Silicon dioxide powder conveying equipment

By combining the design of the heating furnace tube and the conveying mechanism, the problems of low conveying efficiency and powder leakage of silica powder are solved, achieving a high-efficiency and reliable conveying effect.

CN223826788UActive Publication Date: 2026-01-23ZHONGCHEN NEW MATERIALS (HUBEI) CO LTD
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Patent Information

Application Number
CN202520416608.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-11
Publication Date
2026-01-23
Estimated Expiration
2035-03-11

AI Technical Summary

Technical Problem

Existing silica powder conveying equipment is inefficient and prone to powder leakage.

Method used

The design combines heating furnace tubes and conveying mechanisms, utilizing the rotation of the heating furnace tubes and the pushing components of the conveying mechanism to achieve efficient conveying of silica powder, avoiding accumulation and powder leakage.

Benefits of technology

This technology enables efficient conveying of silica powder, avoids powder leakage, and improves conveying efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to silicon dioxide powder conveying equipment which comprises a heating furnace tube, a conveying mechanism and a pushing assembly, and the heating furnace tube is horizontally arranged and can horizontally rotate around the axial direction of the heating furnace tube; a feeding port is formed in the feeding end of the heating furnace tube, and a discharging port is formed in the discharging end of the heating furnace tube; the conveying mechanism is mounted at the feeding hole, and one end of the conveying mechanism extends into the heating furnace tube; the pushing assembly is fixedly installed at one end of the conveying mechanism. The silicon dioxide powder conveying device has the advantages of being simple in structure, reasonable in design and capable of achieving efficient conveying of silicon dioxide powder and avoiding the situation that the silicon dioxide powder leaks.
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Description

TECHNICAL FIELD

[0001] The utility model relates to silica powder processing equipment technical field, concretely relates to a silica powder conveying equipment. BACKGROUND

[0002] Silica powder is also called silica stone powder or quartz powder, is a colorless, odorless powder substance, chemical formula is SiO2, is the oxide of silicon element, belongs to common inorganic compound. It has high chemical purity and mechanical strength, and is very durable. Silica powder is widely used in various industries, mainly because of its stability, high temperature resistance and corrosion resistance.

[0003] The silica powder needs to be conveyed forward in the processing process, but the conveying efficiency of the current conveying equipment is low, and the powder leakage is easy to occur. UTILITY MODEL CONTENT

[0004] The utility model provides a silica powder conveying equipment, aims at solving the problem in prior art.

[0005] The utility model solves the technical scheme of the above technical problem:

[0006] A silica powder conveying equipment, including heating furnace pipe, conveying mechanism and push assembly, the heating furnace pipe is horizontally arranged, and it can rotate horizontally around its own axis, the feeding end of the heating furnace pipe is equipped with feeding port, and the discharging end of the heating furnace pipe is equipped with discharging port, the conveying mechanism is installed at the feeding port, and one end extends into the heating furnace pipe, the push assembly is fixedly installed on one end of the conveying mechanism.

[0007] The utility model has the advantages of simple structure, reasonable design, can realize the efficient conveying of silica powder, and can avoid the powder leakage of silica powder.

[0008] The utility model has the advantages of simple structure, reasonable design, can realize the efficient conveying of silica powder, and can avoid the powder leakage of silica powder.

[0009] On the basis of the above technical scheme, the utility model can also be improved as follows.

[0010] Further, the conveying mechanism includes a conveying cylinder and a conveyor, the conveying cylinder is horizontally fixedly installed at the feeding port, and one end extends into the heating furnace pipe, the push assembly is installed at one end of the conveying cylinder, and the conveyor is installed in the conveying cylinder.

[0011] The beneficial effect of the above further scheme is that in the processing, the conveyor is used to forward the silica powder in the conveying cylinder to the heating furnace tube, so as to realize efficient conveying of the silica powder.

[0012] Further, the conveyor comprises an auger and a conveying motor, the auger is horizontally installed in the conveying cylinder and can rotate horizontally around its own axis, and the conveying motor is fixedly installed at the other end of the conveying cylinder, and the driving end of the conveying motor extends horizontally and is fixedly connected with one end of the auger.

[0013] The beneficial effect of the above further scheme is that in the processing, the conveyor is used to forward the silica powder in the conveying cylinder to the heating furnace tube, so as to realize efficient conveying of the silica powder.

