Granulating machine

Through the feeding mechanism composed of feeding funnel, feeding cylinder, feeding pipe and driving motor, the problem of inaccurate measurement of existing granular machines is solved, and the quantitative conveying and automated operation of particulate materials is realized, and the reliability and metering accuracy of the equipment are improved.

CN223210451UActive Publication Date: 2025-08-12BEIYA INTELLIGENT TECHNOLOGY (ANHUI) CO LTD
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Patent Information

Application Number
CN202422130858.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-30
Publication Date
2025-08-12
Estimated Expiration
2034-08-30

AI Technical Summary

Technical Problem

When used, the free feeding method has low accuracy, while the weighing method is troublesome and has low reliability, resulting in inaccurate measurement.

Method used

A feeding mechanism consisting of a feeding funnel, a feeding cylinder, and a feeding pipe is combined with a rotating shaft and control component driven by the drive motor to realize the quantitative transportation of particulate materials. An accommodating cavity is provided on the rotating shaft for uniform feeding, and the controller controls the entire process.

Benefits of technology

It realizes accurate measurement and automatic transportation of particulate materials to avoid blockage, ensures normal operation of the equipment, simple structure and easy to use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The granulator comprises a machine box, a material storage box and a feeding mechanism, the material storage box and the feeding mechanism are sequentially installed in the machine box from top to bottom, a feeding opening is formed in the top of the material storage box, the top of the machine box is connected with a machine cover through a rotatable connecting piece, and a control assembly is installed on the machine cover; the feeding mechanism comprises a feeding hopper, a feeding air cylinder and a feeding pipe, the two ends of the feeding pipe are connected to the die-casting machine and the feeding air cylinder respectively, the feeding air cylinder is connected to the inner wall of the machine box through a support, and a feeding rod of the feeding air cylinder is inserted into the feeding pipe. The feeding funnel is connected to the feeding air cylinder, a material receiving opening in the top of the feeding funnel is formed under a discharging opening in the bottom of the material storage box, and a feeding opening in the bottom of the feeding funnel is connected to the top of the feeding pipe. A rotating shaft is transversely inserted into the feeding funnel, a driving motor in driving connection with the rotating shaft is arranged on one side of the feeding funnel, and a containing cavity is formed in the rotating shaft; the control assembly controls and is connected with the feeding air cylinder and the driving motor.
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Description

Technical Field

[0001] The utility model relates to the field of pellet machines, in particular to a pellet machine. Background Art

[0002] A pellet mill is a machine that can deliver pellets to a die-casting machine in a certain quantity and in a certain delivery method. Existing pellet mills use free feeding or weighing to measure and then deliver them to the die-casting machine. However, the former method has very low accuracy, while the latter method is very troublesome. Both methods have low reliability. Therefore, a pellet mill that can accurately measure and deliver pellets is needed. Utility Model Content

[0003] The technical problem to be solved by the present invention is that the existing pellet machine adopts free feeding or weighing to measure and then transports it to the die-casting machine during use. However, the accuracy of the former method is very low, and the latter method is very troublesome. The reliability of both is not high. The present invention provides a pellet machine, which adopts a feeding mechanism consisting of a feeding funnel, a feeding cylinder, and a feeding pipe to transport a certain amount of pellet material to the die-casting machine, wherein a rotating shaft driven by a driving motor is inserted on the feeding funnel for uniform feeding, and a accommodating cavity is opened on the rotating shaft, which can accommodate equal amounts of pellet material. The rotating shaft rotates under the drive of the driving motor to transport the pellet material to the feeding pipe and then into the die-casting machine. The structure is simple, easy to use, and has high metering accuracy, which is used to solve the defects caused by the existing technology.

