Magnetic separation piece

CN224791934UActive Publication Date: 2026-09-25GUANGDONG NAYA SMART HOME TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202522376858.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-10
Publication Date
2026-09-25
Estimated Expiration
2035-11-10

AI Technical Summary

Technical Problem

如授权公告号为CN211883021U的实用新型专利公开了一种拉篮专用磁吸分隔板结构,虽然可以通过磁吸方式便捷地固定在拉篮上,但是其隔板和基座(水平连接座)连接为一体,隔板无法拆卸更换,即隔板无法根据收纳物品的高度或大小进行更换,也无法在部分部件损坏时进行替换;一旦用户需求改变或局部损坏,整个分隔件即告报废,不仅使用成本高,也极大地限制了其应用场景的适应性

Benefits of technology

本实用新型的磁吸分隔件,其基座的正面插设隔板,背面嵌设磁体;隔板和基座是两个独立部件,使得隔板可以独立于基座存在。其中,基座中设置有插槽、限位块、弹片和卡块,隔板上设置有卡位部、插接部、限位开口和卡孔,这是可重复拆装的卡接结构;安装隔板时,只需将隔板的插接部插入基座的插槽,弹片受压后复位,卡块卡入卡孔,同时卡位部与插槽外的基座本体区域相接,限位块卡人限位开口中,即可实现牢固固定;拆卸隔板时,用户只需对弹片施加一定的力,使卡块从卡孔中脱出,即可将隔板从基座中拔出;这实现了隔板与基座的无损、快速、可重复的拆装,从而允许用户自由更换隔板、按需调整布局,有效提高了磁吸分隔件应用场景的适应性。

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Abstract

The utility model discloses a kind of magnetic attraction separators, it is related to pull basket accessory technical field, including pedestal, front is inserted with baffle, back is embedded with magnet;Pedestal is provided with slot, and it is through front and back;Limiting block is formed in slot;Two spring sheets are formed on slot, and symmetrically distributed in the two sides of limiting block, two spring sheets are exposed in the back of pedestal;Spring sheet is protruded and formed with clamping block, and it is inserted into slot;Baffle is formed with inserting part, and the main body of baffle is formed with clamping portion, and inserting part is provided with limiting opening, and two clamping holes are formed in inserting part, and symmetrically distributed in the two sides of limiting opening;Inserting part is inserted in slot, and clamping portion is connected with the base body outside slot, limiting block is clamped in limiting opening, and clamping block is clamped in clamping hole.The utility model connects baffle and pedestal by the clamping structure of repeated dismounting, to allow user to freely replace baffle, adjust layout as needed, effectively improve the adaptability of magnetic attraction separator application scene.
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Description

Technical Field

[0001] This utility model relates to the technical field of pull-out basket accessories, specifically to a magnetic separator. Background Technology

[0002] In daily life, pull-out baskets are a common storage container widely used in kitchens, bathrooms, offices, and other places to categorize and store various items, such as tableware, condiment bottles, toiletries, documents, and tools. To make more efficient use of the internal space of the pull-out basket and to prevent items from mixing, tipping over, or colliding during movement, dividers are usually installed inside the basket.

[0003] Traditional pull-out basket dividers mostly use a fixed structure, installed in specific positions of the pull-out basket by means of screws or direct welding. Once installed, the position and division area of ​​such fixed dividers are difficult to adjust, and cannot adapt to dynamic changes in the size and quantity of stored items, resulting in poor flexibility.

[0004] To improve flexibility, some dividers using magnetic attraction have emerged on the market, simplifying the installation process to some extent. For example, utility model patent CN211883021U discloses a magnetic divider structure for pull-out baskets. While it can be conveniently fixed to the basket magnetically, the divider and base (horizontal connecting seat) are integrated, making the divider unremovable and unreplaceable. This means the divider cannot be changed according to the height or size of the items stored, nor can it be replaced if some parts are damaged. Once user needs change or partial damage occurs, the entire divider becomes unusable, resulting in high operating costs and significantly limiting its applicability. Utility Model Content

[0005] The purpose of this utility model is to overcome the shortcomings of the prior art. This utility model provides a magnetic separator in which the separator and the base are two independent components connected by a snap-fit ​​structure that can be repeatedly disassembled and reassembled. This allows users to freely replace the separator and adjust the layout as needed, effectively improving the adaptability of the magnetic separator to various application scenarios.

