Drying device for inductor production
By designing an inductor drying device with a pitch adjustment assembly and an adjustable placement rack, the problem of inconvenient pick-up and placement is solved, the production efficiency is improved and the capacity of the drying device is enhanced.
Patent Information
- Application Number
- CN202421350890.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-14
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2034-06-14
AI Technical Summary
The design of existing inductor drying devices leads to inconvenient pick-up and placement of inductors, which affects production efficiency.
A drying device including a box, a spacing adjustment assembly and a placing rack is designed. Through the distance adjustment assembly, the staff can control the sliding seat to move on the slide rail, driving the placement frame to move up and down in the working chamber, and adjust the distance of the placement frame. The placing racks can be closed for easy access to discharge and discharge, providing sufficient space for drying when separated.
This device makes the inductor pick-up and placement more convenient and faster, improves production efficiency, and increases the capacity of the working chamber while ensuring the drying effect.
Smart Images

Figure CN222999086U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of inductor production, and specifically to a drying device for inductor production. Background Art
[0002] Potting glue is widely used in the electronics field, especially in the circuit board assembly process that requires sealing and fixing. For example: power modules (used for potting and fixing power modules to improve the stability and reliability of power modules), automotive electronics (protecting automotive electronic devices from harsh environments), communication devices (used for fixing and protecting inductors in communication devices to improve their performance and reliability), photovoltaic inverters: used for potting and fixing the step-up and step-down inductors inside to protect internal components, insulate and prevent moisture, and improve their stability and reliability.
[0003] After the inductor is potted, it needs to be cured in a curing furnace or a drying furnace. Among them, the hot air drying furnace uses the film-forming method of solvent volatilization and heat melting to completely cure the inductor potting glue.
[0004] The currently used drying device has certain deficiencies. The position of the inductor during drying is generally immovable, making it inconvenient for workers to pick up and place the inductors at high positions, indirectly affecting production efficiency.
[0005] Therefore, it is necessary to provide a drying device for inductor production to solve the above problems.
[0006] It should be noted that the above information disclosed in this background art section is only used to understand the background art of the concept of the present application, and therefore, it may include information that does not constitute the prior art. Summary of the Invention
[0007] Based on the above problems existing in the prior art, the problem to be solved by the present application is: to provide a drying device for inductor production, which solves the problem of inconvenient picking up and placing of inductors.
[0008] The technical solution adopted by the present application to solve its technical problems is: a drying device for inductor production, including:
[0009] A box body, on one side of which a working cavity is opened; two slide rails are fixedly installed on the side wall at the working cavity; the chute is located between the two slide rails;
[0010] A distance adjustment component, which is arranged inside the box body, and a group of distance adjustment components are movably installed on both inner walls at the working cavity; the side surface of the distance adjustment component is slidably connected to the inner wall adjacent to the working cavity; the distance adjustment component includes a plurality of sliding seats, and the plurality of sliding seats are located in the working cavity, and one side close to the inner side wall of the working cavity is slidably connected to the two slide rails;
[0011] A placing rack, wherein a plurality of the placing racks are provided, and the plurality of the placing racks are transversely arranged in the working chamber, and one side of the plurality of the placing racks is installed in a one-to-one correspondence with an adjacent sliding seat;
[0012] Therefore, the staff controls multiple sliding seats to move on the slide rails, and then drives the corresponding placement racks to move up and down in the working chamber, so as to adjust the distance between the multiple placement racks; when the multiple placement racks are folded together, it is convenient for the staff to quickly take the inductor; when the multiple placement racks are separated, space is freed up for later drying processing.
[0013] Furthermore, a slot is provided on one side of the sliding seat away from the inner wall of the working chamber; clamping strips are respectively installed on both sides of the placement rack, and the clamping strips and the adjacent slots are matching structures; thereby, the placement rack and the sliding seat are detachably installed, which is convenient for later replacement of the placement rack.
[0014] Furthermore, the placement rack is an H-shaped body, and heat transfer holes are evenly opened on the side of the placement rack crossbeam, and the heat transfer holes are used for the circulation of hot air inside the drying furnace.
[0015] Furthermore, two groups of snap-in grooves are provided on the end face of the placement rack, and the crossbeam of the placement rack is located between the two groups of snap-in grooves; each group of the snap-in grooves is installed with a storage plate through a sliding connection, and the long side of the storage plate is parallel to the long side of the crossbeam of the placement rack; the storage plate is used to hold the sensor element; the two storage plates are respectively located at the recesses of the H-shaped placement rack, and at the same time, there is a gap for airflow between the storage plate and the crossbeam of the placement rack, thereby increasing the capacity of the working chamber while ensuring that the drying force remains unchanged.
[0016] Furthermore, a plurality of slide grooves are provided on the side wall of the working cavity, the long sides of the slide grooves are parallel to the height of the box body, and the plurality of slide grooves are evenly distributed along the height of the box body; the sliding seats correspond to the slide grooves one by one, and a slide rod is fixedly installed on one side of the sliding seat close to the inner wall of the box body, one end of the slide rod passes through the box body from the corresponding slide groove, and the side surface is slidably connected to the slide groove; thus, the slide groove limits the moving distance of the sliding seat through the slide rod to prevent collision between two adjacent sliding seats.
