Aluminum hydroxide plate feeder
Patent Information
- Application Number
- CN202521435845.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-10
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2035-07-10
AI Technical Summary
[0002]板式给料机是一种连续给料设备,其适用于短距离输送给料粒度160mm以下的块状物料,其主要包括机架,在机架的顶部设置有传动轴,传动轴上设置有板链,电机驱动一侧的传动轴进行转动,从而使得板链沿着传动轴进行转动,物料掉落至板链的上方,从而进行输送,其在氢氧化铝时,一些氢氧化铝物料可能会沿着板链上的间隙掉落,亦或是氢氧化铝在进行下料时,一些氢氧化铝物料会附着在板链上,当板链转动至下方时,这些物料也会随之掉落,如此掉落的物料,一般都落在机架底部的地面上,为了防止物料的浪费,一些板式给料机在其板链的下方设置有回收槽,但是物料下落时,会产生扬尘,这给物料的回收带来极大的不便
[0011]本实用新型的上述技术方案具有以下有益效果:本实用新型通过机架的底部设置回收室,并在回收室内设置有轴绞龙及软管排料机构,回收室与板链配合形成一个相对密闭的空间,如此,物料在掉落时,可以防止扬尘的出现,并且有轴绞龙与软管排料机构配合可以对回收的物料进行输送,从而对掉落的物料进行外排再使用,软管排料机构可以轻松的调整安装角度,方便其与其他设置进行相连,使得板式给料机物料回收设备具有更好的适配性。
Smart Images

Figure CN224783342U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of steel pipe processing equipment, specifically to an aluminum hydroxide plate feeder. Background Technology
[0002] A plate feeder is a continuous feeding device suitable for short-distance conveying of lumpy materials with a particle size of less than 160mm. It mainly consists of a frame with a drive shaft at the top. A plate chain is mounted on the drive shaft. A motor drives one side of the drive shaft to rotate, causing the plate chain to rotate along the drive shaft. Material falls onto the plate chain for conveying. When feeding aluminum hydroxide, some aluminum hydroxide material may fall through the gaps in the plate chain, or some aluminum hydroxide material may adhere to the plate chain during feeding. When the plate chain rotates downwards, this material will also fall. This fallen material usually lands on the ground at the bottom of the frame. To prevent material waste, some plate feeders have a recovery trough below the plate chain. However, the falling material generates dust, which greatly inconveniences material recovery. Utility Model Content
[0003] The purpose of this utility model is to address the shortcomings of the existing technology by providing an aluminum hydroxide plate feeder to solve the aforementioned technical problems.
[0004] The present invention adopts the following technical solution: an aluminum hydroxide plate feeder includes a frame, with drive shafts at both ends of the top of the frame, and a feeding plate chain between the two drive shafts. One drive shaft is driven to rotate by a motor. The lower end of the frame has a constricted structure, and the cavity at the constricted structure forms a recovery chamber. A shafted auger is arranged along the left-right direction at the bottom of the constricted structure of the recovery chamber. A first servo motor that drives the shafted auger to rotate is provided at one end of the frame. A discharge pipe is provided at the end of the frame away from the first servo motor. The discharge pipe passes through the recovery chamber along the front-back direction and is arranged perpendicular to the shafted auger. A feed notch is provided on the discharge pipe at the position corresponding to the end of the shafted auger's conveying. A flexible hose discharge mechanism is provided at one end of the discharge pipe.
[0005] Furthermore, the hose discharge mechanism includes a conveying hose fixedly connected to the discharge pipe with an open end. Both ends of the conveying hose are provided with openings. A shaftless auger extending into the conveying hose is provided inside the discharge pipe. A second servo motor that drives the shaftless auger to rotate is provided at the closed end of the discharge pipe.
[0006] Furthermore, the conveying hose is provided with a discharge box at the end away from the discharge pipe, and a bearing seat is provided on the side wall of the discharge box at the end away from the conveying hose. The end of the shaftless auger is connected to the bearing seat, and a discharge port is provided at the bottom of the discharge box.