[0006] This utility model provides a magnetic separator, which includes a base, a partition plate inserted on the front side of the base, and a magnet embedded on the back side of the base; The base has a slot along its length, which extends through the front and back of the base. A limiting block is formed inside the slot, and the limiting block connects to the inner walls of the two long sides of the slot. Two spring pieces are formed on the inner wall of one long side of the slot, and the two spring pieces are symmetrically distributed on the left and right sides of the limiting block. The two spring pieces are exposed on the back of the base. A locking block is formed on each of the spring pieces, and the locking block extends into the slot. One side of the partition is formed with an insertion part, and the main body of the partition protrudes from the two sides of the insertion part to form a locking part. A limiting opening is provided in the middle area of ​​the insertion part, and two locking holes are provided on the insertion part. The two locking holes are symmetrically distributed on the left and right sides of the limiting opening. The plug-in part is inserted into the slot, the locking part is connected to the base body area outside the slot, the limiting block is locked into the limiting opening, and the locking block is locked into the locking hole.

[0007] Specifically, two receiving grooves are formed on the inner wall of one long side of the slot. The two receiving grooves are exposed on the back of the base. The two receiving grooves are symmetrically distributed on the left and right sides of the limiting block. Each receiving groove is provided with a corresponding spring piece. The end of the spring piece near the front of the base is fixedly connected to the inner wall of the corresponding receiving groove, and the end of the spring piece away from the front of the base is suspended.

[0008] Specifically, stress relief grooves are formed on the left and right sides of any of the receiving grooves, the stress relief grooves are exposed on the back of the base, and the depth of the stress relief grooves in the base is equal to the depth of the receiving grooves in the base.

[0009] Specifically, the card block has a beveled surface and a vertical surface. The beveled surface gradually slopes downward towards the front of the base and transitions to the inner wall of the slot. The vertical surface is located on the side of the beveled surface away from the front of the base and is perpendicular to the inner wall of the slot.

[0010] Specifically, a corrugated portion is formed on the inner wall of the other long side of the slot, and the crest of the corrugated portion abuts against the surface of the insertion portion.

[0011] Specifically, the slot is located on one long side of the base, and the front of the base gradually slopes away from the slot towards the back of the base.

[0012] Specifically, at least two adhesive strips are provided on the back of the base along its length.

[0013] Specifically, at least two magnet sleeves are formed in the back of the base, and one magnet is embedded in each of the magnet sleeves; Each of the magnet sleeves has multiple ventilation slots on its circumferential surface, the multiple ventilation slots exposing the corresponding magnets, and the multiple ventilation slots are exposed on the back of the base; each of the magnet sleeves has a magnetic window on the side away from the front of the base, the magnetic window exposing the corresponding magnets.

[0014] Specifically, the magnetic window is a circular window, the magnet is a cylindrical magnet, and the diameter of the circular window is smaller than the diameter of the cylindrical magnet.

[0015] Specifically, a hollowed-out groove is formed between two adjacent magnet sleeves, and a reinforcing rib is formed in the hollowed-out groove. The reinforcing rib is connected to the inner wall of the hollowed-out groove and the reinforcing rib is connected to the two adjacent magnet sleeves.

[0016] Compared with the prior art, the beneficial effects of this utility model are: This utility model discloses a magnetic separator with a separator plate inserted on the front of the base and a magnet embedded on the back. The separator plate and the base are two independent components, allowing the separator plate to exist independently of the base. The base includes a slot, a limiting block, a spring, and a locking block. The separator plate has a locking part, an insertion part, a limiting opening, and a locking hole, forming a reusable snap-fit ​​structure. To install the separator plate, simply insert the insertion part of the separator plate into the slot of the base. The spring is pressed and resets, the locking block engages in the locking hole, and the locking part connects with the base body area outside the slot. The limiting block engages in the limiting opening, achieving a secure fixation. To remove the separator plate, the user simply applies a certain force to the spring to disengage the locking block from the locking hole, allowing the separator plate to be pulled out of the base. This enables non-destructive, rapid, and reusable assembly and disassembly of the separator plate and base, allowing users to freely replace separator plates and adjust the layout as needed, effectively improving the adaptability of the magnetic separator plate to various application scenarios. Attached Figure Description