[0014] Further, the pushing assembly comprises a plurality of inclined baffles, and the plurality of inclined baffles are fixedly installed at one end of the conveying cylinder and are uniformly spaced along the circumference of the conveying cylinder.

[0015] The beneficial effect of the above further scheme is that the structure is simple and reasonable in design, and in the process of rotating the heating furnace tube, the relative movement between the heating furnace tube and the conveying cylinder is used to push the silica powder in the heating furnace tube by the plurality of inclined baffles, so as to realize conveying of the silica powder.

[0016] Further, the cross sections of the plurality of inclined baffles are triangular structures respectively.

[0017] The beneficial effect of the above further scheme is that the structure is simple, the shape of the inclined baffles is reasonable in design, and the efficiency of conveying the silica powder is ensured.

[0018] Further, the inclined directions of the adjacent two inclined baffles are opposite.

[0019] The beneficial effect of the above further scheme is that the structure is simple, the plurality of inclined baffles are reasonably distributed, and the efficiency of conveying the silica powder is further ensured.

[0020] Further, the heating furnace tube is a cylindrical structure.

[0021] The beneficial effect of the above further scheme is that the structure is simple and reasonable in design, the shape of the heating furnace tube is reasonable in design, and the efficiency of conveying the silica powder is ensured.

[0022] Further, the discharge end of the heating furnace tube is a conical structure.

[0023] The beneficial effect of the above further scheme is that the structure is simple, the shape of the discharge end of the heating furnace tube is reasonable in design, and the discharge is facilitated.

[0024] Further, the driving assembly is connected with the heating furnace pipe for driving the heating furnace pipe to rotate.

[0025] The beneficial effect of the above further scheme is simple structure and reasonable design, the driving assembly is used for driving the heating furnace pipe to rotate, and the conveying of the silicon dioxide powder is realized.

[0026] Further, the driving assembly comprises a rotary motor, a gear and a gear ring, the gear ring is coaxially fixedly sleeved on the heating furnace pipe, the rotary motor is fixedly arranged, and a driving end of the rotary motor extends along the axial direction of the heating furnace pipe, and the gear is coaxially fixedly sleeved on the driving end of the rotary motor and is engaged with the gear ring.

[0027] The beneficial effect of the above further scheme is simple structure and reasonable design, the rotary motor is used for driving the gear to rotate, the gear drives the heating furnace pipe to rotate through the engagement between the gear and the gear ring, and the conveying of the silicon dioxide powder is realized. BRIEF DESCRIPTION OF DRAWINGS

[0028] Figure 1 It is a structural schematic view of the utility model.

[0029] In the drawings, the component list represented by each sign is as follows:

[0030] 1, heating furnace pipe; 2, conveying cylinder; 3, auger; 4, conveying motor; 5, inclined baffle. DETAILED DESCRIPTION

[0031] It should be noted that the embodiments in the utility model and the features in the embodiments can be combined with each other without conflict.

[0032] In the description of the utility model, it should be understood that the orientation or position relationship indicated by the terms "center", "longitudinal", "transverse", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like is based on the orientation or position relationship shown in the drawings, and is only for the convenience of describing the utility model and simplifying the description, and therefore cannot be understood as indicating or implying that the indicated device or element must have a particular orientation, a particular orientation and operation, and therefore cannot be understood as a limitation on the utility model. In addition, the terms "first", "second" and the like are only for the purpose of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first", "second" and the like can explicitly or implicitly include one or more features. In the description of the utility model, unless otherwise specified, the meaning of "multiple" is two or more.

[0033] In the description of the utility model, it is necessary to explain, unless another explicit provision and limitation, term "installation", "link", "connection" should do broad sense understanding, for example, can be fixed connection, also can be detachable connection, or integrally connected;Can be mechanical connection, also can be electrical connection;Can be directly connected, also can be indirectly connected through the intermediate medium, can be two elements inside the communication.For ordinary skilled in the art, the above-mentioned terms can be understood by the specific meaning in the utility model through specific circumstances.

[0034] The utility model will be described in detail below with reference to the drawings and in combination with embodiments.

[0035] Embodiment 1

[0036] As Figure 1 Indicated, the utility model provides a kind of silica powder conveying equipment, including heating furnace tube 1, conveying mechanism and push assembly, the heating furnace tube 1 is horizontally arranged, it can rotate around its axial level;The feeding end of the heating furnace tube 1 is equipped with feed inlet, and the discharging end of the heating furnace tube 1 is equipped with discharge port;The conveying mechanism is installed at the feed inlet, and one end extends into the heating furnace tube 1;The push assembly is fixedly installed on one end of the conveying mechanism.