[0007] Furthermore, the delivery hose is a transparent plastic hose.
[0008] Furthermore, a baffle plate frame is provided on the frame at a position corresponding to the top of the feed plate chain.
[0009] Furthermore, the frame is provided with vertical mounting rods on both sides of its top, and the two sides of the baffle plate frame are fixedly connected to the mounting rods.
[0010] Furthermore, the frame is provided with support legs on both sides at its lower end, and support pads are provided at the bottom of the support legs.
[0011] The above-mentioned technical solution of this utility model has the following beneficial effects: This utility model sets a recycling chamber at the bottom of the frame, and sets a shaft auger and a hose discharge mechanism in the recycling chamber. The recycling chamber and the plate chain cooperate to form a relatively closed space. In this way, dust can be prevented when the material falls. The shaft auger and the hose discharge mechanism can transport the recycled material, so that the fallen material can be discharged for reuse. The hose discharge mechanism can be easily adjusted at the installation angle, which is convenient for connecting with other settings, so that the plate feeder material recycling equipment has better adaptability. Attached Figure Description
[0012] The accompanying drawings, which are included to provide a further understanding of the present invention and constitute a part of this invention, illustrate exemplary embodiments of the present invention and, together with the description thereof, serve to explain the present invention and do not constitute an undue limitation thereof. In the drawings:
[0013] Figure 1 This is a schematic diagram of the main plan view structure of an embodiment of this utility model;
[0014] Figure 2 This is a side sectional view of an embodiment of the present invention.
[0015] Figure 3 This is a side cross-sectional view of the hose discharge mechanism in an embodiment of the present invention. Detailed Implementation
[0016] To better understand the above-mentioned objectives, features and advantages of this utility model, the present utility model will be further described in detail below with reference to the accompanying drawings and specific embodiments. It should be noted that, unless otherwise specified, the embodiments and features in the embodiments of this application can be combined with each other.
[0017] Many specific details are set forth in the following description in order to provide a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Therefore, the scope of protection of the present invention is not limited to the specific embodiments disclosed below.
[0018] like Figure 1-3 As shown, this utility model embodiment provides an aluminum hydroxide plate feeder, including a frame 1. The frame 1 has drive shafts 2 at both ends of its top, and a feeding plate chain 3 is arranged between the two drive shafts 2. One drive shaft 2 is driven to rotate by a motor. The lower end of the frame 1 has a constricted structure, and the cavity at the constricted structure of the frame 1 forms a recovery chamber 4. A shafted auger 5 is arranged along the left and right direction at the bottom of the constricted structure of the recovery chamber 4. A first servo motor 6 is arranged at one end of the frame 1 to drive the shafted auger 5 to rotate. A discharge pipe 7 is arranged on the frame 1 at the end away from the first servo motor 6. The discharge pipe 7 passes through the recovery chamber 4 in the front and back direction. The discharge pipe 7 is arranged perpendicular to the shafted auger 5. A feeding notch 8 is arranged on the discharge pipe 7 at the position corresponding to the conveying end of the shafted auger 5. A flexible hose discharge mechanism is arranged at one end of the discharge pipe 7.
[0019] The hose discharge mechanism includes a conveying hose 9 fixedly connected to the discharge pipe 7 with an open end. Both ends of the conveying hose 9 are provided with openings. A shaftless auger 10 extending into the conveying hose 9 is provided inside the discharge pipe 7. A second servo motor 11 that drives the shaftless auger 10 to rotate is provided at the closed end of the discharge pipe 7.
[0020] The conveying hose 9 is provided with a discharge box 12 at the end away from the discharge pipe 7. The discharge box 12 is provided with a bearing seat 13 on the side wall at the end away from the conveying hose 9. The end of the shaftless auger 10 is connected to the bearing seat 13. The bottom of the discharge box 12 is provided with a discharge port 14.
[0021] Preferably, the delivery hose 9 is a transparent plastic hose.