[0017] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0018] Figure 1 This is a three-dimensional structural schematic diagram of the magnetic separator in an embodiment of this utility model; Figure 2 This is a schematic diagram of the planar structure of the base front in an embodiment of this utility model; Figure 3 This is a three-dimensional structural diagram of the back of the base in an embodiment of this utility model (slot cut open); Figure 4 This is a schematic diagram of the planar structure of the insertion part in an embodiment of this utility model; Figure 5 This is a schematic diagram of the mating structure of the plug and the slot in an embodiment of this utility model (slot cut open). Figure 6 This is a schematic diagram of the planar structure of the back of the base in an embodiment of this utility model; Figure 7 yes Figure 3 Enlarged structural diagram of region A in the middle; Figure 8 This is a three-dimensional structural diagram of the corrugated part in an embodiment of this utility model; Figure 9 This is a cross-sectional structural diagram of the base in an embodiment of this utility model; Figure 10 This is an exploded structural diagram of the base in an embodiment of this utility model.

[0019] In the attached diagram, 10 is the base; 20 is the partition plate; 30 is the magnet; 40 is the adhesive strip; 41 is the notch; 100 is the slot; 101 is the corrugated part; 110 is the limiting block; 120 is the spring piece; 130 is the locking block; 131 is the beveled part; 132 is the vertical part; 140 is the receiving groove; 150 is the stress relief groove; 160 is the adhesive groove; 161 is the protrusion; 170 is the magnet sleeve; 171 is the vent groove; 172 is the magnetic window; 180 is the hollowed-out groove; 181 is the reinforcing rib; 200 is the insertion part; 201 is the locking part; 210 is the limiting opening; and 220 is the locking hole. Detailed Implementation

[0020] 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 skilled in the art without creative effort are within the protection scope of the present utility model.

[0021] This utility model provides a magnetic separator. Figure 1 A three-dimensional structural schematic diagram of the magnetic separator in an embodiment of the present invention is shown. The magnetic separator includes a base 10, a partition 20 is inserted into the front side of the base 10, and a magnet 30 is embedded in the back side of the base 10. Figure 2 This diagram shows a planar structural schematic of the front of the base in an embodiment of the present invention. Figure 3The diagram shows a three-dimensional structural schematic of the back of the base in an embodiment of the present invention (slot cut open). The base 10 has a slot 100 along its length, and the slot 100 penetrates the front and back of the base 10. A limiting block 110 is formed inside the slot 100, and the limiting block 110 connects to the inner walls of the two long sides of the slot 100. Two spring pieces 120 are formed on one long side inner wall of the slot 100, and the two spring pieces 120 are symmetrically distributed on the left and right sides of the limiting block 110. The two spring pieces 120 are exposed on the back of the base 10. A locking block 130 protrudes from each of the spring pieces 120 and extends into the slot 100. Figure 4 A schematic diagram of the planar structure of the insertion part in an embodiment of the present utility model is shown. The insertion part 200 is formed on one side of the partition 20. The main body of the partition 20 protrudes from the two sides of the insertion part 200 to form a locking part 201. A limiting opening 210 is provided in the middle area of ​​the insertion part 200. Two locking holes 220 are provided on the insertion part 200. The two locking holes 220 are symmetrically distributed on the left and right sides of the limiting opening 210. Figure 5 The diagram shows the mating structure of the plug and slot in an embodiment of the present invention (slot cut open). The plug 200 is inserted into the slot 100, the locking part 201 is connected to the base 10 body area outside the slot 100, the limiting block 110 is locked into the limiting opening 210, and the locking block 130 is locked into the locking hole 220.

[0022] The magnetic separator of this utility model has a base 10 with a partition 20 inserted on the front and a magnet 30 embedded on the back. The partition 20 and the base 10 are two independent components, allowing the partition 20 to exist independently of the base 10. The base 10 includes a slot 100, a limiting block 110, a spring 120, and a locking block 130. The partition 20 has a locking part 201, an insertion part 200, a limiting opening 210, and a locking hole 220, forming a reusable snap-fit ​​structure. When installing the partition 20, simply insert the insertion part 200 of the partition 20 into the slot 100 of the base 10. The spring 120 is pressed and resets, and the locking block 130 engages with the locking hole 220. Simultaneously, the locking part 201 engages with the base 10 outside the slot 10. The base 10 and the base 10 are connected. The limiting block 110 is inserted into the limiting opening 210 to achieve a firm fixation. When disassembling the partition 20, the user only needs to apply a certain force to the spring piece 120 to make the locking block 130 disengage from the locking hole 220, and then the partition 20 can be pulled out from the base 10. This realizes the non-destructive, fast and repeatable disassembly and assembly of the partition 20 and the base 10, so that the user can freely replace the partition 20 and adjust the layout as needed, effectively improving the adaptability of the magnetic separator application scenarios.

