod are connected, the movable rod and the vibrating groove are connected, so that the sieve plate can normally vibrate on the surface of the crusher, then the movable rod and the limiting block are connected, the position of the movable rod is limited on the surface of the crusher, then the sieve plate and the sieve groove are connected, the material particles that meet the standard are screened out, and the effect that the material particles for energy-saving building materials can be screened is achieved.

[0017] 2. The push handle and the push rod are connected, the connecting sleeve and the guide rod are connected, the guide rod is pushed to move the connecting sleeve on the surface of the guide rod, then the connecting sleeve and the connecting rod are connected, the sieve plate and the guide groove are connected, the connecting sleeve moves to drive the connecting rod to move in the guide groove, then the connecting rod and the push plate are connected, the connecting rod moves to drive the push plate to move on the surface of the sieve plate, and the effect that the residual particles on the surface of the sieve plate can be cleaned is achieved. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 It is a structure front view schematic diagram of the utility model;

[0019] Figure 2 It is a structure side view schematic diagram of the utility model;

[0020] Figure 3 It is a connecting structure partial sectional view schematic diagram of the movable rod and the crusher of the utility model;

[0021] Figure 4 It is a three-dimensional partial cross-section schematic view of the connection structure of the screening plate and the guide rod of the utility model;

[0022] Figure 5 It is the utility model Figure 4 The enlarged structure schematic view of A in the middle.

[0023] In the figure: 1, crusher; 2, screening plate; 21, protective cover; 22, movable rod; 23, limiting block; 24, vibrating groove; 25, mounting plate; 26, vibrating motor; 27, screening groove; 3, push handle; 31, push rod; 32, connecting sleeve; 33, connecting rod; 34, push plate; 35, guide rod; 36, guide groove. DETAILED DESCRIPTION

[0024] 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, not 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 protection scope of the utility model.

[0025] Please refer to Figures 1-5 The utility model provides an embodiment:

[0026] A crusher for energy-saving building material manufacturing, comprising:

[0027] The machine body comprises a crusher 1 for crushing materials required for energy-saving building material manufacturing;

[0028] The screening mechanism comprises a screening plate 2 movably connected to the surface of the crusher 1, which is placed obliquely for screening the crushed material particles. The surface of the screening plate 2 is fixedly connected with a protective cover 21 for preventing the particles from flying out when the screening plate 2 vibrates to screen the particles. The surface of the protective cover 21 is fixedly connected with a movable rod 22 for connecting the crusher 1 and the screening plate 2 to enable the screening plate 2 to normally vibrate below the crusher 1. The surface of the movable rod 22 is fixedly connected with a limiting block 23 for limiting the movement position of the movable rod 22. The surface of the crusher 1 is provided with a vibrating groove 24 for enabling the movable rod 22 to drive the screening plate 2 to move. The surface of the screening plate 2 is fixedly connected with a mounting plate 25 for connecting a vibrating motor 26. The surface of the mounting plate 25 is fixedly connected with the vibrating motor 26 for driving the screening plate 2 to vibrate. The surface of the screening plate 2 is provided with a screening groove 27 for screening the particles. The crusher 1 and the vibrating motor 26 are both existing products, which are not the technical protection points of the present application and will not be described in detail here.

[0029] The cleaning mechanism comprises a push handle 3 movably connected below the crusher 1 to drive the push rod 31 to move, the surface of the push handle 3 is fixedly connected with the push rod 31 to drive the connecting sleeve 32 to move on the surface of the guide rod 35, the one end of the push rod 31 away from the push handle 3 is fixedly connected with the connecting sleeve 32 to drive the connecting rod 33 to move at the guide groove 36, the surface of the connecting sleeve 32 is fixedly connected with the connecting rod 33 to connect the connecting sleeve 32 and the push plate 34, the one end of the connecting rod 33 away from the connecting sleeve 32 is fixedly connected with the push plate 34 to push the particles on the surface of the screening plate 2 off the surface of the screening plate 2, the surface of the movable rod 22 is fixedly connected with the guide rod 35 to move the connecting sleeve 32, and the surface of the screening plate 2 is provided with the guide groove 36 to move the connecting rod 33.