[0004] In order to solve the above technical problems, the present invention provides the following technical solutions:

[0005] A pellet machine, comprising a chassis, a material storage box and a feeding mechanism sequentially installed inside the chassis from top to bottom, wherein the top of the material storage box is a feeding port, the top of the chassis is connected to a cover via a rotatable connector, and a control assembly is installed on the cover;

[0006] The feeding mechanism includes a feeding funnel, a feeding cylinder, and a feeding pipe. The two ends of the feeding pipe are respectively connected to the die-casting machine and the feeding cylinder. The feeding cylinder is connected to the inner wall of the chassis through a bracket. The feeding rod of the feeding cylinder is inserted into the inside of the feeding pipe. The feeding funnel is connected to the feeding cylinder and the receiving port at the top is set just below the discharge port at the bottom of the storage box. The feeding port at the bottom of the feeding funnel is connected to the top of the feeding pipe.

[0007] A rotating shaft is inserted transversely into the feeding funnel, a driving motor connected to the rotating shaft is provided on one side of the feeding funnel, and a receiving cavity is provided on the rotating shaft;

[0008] The control components respectively control the connection of the feeding cylinder and the driving motor.

[0009] According to the above-mentioned pellet machine, preferably, the control component includes a touch screen and a controller installed on the touch screen;

[0010] The controller controls the connection of the feeding cylinder, the driving motor and the touch display screen respectively.

[0011] According to the above-mentioned pellet machine, preferably, a position sensor is installed on the inner wall of the storage box, and the position sensor is connected to the controller for data exchange.

[0012] According to the above-mentioned pellet machine, preferably, a warning light is installed on the top of the chassis, and the controller controls the connection of the warning light. Preferably, the warning light is a three-color light.

[0013] According to the above-mentioned pellet machine, preferably, the machine cover is connected to the top of the machine case via a connecting shaft.

[0014] According to the above-mentioned pellet machine, preferably, the interior of the feeding funnel is an inverted cone chamber connected to the receiving port and a cylindrical chamber connected to the feeding port, and the inverted cone chamber is connected to the cylindrical chamber.

[0015] According to the above-mentioned pellet machine, preferably, the rotating shaft is transversely inserted into the cylindrical chamber of the feeding funnel.

[0016] According to the above-mentioned pellet machine, when in use, the storage box is filled with sufficient pellet materials and enters the accommodating cavity of the rotating shaft through the receiving port on the top of the feeding funnel. The controller controls the driving motor to rotate the rotating shaft to feed the pellet materials in the accommodating cavity into the feeding pipe. Then, the controller controls the feeding rod of the feeding cylinder to transport the pellet materials in the feeding pipe to the die-casting machine. The materials can be effectively quantified, and the entire process is fully automated and easy to operate.

[0017] The technical solution provided by the above-mentioned pellet machine has the following technical effects:

[0018] The utility model relates to a pellet machine which adopts a feeding mechanism consisting of a feeding funnel, a feeding cylinder and a feeding pipe, and can convey a certain amount of pellet materials to a die-casting machine, wherein a rotating shaft driven by a driving motor is inserted into the feeding funnel for uniform feeding, and a accommodating cavity is opened on the rotating shaft, which can accommodate equal amounts of pellet materials, and the rotating shaft rotates under the drive of the driving motor to convey the pellet materials to the feeding pipe and then into the die-casting machine. The feeding funnel has a large volume, is convenient for feeding, and will not get stuck, thereby ensuring the normal operation of the equipment, and has a simple structure, is easy to use, and has high metering accuracy. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 This is a perspective structural diagram of a pellet machine of the present invention;

[0020] Figure 2 This is a perspective structural diagram of a pellet machine of the present invention;

[0021] Figure 3 This is a structural schematic diagram of a feeding funnel in a pellet machine of the utility model.

[0022] The accompanying drawings are numerals as follows:

[0023] Chassis 100, storage box 200, feeding mechanism 300, machine cover 400, control component 500, feeding funnel 301, feeding cylinder 302, feeding tube 303, bracket 304, feeding rod 305, rotating shaft 306, accommodating chamber 307, drive motor 308, touch display screen 501, position sensor 502, warning light 503. DETAILED DESCRIPTION

[0024] In order to make the technical means, creative features, objectives and effects achieved by the utility model easy to understand, the technical solutions in the embodiments of the utility model are clearly and completely described below in combination with specific illustrations. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments.