[0023] In addition, the base 10 is a universal component. No matter how the shape of the partition 20 changes, as long as the structure of the insertion part 200 of the partition 20 remains unchanged, it can be adapted to the slot 100 of the base 10, which has good versatility.

[0024] In some specific embodiments, please refer to Figure 4 The width of the front end of the limiting opening 210 gradually increases in the direction away from the main body of the partition 20, forming a flared mouth, which can guide the limiting block 110 to smoothly fit into the body of the limiting opening 210, reducing the installation accuracy requirements of the partition 20 and improving the smoothness and speed of the installation of the partition 20.

[0025] In some specific embodiments, the base 10 is a plastic base 10, and the partition 20 is a plastic partition 20, which can be injection molded, is easy to process and manufacture, and is lightweight.

[0026] Figure 6 The diagram shows a planar structural schematic of the back of the base in an embodiment of the present invention. Two receiving grooves 140 are formed on the inner wall of one long side of the slot 100. These two receiving grooves 140 are exposed on the back of the base 10 and are symmetrically distributed on the left and right sides of the limiting block 110. Each receiving groove 140 corresponds to one of the spring pieces 120. (See also...) Figure 3 The end of the spring piece 120 near the front of the base 10 is fixedly connected to the inner wall of the corresponding receiving groove 140, and the end of the spring piece 120 away from the front of the base 10 is suspended.

[0027] The receiving groove 140 on the back of the base 10 provides a dedicated, undisturbed space (cavity) for the spring 120 to move freely. When the insertion part 200 of the partition 20 is inserted into the slot 100, it will compress the locking block 130 on the spring 120. The spring 120 is forced to elastically deform into the space inside the receiving groove 140, thus being "bent". This groove ensures that the spring 120 has enough space to retract and deform without being blocked by other parts of the base 10. Otherwise, it would be impossible to insert or the spring 120 would be damaged. This ensures that the locking action (locking block 130 locking into / unlocking the locking hole 220) can be completed smoothly and reliably.

[0028] For details, please refer to Figure 3 and Figure 6Stress relief grooves 150 are formed on both sides of each of the receiving grooves 140. The stress relief grooves 150 are exposed on the back of the base 10, and the depth of the stress relief grooves 150 in the base 10 is equal to the depth of the receiving grooves 140 in the base 10. During the injection molding process of the base 10, the presence of stress relief grooves 150 reduces the molding internal stress of the receiving grooves 140 and improves the structural stability of the receiving grooves 140.

[0029] Figure 7 It shows Figure 3 An enlarged structural diagram of region A shows that the card block 130 has a beveled surface 131 and a vertical surface 132. The beveled surface 131 gradually slopes downward towards the front of the base 10 and transitions to the inner wall of the slot 100. The vertical surface 132 is located on the side of the beveled surface 131 away from the front of the base 10, and the vertical surface 132 is perpendicular to the inner wall of the slot 100.

[0030] When the insertion part 200 of the partition 20 is inserted into the slot 100, its edge will contact the inclined part 131 of the locking block 130; as the insertion continues, the insertion part 200 will slide along the inclined surface. This sliding process will generate a component force perpendicular to the inclined surface. This component force will push the spring piece 120 to bend elastically into the receiving groove 140, making room for the smooth insertion of the partition 20.

[0031] When the insertion part 200 of the partition 20 is inserted into place, and its locking hole 220 moves to the position aligned with the locking block 130, the compressed spring 120 will instantly rebound, pushing the locking block 130 to reset. At this time, the vertical part 132 will fit tightly against the side wall of the locking hole 220 (the side away from the front of the base 10). The vertical part 132 provides a bearing surface that is almost perpendicular to the direction of the release force. When the partition 20 is subjected to an outward pulling force, the side wall of the locking hole 220 will press against the vertical part 132 of the locking block 130. Since this surface is vertical and has no slope, the partition 20 will not easily come out, thus achieving reliable mechanical locking.

[0032] When disassembling the partition 20, the user only needs to apply a certain force to the spring piece 120 to make the locking block 130 disengage from the locking hole 220, and then the partition 20 can be pulled out from the base 10.