[0030] Further, the vibration grooves 24 are uniformly arranged on the surface of the crusher 1, a plurality of groups of vibration grooves 24 are arranged to enable the two groups of movable rods 22 to move on the surface of the crusher 1, the movable rods 22 are symmetrically arranged in two groups on the surface of the screening plate 2, and the two groups of movable rods 22 are arranged in front of and behind each other, so that the screening plate 2 can vibrate as a whole, and the screening grooves 27 are uniformly arranged on the surface of the screening plate 2, so as to most efficiently screen the particles.

[0031] Further, the screening plate 2 is movably connected with the surface of the crusher 1 through the movable rod 22, the limiting block 23 is movably connected with the surface of the vibration groove 24 through the movable rod 22, and the screening plate 2 vibrates to drive the movable rod 22 to vibrate at the vibration groove 24, so as to ensure that the screening plate 2 normally screens the particles below the discharge port of the crusher 1.

[0032] Further, the two groups of mounting plates 25 are symmetrically arranged on the surface of the screening plate 2, the two groups of mounting plates 25 are connected with the two groups of vibration motors 26 to vibrate the screening plate 2 from both sides, so as to ensure the strength of vibration, the screening plate 2 is movably connected with the surface of the crusher 1 through the vibration motor 26, and the vibration motor 26 is started to drive the screening plate 2 to vibrate, so that the particles falling on the surface of the screening plate 2 are vibrated and screened, the qualified particles fall through the screening grooves 27, and the particles not sufficiently crushed roll off the surface of the screening plate 2.

[0033] Further, the two ends of the push rod 31 are fixedly connected with the surface of the push handle 3 and the connecting sleeve 32, the push handle 3 is pushed to drive the push rod 31 and the connecting sleeve 32 to move, the connecting sleeve 32 is sleeved on the surface of the guide rod 35, the sleeving form enables the connecting sleeve 32 to move on the surface of the guide rod 35, the two ends of the connecting rod 33 are fixedly connected with the surface of the connecting sleeve 32 and the push plate 34, the connecting sleeve 32 moves on the surface of the guide rod 35 to drive the connecting rod 33 to move on the surface of the guide groove 36, so as to drive the push plate 34 to move on the surface of the screening plate 2.

[0034] Further, the push rod 31 is movably connected with the surface of the push handle 3 and the sieve plate 2, the connecting sleeve 32 is movably connected with the surface of the push rod 31 and the guide rod 35, the push handle 3 drives the push rod 31 to move, and the push rod 31 drives the connecting sleeve 32 to move on the surface of the guide rod 35.

[0035] Further, the connecting rod 33 is movably connected with the surface of the connecting sleeve 32 and the guide groove 36, the push plate 34 is movably connected with the surface of the connecting rod 33 and the sieve plate 2, the connecting sleeve 32 moves on the surface of the guide rod 35, drives the connecting rod 33 to move on the surface of the guide groove 36, and drives the push plate 34 to move on the surface of the sieve plate 2, so as to clean the residual particles on the surface of the sieve plate 2.

[0036] Working principle: when the crusher 1 is used, first, the crusher 1 and the vibration motor 26 are started, and the two material collecting boxes are respectively arranged below and at the lower end of the sieve plate 2, so as to collect the crushed materials, then the raw materials for making energy-saving building materials are poured into the feeding port of the crusher 1, and after being crushed, the materials fall to the surface of the sieve plate 2 through the discharging port of the crusher 1, the vibration motor 26 drives the mounting plate 25 and the sieve plate 2 to vibrate, so as to drive the movable rod 22 to vibrate at the vibration groove 24, the vibration groove 24 limits the position of the movable rod 22, the particles roll to the lower end of the sieve plate 2 along with the vibration of the sieve plate 2, the particles meeting the specifications fall into the material collecting box through the sieve groove 27, and the particles not meeting the specifications roll to the other material collecting box along with the vibration of the sieve plate 2, when the crushing and screening are completed, the crusher 1 and the vibration motor 26 are turned off, the push handle 3 drives the push rod 31 to move, the connecting sleeve 32 moves along the guide rod 35, the connecting rod 33 moves along the guide groove 36, and the push plate 34 moves on the surface of the sieve plate 2, so as to remove the residual particles and clean the surface of the sieve plate 2, then the particles not meeting the specifications can be poured into the feeding port of the crusher 1 again, the crusher 1 and the vibration motor 26 are started again to crush and screen, so as to obtain the material particles for making energy-saving building materials.