[0037] In processing, heating furnace tube 1 rotates, while conveying mechanism sends silica powder into heating furnace tube 1, realizes the conveying of silica powder;In this process, using the relative motion between heating furnace tube 1 and conveying mechanism, so that push assembly pushes silica powder forward, avoids that silica powder is accumulated in heating furnace tube 1, realizes the efficient conveying of silica powder.

[0038] The embodiment is simple in structure, reasonable in design, can realize the efficient conveying of silica powder, and can avoid the powder leakage of silica powder.

[0039] Embodiment 2

[0040] In the embodiment based on embodiment 1, the conveying mechanism includes conveying cylinder 2 and conveyor, the conveying cylinder 2 is horizontally fixedly installed at the feed inlet, and one end extends into the heating furnace tube 1;The push assembly is installed at one end of the conveying cylinder 2, and the conveyor is installed in the conveying cylinder 2.

[0041] In processing, using conveyor to forwardly convey silica powder in conveying cylinder 2 into heating furnace tube 1, realizes the efficient conveying of silica powder.

[0042] Embodiment 3

[0043] In this embodiment, on the basis of embodiment 2, the conveyor comprises an auger 3 and a conveying motor 4, the auger 3 is horizontally installed in the conveying cylinder 2 and can rotate horizontally around its own axis, and the conveying motor 4 is fixedly installed at the other end of the conveying cylinder 2, and the driving end of the conveying motor 4 extends horizontally and is fixedly connected with one end of the auger 3.

[0044] In the processing process, the auger 3 is driven to rotate by the conveying motor 4 to convey the silica powder in the conveying cylinder 2 to the heating furnace pipe 1, thereby realizing efficient conveying of the silica powder.

[0045] Embodiment 4

[0046] In this embodiment, on the basis of any one of embodiments 2 to 3, the pushing assembly comprises a plurality of inclined baffles 5, and the plurality of inclined baffles 5 are fixedly installed at one end of the conveying cylinder 2 in a uniform and spaced manner along the circumference of the conveying cylinder 2.

[0047] This scheme has a simple structure and reasonable design, and in the process of rotating the heating furnace pipe 1, the relative movement between the heating furnace pipe 1 and the conveying cylinder 2 makes the plurality of inclined baffles 5 push the silica powder to move in the heating furnace pipe 1, thereby realizing conveying of the silica powder.

[0048] Embodiment 5

[0049] In this embodiment, on the basis of embodiment 4, the cross sections of the plurality of inclined baffles 5 are triangular structures respectively.

[0050] This scheme has a simple structure and reasonable design of the shape of the inclined baffles 5, which ensures the efficiency of conveying the silica powder.

[0051] Embodiment 6

[0052] In this embodiment, on the basis of any one of embodiments 4 to 5, the directions of inclination of the two adjacent inclined baffles 5 are opposite.

[0053] This scheme has a simple structure and reasonable distribution of the plurality of inclined baffles 5, which further ensures the efficiency of conveying the silica powder.

[0054] Embodiment 7

[0055] In this embodiment, on the basis of the above embodiments, the heating furnace pipe 1 has a cylindrical structure.

[0056] This scheme has a simple structure and reasonable design, and the shape of the heating furnace pipe 1 is reasonably designed, which ensures the efficiency of conveying the silica powder.

[0057] Embodiment 8

[0058] In this embodiment, on the basis of the above embodiments, the discharge end of the heating furnace pipe 1 has a conical structure.

[0059] The scheme has simple structure, and the shape of the discharge end of the heating furnace pipe 1 is reasonably designed, so that the discharge is facilitated.

[0060] Embodiment 9

[0061] On the basis of the above-mentioned embodiments, the embodiment further comprises a driving assembly connected with the heating furnace pipe 1 and used for driving the heating furnace pipe 1 to rotate.

[0062] The scheme has simple structure and reasonable design, and the driving assembly is used to drive the heating furnace pipe 1 to rotate, so that the silica powder is conveyed.

[0063] Embodiment 10

[0064] On the basis of the embodiment 9, in the embodiment, the driving assembly comprises a rotary motor, a gear and a gear ring, the gear ring is coaxially fixedly sleeved on the heating furnace pipe 1, the rotary motor is fixedly arranged, and a driving end of the rotary motor extends along an axial direction of the heating furnace pipe 1, and the gear is coaxially fixedly sleeved on the driving end of the rotary motor and is engaged with the gear ring.