[0022] A baffle plate frame 15 is provided on the frame 1 at the top of the corresponding feed plate chain 3.
[0023] The frame 1 has vertical mounting rods 16 on both sides of its top, and the two sides of the baffle plate frame 15 are fixedly connected to the mounting rods 16.
[0024] The frame 1 has support legs 17 on both sides at its lower end, and support pads 18 are provided at the bottom of the support legs 17.
[0025] The working principle of this utility model is as follows: Aluminum hydroxide material falls along the top of the feeding plate chain 3. The feeding plate chain 3 rotates to transport the falling material. During the transport process, some material will fall below the feeding plate chain 3 and be collected by the recycling chamber 4 in the frame 1. As the amount of recycled material increases, the material in the recycling chamber 4 needs to be discharged. At this time, the first servo motor 6 starts and drives the shafted auger 5 to rotate. At this time, the material in the recycling chamber 4 moves to one side of the discharge pipe 7 through the shafted auger 5. The material enters the interior of the discharge pipe 7 through the feed notch 8. At the same time, the second servo motor 11 starts and drives the shaftless auger 10 to rotate in the discharge pipe 7 and the conveying hose 9. At this time, the material is pushed by the shaftless auger 10 to move to the outside of the conveying hose 9. Finally, the material is discharged through the discharge port 14 on the discharge box 12 at the end of the conveying hose 9. The discharge box 12 is connected to the aluminum oxide storage bin, thereby completing the material recycling operation.
[0026] The embodiments of this utility model are given for illustrative and descriptive purposes only, and are not intended to be exhaustive or to limit the utility model to the forms disclosed. Many modifications and variations will be apparent to those skilled in the art. The embodiments were chosen and described in order to better illustrate the principles and practical applications of this utility model, and to enable those skilled in the art to understand this utility model and design various embodiments with various modifications suitable for a particular purpose.
Claims
1. A plate feeder for aluminum hydroxide, characterized in that: The device includes a frame with drive shafts at both ends of its top. A feeding plate chain is provided between the two drive shafts. One drive shaft is driven to rotate by a motor. The lower end of the frame has a constricted structure, and the cavity at the constricted structure forms a recovery chamber. A shafted auger is provided at the bottom of the constricted structure of the recovery chamber along the left-right direction. A first servo motor that drives the shafted auger to rotate is provided at one end of the frame. A discharge pipe is provided at the end of the frame away from the first servo motor. The discharge pipe passes through the recovery chamber along the front-back direction and is arranged perpendicular to the shafted auger. A feed notch is provided on the discharge pipe at the position corresponding to the end of the shafted auger's conveying. A flexible hose discharge mechanism is provided at one end of the discharge pipe.
2. The aluminum hydroxide plate feeder according to claim 1, characterized in that: The hose discharge mechanism includes a conveying hose fixedly connected to the discharge pipe with an open end. Both ends of the conveying hose are provided with openings. A shaftless auger extending into the conveying hose is provided inside the discharge pipe. A second servo motor that drives the shaftless auger to rotate is provided at the closed end of the discharge pipe.
3. The aluminum hydroxide plate feeder according to claim 2, characterized in that: The conveying hose has a discharge box at the end away from the discharge pipe. The discharge box has a bearing seat on the side wall at the end away from the conveying hose. The end of the shaftless auger is connected to the bearing seat. The bottom of the discharge box has a discharge port.
4. The aluminum hydroxide plate feeder according to claim 3, characterized in that: The delivery hose is a transparent plastic hose.
5. The aluminum hydroxide plate feeder according to claim 1, characterized in that: A baffle plate frame is provided on the frame at the position corresponding to the top of the feed plate chain.
6. The aluminum hydroxide plate feeder according to claim 5, characterized in that: The frame has vertical mounting rods on both sides of its top, and the two sides of the baffle plate frame are fixedly connected to the mounting rods.
7. The aluminum hydroxide plate feeder according to claim 1, characterized in that: The frame has support legs on both sides at its lower end, and support pads are provided at the bottom of the support legs.