charging station
Patent Information
- Application Number
- CN202522003411.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-18
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2035-09-18
AI Technical Summary
[0006]本实用新型的目的是提供一种投料站,以解决在投料过程中出现扬尘的技术问题
[0017]本实用新型的有益效果是,本投料站在投料时,滤筒向上移动,挡板处于水平状态,便于投料;投完料后,滤筒向下移动,挡板呈竖直状态,便于阻挡扬尘,减少扬尘污染。
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Figure CN224783343U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of material feeding technology, specifically relating to a feeding station. Background Technology
[0002] The feeding station mainly involves manually opening bags and pouring materials into the equipment. The feeding station is widely used in industries such as food, new energy lithium batteries, and chemicals.
[0003] Currently, during the use of feeding stations, manual unpacking of materials generates a large amount of dust, causing pollution. A dust collection system is typically installed above the feeding station; if the distance between the dust collection system and the feeding port is too small, it will affect material feeding; if the distance is too large, it will affect the dust collection effect.
[0004] Therefore, how to solve the technical problem of dust generation during the feeding process is a problem that urgently needs to be solved by those skilled in the art.
[0005] It should be noted that the information disclosed in this background section is only for understanding the background technology of the present application concept, and therefore, the above description is not considered to constitute prior art information. Utility Model Content
[0006] The purpose of this invention is to provide a feeding station to solve the technical problem of dust generation during the feeding process.
[0007] To solve the above-mentioned technical problems, this utility model provides a feeding station, including a feeding platform, which includes a feeding table and a filtering mechanism disposed within the feeding table; The filtration mechanism includes a filter cylinder slidably disposed within a feeding platform and a baffle hinged to the filter cylinder. The filtration mechanism is configured such that when the filter cylinder moves upward, the baffle gradually unfolds horizontally along the outer wall of the filter cylinder; and when the filter cylinder moves downward, the baffle gradually becomes vertical along the outer wall of the filter cylinder, and the baffle is higher than the feeding platform.
[0008] Furthermore, the feeding platform extends downwards with a scraper, and the filter cylinder has filter holes on its surrounding side walls and bottom. When the filter cartridge moves up or down, the scraper is configured to scrape off the material inside the filter holes.
[0009] Furthermore, the scraper is U-shaped, and the opening of the scraper faces the feeding port.
[0010] Furthermore, a fixing plate is provided on the side of the filter cylinder facing the feeding port, the baffle is hinged to the fixing plate, and the feeding platform is provided with a rounded corner at the end near the fixing plate.
[0011] Furthermore, the bottom of the filter cartridge is connected to the piston rod of the cylinder via a transmission connection.
[0012] Furthermore, the scraper is provided with a stepped surface, and the filter cartridge is provided with a limiting plate around its perimeter that is adapted to the stepped surface.
[0013] On another front, this utility model also provides a feeding station, including... A feeding platform, which includes a feeding table and a filtration mechanism installed inside the feeding table; A dust removal mechanism, located on the feeding platform, is configured to adsorb dust. A discharge mechanism, located below the feeding platform, is configured to discharge the fed powder; wherein, The filtration mechanism is configured such that when the filter cartridge moves upward, the baffle gradually unfolds horizontally along the outer wall of the filter cartridge; and when the filter cartridge moves downward, the baffle gradually becomes vertical along the outer wall of the filter cartridge, and the baffle is higher than the feeding platform.
[0014] Furthermore, the feeding platform extends downwards with a scraper, and the filter cylinder has filter holes on its surrounding side walls and bottom. When the filter cartridge moves up or down, the scraper is configured to scrape off the material inside the filter holes.
[0015] Furthermore, the scraper is U-shaped, and the opening of the scraper faces the feeding port; A fixing plate is provided on the side of the filter cylinder facing the feed port, and the baffle is hinged to the fixing plate; The feeding platform has a rounded corner at the end near the fixed plate.
[0016] Furthermore, the dust removal mechanism includes a dust removal port connected to a negative pressure source, and the dust removal port is located above the feeding platform; The discharge mechanism includes a discharge port, which is located below the feeding platform.
