Feeding device for asphalt stirring equipment

By introducing a mixing spiral plate and a vibration mechanism into the asphalt mixing equipment, the problem of asphalt accumulation inside the feed hopper was solved, thereby improving the feeding rate and mixing efficiency.

CN223669115UActive Publication Date: 2025-12-16NANYANG LIAOYUAN ROAD CONSTR MASCH CO LTD
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Patent Information

Application Number
CN202422532180.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-21
Publication Date
2025-12-16
Estimated Expiration
2034-10-21

AI Technical Summary

Technical Problem

The feeding device of existing asphalt mixing equipment is prone to accumulation due to the viscosity of asphalt during the feeding process, which affects the feeding rate and mixing rate.

Method used

A feeding device including a stirring spiral plate, a connecting mechanism, and a vibration mechanism was designed. The stirring spiral plate is driven by a rotating motor to rotate the connecting plate and the vibrating inclined plate, thereby generating vibration to prevent asphalt from accumulating inside the feeding hopper. Combined with the feeding transmission belt, quantitative feeding is achieved.

Benefits of technology

It effectively prevents asphalt accumulation inside the feed hopper, improves the feeding rate and mixing efficiency, and ensures the stable operation of the asphalt mixing equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of asphalt production equipment, in particular to a feeding device for asphalt stirring equipment, which comprises a base, one end of the base is fixedly connected with one end of a stirring mechanism, a rotating motor is started, the rotating motor drives a stirring spiral plate to rotate through a coupling, and the stirring spiral plate is driven to rotate through the coupling. A stirring spiral plate rotates to drive a connecting column to rotate, the rotating connecting column drives a connecting plate to turn over, the connecting plate turns over to drive a rotating inclined plate to turn over, the turned rotating inclined plate drives a vibration inclined plate to turn over around a vibration rotating rod, and the vibration inclined plate which turns over drives a vibration mounting plate to turn over; a vibration mounting plate makes a vibration spring perform compression motion through turnover motion, and after a rotating inclined plate passes through a vibration inclined plate, the vibration mounting plate makes turnover motion through the elastic effect of the vibration spring, so that a knocking block is driven to make turnover motion to knock the feeding hopper, vibration is generated, and the situation that too much asphalt is accumulated in the feeding hopper to affect feeding is prevented; and convenience is brought to the use of people.
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Description

TECHNICAL FIELD

[0001] The utility model relates to asphalt production equipment technical field, concretely is a kind of feeding device for asphalt mixing plant. BACKGROUND

[0002] Asphalt mixing plant is the key equipment of asphalt pavement construction, which is widely used in high-grade highway, urban road, airport, wharf, parking lot and other engineering construction, and the performance of asphalt mixing plant directly affects the quality of asphalt pavement.

[0003] At present, most of the asphalt mixing plant feeding devices on the market can cause accumulation in the feeding hopper, reduce the feeding rate and affect the mixing rate due to the viscosity of asphalt. UTILITY MODEL CONTENT

[0004] The utility model discloses a kind of feeding device for asphalt mixing plant, to solve the problem that the above background technique proposes easy to accumulate in the feeding hopper, reduce the feeding rate, thereby affect mixing rate. To achieve the above purpose, the utility model provides the following technical scheme: a kind of feeding device for asphalt mixing plant, including pedestal, the one end of the pedestal is fixedly connected with the one end of stirring mechanism, the pedestal includes base, motor mounting seat and rotating motor, the stirring mechanism is composed of stirring helical plate, stirring frame and stirring seal plate, the outer wall of the stirring mechanism is drivingly connected with the inner wall of the bottom of feeding mechanism, the feeding mechanism includes feeding transmission belt, feeding rotary lever, feeding roller and feeding hopper;

[0005] The left side of the feeding mechanism is fixedly connected with the right side of connecting mechanism, the connecting mechanism is composed of connecting column, connecting plate and rotating inclined plate, the right side of the connecting mechanism is movably abutted with the left side of vibration mechanism, the vibration mechanism includes vibration inclined plate, vibration mounting plate, vibration rebound column, vibration spring, vibration rotary lever, two vibration fixed plates and knocking block, the right side of the vibration mechanism is fixedly connected with the left side of feeding mechanism.

