Magnet filling equipment
By designing a magnet filling device and utilizing a combination of a magnet separation section and an automatic receiving section, the automated separation and tube filling of miniature magnets was achieved, solving the problem of low efficiency in existing technologies and improving production efficiency.
Patent Information
- Application Number
- CN202423192703.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-24
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2034-12-24
AI Technical Summary
In the existing technology, the separation and assembly of micromagnets requires manual operation, which is inefficient and difficult.
A magnet filling device is designed, comprising a magnet separation section and an automatic receiving section. It utilizes a magnet pushing component, a separation component, and a tube pushing mechanism to achieve automated separation and tube filling of magnets, including the coordinated operation of the magnet pushing component, the separation cylinder, the tube pushing cylinder, and the receiving component.
It realizes the automated separation and tube loading process of magnets, improves production efficiency, is easy to operate, and meets the production needs of enterprises.
Smart Images

Figure CN223728556U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to magnet pipe filling technical field especially relates to a magnet filling equipment. BACKGROUND
[0002] Magnet is widely used in our life and production process, for example, in the production and processing of electronic products, usually need to install magnet to achieve its functional requirements, these magnets often small, will not occupy larger space. For miniature magnet, due to its small size, usually its multiple is sleeved in rubber tube, convenient to move and manage.
[0003] At present, aiming at the above problems of magnet, most adopt artificial separation of magnet and then artificial pipe filling of magnet, but due to the magnetism of magnet, there is certain difficulty in artificial separation, separation efficiency is poor, and how to realize the rapid pipe filling of magnet is also a problem to be solved urgently. UTILITY MODEL CONTENT
[0004] The utility model aims at overcoming the insufficient prior art and provides a magnet filling equipment, convenient operation, can separate magnet and then carry out automatic pipe filling operation quickly and effectively, and processing efficiency is high.
[0005] To achieve the above object, the utility model adopts the technical scheme that a magnet filling equipment, including frame, the frame is equipped with magnet separation part and automatic material receiving part in sequence on the frame;
[0006] The magnet separation part includes magnet pushing assembly, magnet stock bin, magnet separation assembly and temporary storage part arranged on the first base, the magnet pushing assembly is located on one side of the temporary storage part, the magnet stock bin is located in the vertical direction of the temporary storage part, and the magnet separation assembly is located on one side of the magnet stock bin to push the magnet in the magnet stock bin into the temporary storage part;
[0007] The automatic material receiving part includes tube bin, tube pushing mechanism, material receiving table and material receiving assembly arranged on the second base, the material receiving table is connected with the temporary storage part, the tube bin is arranged on one side of the material receiving table, the tube pushing mechanism is arranged below the material receiving table, and the tube pushing mechanism is used to push the ic tube in the tube bin onto the material receiving table by one-time pushing;
[0008] The magnet pushing assembly is used to push the magnet in the temporary storage part forward into the ic tube on the material receiving table, and the tube pushing mechanism is used to send the ic tube loaded with magnet into the material receiving assembly by two-time pushing.
[0009] In an embodiment, the magnet pushing assembly includes a pushing rod arranged on the first base, and the pushing rod is driven to move transversely on the first base via a driving slide rail.
[0010] In an embodiment, the magnet separating assembly comprises a separating cylinder below the first base, and a separating plate is arranged on the separating cylinder, and the separating plate corresponds to the bottommost magnet in the magnet bin after passing through the magnet bin.
[0011] In an embodiment, the temporary storage part comprises a separating platform, one end of the separating platform is provided with a stop block, an upper pressing block is arranged above the stop block, and a first gap is left between the upper pressing block and the stop block.
[0012] In an embodiment, the magnet bin comprises a bin frame, a front baffle and a rear baffle are arranged on the bin frame, a second gap is left between the lower surface of the front baffle and the bin frame, the second gap is communicated with the first gap, the front baffle is located on one side of the upper pressing block, a pressing plate is arranged between the front baffle and the rear baffle, the position of the pressing plate can be adjusted forward and backward through an adjusting bolt, and a placement cavity for placing magnets is formed between the front baffle and the pressing plate.