[0017] The beneficial effects of this utility model are that when feeding materials, the filter cylinder moves upward and the baffle is in a horizontal state, which facilitates feeding; after feeding, the filter cylinder moves downward and the baffle is in a vertical state, which facilitates blocking dust and reducing dust pollution.
[0018] Other features and advantages of this invention will be set forth in the description which follows, and will be apparent in part from the description, or may be learned by practicing the invention.
[0019] To make the above-mentioned objectives, features and advantages of this utility model more apparent and understandable, preferred embodiments are described below in detail with reference to the accompanying drawings. Attached Figure Description
[0020] To more clearly illustrate the specific embodiments of this utility model or the technical solutions in the prior art, the drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.
[0021] Figure 1 This is a first schematic diagram of the overall structure of this utility model; Figure 2 This is a second schematic diagram of the overall structure of this utility model; Figure 3 This is a first schematic diagram of the filter cartridge structure of this utility model; Figure 4 This is a second schematic diagram of the filter cartridge structure of this utility model.
[0022] In the picture: Feeding platform; 110. Feeding table; 111. Scraper; 112. Stepped surface; 120. Filtration mechanism; 121. Filter cartridge; 122. Baffle; 123. Fixing plate; 124. Rounded corner; 125. Limiting plate; Dust removal mechanism; 210. Dust removal port; 300. Discharge mechanism; 310. Discharge port. Detailed Implementation
[0023] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.
[0024] In this document, when it is mentioned that a first component is located on a second component, this can mean that the first component can be directly formed on the second component, or that a third component can be inserted between the first and second components. Furthermore, in the accompanying drawings, the thickness of the components may be exaggerated or reduced for the purpose of effectively describing the technical content.
[0025] In this document, when an element or layer is referred to as “located,” “joined to,” “connected to,” “attached to,” or “coupled to” another element or layer, it may be directly located, joined, connected, attached to, or coupled to the other element or layer, or there may be intermediate elements or layers present. Conversely, when an element is referred to as “directly on another element or layer,” “directly joined to,” “directly connected to,” “directly attached to,” or “directly coupled to” another element or layer, there may be no intermediate elements or layers present. Other terms used to describe relationships between elements should be interpreted in a similar manner (e.g., “between” versus “directly between,” “adjacent” versus “directly adjacent,” etc.). As used herein, the term “and / or” includes any and all combinations of one or more of the related listed items.
[0026] In this document, exemplary embodiments of the present disclosure will be described in more detail with reference to the accompanying drawings. As used herein, expressions such as “at least one of…” modify the entire list of elements when following a list of elements, rather than individual elements in the list. For example, the expression “at least one of a, b, and c” should be understood to include only a, only b, only c, both a and b, both a and c, both b and c, or all of a, b, and c.
[0027] The terminology used herein is for the purpose of describing specific exemplary configurations only and is not intended to be limiting. As used herein, the singular articles “a,” “an,” and “the” may also be intended to include plural forms unless otherwise clearly stated herein. The terms “comprising,” “including,” and “having” are inclusive and thus specify the presence of features, steps, operations, elements, and / or components, but do not preclude the presence or addition of one or more other features, steps, operations, elements, components, and / or combinations thereof. The method steps, processes, and operations described herein should not be construed as requiring them to be performed in the specific order discussed or shown, unless specifically identified as such. Additional or alternative steps may be employed.
[0028] As used herein, the phrases “in one embodiment,” “according to one embodiment,” “in some embodiments,” etc., generally refer to the fact that a particular feature, structure, or characteristic following the phrase can be included in at least one embodiment of this disclosure. Therefore, a particular feature, structure, or characteristic can be included in more than one embodiment of this disclosure, such that these phrases do not necessarily refer to the same embodiment. As used herein, the terms “example,” “exemplary,” etc., are used to “serve as an example, instance, or illustration.” Any implementation, aspect, or design described herein as “example” or “exemplary” is not necessarily to be construed as preferred or superior to other implementations, aspects, or designs. Rather, the use of the terms “example,” “exemplary,” etc., is intended to present concepts in a specific manner.
[0029] Research has found that, currently, during the use of feeding stations, manually opening bags and feeding materials into the stations generates a large amount of dust, causing pollution.