[0006] Preferably, the top of the right side of the base is fixedly connected with the bottom of the motor mounting seat, and the top of the motor mounting seat is movably connected with the bottom of the rotating motor.

[0007] Preferably, one end of the stirring helical plate is fixedly connected with one end of the rotating motor through a shaft coupling, and the outer wall of the stirring helical plate is rotatably connected with the inner wall of the stirring frame, the right side of the stirring frame is movably connected with the left side of the stirring seal plate, and the top of the right side of the stirring frame is provided with a discharging square hole.

[0008] Preferably, the inner wall of the bottom of the feeding transmission belt is in transmission connection with the outer wall of one end of the stirring spiral plate, the inner wall of the top of the feeding transmission belt is in transmission connection with the outer wall of one end of the feeding rotating rod, the outer wall of the other end of the feeding rotating rod is movably connected with the inner wall of the feeding roller, both sides of the feeding hopper are respectively provided with feeding through holes, the inner walls of the two feeding through holes are respectively in rotation connection with the outer walls of the two ends of the feeding rotating rod, the outer wall of the bottom of the feeding hopper is movably connected with the inner wall of the discharging square hole, and the left side of the middle of the feeding hopper is provided with a rebound through hole.

[0009] Preferably, the right side of the connecting column is fixedly connected with the other end of the feeding rotating rod, and the outer side wall of the connecting column is movably connected with the back of the connecting plate.

[0010] Preferably, the left side of the vibration inclined plate is movably abutted with the right side of the rotating inclined plate, the right side of the vibration inclined plate is fixedly connected with the left side of the back of the vibration mounting plate, the right side of the back of the vibration mounting plate is movably abutted with the left side of the vibration rebound column, the outer wall of the left side of the vibration rebound column is movably sleeved with the inner wall of the vibration spring, the top of the middle of the back of the vibration mounting plate is provided with a vibration through hole, the inner wall of the vibration through hole is movably connected with the outer wall of the middle of the vibration rotating rod, the outer walls of the top end and the bottom end of the vibration rotating rod are respectively in rotation connection with the inner walls of the two vibration fixing plates, the right side of the front of the vibration mounting plate is fixedly connected with the left side of the knocking block, the outer wall of the right side of the vibration rebound column is movably sleeved with the inner wall of the rebound through hole, and the right sides of the two vibration fixing plates are fixedly connected with the left side of the front of the feeding hopper.

[0011] Compared with the prior art, the utility model has the advantages of:

[0012] In the utility model, through starting rotating motor, rotating rotating motor drives stirring spiral plate to rotate through shaft coupling, stirring spiral plate rotation drives connecting column to rotate, rotating connecting column drives connecting plate to overturn motion, connecting plate overturn motion drives rotating inclined plate to overturn motion, overturning rotating inclined plate drives vibration inclined plate to overturn motion around vibration rotating rod, overturning vibration inclined plate drives vibration mounting plate to overturn motion, vibration mounting plate overturn motion makes vibration spring compression motion, after rotating inclined plate passes through vibration inclined plate, vibration mounting plate overturn motion is made through the elastic action of vibration spring, thereby bringing knocking block overturn motion to knock feeding hopper, vibration is generated, too much pitch accumulation in the feeding hopper is prevented, the utility model discloses a kind of influence feeding, which brings convenience for people.

[0013] In the utility model, rotating rotating motor drives stirring spiral plate to rotate through shaft coupling, simultaneously drives feeding rotating rod to rotate through feeding transmission belt, rotating feeding rotating rod drives feeding roller to rotate, feeding roller rotation can be quantitatively fed along with pitch stirring, avoid feeding too much to influence stirring effect, which brings convenience for people. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 is a sectional view of the present application;

[0015] Figure 2 is a schematic diagram of the overall structure of the present application;

[0016] Figure 3 is an exploded view of the present application;

[0017] Figure 4 is an exploded view of the connecting mechanism in the present application;

[0018] Figure 5 is an exploded view of the vibration mechanism in the present application.