[0013] In an embodiment, the tube bin comprises two vertical plates arranged oppositely on both sides of the receiving table, the front end of the vertical plate is provided with a front fixed plate, a pushing gap is left between the lower surface of the front fixed plate and the upper surface of the receiving table, the rear end of the front fixed plate is provided with a rear fixed plate which can move forward and backward through an adjusting member, a containing space for containing IC tubes is formed between the front fixed plate and the rear fixed plate, and a limiting assembly is arranged on the receiving table and located in front of the front fixed plate.
[0014] In an embodiment, the tube pushing mechanism comprises a tube pushing cylinder arranged below the second base, the tube pushing cylinder pushes a pushing plate arranged above the receiving table to push the IC tube at the bottom of the containing space to the receiving table, and the left opening of the IC tube on the receiving table corresponds to the position of the magnet in the temporary storage part 4.
[0015] In an embodiment, the receiving assembly comprises two vertical plates arranged oppositely on one end of the second base, one of the vertical plates is provided with an inclined plate on the side opposite to the other vertical plate, and a bottom plate is arranged below the two vertical plates.
[0016] Compared with the prior art, the technical scheme has the following advantages:
[0017] The magnet filling equipment of the utility model, through magnet separation subassembly, the magnet in the magnet stock bin is pushed to the separation platform, simultaneously, the ic tube in the tube stock bin is pushed to the receiving table through the tube pushing mechanism, so that the left side opening of the ic tube is aligned with the magnet on the separation platform, then the magnet pushing subassembly pushes the magnet into the ic tube, and the ic tube is pushed to the receiving subassembly through the tube pushing mechanism, the whole process is completed automatically, the operation is convenient, the processing efficiency is high, and the production and processing demand of enterprises is met. BRIEF DESCRIPTION OF DRAWINGS
[0018] The utility model discloses technical scheme is further explained below in conjunction with the drawings:
[0019] Figure 1 It is the three-dimensional structure schematic diagram of an embodiment of the utility model;
[0020] Figure 2 It is the another perspective three-dimensional structure schematic diagram of Figure 1 ;
[0021] Figure 3 It is the three-dimensional structure schematic diagram of the magnet separation part in an embodiment of the utility model;
[0022] Figure 4 It is the plan view of the magnet separation part in an embodiment of the utility model;
[0023] Figure 5 It is the another perspective three-dimensional structure schematic diagram of the magnet separation part in an embodiment of the utility model;
[0024] Figure 6 It is the A part enlarged view of Figure 5 ;
[0025] Figure 7 It is the three-dimensional structure schematic diagram of the automatic receiving part in an embodiment of the utility model;
[0026] Figure 8 It is the another perspective three-dimensional structure schematic diagram of Figure 7 ;
[0027] Figure 9 It is the plan view of the automatic receiving part in an embodiment of the utility model;
[0028] Wherein: 1, rack; 2, magnet separation part; 3, automatic material receiving part; 4, first base; 5, second base; 6, magnet; 7, ic tube; 21, magnet pushing assembly; 22, magnet material bin; 23, magnet separation assembly; 24, temporary storage part; 31, tube bin; 33, material receiving table; 34, material receiving assembly; 211, pushing rod; 212, driving slide rail; 220, material bin frame; 221, front baffle; 222, rear baffle; 223, second gap; 224, adjusting bolt; 225, pressing plate; 230, separation cylinder; 231, separation plate; 240, separation platform; 241, stop block; 242, upper pressing block; 243, first gap; 310, vertical plate; 311, front fixed plate; 313, adjusting piece; 314, rear fixed plate; 315, limiting assembly; 320, tube pushing cylinder; 321, pushing plate; 340, vertical plate; 341, inclined plate. DETAILED DESCRIPTION
[0029] In order to make the personnel in the technical field better understand the scheme of the present application, the technical scheme in the embodiments of the present application will be clearly and completely described below in combination with the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by the person of ordinary skill in the art without making creative labor should belong to the protection scope of the present application.