[0030] Based on the above research, this disclosure provides a feeding station in which the filter cartridge moves upward and the baffle is in a horizontal state during feeding, which facilitates feeding; after feeding, the filter cartridge moves downward and the baffle is in a vertical state, which facilitates blocking dust and reducing dust pollution.
[0031] The shortcomings of the above solutions are the result of the inventor's practical experience and careful research. Therefore, the discovery process of the above problems and the solutions proposed in this disclosure should be considered as the inventor's contribution to this disclosure.
[0032] It should be noted that similar labels and letters in the following figures indicate similar items. Therefore, once an item is defined in one figure, it does not need to be further defined and explained in subsequent figures.
[0033] The following detailed description, with reference to the accompanying drawings, describes some embodiments of the present invention. Unless otherwise specified, the following embodiments and features can be combined with each other.
[0034] See Figure 1 This disclosure provides a feeding station, including a feeding platform 100, which includes a feeding table 110 and a filtering mechanism 120 disposed within the feeding table 110. The filtering mechanism 120 includes a filter cylinder 121 slidably disposed within the feeding table 110 and a baffle 122 hinged to the filter cylinder 121. The filtering mechanism 120 is configured such that when the filter cylinder 121 moves upward, the baffle 122 is hinged to the filter cylinder 121, and as the filter cylinder 121 moves upward, the baffle 122 moves away from the filter cylinder 121, thereby gradually unfolding horizontally until the baffle 122 unfolds horizontally along the outer wall of the filter cylinder 121. When the filter cylinder 121 moves downward, the baffle 122 hinged to the filter cylinder 121 gradually approaches the filter cylinder 121 until the baffle 122 is vertical along the outer wall of the filter cylinder 121 and is higher than the feeding table 110.
[0035] See Figure 3 and Figure 4The feeding platform 110 extends downwards with a scraper 111. The feeding platform 110 is rectangular with its opening facing upwards. The scraper 111 extends downwards along the feeding platform 110. Filter holes are provided on all four side walls and the bottom of the filter cylinder 121. After the material is fed into the filter cylinder 121, it can flow downwards through the filter holes. When the filter cylinder 121 moves upwards or downwards, the scraper 111 is configured to scrape off the material in the filter holes. The scraper 111 removes large particles stuck in the filter holes, preventing clogging.
[0036] See Figure 1 In some embodiments, the scraper 111 is U-shaped, with its opening facing the feed inlet. The scraper 111 is frame-shaped, and the feed inlet is the location for manual feeding. The U-shaped scraper 111 opening facing the feed inlet facilitates the flipping of the baffle 122 on the filter cartridge 121.
[0037] See Figure 3 and Figure 4 A fixing plate 123 is provided on the side of the filter cylinder 121 facing the feeding port. The fixing plate 123 is provided on both sides of the filter cylinder 121. The baffle 122 is hinged to the fixing plate 123, and the feeding platform 110 has a rounded corner 124 near the fixing plate 123. The baffle 122 fits against the side of the feeding platform 110 near the fixing plate 123. When the filter cylinder 121 moves upward, the baffle 122 moves away from the filter cylinder 121 and gradually unfolds horizontally along the rounded corner 124 until the baffle 122 is horizontal. When the filter cylinder 121 moves downward, the baffle 122 hinged to the filter cylinder 121 gradually moves closer to the filter cylinder 121 along the rounded corner 124 until the baffle 122 is vertical. At this time, the baffle 122 is higher than the feeding platform 110 to reduce dust.
[0038] In some embodiments, the bottom of the filter cartridge 121 is connected to the piston rod of the cylinder. The cylinder drives the filter cartridge 121 to move up and down, thereby causing the baffle 122 to flip, achieving a vertical or horizontal state.
[0039] See Figure 1 In some embodiments, to prevent the filter cartridge 121 from falling downwards, the scraper 111 is provided with a stepped surface 112, and the filter cartridge 121 is surrounded by limiting plates 125 adapted to the stepped surface 112. The stepped surface 112 and the limiting plates 125 cooperate to achieve a limiting effect, restricting the downward movement of the filter cartridge 121 and preventing the upper end of the filter cartridge 121 from detaching from the feeding platform 110, so that the material flows directly out from the gap between the feeding platform 110 and the filter cartridge 121.