[0033] Figure 8A three-dimensional structural diagram of the corrugated portion in an embodiment of this utility model is shown. A corrugated portion 101 is formed on the inner wall of the other long side of the slot 100, and the crests of the corrugated portion 101 abut against the surface of the insertion portion 200. The crests of the corrugated portion 101 are raised contact points that elastically press against the surface of the insertion portion 200 and lock in place with the locking block 130, so that the insertion portion 200 of the partition 20 is very stably fixed in the slot 100, not easy to loosen, and reducing the generation of abnormal noises such as "creaking".

[0034] Figure 9 The diagram shows a cross-sectional view of the base in an embodiment of the present invention. The slot 100 is located on one long side of the base 10, and the front of the base 10 gradually slopes towards the back of the base 10 in a direction away from the slot 100. That is, the area of ​​the base 10 where the slot 100 is located is relatively thick, making the slot 100 relatively deep, which is beneficial to improving the insertion stability of the partition 20; while the thickness of the base 10 gradually decreases in the direction away from the slot 100, which is beneficial to saving material usage.

[0035] In some specific embodiments, please refer to Figure 3 and Figure 6 The base 10 has at least two rubber strips 40 along its length on its back side. The rubber strips 40 (usually made of soft rubber, silicone or foam) act as a buffer pad, which is placed between the back side of the base 10 and the surface of the pull-out basket. They absorb the energy of the impact, making the installation and disassembly process quiet and smooth, achieving "silent installation". Moreover, the rubber strips 40 can increase the friction between the base 10 and the pull-out basket, preventing the base 10 from sliding under the action of gravity.

[0036] For details, please refer to Figure 9 The main body of the adhesive strip 40 is embedded in the base 10, making the adhesive strip 40 less likely to fall off. The adhesive strip 40 protrudes from the back of the base 10 by 0.5mm to 1.5mm. If the height of the adhesive strip 40 protruding from the back of the base 10 is less than 0.5mm, it cannot effectively play the role of a buffer pad. If the height of the adhesive strip 40 protruding from the back of the base 10 is greater than 1.5mm, it is easy to weaken the adsorption effect of the magnet 30 on the pull basket.

[0037] Figure 10An exploded view of the base in an embodiment of this utility model is shown. At least two adhesive grooves 160 are formed on the back side of the base 10 along its length. At least two adhesive strips 40 are correspondingly embedded in the at least two adhesive grooves 160. Each adhesive groove 160 has multiple protrusions 161 formed therein, and each adhesive strip 40 has multiple notches 41 formed therein. The protrusions 161 and notches 41 match. The matching of the protrusions 161 and notches 41 significantly increases the effective contact perimeter and area between the adhesive strip 40 and the adhesive groove 160. This not only enhances the mechanical locking effect but also makes the bond between them tighter, further reducing the risk of displacement and detachment of the adhesive strip 40.

[0038] For further details, please refer to Figure 6 The base 10 has two adhesive strips 40 on its back along its length, and the magnet 30 is located between the two adhesive strips 40. This not only effectively eliminates collision noise during the installation and disassembly of the magnetic separator, but also ensures the installation stability of the magnetic separator and prevents it from slipping.

[0039] In some specific embodiments, please refer to Figure 10 At least two magnet sleeves 170 are formed on the back of the base 10, and a magnet 30 is embedded in each magnet sleeve 170; a plurality of ventilation grooves 171 are formed on the circumferential surface of each magnet sleeve 170, and the plurality of ventilation grooves 171 expose the corresponding magnet 30, and the plurality of ventilation grooves 171 are exposed on the back of the base 10; a magnetic window 172 is formed on the side of each magnet sleeve 170 away from the front of the base 10, and the magnetic window 172 exposes the corresponding magnet 30.

[0040] The magnet sleeve 170 "holds" the magnet 30 from all sides (except for the vent groove 171 and the magnetic window 172), providing a holding force far exceeding that of a planar embedding, ensuring that the magnet 30 will never fall off during use. The base 10 is injection molded directly onto the magnet 30, and the vent groove 171 acts as an exhaust channel during the injection molding process. This ensures that the plastic can completely and densely fill the circumferential space of the magnet 30, avoiding the formation of air bubbles in the magnet sleeve 170. The magnetic window 172 exposes the magnet 30, ensuring that the magnet 30 can effectively attract the pull-out basket, preventing the effective magnetic force of the magnet 30 from being weakened.

