Glass raw material mixing equipment

By designing a glass raw material mixing equipment with crushing, longitudinal and transverse mixing devices, the problems of large particle materials and incomplete mixing were solved, realizing an efficient and automated mixing process, improving the quality and efficiency of glass production, and reducing energy consumption and maintenance costs.

CN224009667UActive Publication Date: 2026-03-20JIANGMEN YUEBO IND CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-09
Publication Date
2026-03-20

AI Technical Summary

Technical Problem

Existing glass raw material mixing equipment suffers from problems such as large particles causing glass defects, difficulty in judging the raw material filling amount, incomplete mixing, and inability to effectively clean the material on the inner wall, which affect the quality and efficiency of glass production.

Method used

A glass raw material mixing device was designed, which includes a crushing device, a longitudinal mixing device, and a transverse mixing device. It adopts a telescopic stirring component and a scraping component driven by a dual-shaft motor, combined with a feeding auxiliary component, to achieve efficient mixing, automated operation, and cleaning functions.

Benefits of technology

It improves mixing quality and efficiency, reduces energy consumption, reduces manual operation, lowers maintenance costs, and ensures production safety and equipment stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses glass raw material mixing equipment which is provided with a crushing device, a longitudinal mixing device and a transverse mixing device and is used for realizing efficient mixing. The crushing device comprises a mixing tank, a feeding port, a partition plate, a main crushing wheel and an auxiliary crushing wheel and is driven by a crushing motor. The longitudinal mixing device is driven by a double-shaft motor and comprises a telescopic stirring assembly, a discharging auxiliary assembly and a scraping assembly, and the mixing uniformity is improved. And the transverse mixing device realizes axial mixing through a transverse rotating shaft and transverse mixing blades. The equipment is compact in structure, high in automation degree, convenient to clean and maintain, energy-saving, efficient, high in adaptability and capable of improving the production efficiency and reducing the maintenance cost. The device is suitable for mixing glass raw materials of different types and particle sizes, and has market application prospects.
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Description

TECHNICAL FIELD

[0001] The utility model relates to glass automation manufacturing technical field, especially relate to a glass raw material mixing equipment. BACKGROUND

[0002] In the glass production process, the mixing of raw materials is a crucial step. However, the existing raw material mixing device has some problems, which affect the quality and efficiency of glass production. Specifically, the main problems include:

[0003] Large particle materials in raw materials: During the mixing process, large particle materials contained in the raw materials may cause defects in the glass during the later firing process, affecting product quality.

[0004] Difficulty in judging the filling amount of raw materials: During the automatic filling process of the mixing barrel, it is difficult for the operator to accurately judge the filling amount of the raw materials, which may cause the raw materials to be filled too much, thereby overflowing from the barrel, causing waste and operation difficulty.

[0005] In order to solve these problems, a new raw material mixing device needs to be designed, which should be able to effectively mix raw materials while avoiding the adverse effects of large particle materials and accurately control the filling amount of raw materials.

[0006] In the prior art, the utility model patent with publication number CN 210522341 U discloses a glass raw material mixing equipment. The equipment includes a mixing kettle, which is provided with a mounting box at the bottom, and a motor is fixedly installed in the box. The output shaft of the motor penetrates the bottom wall of the mixing kettle and is fixedly connected with the stirring shaft. The middle part of the stirring shaft is symmetrically provided with two drive shafts, which are perpendicular to the stirring shaft. A first magnet is arranged in the end of each drive shaft away from the stirring shaft, and two groups of scraping mechanisms are symmetrically arranged on the inner side wall of the mixing kettle.

[0007] Although this structure is simple and easy to install, it can scrape and clean the raw materials adhering to the inner side wall of the kettle body through the cooperation of the magnets and the scraping mechanisms, but it has the problem of poor scraping effect. In particular, it cannot effectively clean the raw materials adhering to the inner side wall of the bottom of the kettle body, which may cause waste of raw materials.