[0040] See Figure 1At least one embodiment also provides a feeding station, including a feeding platform 100, which includes a feeding table 110 and a filtration mechanism 120 disposed within the feeding table 110; a dust removal mechanism 200 located on the feeding platform 100 and configured to adsorb dust; and a discharge mechanism 300 located below the feeding platform 100 and configured to discharge the fed powder; wherein the filtration mechanism 120 includes a filter cartridge 121 slidably disposed within the feeding table 110 and a baffle 122 hinged to the filter cartridge 121, configured such that when the filter cartridge 121 moves upward, the baffle 122 is horizontally disposed; and when the filter cartridge 121 moves downward, the baffle 122 is vertically disposed and higher than the feeding table 110. When the filter cylinder 121 moves upward, the baffle 122 is hinged to the filter cylinder 121. As the filter cylinder 121 moves upward, the baffle 122 moves away from the filter cylinder 121, gradually unfolding horizontally until the baffle 122 is horizontally positioned. When the filter cylinder 121 moves downward, the baffle 122 hinged to the filter cylinder 121 gradually moves closer to the filter cylinder 121 until the baffle 122 is vertically positioned and higher than the feeding platform 110.
[0041] See Figure 1 The feeding platform 110 extends downwards with a scraper 111. The feeding platform 110 is rectangular with its opening facing upwards. The scraper 111 extends downwards along the feeding platform 110. Filter holes are provided on all four side walls and the bottom of the filter cylinder 121. After the material is fed into the filter cylinder 121, it can flow downwards through the filter holes. When the filter cylinder 121 moves upwards or downwards, the scraper 111 is configured to scrape off the material in the filter holes. The scraper 111 removes large particles stuck in the filter holes, preventing clogging.
[0042] See Figure 1 and Figure 4 The scraper 111 is U-shaped, with its opening facing the feeding port. A fixing plate 123 is provided on the side of the filter cylinder 121 facing the feeding port, and a baffle 122 is hinged to the fixing plate 123. A rounded corner 124 is provided at the end of the feeding platform 110 near the fixing plate 123. The baffle 122 fits against the side of the feeding platform 110 near the fixing plate 123. When the filter cylinder 121 moves upward, the baffle 122 moves away from the filter cylinder 121, gradually unfolding horizontally along the rounded corner 124 until the baffle 122 is horizontal. When the filter cylinder 121 moves downward, the baffle 122 hinged to the filter cylinder 121 gradually approaches the filter cylinder 121 along the rounded corner 124 until the baffle 122 is vertical. At this point, the baffle 122 is higher than the feeding platform 110 to reduce dust.
[0043] See Figure 1In some embodiments, the dust removal mechanism 200 includes a dust removal port 210 connected to a negative pressure source, the dust removal port 210 being located above the feeding platform 110; the discharge mechanism 300 includes a discharge port 310, the discharge port 310 being located below the feeding platform 110. The dust removal port 210 can absorb the dust generated during material feeding, preventing dust generated during the material feeding process from drifting into the atmosphere and causing environmental pollution.
[0044] In summary, when feeding materials, the filter cylinder 121 moves upward and the baffle 122 is in a horizontal state, which facilitates feeding. After feeding, the filter cylinder 121 moves downward and the baffle 122 is in a vertical state, which facilitates blocking dust and reducing dust pollution.
[0045] In the description of the embodiments of this utility model, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.
[0046] In the description of this utility model, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicating orientation or positional relationships, are based on the orientation or positional relationships shown in the accompanying drawings and are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model. Furthermore, terms such as "first," "second," and other numerical terms used herein do not imply order or sequence unless expressly indicated herein. Therefore, without departing from the teachings of the exemplary embodiments, the first element, component, region, layer, or segment discussed above may be referred to as the second element, component, region, layer, or segment.