[0025] Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making any creative work shall fall within the scope of protection of the present invention.

[0026] It should be noted that the structures, proportions, sizes, etc. illustrated in the drawings in this specification are only used to match the contents disclosed in the specification so that people familiar with this technology can understand and read them. They are not used to limit the conditions under which the present invention can be implemented. Therefore, they have no substantive technical significance. Any structural modifications, changes in proportional relationships, or adjustments in size should still fall within the scope of the technical contents disclosed in this utility model without affecting the effects and purposes that can be achieved by the present utility model.

[0027] At the same time, the terms such as "upper", "lower", "left", "right", "middle" and "one" quoted in this specification are only for the convenience of description and are not used to limit the scope of implementation of the present invention. Changes or adjustments to their relative relationships should also be regarded as the scope of implementation of the present invention without substantially changing the technical content.

[0028] A preferred embodiment of the present invention provides a pellet machine.

[0029] like Figure 1As shown, a pellet machine comprises a chassis 100, a material storage box 200 and a feeding mechanism 300 which are sequentially installed inside the chassis 100 from top to bottom. The top of the material storage box 200 is a feeding port. The top of the chassis 100 is connected to a cover 400 via a rotatable connector. A control assembly 500 is installed on the cover 400.

[0030] like Figure 2-3 As shown, the feeding mechanism 300 includes a feeding funnel 301, a feeding cylinder 302, and a feeding pipe 303. The two ends of the feeding pipe 303 are respectively connected to the die-casting machine and the feeding cylinder 302. The feeding cylinder 302 is connected to the inner wall of the chassis 100 through a bracket 304. The feeding rod 305 of the feeding cylinder 302 is inserted into the inside of the feeding pipe 303. The feeding funnel 301 is connected to the feeding cylinder 302 and the material receiving port at the top thereof is set just below the material discharge port at the bottom of the storage box 200. The feeding port at the bottom of the feeding funnel 301 is connected to the top of the feeding pipe 303.

[0031] A rotating shaft 306 is inserted transversely into the feeding funnel 301. A driving motor 308 connected to the rotating shaft 306 is provided on one side of the feeding funnel 301. A receiving cavity 307 is provided on the rotating shaft 306. The receiving cavity 307 is used to load a certain amount of granular material so that the granular material entering the die-casting machine each time is consistent. The receiving cavity 307 can be changed in size as needed to be suitable for different die-casting machines. The volume of the feeding funnel 301 is also large enough to effectively prevent clogging and increase the practical life of the device.

[0032] During use, the storage box 200 is filled with sufficient granular materials and enters the accommodating cavity 307 of the rotating shaft 306 through the receiving port on the top of the feeding funnel 301. The controller controls the driving motor 308 to rotate the rotating shaft 306 to feed the granular materials in the accommodating cavity 307 into the feeding pipe 303. Then, the controller controls the feeding rod 305 of the feeding cylinder 302 to transport the granular materials in the feeding pipe 303 to the die-casting machine. The materials can be effectively quantified, and the entire process is fully automated and easy to operate.

[0033] The control component 500 controls the feed cylinder 302 and the drive motor 308 respectively.

[0034] Preferably, a pellet machine, wherein the control assembly 500 comprises a touch screen display 501 and a controller mounted on the touch screen display 501;

[0035] The controller controls the connection of the feeding cylinder 302 , the driving motor 308 , and the touch display screen 501 respectively.

[0036] Preferably, a pellet machine is provided, wherein a position sensor 502 is installed on the inner wall of a storage box 200, and the position sensor 502 is connected to a controller for data exchange. The position sensor 502 can detect the height data of the particle material inside the storage box 200 in real time. When the height of the particle material reaches a set minimum limit, the position sensor 502 transmits data to the controller, and the controller controls the data to be displayed on the touch screen 501.

[0037] Preferably, a pellet machine is provided, wherein a warning light 503 is installed on the top of the chassis 100, and the controller controls the connection of the warning light 503, the warning light 503 is a three-color light, and lights of different colors are turned on according to different situations to remind the operator.