[0019] In the figure: 1, base; 101, base; 102, motor mounting seat; 103, rotating motor; 2, stirring mechanism; 201, stirring spiral plate; 202, stirring frame; 203, stirring sealing plate; 3, feeding mechanism; 301, feeding transmission belt; 302, feeding rotating rod; 303, feeding roller; 304, feeding hopper; 4, connecting mechanism; 401, connecting column; 402, connecting plate; 403, rotating inclined plate; 5, vibration mechanism; 501, vibration inclined plate; 502, vibration mounting plate; 503, vibration rebound column; 504, vibration spring; 505, vibration rotating rod; 506, vibration fixing plate; 507, knocking block. DETAILED DESCRIPTION

[0020] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. 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 protection of the present application.

[0021] Please refer to Figures 1 to 5 The present application provides a technical solution: a feeding device for an asphalt mixing device, comprising a base 1, one end of the base 1 is fixedly connected with one end of a stirring mechanism 2, the base 1 comprises a base 101, a motor mounting seat 102 and a rotating motor 103, the stirring mechanism 2 is composed of a stirring spiral plate 201, a stirring frame 202 and a stirring sealing plate 203, the outer wall of the stirring mechanism 2 is in transmission connection with the inner wall of the bottom of a feeding mechanism 3, the feeding mechanism 3 comprises a feeding transmission belt 301, a feeding rotating rod 302, a feeding roller 303 and a feeding hopper 304;

[0022] The left side of the feeding mechanism 3 is fixedly connected with the right side of the connecting mechanism 4, the connecting mechanism 4 is composed of a connecting column 401, a connecting plate 402 and a rotating inclined plate 403, the right side of the connecting mechanism 4 movably abuts against the left side of the vibrating mechanism 5, the vibrating mechanism 5 comprises a vibrating inclined plate 501, a vibrating mounting plate 502, a vibrating rebounding column 503, a vibrating spring 504, a vibrating rotating rod 505, two vibrating fixing plates 506 and a knocking block 507, and the right side of the vibrating mechanism 5 is fixedly connected with the left side of the feeding mechanism 3.

[0023] In the embodiment, as shown in Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 and Figure 5 , the top of the right side of the base 101 is fixedly connected with the bottom of the motor mounting seat 102, and the top of the motor mounting seat 102 movably clamps the bottom of the rotating motor 103, and the base 101 can keep the device stable during the working process.

[0024] In the embodiment, as shown in Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 and Figure 5 , one end of the stirring spiral plate 201 is fixedly connected with one end of the rotating motor 103 through a shaft coupling, the outer wall of the stirring spiral plate 201 is rotationally connected with the inner wall of the stirring frame 202, the right side of the stirring frame 202 movably clamps the left side of the stirring sealing plate 203, and the top of the right side of the stirring frame 202 is provided with a discharging square hole, the rotating motor 103 is started, the rotating rotating motor 103 drives the stirring spiral plate 201 to rotate through the shaft coupling, and the stirring spiral plate 201 rotates to drive the asphalt entering the stirring frame 202 to be stirred.

[0025] In the embodiment, as shown in Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 and Figure 5 , the inner wall of the bottom of the feeding transmission belt 301 is transmissionally connected with the outer wall of one end of the stirring spiral plate 201, the inner wall of the top of the feeding transmission belt 301 is transmissionally connected with the outer wall of one end of the feeding rotating rod 302, the outer wall of the other end of the feeding rotating rod 302 movably clamps the inner wall of the feeding roller 303, feeding through holes are respectively arranged on the two sides of the feeding hopper 304, the inner walls of the two feeding through holes are respectively rotationally connected with the outer walls of the two ends of the feeding rotating rod 302, the outer wall of the bottom of the feeding hopper 304 movably clamps the inner wall of the discharging square hole, a rebounding through hole is arranged on the left side of the feeding hopper 304 close to the middle, the stirring spiral plate 201 drives the feeding rotating rod 302 to rotate through the feeding transmission belt 301, the rotating feeding rotating rod 302 drives the feeding roller 303 to rotate, and the rotating feeding roller 303 can quantitatively feed the asphalt during the stirring process, so as to avoid that too much feeding affects the stirring effect.