[0008] The raw materials for glass manufacturing mainly include sandstone materials such as quartz sand, and some auxiliary raw materials such as fining agents, fluxing agents, opacifiers, colorants, decolorizing agents, oxidizing agents and reducing agents. Since the sandstone contains different moisture, and different raw materials usually need to be mixed, it is necessary to be fully stirred to form usable raw materials. The existing device has the problem of incomplete stirring during the mixing process, and cannot effectively remove iron impurities in the raw materials, which may cause the quality of the produced glass to not meet the standard.

[0009] Therefore, we propose a new glass manufacturing raw material mixing device, aiming to solve the defects in the prior art, improve the quality and efficiency of raw material mixing, and ensure the high quality standards of glass production. Utility model content

[0010] The utility model aims at at least one of the prior art existing technical problems. For this purpose, the utility model provides a kind of glass raw material mixing equipment, can improve mixing efficiency, reduce energy consumption, reduce manual operation, improve production safety, while reducing maintenance cost, with good market application prospect.

[0011] According to the first aspect embodiment of the utility model, a kind of glass raw material mixing equipment, characterized by comprising:

[0012] At least one crushing device, including a mixing tank, its top is equipped with a feeding port, the feeding port extends into the inside of the mixing tank downward;A baffle is provided below the feeding port, the baffle is slidably inserted into the inside of the mixing tank, one end of the baffle extends from the side wall of the mixing tank, a drive gear is provided on the outer wall of the side wall of the mixing tank, a rack is provided on the baffle and engaged with the drive gear;A pair of main crushing wheel and slave crushing wheel are mounted below the baffle and engaged with each other;The main crushing wheel is connected with crushing motor and is driven to rotate by the crushing motor, and the crushing motor is installed on the mixing tank;The slave crushing wheel is connected with the mixing tank through a driven shaft;

[0013] Longitudinal mixing device, which is arranged below the crushing device, includes a mixing cylinder with a conical inner side wall at the lower end, a double-shaft motor installed at the top of the mixing cylinder, a telescopic stirring assembly arranged at the bottom of the lower output shaft of the double-shaft motor, a discharging auxiliary assembly arranged at the top of the upper output shaft of the double-shaft motor, and a scraping assembly arranged on the output shaft of the double-shaft motor and used for scraping and cleaning the material adhered to the inner wall of the mixing cylinder.

[0014] Horizontal mixing device, including a mixing chamber in communication with the mixing cylinder, and a horizontal rotating shaft arranged axially along the mixing chamber, a connecting port is formed at the top of the mixing chamber and connected with the bottom end of the mixing cylinder, two reinforcing plates are fixedly connected to the inner sides of the two ends of the mixing chamber, the two ends of the horizontal rotating shaft are rotatably connected with the two reinforcing plates respectively, a horizontal mixing blade is sleeved outside the horizontal rotating shaft, an annular hole is formed in the middle of the mixing chamber, a mounting seat is fixedly connected to the annular hole of the mixing chamber, a horizontal mixing drive machine is installed at the bottom of the mounting seat, a bevel gear assembly is arranged in the mounting seat and used for connecting the horizontal rotating shaft and the horizontal mixing drive machine, and a discharge port is provided on the reinforcing plate.

[0015] According to the glass raw material mixing equipment, at least the following beneficial effects are achieved:

[0016] Efficient mixing effect: the device can realize efficient mixing of glass raw materials through the cooperative work of at least one crushing device and longitudinal mixing device and transverse mixing device. The longitudinal mixing device can realize deep stirring of the material through the telescopic stirring assembly driven by the double-shaft motor, and the transverse mixing device realizes axial mixing of the material through the transverse shaft and transverse mixing blade, and the combination of the two can ensure uniform mixing of the material and improve the mixing quality.

[0017] Compact structure and simple operation: the device integrates crushing, longitudinal mixing and transverse mixing in one system, reduces the floor area, and simplifies the operation process. The design of the partition plate and the driving gear makes the material distribution below the feeding port more uniform, which helps to improve the mixing efficiency.