[0065] The scheme has simple structure and reasonable design, and the rotary motor is used to drive the gear to rotate, and the gear drives the heating furnace pipe to rotate by means of the engagement between the gear and the gear ring, so that the silica powder is conveyed.

[0066] The working principle of the utility model is as follows:

[0067] The rotary motor is used to drive the gear to rotate, and the gear drives the heating furnace pipe to rotate by means of the engagement between the gear and the gear ring.

[0068] Meanwhile, the conveying motor 4 is used to drive the auger 3 to rotate, and cooperates with the plurality of inclined baffles 5, so that the silica powder in the conveying cylinder 2 is conveyed forward into the heating furnace pipe 1, and the silica powder is efficiently conveyed.

[0069] It should be noted that all the electronic components involved in the utility model adopt the prior art, and the above-mentioned components are electrically connected with the controller, and the control circuit between the controller and the components is the prior art.

[0070] It is apparent to a person skilled in the art that the present application is not restricted to the details of the foregoing exemplary embodiments, but that the present application can be implemented in other embodiments without departing from the spirit or essential characteristics of the present application. Therefore, the embodiments should be considered in a descriptive sense only and not for purposes of limitation. The present application is defined by the appended claims rather than by the foregoing description, and all changes and modifications that come within the meaning and range of equivalents of the claims are to be embraced within the scope of the present application. Any reference signs in the claims should not be construed as limiting the claims to the figures in which the reference signs are used.

[0071] In addition, it should be understood that, although the present specification is described in terms of embodiments, not every embodiment contains only one independent technical solution, and the description of the specification is only for the sake of clarity, and those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can be combined appropriately to form other embodiments that those skilled in the art can understand.

[0072] The above is only the preferred embodiment of the present application, and is not used to limit the present application, and any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A silica powder conveying device, characterized in that: The device includes a heating furnace tube (1), a conveying mechanism, and a pushing assembly. The heating furnace tube (1) is horizontally arranged and can rotate horizontally around its own axis. The heating furnace tube (1) has a feed inlet at its feed end and a discharge outlet at its discharge end. The conveying mechanism is installed at the feed inlet, with one end extending into the heating furnace tube (1). The pushing assembly is fixedly installed on one end of the conveying mechanism.

2. The silica powder conveying equipment according to claim 1, characterized in that: The conveying mechanism includes a conveying cylinder (2) and a conveyor. The conveying cylinder (2) is horizontally fixed at the feed inlet, with one end extending into the heating furnace tube (1). The pushing component is installed at one end of the conveying cylinder (2), and the conveyor is installed inside the conveying cylinder (2).

3. The silica powder conveying equipment according to claim 2, characterized in that: The conveyor includes an auger (3) and a conveyor motor (4). The auger (3) is horizontally installed inside the conveyor cylinder (2) and can rotate horizontally around its own axis. The conveyor motor (4) is fixedly installed at the other end of the conveyor cylinder (2), and its drive end extends horizontally and is fixedly connected to one end of the auger (3).

4. The silica powder conveying equipment according to claim 2, characterized in that: The pushing component includes multiple inclined baffles (5), which are fixedly installed at a uniform interval along the circumference of the conveying cylinder (2) at one end of the conveying cylinder (2).

5. The silica powder conveying device according to claim 4, characterized in that: The cross-sections of the multiple inclined baffles (5) are triangular in shape.

6. The silica powder conveying device according to claim 4, characterized in that: The two adjacent inclined baffles (5) are tilted in opposite directions.

7. The silica powder conveying device according to any one of claims 1-6, characterized in that: The heating furnace tube (1) has a cylindrical structure.

8. The silica powder conveying device according to any one of claims 1-6, characterized in that: The discharge end of the heating furnace tube (1) has a conical structure.

9. The silica powder conveying device according to any one of claims 1-6, characterized in that: It also includes a drive assembly connected to the heating furnace tube (1) for driving the heating furnace tube (1) to rotate.

10. The silica powder conveying device according to claim 9, characterized in that: The drive assembly includes a rotary motor, a gear, and a gear ring. The gear ring is coaxially and fixedly sleeved on the heating furnace tube (1). The rotary motor is fixedly installed, and its drive end extends along the axial direction of the heating furnace tube (1). The gear is coaxially and fixedly sleeved on the drive end of the rotary motor and meshes with the gear ring.