[0030] The magnet filling equipment provided by the utility model solves the problems that the separation of the magnet and other magnetic products needs manual or semi-manual operation, the operation is complicated, and the production efficiency is low in the prior art.
[0031] For the convenience of understanding, the specific process in the embodiments of the present application will be described below. Please refer to Figure 1 The magnet filling equipment in the embodiments of the present application comprises a rack 1, and a magnet separation part 2 and an automatic material receiving part 3 are sequentially arranged on the rack 1. The magnet separation part 2 is used for separating the magnet 6, the automatic material receiving part 3 is used for butt-jointing the ic tube 7 with the magnet 6 after the ic tube 7 is sent out, and finally the magnet separation part 2 sends the magnet 6 into the ic tube 7 in the automatic material receiving part 2 and then sends out the magnet 6. The magnet filling equipment can automatically realize the separation of the magnet 6 and the process of sending the magnet 6 into the ic tube 7, has low processing cost and high processing efficiency,
[0032] Please refer to Figures 2 to 6The magnet separating part 2 comprises a magnet pushing assembly 21, a magnet bin 22, a magnet separating assembly 23 and a temporary storage part 24 arranged on the first base 4; the magnet pushing assembly 21 is arranged on one side of the temporary storage part 24; the magnet bin 22 is arranged vertically to the temporary storage part 24; the magnet separating assembly 23 is arranged on one side of the magnet bin 22, and is used to push the magnets 6 in the magnet bin 22 into the temporary storage part 24.
[0033] In an embodiment, the magnet pushing assembly 21 comprises a pushing rod 211 arranged on the first base 4, which is in the shape of a rectangle and is driven to move laterally on the first base 4 via a driving slide rail 212.
[0034] In operation, the driving slide rail 212 drives the pushing rod 211 to move laterally forward into the temporary storage part 24, thereby pushing the magnets in the temporary storage part 24.
[0035] In an embodiment, the temporary storage part 24 comprises a separating platform 240 arranged on one side of the driving rod 211; the front end of the separating platform 240 is provided with a stopper 241, the stopper 231 is provided with an upper pressing block 242 above the separating platform 240, and the upper pressing block 242 and the stopper 231 form a first gap 243 for the magnets to enter.
[0036] In an embodiment, the magnet bin 22 comprises a bin frame 220; the bin frame 220 is provided with a front baffle 221 and a rear baffle 222 arranged in front of and behind each other, and the lower surface of the front baffle 221 and the bin frame 220 are left with a second gap 223 communicated with the first gap 243, and the front baffle 221 is arranged on one side of the upper pressing block 242; the front baffle 221 and the rear baffle 222 are provided with a pressing plate 225 which can be adjusted in position via an adjusting bolt 224, and the front baffle and the pressing plate form a placing cavity for placing the magnets. In this embodiment, the thickness of the placed magnets 6 can be adjusted by the adjustable pressing plate 225. In addition, the magnets 6 in this embodiment comprise multiple rows, each row of magnets 6 is four, and is arranged in a linear manner.
[0037] In an embodiment, the magnet separating assembly 23 comprises a separating cylinder 230 arranged below the first base 4, and the separating cylinder 230 is provided with a separating plate 231 which passes through the rear baffle 222 and the pressing plate 225 and corresponds to the bottom row of magnets 6 in the magnet bin 22, so that the separating cylinder 230 can drive the separating plate 231 to push the bottom row of magnets 6 forward onto the separating platform 240.
[0038] In operation, the separation plate 231 is first driven by the separation cylinder 230 to move forward, and the bottom row of magnets 6 in the magnet bin 22 is pushed out forward, and the row of magnets enters the first gap 243 from the second gap 223, and is finally blocked by the baffle 241, so that the row of magnets 6 is pushed to the separation platform 240.