[0018] High degree of automation: through the application of the electric telescopic rod and the double-shaft motor, the device realizes automatic operation, reduces manual intervention, improves production efficiency and operation safety.

[0019] Cleaning and maintenance are convenient: the design of the scraping assembly can effectively clean the material adhering to the inner wall of the mixing cylinder, keep the mixing cylinder clean, reduce material waste, and also facilitate the maintenance and cleaning of the device.

[0020] Discharging auxiliary function: the design of the discharging auxiliary assembly, such as the knocking block, can assist the smooth falling of the material, prevent the accumulation and blockage of the material during the mixing process, and ensure the continuity and stability of the mixing process.

[0021] Energy saving and high efficiency: the reasonable layout and design of the crushing motor and the transverse mixing drive make the device have low energy consumption during operation, while maintaining high efficiency of mixing and crushing functions.

[0022] Strong adaptability: the design of the device can adapt to different types and particle sizes of glass raw materials, and has good universality and adaptability.

[0023] Improve production efficiency: due to the highly automated and integrated design of the device, manual operation can be significantly reduced, the mixing cycle can be shortened, and the overall production efficiency can be improved.

[0024] Reduce maintenance cost: the design of each component of the device takes into account the ease of maintenance, such as the electric telescopic rod and the scraping assembly, which can reduce the failure rate of the device and reduce the maintenance cost.

[0025] In summary, this glass raw material mixing device, through its unique design and structure, can improve mixing efficiency, reduce energy consumption, reduce manual operation, improve production safety, and reduce maintenance cost, and has good market application prospect.

[0026] According to some embodiments of the glass raw material mixing device, the telescopic stirring assembly comprises a first telescopic push rod vertically arranged at the bottom of the lower output shaft of the double-shaft motor, a stirring motor arranged at the lower end of the output shaft of the first telescopic push rod, a vertical rotating shaft arranged at the lower end of the output shaft of the stirring motor, and a longitudinal mixing blade arranged at the side end of the output shaft of the stirring motor.

[0027] According to some embodiments of the glass raw material mixing device, the scraping assembly comprises a cross bar arranged at the side end of the output shaft of the double-shaft motor and a scraping plate arranged at the side end of the cross bar and used for scraping and cleaning the material adhered to the inner wall of the mixing cylinder.

[0028] According to some embodiments of the glass raw material mixing device, the auxiliary discharging assembly comprises a second telescopic push rod transversely arranged at the top of the upper output shaft of the double-shaft motor and a knocking block arranged at the output shaft end of the second telescopic push rod.

[0029] According to some embodiments of the glass raw material mixing device, the first telescopic push rod is an electric telescopic rod.

[0030] According to some embodiments of the glass raw material mixing device, the outer wall of the side wall of the mixing tank is provided with a driving motor used for driving the driving gear to rotate.

[0031] The additional aspects and advantages of the present application will be partially given in the following description, partially will become obvious from the following description, or will be understood through the practice of the present application. BRIEF DESCRIPTION OF DRAWINGS

[0032] The above and / or additional aspects and advantages of the present application will become apparent and more readily appreciated from the following description of the embodiments, taken in conjunction with the accompanying drawings, in which:

[0033] Figure 1 The structure of the embodiment of the present application is shown in the figure.

[0034] 1, charging port; 2, mixing tank; 3, crushing motor; 5, main crushing wheel; 14, slave crushing wheel; 15, driven shaft; 16, transverse mixing drive; 11, driving gear; 12, partition; 02, transverse rotating shaft; 04, mixing chamber; 08, transverse mixing blade; 09, reinforcing plate; 10, mounting seat; 101, mixing cylinder; 107, double-shaft motor; 108, first telescopic push rod; 109, stirring motor; 110, vertical rotating shaft; 111, longitudinal mixing blade; 112, cross bar; 113, scraping plate. DETAILED DESCRIPTION

[0035] The embodiments of the present application are described below in detail, examples of which are shown in the drawings, wherein the same or similar notations represent the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by reference to the drawings are exemplary only, and are used only for explaining the present application, and cannot be understood as a limitation of the present application.