[0041] For details, please refer to Figure 9The magnetic window 172 is a circular window, and the magnet 30 is a cylindrical magnet. The diameter of the circular window is smaller than the diameter of the cylindrical magnet. This smaller diameter means that a ring of plastic will cover the edge of the exposed surface of the cylindrical magnet, forming a ring-shaped plastic edging. This edging secures the cylindrical magnet from the front (attraction surface), creating a robust mechanical locking structure that effectively prevents the cylindrical magnet from falling off.

[0042] For further details, please refer to Figure 10 A hollowed-out groove 180 is formed between two adjacent magnet sleeves 170, and a reinforcing rib 181 is formed in the hollowed-out groove 180. The reinforcing rib 181 is connected to the inner wall of the hollowed-out groove 180 and the reinforcing rib 181 is connected to the two adjacent magnet sleeves 170.

[0043] The presence of the hollowed-out groove 180 saves materials and reduces the weight and cost of the base 10. Moreover, the presence of the hollowed-out groove 180 significantly reduces the internal stress during injection molding, ensuring that the entire base 10 can cool and shrink evenly. This not only effectively reduces the risk of shrinkage marks on the surface of the base 10, but also effectively reduces the risk of warping and deformation of the base 10, ensuring that the base 10 can maintain good flatness when attaching the pull basket, which is a prerequisite for achieving strong magnetic adsorption.

[0044] The reinforcing rib 181 can effectively enhance the structural rigidity and torsional stiffness of the entire base 10, ensuring that the base 10 will not easily twist, making the base 10 sturdy and durable.

[0045] The magnetic separator of this utility model has a base 10 with a partition 20 inserted on the front and a magnet 30 embedded on the back. The partition 20 and the base 10 are two independent components, allowing the partition 20 to exist independently of the base 10. The base 10 includes a slot 100, a limiting block 110, a spring 120, and a locking block 130. The partition 20 has a locking part 201, an insertion part 200, a limiting opening 210, and a locking hole 220, forming a reusable snap-fit ​​structure. When installing the partition 20, simply insert the insertion part 200 of the partition 20 into the slot 100 of the base 10. The spring 120 is pressed and resets, and the locking block 130 engages with the locking hole 220. Simultaneously, the locking part 201 engages with the base 10 outside the slot 10. The base 10 and base 10 are connected, and the limiting block 110 is inserted into the limiting opening 210 for secure fixation. When disassembling the partition 20, the user only needs to apply a certain force to the spring piece 120 to disengage the locking block 130 from the locking hole 220, thus pulling the partition 20 out of the base 10. This enables non-destructive, quick, and repeatable disassembly and assembly of the partition 20 and the base 10, allowing users to freely replace the partition 20 and adjust the layout as needed, effectively improving the adaptability of the magnetic separator application scenarios. In addition, the base 10 is a universal component. No matter how the shape of the partition 20 changes, as long as the structure of the insertion part 200 of the partition 20 remains unchanged, it can be adapted to the slot 100 of the base 10, demonstrating good versatility.

[0046] The slot 100 has a corrugated portion 101 formed therein. The crests of the corrugated portion 101 are raised contact points. They will elastically press against the surface of the insertion portion 200 and lock together with the locking block 130, so that the insertion portion 200 of the partition 20 is very stably fixed in the slot 100, not easy to loosen, and reducing the generation of abnormal noises such as "creaking".

[0047] Furthermore, the back of the base 10 is provided with a rubber strip 40. The rubber strip 40 (usually made of soft rubber, silicone or foam) acts as a buffer pad. It is placed between the back of the base 10 and the surface of the pull-out basket, absorbing the energy of the impact and making the installation and disassembly process quiet and smooth, achieving "silent installation". The rubber strip 40 can increase the friction between the base 10 and the pull-out basket, preventing the base 10 from sliding under the action of gravity.

[0048] Furthermore, the magnet 30 is embedded in the magnet sleeve 170, which "holds" the magnet 30 from all sides (except for the ventilation groove 171 and the magnetic window 172). Together with the plastic edging, a strong mechanical locking structure is formed, providing a holding force far exceeding that of planar embedding, ensuring that the magnet 30 will never fall off during use.