[0039] Then, the slide rail 212 drives the push rod 211 to move forward, and the push rod 211 extends into the separation platform 240 to push the row of magnets 6 into the corresponding automatic receiving part 3.
[0040] Referring to Figures 7 to 9 The automatic receiving part 3 includes a tube bin 31, a tube pushing mechanism, a receiving table 33, and a receiving assembly 34 arranged on the second base 5; the receiving table 33 is opposite to the separation platform 240; the tube bin 31 is arranged on one side of the receiving table 33; the tube pushing mechanism is arranged below the receiving table 33, and the tube pushing mechanism is used to push the IC tubes 7 in the tube bin 31 to the receiving table 33 at one time.
[0041] In an embodiment, the tube bin 31 includes two vertical plates 310 arranged opposite to each other on both sides of the receiving table 33; the front end of the vertical plate 310 is provided with a front fixed plate 311, and a pushing gap is left between the lower surface of the front fixed plate 311 and the upper surface of the receiving table 33; the rear end of the front fixed plate 311 is provided with a rear fixed plate 314 which can move forward and backward through an adjusting part 313, and a containing space for containing the IC tubes 7 is formed between the front fixed plate 311 and the rear fixed plate 314; a plurality of IC tubes 7 are stacked in the containing space; the front end of the receiving table 33 is further provided with a limiting assembly 315 for limiting the axial height of the IC tubes. In this embodiment, the width of the IC tubes 7 in the tube bin 31 can be adjusted through the rear fixed plate 314 which can move forward and backward.
[0042] In an embodiment, the tube pushing mechanism includes a tube pushing cylinder 320 arranged below the second base, the tube pushing cylinder 320 pushes a pushing plate 321 arranged above the receiving table 33 to push the bottom IC tube 7 in the containing space to the receiving table 33, and the IC tubes 7 on the receiving table 33 are arranged in transverse correspondence with the positions of the magnets in the temporary storage part 4, and the left opening of the IC tube corresponds to a row of magnets on the separation platform.
[0043] In an embodiment, the receiving assembly 34 comprises two opposite vertical plates 340 at one end of the second base 5, one of the vertical plates 340 is provided with an inclined plate 341; the lower part of the two vertical plates 340 is provided with a bottom plate (not shown in the figure); in operation, the tube pushing cylinder 320 pushes the pushing plate 321 to push the bottom ic tube 7 in the tube warehouse into the pushing gap, and then continues to push the ic tube 7 to the receiving table 33, so that the left end of the ic tube 7 corresponds to the magnet in the temporary storage part, facilitating the subsequent magnet pushing assembly to push the magnet into the ic tube 7; after the pushing is completed, the tube pushing cylinder 320 continues to push the pushing plate 321 to move for the second time, and the ic tube 7 carrying the magnet is pushed to the bottom plate through the inclined plate.
[0044] The working process is as follows:
[0045] The separation cylinder 230 drives the separation plate 231 to move forward, thereby pushing a row of four magnets 6 at the bottom of the magnet warehouse 22 forward; the row of magnets enters the first gap 234 through the second gap 223 and is arranged on the separation table 240.
[0046] At the same time, the tube pushing cylinder 320 pushes the pushing plate 321 to push the bottom ic tube 7 in the tube warehouse into the receiving table 33; at this time, the left end opening of the ic tube 7 corresponds to the row of magnets 6 on the separation table 240; finally, the slide rail 212 drives the pushing rod 211 to move forward, and the row of magnets is pushed into the ic tube 7 through the pushing rod 211; the tube pushing cylinder 320 pushes the pushing plate 321 to move for the second time, and the ic tube 7 carrying the magnet 6 is pushed to the bottom plate through the inclined plate 341.
[0047] The above-described embodiments are only used to illustrate the technical solutions of the present application, and not to limit them; although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that they can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacements for part of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present application.