[0036] In the description of the present application, it should be understood that, in relation to the orientation description, for example, the orientation or position relationship indicated by up, down, front, back, left, right, etc. is based on the orientation or position relationship shown in the drawings, which is only for the convenience of describing the present application and simplifying the description, and does not indicate or imply that the device or element indicated must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation of the present application.

[0037] In the description of the present application, the meaning of several is one or more, the meaning of multiple is more than two, greater than, less than, more than, etc. are understood as not including the number, above, below, etc. are understood as including the number. If it is described as first, second, it is only used for the purpose of distinguishing technical features, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features or the sequence of indicated technical features.

[0038] In the description of the present application, unless otherwise explicitly limited, the words such as setting, installing, connecting, etc. should be broadly understood, and the person skilled in the art can reasonably determine the specific meaning of the above words in the present application in combination with the specific content of the technical solution.

[0039] Referring to Figure 1 , a glass raw material mixing device according to the first aspect of the present application, characterized in that, comprising:

[0040] At least one crushing device, comprising a mixing tank 2, a feeding port 1 is arranged at the top of the mixing tank 2, the feeding port 1 extends downward into the inside of the mixing tank 2; a partition plate 12 is arranged below the feeding port 1, the partition plate 12 is slidably inserted into the inside of the mixing tank 2, one end of the partition plate 12 extends from the side wall of the mixing tank 2, a drive gear 11 is arranged on the outer wall of the side wall of the mixing tank 2, a rack is arranged on the partition plate 12 and engaged with the drive gear 11; a pair of main crushing wheels 5 and slave crushing wheels 14 are arranged below the partition plate 12 and engaged with each other; the main crushing wheel 5 is connected with a crushing motor 3 and driven to rotate by the crushing motor 3, the crushing motor 3 is installed on the mixing tank 2; the slave crushing wheel 14 is connected with the mixing tank 2 through a driven shaft 15;

[0041] The longitudinal mixing device is arranged below the crushing device and comprises a mixing cylinder 101 with a conical inner side wall at the lower end, a double-shaft motor 107 mounted at the top of the mixing cylinder 101, a telescopic stirring assembly arranged at the bottom of the lower output shaft of the double-shaft motor 107, a discharging auxiliary assembly arranged at the top of the upper output shaft of the double-shaft motor 107, and a scraping assembly arranged on the output shaft of the double-shaft motor 107 and used for scraping and cleaning the material adhered to the inner wall of the mixing cylinder 101;

[0042] The transverse mixing device comprises a mixing chamber 04 in communication with the mixing cylinder 101 and a transverse rotating shaft 02 arranged axially along the mixing chamber 04, the top of the mixing chamber 04 is provided with a connecting port connected with the bottom end of the mixing cylinder 101, the two ends of the mixing chamber 04 are fixedly connected with reinforcing plates 09, the two ends of the transverse rotating shaft 02 are rotatably connected with the two reinforcing plates 09 respectively, the outer side of the transverse rotating shaft 02 is sleeved with transverse mixing blades 08, the middle part of the mixing chamber 04 is provided with an annular hole, the annular hole of the mixing chamber 04 is fixedly connected with a mounting seat 10, the bottom of the mounting seat 10 is provided with a transverse mixing drive machine 16, and the mounting seat 10 is provided with a helical gear assembly used for connecting the transverse rotating shaft 02 and the transverse mixing drive machine 16, and the reinforcing plate 09 is provided with a discharging port.

[0043] The glass raw material mixing equipment according to the embodiment of the application has at least the following beneficial effects:

[0044] Efficient mixing effect: the equipment can realize efficient mixing of glass raw materials through the cooperative work of at least one crushing device and longitudinal mixing device and transverse mixing device. The longitudinal mixing device can realize deep stirring of the material through the telescopic stirring assembly driven by the double-shaft motor 107, and the transverse mixing device realizes axial mixing of the material through the transverse rotating shaft 02 and the transverse mixing blades 08, so that the material mixing is uniform and the mixing quality is improved.

