Intelligent storage conveying and suction material structure
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-24
- Publication Date
- 2026-08-11
AI Technical Summary
[0005]上述专利中的装置在对物料的进行吸料时,通过将吸料机一端的连接管插入存储装置中,实现自动上料的效果,但是在上料的过程中,当连接管出现折弯时,抽取的物料无法有效的传输到吸料机中,这样就会影响上料的效率,且连接管的一端直接插入在存储装置中,大量的物料可能会对连接管造成堵塞的情况,不能有效的保证上料的效果
[0015]1.本实用新型,在使用时,将第二外壳开设有出料口的一端放置到储存装置内部,将离心吸料机固定安装在料箱上,实现将需要存储的物料抽取到料箱中,进入料箱的物料通过第一电机带动蛟龙辊的转动,实现向前传输到第二外壳中,实现从第二外壳端部开设的出料口中排出;
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Figure CN224618728U_ABST
Abstract
Description
Technical Field
[0001] This utility model specifically relates to the field of storage and material suction technology, and more specifically to an intelligent storage, conveying, and suction structure. Background Technology
[0002] Intelligent storage, handling, and suction structures are intelligent equipment that integrates automated storage, material handling, and suction functions. They are widely used in industries such as intelligent manufacturing, logistics warehousing, electronics and semiconductors, and food and pharmaceuticals. Their core objective is to improve the efficiency, accuracy, and automation level of material handling through intelligent technology, thereby reducing labor costs and minimizing errors.
[0003] Currently, traditional materials are typically transported using conveyor belts for storage. However, conveyor belts are only suitable for transporting simple materials. When transporting high-quality materials, such as flour, conveyor belts can cause flour to fly around, compromising the quality and efficiency of the transport. With the development of conveying devices, various types of devices have emerged. However, existing conveyor devices usually need to extend into the storage device. When the material in the storage device floods the discharge port of the conveyor, a large amount of material will accumulate in the discharge port, failing to effectively distribute the material to the surrounding area. When too much material accumulates in the discharge port of the conveyor, it can even cause reverse transport, affecting work efficiency.
[0004] A search revealed that Chinese Patent Publication No. CN201821674335.1 discloses a material storage device for an injection molding machine; it includes an injection molding machine body and a feed inlet, the feed inlet being disposed on the injection molding machine body, and a suction device being disposed on the feed inlet, the suction device being connected to a storage device through a connecting pipe; the storage device includes a cover, a barrel body and a fixing seat disposed at the bottom end of the barrel body, the cover being fastened to the top end of the barrel body, and the fixing seat being welded to the barrel body;
[0005] The device in the aforementioned patent automatically feeds materials by inserting a connecting pipe at one end of the suction machine into a storage device. However, during the feeding process, if the connecting pipe bends, the extracted material cannot be effectively transferred to the suction machine, which affects the feeding efficiency. Furthermore, since one end of the connecting pipe is directly inserted into the storage device, a large amount of material may clog the connecting pipe, thus failing to effectively guarantee the feeding effect. Utility Model Content
[0006] The purpose of this invention is to provide an intelligent storage and conveying material suction structure. In this device, one end of the centrifugal suction feeder's inlet is connected to the material via a rigid pipe, while the other end is installed inside the material bin. The material entering the bin is then effectively conveyed by a auger roller. When the material reaches the outlet at the end of the second outer shell, it is effectively discharged. To prevent a large amount of material from accumulating at the outlet during storage, two motors are used to rotate the second outer shell. The spiral teeth on the surface of the second outer shell can effectively spread the accumulated material outwards, thereby effectively ensuring the efficiency of material storage and solving the problems mentioned in the background technology.
[0007] To achieve the above objectives, this utility model provides the following technical solution:
[0008] An intelligent storage, conveying, and suction structure includes a first outer shell; a material box is integrally formed on the top of one end of the first outer shell; a centrifugal suction machine is fixedly installed on the material box; the inlet of the centrifugal suction machine contacts the material through a flexible hose, and the other end is fixedly installed inside the material box; a auger roller is fitted inside the first outer shell; one end of the auger roller is fixedly installed to a first motor; the first motor is fixedly installed at the end of the first outer shell.
[0009] A second housing is movably mounted on the end of the first housing away from the first motor via a bearing; the surface of the second housing is integrally provided with spiral teeth; and a discharge port is opened at the end of the second housing away from the first housing.
[0010] As a further technical solution of this utility model, a third driven gear is fixedly installed at one end of the second outer shell near the first outer shell; the third driven gear meshes with the second driven gear.
[0011] As a further technical solution of this utility model, the second driven gear is fixedly installed at one end of the connecting rod; a first driven gear is also fixedly installed on the connecting rod; the end of the connecting rod away from the second driven gear is fixedly installed to the fixing frame through a bearing;
[0012] As a further technical solution of this utility model, a second motor is fixedly installed on the side of the fixing frame away from the second outer shell; the output shaft of the second motor passes through the fixing frame and is fixedly installed with a drive gear; the drive gear meshes with the first driven gear.