[0047] Spatially relative terms, such as “inside,” “outside,” “below,” “below,” “down,” “above,” “up,” etc., may be used herein to describe the relationship between one element or feature illustrated in the figures and another element or feature. In addition to the orientations depicted in the figures, spatially relative terms may be intended to cover different orientations of the device in use or operation. For example, if the device in the figure is flipped, an element described as “below” or “below” other elements or features would be oriented as “above” other elements or features. Thus, the example term “below” can cover both above and below orientations. The device may be oriented in other ways (rotated 90 degrees or in other orientations), and the spatially relative descriptors used herein are interpreted accordingly.
[0048] In the above discussion, unless otherwise stated, when used to describe numerical values, the terms “about,” “approximately,” “basically,” etc., indicate a change of + / - 10% in that value.
[0049] Based on the above-described preferred embodiments of this utility model, and through the foregoing description, those skilled in the art can make various changes and modifications without departing from the technical concept of this utility model. The technical scope of this utility model is not limited to the contents of the specification, but must be determined according to the scope of the claims.
Claims
1. A feeding station, characterized in that, include The feeding platform (100) includes a feeding table (110) and a filtering mechanism (120) disposed within the feeding table (110). The filtration mechanism (120) includes: A filter cylinder (121) is slidably disposed in the feeding platform (110) and a baffle (122) is hinged to the filter cylinder (121). The filtration mechanism (120) is configured such that when the filter cartridge (121) moves upward, the baffle (122) gradually unfolds horizontally along the outer wall of the filter cartridge (121); and when the filter cartridge (121) moves downward, the baffle (122) gradually becomes vertical along the outer wall of the filter cartridge (121), and the baffle (122) is higher than the feeding platform (110).
2. The feeding station as described in claim 1, characterized in that, The feeding platform (110) extends downwards with a scraper (111), and the filter cylinder (121) has filter holes on its four sides and bottom. When the filter cartridge (121) moves up or down, the scraper (111) is configured to scrape off the material inside the filter holes.
3. The feeding station as described in claim 2, characterized in that, The scraper (111) is U-shaped, and the opening of the scraper (111) faces the feeding port.
4. The feeding station as described in claim 3, characterized in that, The filter cylinder (121) has a fixed plate (123) on the side facing the feeding port. The baffle (122) is hinged to the fixed plate (123), and the feeding platform (110) has a rounded corner (124) at the end near the fixed plate (123).
5. The feeding station as described in claim 4, characterized in that, The bottom of the filter cartridge (121) is connected to the piston rod of the cylinder via a transmission connection.
6. The feeding station as described in claim 2, characterized in that, The scraper (111) is provided with a stepped surface (112), and the filter cylinder (121) is provided with a limiting plate (125) around its perimeter that is adapted to the stepped surface (112).
7. A feeding station, characterized in that, include The feeding platform (100) includes a feeding table (110) and a filtering mechanism (120) disposed within the feeding table (110). A dust removal mechanism (200) is located on the feeding platform (100) and is configured to adsorb dust. A discharge mechanism (300) is located below the feeding platform (100) and configured to discharge the fed powder; wherein, The filtration mechanism (120) is configured such that when the filter cartridge (121) moves upward, the baffle (122) gradually unfolds horizontally along the outer wall of the filter cartridge (121); and when the filter cartridge (121) moves downward, the baffle (122) gradually becomes vertical along the outer wall of the filter cartridge (121), and the baffle (122) is higher than the feeding platform (110).
8. The feeding station as described in claim 7, characterized in that, The feeding platform (110) extends downwards with a scraper (111), and the filter cylinder (121) has filter holes on its four sides and bottom. When the filter cartridge (121) moves up or down, the scraper (111) is configured to scrape off the material inside the filter holes.
9. The feeding station as described in claim 8, characterized in that, The scraper (111) is U-shaped, and the opening of the scraper (111) faces the feeding port; The filter cartridge (121) is provided with a fixing plate (123) on the side facing the feed port, and the baffle (122) is hinged to the fixing plate (123); The feeding platform (110) has a rounded corner (124) at the end near the fixed plate (123).
10. The feeding station as described in claim 9, characterized in that, The dust removal mechanism (200) includes a dust removal port (210) connected to a negative pressure source, and the dust removal port (210) is located above the feeding platform (110); The discharge mechanism (300) includes a discharge port (310) located below the feeding platform (110).