[0038] Preferably, a pellet machine is provided, wherein the machine cover 400 is connected to the top of the machine case 100 via a connecting shaft, so that the machine cover 400 can be opened to add pellet materials, and the machine cover 400 connected with the shaft is also easy to operate.

[0039] Preferably, a pellet machine is provided, wherein the interior of the feeding funnel 301 is an inverted cone chamber connected to the receiving port and a cylindrical chamber connected to the feeding port, and the inverted cone chamber is connected to the cylindrical chamber to facilitate the transmission of the granular material.

[0040] Preferably, a pellet machine is provided, wherein the rotating shaft 306 is laterally inserted into the cylindrical chamber of the feeding funnel 301, so that the rotating shaft 306 and the cylindrical chamber are more adaptable. Since the cross-sectional diameter of the inverted cone chamber becomes smaller from top to bottom, the diameter of the rotating shaft 306 is consistent, and therefore the rotating shaft 306 is more adaptable when inserted into the cylindrical chamber.

[0041] In summary, the utility model is a pellet machine, which adopts a feeding mechanism 300 consisting of a feeding funnel 301, a feeding cylinder 302, and a feeding pipe 303 to transport a certain amount of granular material to the die-casting machine, wherein the feeding funnel 301 is provided with a rotating shaft 306 driven by a driving motor 308 for uniform feeding, and the rotating shaft 306 is provided with a accommodating cavity 307, which can accommodate equal amounts of granular material. The rotating shaft 306 rotates under the drive of the driving motor 308 to transport the granular material to the feeding pipe 303 and then into the die-casting machine. It has a simple structure, is easy to use, and has high metering accuracy.

[0042] The above describes specific embodiments of the utility model. It should be understood that the utility model is not limited to the specific embodiments described above. Devices and structures not described in detail should be understood to be implemented in a common manner in the art. Those skilled in the art may make various modifications or variations within the scope of the claims, making simple deductions, variations, or substitutions, which do not affect the substantive content of the utility model.

Claims

1. A pellet machine, characterized in that: The machine comprises a chassis, a material storage box and a feeding mechanism which are sequentially installed inside the chassis from top to bottom. The top of the material storage box is a feeding port. The top of the chassis is connected to a cover via a rotatable connector. A control component is installed on the cover. The feeding mechanism includes a feeding funnel, a feeding cylinder, and a feeding pipe. The two ends of the feeding pipe are respectively connected to the die-casting machine and the feeding cylinder. The feeding cylinder is connected to the inner wall of the chassis through a bracket. The feeding rod of the feeding cylinder is inserted into the inside of the feeding pipe. The feeding funnel is connected to the feeding cylinder and the receiving port at the top is set just below the discharge port at the bottom of the storage box. The feeding port at the bottom of the feeding funnel is connected to the top of the feeding pipe. A rotating shaft is inserted transversely into the feeding funnel, a driving motor connected to the rotating shaft is provided on one side of the feeding funnel, and a receiving cavity is provided on the rotating shaft; The control components respectively control the connection of the feeding cylinder and the driving motor.

2. A pellet machine according to claim 1, characterized in that, The control component includes a touch screen and a controller installed on the touch screen; The controller controls the connection of the feeding cylinder, the driving motor and the touch display screen respectively.

3. A pellet machine according to claim 2, characterized in that, A position sensor is installed on the inner wall of the storage box, and the position sensor is connected to the controller for data exchange.

4. A pellet machine according to claim 3, characterized in that, A warning light is installed on the top of the chassis, and the controller controls the connection of the warning light.

5. A pellet machine according to claim 4, characterized in that, The warning light is a three-color light.

6. A pellet machine according to claim 1, characterized in that: The machine cover is connected to the top of the machine case through a connecting shaft.

7. A pellet machine according to claim 1, characterized in that: The interior of the feeding funnel is an inverted cone chamber connected to the receiving port and a cylindrical chamber connected to the feeding port, and the inverted cone chamber is connected to the cylindrical chamber.

8. A pellet machine according to claim 7, characterized in that: The rotating shaft is laterally inserted into the cylindrical cavity of the feeding funnel.