[0037] It is apparent for those skilled in the art that the present application is not limited to the details of the above exemplary embodiments, but can be implemented in other concrete forms without departing from the spirit or essential characteristics of the present application. Therefore, the embodiments should be considered in all respects as illustrative and not restrictive, the scope of the present application being indicated by the appended claims rather than by the above description, and it is intended to embrace all changes and modifications that fall within the meaning and scope of equivalents of the claims. Any reference signs in the claims should not be construed as limiting the claims concerned.

Claims

1. A pulverizer for manufacturing energy-saving building materials, characterized in that, Include: Machine body, including crusher (1); Screening mechanism, including sieve plate (2), the sieve plate (2) is movably connected on the surface of the crusher (1), the surface of the sieve plate (2) is fixedly connected with the protective cover (21), the surface of the protective cover (21) is fixedly connected with the movable rod (22), the surface of the movable rod (22) is fixedly connected with the limit block (23), the surface of the crusher (1) is provided with the vibration groove (24), the surface of the sieve plate (2) is fixedly connected with the mounting plate (25), the surface of the mounting plate (25) is fixedly connected with the vibration motor (26), the surface of the sieve plate (2) is provided with the sieve slot (27); Cleaning mechanism, including push handle (3), the push handle (3) is movably connected below the crusher (1), the surface of the push handle (3) is fixedly connected with the push rod (31), the end of the push rod (31) away from the push handle (3) is fixedly connected with the connecting sleeve (32), the surface of the connecting sleeve (32) is fixedly connected with the connecting rod (33), the end of the connecting rod (33) away from the connecting sleeve (32) is fixedly connected with the push plate (34), the surface of the movable rod (22) is fixedly connected with the guide rod (35), the surface of the sieve plate (2) is provided with the guide slot (36).

2. The pulverizer for manufacturing energy-saving building materials according to claim 1, characterized in that: The vibration groove (24) is evenly provided on the surface of the crusher (1), the movable rod (22) is symmetrically distributed on the surface of the sieve plate (2), and the sieve slot (27) is evenly distributed on the surface of the sieve plate (2).

3. The pulverizer for manufacturing energy-saving building materials according to claim 1, characterized in that: The sieve plate (2) is movably connected with the surface of the crusher (1) through the movable rod (22), and the limit block (23) is movably connected with the surface of the vibration groove (24) through the movable rod (22).

4. The pulverizer for manufacturing energy-saving building materials according to claim 1, characterized in that: The mounting plate (25) is symmetrically distributed on the surface of the sieve plate (2), and the sieve plate (2) is movably connected with the surface of the crusher (1) through the vibration motor (26).

5. The pulverizer for manufacturing energy-saving building materials according to claim 1, characterized in that: Both ends of the push rod (31) are fixedly connected with the surface of the push handle (3) and the connecting sleeve (32), the connecting sleeve (32) is sleeved on the surface of the guide rod (35), and both ends of the connecting rod (33) are fixedly connected with the surface of the connecting sleeve (32) and the push plate (34).

6. The pulverizer for manufacturing energy-saving building materials according to claim 1, characterized in that: The push rod (31) is movably connected with the surface of the push handle (3) and the sieve plate (2), and the connecting sleeve (32) is movably connected with the surface of the push rod (31) and the guide rod (35).

7. The pulverizer for manufacturing energy-saving building materials according to claim 1, characterized in that: The connecting rod (33) is movably connected with the surface of the connecting sleeve (32) and the guide slot (36), and the push plate (34) is movably connected with the surface of the connecting rod (33) and the sieve plate (2).