[0026] In this embodiment, as shown in Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5 , the right side of the connecting column 401 is fixedly connected with the other end of the feeding rotating lever 302, the outer side wall of the connecting column 401 is movably clamped with the back of the connecting plate 402, the front of the connecting plate 402 is movably clamped with the back of the rotating inclined plate 403, the rotating of the stirring spiral plate 201 drives the rotating of the connecting column 401, the rotating of the connecting column 401 drives the overturning movement of the connecting plate 402, and the overturning movement of the connecting plate 402 drives the overturning movement of the rotating inclined plate 403.

[0027] In this embodiment, as shown in Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5 , the left side of the vibrating inclined plate 501 is movably abutted with the right side of the rotating inclined plate 403, the right side of the vibrating inclined plate 501 is fixedly connected with the left side of the back of the vibrating mounting plate 502, the right side of the back of the vibrating mounting plate 502 is movably abutbed with the left side of the vibrating rebound column 503, the outer wall of the left side of the vibrating rebound column 503 is movably sleeved with the inner wall of the vibrating spring 504, the top of the middle part of the vibrating mounting plate 502 is provided with a vibrating through hole, the inner wall of the vibrating through hole is movably clamped with the outer wall of the middle part of the vibrating rotating lever 505, the outer wall of the top end of the vibrating rotating lever 505 is movably connected with the inner wall of the bottom end, and the outer wall of the bottom end is movably connected with the inner wall of the two vibrating fixed plates 506, the right side of the front of the vibrating mounting plate 502 is fixedly connected with the left side of the knocking block 507, the outer wall of the right side of the vibrating rebound column 503 is movably sleeved with the inner wall of the rebound through hole, and the right side of the two vibrating fixed plates 506 is fixedly connected with the left side of the feeding hopper 304 close to the front, the overturning of the rotating inclined plate 403 drives the overturning movement of the vibrating inclined plate 501 around the vibrating rotating lever 505, the overturning movement of the vibrating inclined plate 501 drives the overturning movement of the vibrating mounting plate 502, the overturning movement of the vibrating mounting plate 502 makes the vibrating spring 504 compressing movement, after the rotating inclined plate 403 passes through the vibrating inclined plate 501, the vibrating mounting plate 502 is overturned by the elastic action of the vibrating spring 504, so as to drive the overturning movement of the knocking block 507 and knock the feeding hopper 304, so as to produce vibration and prevent the asphalt in the feeding hopper 304 from being accumulated too much to affect feeding.

[0028] The use method and advantages of the utility model are as follows:

[0029] As shown in Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5 Figure 1 Figure 2 Figure 3 Figure 4 Figure 5As shown, by starting the rotating motor 103, the rotating motor 103 drives the stirring spiral plate 201 to rotate through the shaft coupling, and drives the feeding rotating rod 302 to rotate through the feeding transmission belt 301, the rotating feeding rotating rod 302 drives the feeding roller 303 to rotate, the rotating feeding roller 303 can quantitatively feed the asphalt during the stirring, so as to avoid the influence of excessive feeding on the stirring effect, the stirring spiral plate 201 drives the connecting column 401 to rotate, the rotating connecting column 401 drives the connecting plate 402 to overturn, the overturning connecting plate 402 drives the rotating inclined plate 403 to overturn, the overturning rotating inclined plate 403 drives the vibrating inclined plate 501 to overturn around the vibrating rotating rod 505, the overturning vibrating inclined plate 501 drives the vibrating mounting plate 502 to overturn, the overturning vibrating mounting plate 502 makes the vibrating spring 504 compress, after the rotating inclined plate 403 passes through the vibrating inclined plate 501, the vibrating mounting plate 502 overturns through the elastic action of the vibrating spring 504, so as to drive the knocking block 507 to overturn and knock the feeding hopper 304, so as to produce vibration and prevent the asphalt in the feeding hopper 304 from being accumulated too much to affect the feeding.

[0030] The basic principle, main features and advantages of the present application are shown and described above. It should be understood by those skilled in the art that the present application is not limited by the above embodiments, and the above embodiments and descriptions in the specification are only preferred examples of the present application and are not intended to limit the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the present application. The scope of protection of the present application is defined by the appended claims and their equivalents.