[0013] As a further technical solution of this utility model, the end of the auger roller away from the first motor extends into the interior of the second outer shell; the inner diameter of the second outer shell is the same as the inner diameter of the first outer shell.
[0014] Compared with the prior art, the beneficial effects of this utility model are:
[0015] 1. In use, the end of the second outer shell with the discharge port is placed inside the storage device, and the centrifugal suction machine is fixedly installed on the material box to extract the material to be stored into the material box. The material entering the material box is driven by the first motor to rotate the auger roller and is transferred forward to the second outer shell, and discharged from the discharge port at the end of the second outer shell.
[0016] 2. In this utility model, when the material inside the storage device is submerged in the discharge port during material storage, the second motor installed on the fixed frame drives the driving gear to mesh with the first driven gear. The first driven gear is also coaxially mounted with a second driven gear, so that the first driven gear and the second driven gear rotate synchronously. When the second driven gear rotates, it meshes with the third driven gear fixedly installed at the end of the second outer shell, thereby effectively realizing the rotation of the second outer shell along the end of the first outer shell through the bearing.
[0017] 3. In this utility model, when the second outer shell rotates, the discharge port at the other end and the spiral teeth on the surface rotate synchronously, thereby effectively changing the position of the discharge. The spiral teeth effectively diffuse the material accumulated at the discharge port to the surrounding area, thereby ensuring storage efficiency. Attached Figure Description
[0018] Figure 1 This is a three-dimensional structural diagram of the present invention.
[0019] Figure 2 This utility model Figure 1 Another perspective structural diagram.
[0020] Figure 3 This utility model Figure 1 The left view.
[0021] Figure 4 This utility model Figure 3 AA sectional view.
[0022] Figure 5 This utility model Figure 1 Another perspective on the breakdown diagram.
[0023] Figure 6 This utility model Figure 2 Enlarged view of the local structure at point B in the middle.
[0024] Figure 7 This utility model Figure 4 Enlarged view of the local structure at point C.
[0025] In the diagram: 1-Centrifugal feeder, 2-First outer shell, 3-First motor, 4-Bag, 5-Spiral gear, 6-Second outer shell, 7-Discharge port, 8-Dragon roller, 9-Fixed frame, 10-Second motor, 11-Third driven gear, 12-Second driven gear, 13-Connecting rod, 14-First driven gear, 15-Drive gear, 16-Bearing. Detailed Implementation
[0026] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0027] Please see Figure 1-7 In this embodiment of the present invention, an intelligent storage and conveying material suction structure includes a first outer shell 2; a material box 4 is integrally formed on the top of one end of the first outer shell 2; a centrifugal suction machine 1 is fixedly installed on the material box 4; the inlet of the centrifugal suction machine 1 contacts the material through a flexible hose, and the other end is fixedly installed inside the material box 4; a auger roller 8 is installed inside the first outer shell 2; one end of the auger roller 8 is fixedly installed with a first motor 3; the first motor 3 is fixedly installed at the end of the first outer shell 2; the first motor 3 drives the auger roller 8 to rotate, thereby transferring the material in the material box 4 to the inside of a second outer shell 6, and then transferring the material to a storage device through the outlet 7 opened at the other end of the second outer shell;
[0028] The first outer shell 2, away from the first motor 3, is movably mounted with a second outer shell 6 via a bearing 16; the surface of the second outer shell 6 is integrally provided with a spiral tooth 5; the second outer shell 6, away from the first outer shell 2, has a discharge port 7; when the second outer shell 6 rotates, the spiral tooth 5 and the discharge port 7 rotate synchronously, which effectively ensures the material discharge efficiency of the discharge port 7 and avoids a large amount of material accumulating at the discharge port, causing material blockage;
[0029] By adopting the above technical solution, when in use, the end of the second outer shell 6 with the discharge port 7 is placed inside the storage device, and the centrifugal suction machine 1 is fixedly installed on the material box 4, so as to extract the material to be stored into the material box 4. The material entering the material box 4 is driven by the first motor 3 to rotate the auger roller 8, so as to be transported forward to the second outer shell 6 and discharged from the discharge port 7 at the end of the second outer shell 6.
[0030] In this embodiment, a third driven gear 11 is fixedly installed at one end of the second outer shell 6 near the first outer shell 2; the third driven gear 11 is meshed with the second driven gear 12.
[0031] In this embodiment, the second driven gear 12 is fixedly installed at one end of the connecting rod 13; a first driven gear 14 is also fixedly installed on the connecting rod 13; the end of the connecting rod 13 away from the second driven gear 12 is fixedly installed to the fixing frame 9 through a bearing; the second driven gear 12 and the first driven gear 14 are coaxially arranged, so that when transmission is realized, the second motor 10 can effectively drive the second housing to rotate effectively;
[0032] By adopting the above technical solution, when the material inside the storage device is submerged in the discharge port 7 during material storage, the second motor 10 installed on the fixed frame 9 drives the drive gear 15 to mesh with the first driven gear 14. The first driven gear 14 is also coaxially mounted with a second driven gear 12, so that the first driven gear 14 and the second driven gear 12 rotate synchronously. When the second driven gear 12 rotates, it meshes with the third driven gear 11 fixedly installed at the end of the second outer shell 6, thereby effectively realizing the rotation of the second outer shell 6 along the end of the first outer shell 2 through the bearing 16.