[0049] Furthermore, the back of the base 10 is formed with a hollowed-out groove 180, which reduces the weight and cost of the base 10 and significantly reduces the internal stress during injection molding. This ensures that the entire base 10 can cool and shrink evenly, effectively reducing the risk of shrinkage marks on the surface of the base 10 and the risk of warping deformation. This ensures that the base 10 maintains good straightness when attaching the pull basket, which is a prerequisite for achieving strong magnetic adsorption. The hollowed-out groove 180 is formed with reinforcing ribs 181, which can effectively enhance the structural rigidity and torsional stiffness of the entire base 10, ensuring that the base 10 will not easily twist, making the base 10 sturdy and durable.

[0050] The above provides a detailed description of a magnetic separator provided by the embodiments of this utility model. Specific examples have been used to illustrate the principle and implementation of this utility model. The description of the above embodiments is only for the purpose of helping to understand the method and core idea of ​​this utility model. At the same time, for those skilled in the art, there will be changes in the specific implementation and application scope based on the idea of ​​this utility model. Therefore, the content of this specification should not be construed as a limitation of this utility model.

Claims

1. A magnetic separator, characterized in that, The magnetic separator includes a base, a partition is inserted into the front side of the base, and a magnet is embedded in the back side of the base; The base has a slot along its length, which extends through the front and back of the base. A limiting block is formed inside the slot, and the limiting block connects to the inner walls of the two long sides of the slot. Two spring pieces are formed on the inner wall of one long side of the slot, and the two spring pieces are symmetrically distributed on the left and right sides of the limiting block. The two spring pieces are exposed on the back of the base. A locking block is formed on each of the spring pieces, and the locking block extends into the slot. One side of the partition is formed with an insertion part, and the main body of the partition protrudes from the two sides of the insertion part to form a locking part. A limiting opening is provided in the middle area of ​​the insertion part, and two locking holes are provided on the insertion part. The two locking holes are symmetrically distributed on the left and right sides of the limiting opening. The plug-in part is inserted into the slot, the locking part is connected to the base body area outside the slot, the limiting block is locked into the limiting opening, and the locking block is locked into the locking hole.

2. The magnetic separator as described in claim 1, characterized in that, Two receiving grooves are formed on the inner wall of one long side of the slot. The two receiving grooves are exposed on the back of the base. The two receiving grooves are symmetrically distributed on the left and right sides of the limiting block. Each receiving groove is provided with a corresponding spring piece. The end of the spring piece near the front of the base is fixedly connected to the inner wall of the corresponding receiving groove, and the end of the spring piece away from the front of the base is suspended.

3. The magnetic separator as described in claim 2, characterized in that, Stress relief grooves are formed on the left and right sides of any of the receiving grooves, the stress relief grooves are exposed on the back of the base, and the depth of the stress relief grooves in the base is equal to the depth of the receiving groove in the base.

4. The magnetic separator as described in claim 1, characterized in that, The card block has a beveled surface and a vertical surface. The beveled surface gradually slopes downward towards the front of the base and transitions to the inner wall of the slot. The vertical surface is located on the side of the beveled surface away from the front of the base and is perpendicular to the inner wall of the slot.

5. The magnetic separator as described in claim 1, characterized in that, A corrugated portion is formed on the inner wall of the other long side of the slot, and the crest of the corrugated portion abuts against the surface of the insertion portion.

6. The magnetic separator as described in claim 1, characterized in that, The slot is located on one long side of the base, and the front of the base gradually slopes away from the slot toward the back of the base.

7. The magnetic separator as described in claim 1, characterized in that, At least two adhesive strips are provided on the back of the base along its length.

8. The magnetic separator as described in claim 1, characterized in that, At least two magnet sleeves are formed in the back of the base, and one magnet is embedded in each of the magnet sleeves; Each of the magnet sleeves has multiple ventilation slots on its circumferential surface, the multiple ventilation slots exposing the corresponding magnets, and the multiple ventilation slots are exposed on the back of the base; each of the magnet sleeves has a magnetic window on the side away from the front of the base, the magnetic window exposing the corresponding magnets.

9. The magnetic separator as described in claim 8, characterized in that, The magnetic window is a circular window, and the magnet is a cylindrical magnet. The diameter of the circular window is smaller than the diameter of the cylindrical magnet.

10. The magnetic separator as described in claim 8, characterized in that, A hollowed-out groove is formed between two adjacent magnet sleeves, and a reinforcing rib is formed in the hollowed-out groove. The reinforcing rib is connected to the inner wall of the hollowed-out groove and to the two adjacent magnet sleeves.

Citation Information

Patent Citations

  • Special magnetic separation plate structure for pull basket

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