[0045] Compact structure and simple operation: the equipment integrates crushing, longitudinal mixing and transverse mixing in one system, reduces the floor area, and simplifies the operation process. The design of the partition plate 12 and the driving gear 11 makes the material distribution below the feeding port 1 more uniform, which helps to improve the mixing efficiency.

[0046] High degree of automation: through the application of the electric telescopic rod and the double-shaft motor 107, the equipment realizes automatic operation, reduces manual intervention, and improves production efficiency and operation safety.

[0047] Cleaning and maintenance are convenient: the design of the scraping assembly can effectively clean the material adhered to the inner wall of the mixing cylinder 101, keep the mixing cylinder 101 clean, reduce material waste, and facilitate maintenance and cleaning of the equipment.

[0048] Down material auxiliary function: the design of the down material auxiliary assembly, such as the knocking block, can assist the smooth falling of the material, prevent the accumulation and blockage of the material during the mixing process, and ensure the continuity and stability of the mixing process.

[0049] Energy saving and high efficiency: the reasonable layout and design of the crushing motor 3 and the transverse mixing drive motor 16 make the device have low energy consumption during operation, while maintaining high efficiency of mixing and crushing functions.

[0050] Strong adaptability: the design of the device can adapt to different types and particle sizes of glass raw materials, and has good universality and adaptability.

[0051] Improve production efficiency: due to the highly automated and integrated design of the device, manual operation can be significantly reduced, the mixing cycle can be shortened, and the overall production efficiency can be improved.

[0052] Reduce maintenance cost: the design of each component of the device considers easy maintenance, such as the electric telescopic rod and the material scraping assembly, which can reduce the failure rate of the device and reduce the maintenance cost.

[0053] In summary, this glass raw material mixing device can improve mixing efficiency, reduce energy consumption, reduce manual operation, improve production safety, and reduce maintenance cost through its unique design and structure, and has good market application prospect.

[0054] According to some embodiments of the glass raw material mixing device, the telescopic stirring assembly includes a first telescopic push rod 108 vertically arranged at the bottom of the lower output shaft of the double-shaft motor 107, a stirring motor 109 arranged at the lower end of the output shaft of the first telescopic push rod 108, a vertical rotating shaft 110 arranged at the lower end of the output shaft of the stirring motor 109, and a longitudinal mixing blade 111 arranged at the side end of the output shaft of the stirring motor 109. The design of the telescopic stirring assembly allows the vertical rotating shaft 110 to stretch in the vertical direction, so that the stirring depth can be adjusted according to different mixing requirements, improving the adaptability and flexibility of the device. The stirring motor 109 directly drives the vertical rotating shaft 110, so that the longitudinal mixing blade 111 can efficiently stir the material. This direct driving method can reduce energy loss and improve stirring efficiency. The stirring motor 109 is arranged at the lower end of the output shaft of the first telescopic push rod 108, so that the whole stirring assembly structure is compact, reducing the space occupation, and also facilitating integration into the mixing device. By controlling the stretching of the first telescopic push rod 108 through the double-shaft motor 107, the operator can easily adjust the stirring depth to achieve adaptive stirring of different materials, simplifying the operation process. The design of the longitudinal mixing blade 111 helps to realize uniform distribution of the material in the mixing cylinder 101, reduces dead angles, and improves mixing quality.