[0033] Furthermore, a second motor 10 is fixedly installed on the side of the fixing frame 9 away from the second housing 6; the output shaft of the second motor 10 passes through the fixing frame 9 and is fixedly installed with a drive gear 15; the drive gear 15 is meshed with the first driven gear 14.
[0034] In this embodiment, the end of the auger roller 8 away from the first motor 3 extends into the interior of the second outer shell 6; the inner diameter of the second outer shell 6 is the same as the inner diameter of the first outer shell 2; the inner diameters of the two shells are the same, so that when the material is transferred, the auger roller 8 can effectively transfer the material from the first outer shell 2 to the second outer shell 6, which also effectively avoids the situation where the material is left inside the shell during the material transfer process.
[0035] By adopting the above technical solution, when the second outer shell 6 rotates, the discharge port 7 at the other end and the spiral teeth 5 on the surface rotate synchronously, thereby effectively changing the position during discharge. The spiral teeth 5 effectively diffuse the material accumulated at the discharge port 7 to the surrounding area, thereby ensuring storage efficiency.
[0036] The working principle of this utility model is as follows: When in use, the end of the second outer shell 6 with the discharge port 7 is placed inside the storage device, and the centrifugal suction machine 1 is fixedly installed on the material box 4 to extract the material to be stored into the material box 4. The material entering the material box 4 is driven by the first motor 3 to rotate the auger roller 8 and is transferred forward to the second outer shell 6, and discharged from the discharge port 7 at the end of the second outer shell 6.
[0037] During material storage, when the material inside the storage device is submerged in the discharge port 7, the second motor 10 installed on the fixed frame 9 drives the drive gear 15 to mesh with the first driven gear 14. The first driven gear 14 is also coaxially mounted with a second driven gear 12, so that the first driven gear 14 and the second driven gear 12 rotate synchronously. When the second driven gear 12 rotates, it meshes with the third driven gear 11 fixedly installed at the end of the second outer shell 6, thereby effectively realizing the rotation of the second outer shell 6 along the end of the first outer shell 2 through the bearing 16.
[0038] When the second outer shell 6 rotates, the discharge port 7 at the other end and the spiral teeth 5 on the surface rotate synchronously, thereby effectively changing the position of the discharge. The spiral teeth 5 effectively diffuse the material accumulated at the discharge port 7 to the surrounding area, thereby ensuring storage efficiency.
[0039] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
[0040] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. An intelligent storage conveying and suction material structure, characterized in that: The system includes a first outer shell (2); a material box (4) is integrally formed on the top of one end of the first outer shell (2); a centrifugal suction machine (1) is fixedly installed on the material box (4); the inlet of the centrifugal suction machine (1) contacts the material through a hose, and the other end is fixedly installed inside the material box (4); a auger roller (8) is installed inside the first outer shell (2); one end of the auger roller (8) is fixedly installed with a first motor (3); the first motor (3) is fixedly installed at the end of the first outer shell (2); The first outer shell (2) is movably mounted with a second outer shell (6) at the end away from the first motor (3) via a bearing (16); the surface of the second outer shell (6) is integrally provided with spiral teeth (5); the end of the second outer shell (6) away from the first outer shell (2) is provided with a discharge port (7). 2.The intelligent storage and conveying suction material structure according to claim 1, characterized in that: The second housing (6) is fixedly mounted with a third driven gear (11) at one end near the first housing (2); the third driven gear (11) meshes with the second driven gear (12). 3.The intelligent storage and conveying suction material structure according to claim 2, characterized in that: The second driven gear (12) is fixedly installed at one end of the connecting rod (13); the first driven gear (14) is also fixedly installed on the connecting rod (13); the end of the connecting rod (13) away from the second driven gear (12) is fixedly installed to the fixing frame (9) through a bearing.
4. The intelligent storage and conveying suction material structure according to claim 3, characterized in that: The second motor (10) is fixedly installed on the side of the fixed frame (9) away from the second outer shell (6); the output shaft of the second motor (10) passes through the fixed frame (9) and is fixedly installed with a drive gear (15); the drive gear (15) meshes with the first driven gear (14). 5.The intelligent storage and conveying suction material structure according to claim 1, characterized in that: The end of the auger roller (8) away from the first motor (3) extends into the interior of the second outer shell (6); the inner diameter of the second outer shell (6) is the same as the inner diameter of the first outer shell (2).
Citation Information
Patent Citations
Material storage device for injection molding machine
CN209063424U