Claims
1. A magnet filling apparatus characterized by: The application relates to a magnet separating and automatic receiving device. The magnet separating part (2) comprises a magnet pushing assembly (21), a magnet bin (22), a magnet separating assembly (23) and a temporary storage part (24) arranged on a first base (4); the magnet pushing assembly (21) is arranged on one side of the temporary storage part (24); the magnet bin (22) is arranged in the vertical direction of the temporary storage part (24); the magnet separating assembly (23) is arranged on one side of the magnet bin (22) and is used for pushing the magnet (6) in the magnet bin (22) into the temporary storage part (24). The automatic receiving part (3) comprises a tube bin (31), a tube pushing mechanism, a receiving table (33) and a receiving assembly (34) arranged on a second base (5); the receiving table (33) is connected with the temporary storage part (24); the tube bin (31) is arranged on one side of the receiving table (33); the tube pushing mechanism is arranged below the receiving table (33) and is used for pushing the IC tube (7) in the tube bin (31) onto the receiving table (33) at one time. The magnet pushing assembly (21) is used for pushing the magnet (6) in the temporary storage part (24) into the IC tube (7) on the receiving table (33); the tube pushing mechanism is used for pushing the IC tube (7) loaded with the magnet (6) into the receiving assembly (34) at one time.
2. The magnet filling apparatus according to claim 1, characterized by: The magnet pushing assembly (21) comprises a pushing rod (211) arranged on the first base (4); the pushing rod (211) is driven to move transversely on the first base (4) through a driving slide rail (212).
3. The magnet filling apparatus according to claim 1, characterized by: The magnet separating assembly (23) comprises a separating cylinder (230) arranged below the first base (4); the separating cylinder (230) is provided with a separating plate (231) which passes through the magnet bin (22) and corresponds to the bottom magnet (6) in the magnet bin (22).
4. The magnet filling apparatus according to claim 1, wherein: The temporary storage part (24) comprises a separating platform (240); one end of the separating platform (240) is provided with a stop block (241); an upper pressing block (242) is arranged above the stop block (241) and a first gap (243) is formed between the upper pressing block (242) and the stop block (241).
5. The magnet filling apparatus according to claim 4, characterized by: The magnet bin (22) comprises a bin frame (220); a front stop plate (221) and a rear stop plate (222) are arranged on the bin frame (220) in front of and behind each other; a second gap (223) is formed between the lower surface of the front stop plate (221) and the bin frame (220) and is communicated with the first gap (243); the front stop plate (221) is arranged on one side of the upper pressing block (242); a pressing plate (225) is arranged between the front stop plate (221) and the rear stop plate (222) and can be adjusted in position through an adjusting bolt (224); a placing cavity for placing the magnet (6) is formed between the front stop plate (221) and the pressing plate (225).
6. The magnet filling apparatus of claim 1, wherein: The pipe bin (31) comprises two vertical plates (310) oppositely arranged on both sides of the receiving table (33); the front end of the vertical plate (310) is provided with a front fixed plate (311); a pushing gap is left between the lower surface of the front fixed plate (311) and the upper surface of the receiving table (33); the rear end of the front fixed plate (311) is provided with a rear fixed plate (314) which can move forward and backward through an adjusting member (313); the front fixed plate (311) and the rear fixed plate (314) form a containing space for containing the IC pipe (7); the front end of the front fixed plate (311) on the receiving table (33) is further provided with a limiting assembly (315).
7. The magnet filling apparatus according to claim 1, wherein: The pipe pushing mechanism comprises a pipe pushing cylinder (320) arranged below the second base (5), the pipe pushing cylinder (320) pushes a pushing plate (321) above the receiving table (33) to push the IC pipe (7) at the bottom of the containing space to the receiving table (33), and the left opening of the IC pipe (7) on the receiving table (33) corresponds to the position of the magnet (6) in the temporary storage part (24).
8. The magnet filling apparatus of claim 1, wherein: The pipe receiving assembly (34) comprises two vertical plates (340) oppositely arranged at one end of the second base (5), one of the vertical plates (340) is provided with an inclined plate (341) on the side opposite to the other vertical plate (340); the lower part of the two vertical plates (340) is provided with a bottom plate.