[0055] According to some embodiments of the glass raw material mixing device, the scraping assembly is arranged on the cross bar 112 at the output shaft side end of the double-shaft motor 107 and the scraping plate 113 arranged at the side end of the cross bar 112 and used for scraping and cleaning the material adhered to the inner wall of the mixing cylinder 101. The scraping assembly is directly installed on the cross bar 112 at the output shaft side end of the double-shaft motor 107, which can effectively scrape and clean the material on the inner wall of the mixing cylinder 101, reduces the need for manual cleaning, and improves the cleaning efficiency. Through the design of the scraping plate 113, the material adhered to the inner wall of the mixing cylinder 101 can be removed, the loss and waste of the material are reduced, and the utilization rate of the raw material is improved. The scraping assembly has a simple structure, is easy to install and disassemble, facilitates regular inspection and maintenance, and reduces the maintenance cost. The scraping assembly can remove the material on the inner wall, prevent the material from forming a dead angle during the mixing process, ensure more uniform mixing, and improve the quality and consistency of the final product.

[0056] In summary, the design of the scraping assembly not only improves the cleaning efficiency and mixing quality of the mixing device, but also simplifies the maintenance work, reduces the material loss and environmental pollution, improves the production efficiency and stability of the device, and has significant economic and environmental benefits.

[0057] According to some embodiments of the glass raw material mixing device, the auxiliary discharging assembly includes a second telescopic push rod transversely arranged on the top of the upper output shaft of the double-shaft motor 107 and a knocking block arranged at the output shaft end of the second telescopic push rod. By transversely arranging the second telescopic push rod on the top of the upper output shaft of the double-shaft motor 107, the movement of the knocking block can be effectively controlled, thereby assisting the smooth falling of the material and improving the discharging efficiency. The design of the knocking block helps to break the material bridge or accumulation that may be formed at the outlet of the mixing cylinder 101, reduces the plugging problem during the discharging process, and ensures the continuity and stability of the discharging. The auxiliary discharging assembly is integrated with the double-shaft motor 107, which can realize automatic operation, reduce manual intervention, and improve the production efficiency and operation safety. The arrangement of the second telescopic push rod and the knocking block makes the auxiliary discharging assembly compact in structure and saves space, and facilitates integration into the mixing device. Through the auxiliary discharging, it can ensure that the material uniformly enters the mixing cylinder 101, avoid uneven mixing caused by uneven discharging, and improve the quality and consistency of the final product.

[0058] In summary, the design of the auxiliary discharging assembly not only improves the discharging efficiency and mixing quality, but also simplifies the maintenance work, reduces the material waste and environmental pollution, improves the production efficiency and stability of the device, and has significant economic and environmental benefits.

[0059] According to some embodiments of the utility model, a glass raw material mixing device, the first telescopic push rod 108 is electric telescopic rod.Using electric telescopic rod as first telescopic push rod 108 can realize the automatic telescoping of stirring assembly, reduce manual operation, improve the convenience and safety of operation.Electric telescopic rod can quickly respond to control instruction, so that stirring assembly can be quickly adjusted to the appropriate position, thereby improving mixing efficiency.Electric telescopic rod can accurately control telescoping distance, so that the stirring depth is more accurate, which helps to achieve more uniform mixing effect.

[0060] In summary, the first telescopic push rod 108 is designed as an electric telescopic rod, which not only improves the automation degree and operation efficiency of the mixing device, but also reduces the maintenance cost, improves the stability and adaptability of the device, and also helps to save energy and reduce environmental pollution.

[0061] According to some embodiments of the utility model, a glass raw material mixing device, the side wall outer wall of the mixing tank 2 is provided with a drive motor for driving the drive gear 11 to rotate.By setting the drive motor on the side wall outer wall of the mixing tank 2, the drive gear 11 can be directly driven to rotate, thereby efficiently driving the stirrer or other mixing elements and improving the mixing efficiency.The drive motor is arranged on the side wall outer wall of the mixing tank 2, which can save space and make the structure of the whole mixing device more compact, facilitating installation and operation.The drive motor is located outside the mixing tank 2, which is convenient for daily inspection and maintenance, reduces the maintenance cost and difficulty.

[0062] In summary, the drive motor is arranged on the side wall outer wall of the mixing tank 2, which not only improves the mixing efficiency and device stability, but also facilitates maintenance and automation control, while reducing energy consumption and improving operation safety.