Claims

1. A feeding device for asphalt mixing plants, comprising a base (1), characterized in that: One end of the base (1) is fixedly connected with one end of the stirring mechanism (2), the base (1) comprises a base (101), a motor mounting seat (102) and a rotating motor (103), the stirring mechanism (2) is composed of a stirring spiral plate (201), a stirring frame (202) and a stirring sealing plate (203), the outer wall of the stirring mechanism (2) is in transmission connection with the inner wall of the bottom of the feeding mechanism (3), the feeding mechanism (3) comprises a feeding transmission belt (301), a feeding rotating rod (302), a feeding roller (303) and a feeding hopper (304); The left side of the feeding mechanism (3) is fixedly connected with the right side of the connecting mechanism (4), the connecting mechanism (4) is composed of a connecting column (401), a connecting plate (402) and a rotating inclined plate (403), the right side of the connecting mechanism (4) is in movable abutment with the left side of the vibrating mechanism (5), the vibrating mechanism (5) comprises a vibrating inclined plate (501), a vibrating mounting plate (502), a vibrating rebound column (503), a vibrating spring (504), a vibrating rotating rod (505), two vibrating fixed plates (506) and a knocking block (507), the right side of the vibrating mechanism (5) is fixedly connected with the left side of the feeding mechanism (3).

2. A feeding device for an asphalt mixing plant according to claim 1, characterized in that The top of the right side of the base (101) is fixedly connected with the bottom of the motor mounting seat (102), and the top of the motor mounting seat (102) is movably connected with the bottom of the rotating motor (103).

3. A feeding device for an asphalt mixing plant according to claim 2, characterized in that One end of the stirring spiral plate (201) is fixedly connected with one end of the rotating motor (103) through a shaft coupling, and the outer wall of the stirring spiral plate (201) is in rotary connection with the inner wall of the stirring frame (202), the right side of the stirring frame (202) is movably connected with the left side of the stirring sealing plate (203), and the top of the right side of the stirring frame (202) is provided with a discharging square hole.

4. A feeding device for an asphalt mixing plant according to claim 3, characterized in that The inner wall of the bottom of the feeding transmission belt (301) is in transmission connection with the outer wall of one end of the stirring spiral plate (201), and the inner wall of the top of the feeding transmission belt (301) is in transmission connection with the outer wall of one end of the feeding rotating rod (302), the outer wall of the other end of the feeding rotating rod (302) is movably connected with the inner wall of the feeding roller (303), feeding through holes are formed in the left and right sides of the feeding hopper (304), the inner walls of the two feeding through holes are in rotary connection with the outer walls of the two ends of the feeding rotating rod (302) respectively, and the outer wall of the bottom of the feeding hopper (304) is movably connected with the inner wall of the discharging square hole, and a rebound through hole is formed in the left side of the feeding hopper (304) close to the middle part.

5. A feed arrangement for an asphalt mixing plant according to claim 4, characterized in that: The right side of the connecting column (401) is fixedly connected with the other end of the feeding rotating rod (302), and the outer side wall of the connecting column (401) is movably connected with the back surface of the connecting plate (402), and the front surface of the connecting plate (402) is movably connected with the back surface of the rotating inclined plate (403).

6. A feed arrangement for an asphalt mixing plant according to claim 5, characterized in that: The left side of the vibration inclined plate (501) is movably abutted with the right side of the rotating inclined plate (403), and the right side of the vibration inclined plate (501) is fixedly connected with the left side of the back of the vibration mounting plate (502). The right side of the back of the vibration mounting plate (502) is movably abutted with the left side of the vibration rebound column (503), and the outer wall of the left side of the vibration rebound column (503) is movably sleeved with the inner wall of the vibration spring (504). The top of the middle part of the vibration mounting plate (502) is provided with a vibration through hole, and the inner wall of the vibration through hole is movably clamped with the outer wall of the middle part of the vibration rotating rod (505). The outer wall of the top end of the vibration rotating rod (505) and the outer wall of the bottom end are respectively movably connected with the inner walls of two vibration fixing plates (506). The right side of the front of the vibration mounting plate (502) is fixedly connected with the left side of the knocking block (507). The outer wall of the right side of the vibration rebound column (503) is movably sleeved with the inner wall of the rebound through hole, and the right sides of the two vibration fixing plates (506) are fixedly connected with the left side of the feeding hopper (304) close to the front.