[0063] The above describes the embodiment in detail in combination with the drawings, but the present application is not limited to the above embodiment, and various changes can be made within the knowledge range of ordinary skilled in the art without departing from the purpose of the present application.

Claims

1. A glass raw material mixing device, characterized in that, include: At least one crushing device includes a mixing tank (2) with a feeding port (1) at its top, the feeding port (1) extending downward into the interior of the mixing tank (2); a partition (12) is provided below the feeding port (1), the partition (12) is slidably inserted into the interior of the mixing tank (2), one end of the partition (12) protruding from the side wall of the mixing tank (2), a drive gear (11) is provided on the outer wall of the side wall of the mixing tank (2), and a rack is provided on the partition (12) to mesh with the drive gear (11); a pair of meshing main crushing wheels (5) and driven crushing wheels (14) are installed below the partition (12); the main crushing wheel (5) is connected to a crushing motor (3) and driven to rotate by the crushing motor (3), the crushing motor (3) is mounted on the mixing tank (2); the driven crushing wheel (14) is connected to the mixing tank (2) through a driven shaft (15); A longitudinal mixing device is located below the crushing device, including a mixing cylinder (101) with a conical inner wall at the lower end, a dual-shaft motor (107) installed on the top of the mixing cylinder (101), a telescopic stirring assembly located at the bottom of the lower output shaft of the dual-shaft motor (107), a feeding auxiliary assembly located at the top of the upper output shaft of the dual-shaft motor (107), and a scraping assembly located on the output shaft of the dual-shaft motor (107) for scraping and cleaning the material adhering to the inner wall of the mixing cylinder (101). A transverse mixing device includes a mixing chamber (04) communicating with the mixing cylinder (101) and a transverse rotating shaft (02) arranged axially along the mixing chamber (04). The top of the mixing chamber (04) is provided with a connection port that connects to the bottom end of the mixing cylinder (101). Reinforcing plates (09) are fixedly connected to the inner sides of both ends of the mixing chamber (04). The two ends of the transverse rotating shaft (02) are rotatably connected to the two reinforcing plates (09) respectively. A transverse mixing blade (08) is sleeved on the outer side of the transverse rotating shaft (02). An annular hole is provided in the middle of the mixing chamber (04). A mounting base (10) is fixedly connected to the annular hole of the mixing chamber (04). A transverse mixing drive (16) is installed at the bottom of the mounting base (10). A helical gear assembly for connecting the transverse rotating shaft (02) and the transverse mixing drive (16) is provided in the mounting base (10). A discharge port is provided on the reinforcing plate (09).

2. The glass raw material mixing equipment according to claim 1, characterized in that: The telescopic mixing assembly includes a first telescopic push rod (108) vertically disposed at the bottom of the lower output shaft of the dual-shaft motor (107), a mixing motor (109) disposed at the lower end of the output shaft of the first telescopic push rod (108), a vertical rotating shaft (110) disposed at the lower end of the output shaft of the mixing motor (109), and a longitudinal mixing blade (111) disposed at the side end of the output shaft of the mixing motor (109).

3. The glass raw material mixing equipment according to claim 2, characterized in that: The scraping assembly consists of a crossbar (112) on the output shaft side of the dual-shaft motor (107) and a scraper plate (113) on the side of the crossbar (112) for scraping and cleaning the material adhering to the inner wall of the mixing cylinder (101).

4. The glass raw material mixing equipment according to claim 1, characterized in that: The feeding auxiliary component includes a second telescopic push rod horizontally disposed at the top of the upper output shaft of the dual-axis motor and a striking block disposed at the end of the output shaft of the second telescopic push rod.

5. A glass raw material mixing device according to claim 2, characterized in that: The first telescopic push rod (108) is an electric telescopic rod.

6. The glass raw material mixing equipment according to claim 1, characterized in that: The mixing tank (2) is provided with a drive motor for driving the drive gear (11) to rotate on the outer side wall.

Citation Information

Patent Citations

  • Glass raw material mixing equipment

    CN210522341U