[0017] Furthermore, each of the sliding rods is hinged with a left inclined plate and a right inclined plate at one end away from the corresponding sliding seat, and the left inclined plate and the right inclined plate at the same sliding rod are not connected to each other; the end of the left inclined plate at one sliding rod is hinged with the right inclined plate at another adjacent sliding rod; thus, each sliding rod can achieve synchronous movement through the left inclined plate and the right inclined plate between them, and thus the sliding seats can achieve fixed-distance movement.
[0018] Furthermore, the distance adjustment assembly also includes an adjustment seat 1 and an adjustment seat 2, and the adjustment seat 1 and the adjustment seat 2 are located between two adjacent sliding rods; one side of the adjustment seat 1 is fixedly connected to one of the right inclined plates, and one side of the adjustment seat is fixedly connected to the other right inclined plate; thus, the adjustment seat 1 and the adjustment seat 2 are controlled to move relative to each other, so that the corresponding right inclined plates are moved closer to or farther away from each other, thereby realizing the distance adjustment between the sliding rods.
[0019] Furthermore, the distance adjustment component also includes a support column, one end of which is fixedly connected to a side of the working chamber side wall away from the sliding seat, and the support column is located on one side of the sliding rod; a support plate is fixedly installed on the other end of the support column, and motor 1 and motor 2 are fixedly installed on the end surface of the support plate, and the output ends of motor 1 and motor 2 both pass through the support plate, and motor 1 and motor 2 both use servo motors.
[0020] Furthermore, gears are respectively installed at the output ends of motor 1 and motor 2, and racks are respectively provided on the sides of regulating seat 1 and regulating seat 2 away from the sliding rod; the gear corresponding to motor 1 meshes with the rack corresponding to regulating seat 1, and the gear corresponding to motor 2 meshes with the rack corresponding to regulating seat 2; thus, when motor 1 is started and motor 2 is not started, motor 1 rotates clockwise, and the corresponding gear pushes regulating seat 1 to move in the direction away from the sliding rod through the meshing rack, and the connected right inclined plate rotates open on the corresponding sliding rod, while pulling the connected left inclined plate on the corresponding sliding rod. When the lever rotates open, the rotating left inclined plate pushes the right inclined plate connected to the other end to rotate open. At this time, the regulating seat 2 moves synchronously, and the distance between adjacent sliding bars is shortened. When the motor 2 is started and the motor 1 is not started, the motor 2 rotates clockwise, and the corresponding gear pushes the regulating seat 2 to move in the direction close to the sliding bar through the meshing rack. The connected right inclined plate rotates inward on the corresponding sliding bar, and at the same time, the connected left inclined plate is pulled inward on the corresponding sliding bar to rotate. The rotating left inclined plate pushes the right inclined plate connected to the other end to rotate. At this time, the regulating seat 1 moves synchronously, and the distance between adjacent sliding bars is expanded.
[0021] The beneficial effects of the present application are as follows: the present application provides a drying device for inductor production, which is provided with a distance adjustment component, and the staff controls multiple sliding seats to move on the slide rails respectively, thereby driving the corresponding placement racks to move up and down in the working chamber, thereby realizing the adjustment of the distance between the multiple placement racks; when the multiple placement racks are folded together, it is convenient for the staff to quickly take the inductor; when the multiple placement racks are separated, space is freed up for later drying processing.
[0022] In addition to the above-described purposes, features and advantages, the present application also has other purposes, features and advantages. The present application will be further described in detail with reference to the drawings. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] The accompanying drawings forming a part of this application are used to provide a further understanding of this application. The schematic embodiments of this application and their descriptions are used to explain this application and do not constitute an improper limitation of this application.
[0024] In the drawings:
[0025] Figure 1 is an overall schematic diagram of a drying device for inductor production in this application;
[0026] Figure 2 is Figure 1 a three-dimensional schematic diagram of the structure of the distance adjustment component in;
[0027] Figure 3 is Figure 1 a schematic diagram of the positional relationship between the placement rack and the placement plate in;
[0028] Figure 4 is Figure 3 a three-dimensional schematic diagram of the structure of the placement rack in;
[0029] Figure 5 is a schematic diagram of the distribution of the sliding grooves on the side wall of the working cavity;
[0030] Figure 6 is a schematic diagram of the connection structure between the left inclined plate and the right inclined plate at the sliding rod;
[0031] Figure 7 is a schematic diagram of the positional relationship between the support plate, the support column and the side wall of the working cavity;
[0032] Among them, the reference numerals in the figures:
[0033] 1, box body; 11, working cavity; 12, sliding groove; 13, sliding rail; 2, distance adjustment component; 21, sliding seat; 211, clamping groove; 22, sliding rod; 231, left inclined plate; 232, right inclined plate; 241, control seat one; 242, control seat two; 251, support column; 252, support plate; 261, motor one; 262, motor two; 3, placement rack; 301, heat transfer hole; 302, clamping groove; 31, clamping strip; 32, placement plate. Detailed implementation manners
[0034] It should be noted that, without conflict, the embodiments in this application and the features in the embodiments can be combined with each other. The following will refer to the drawings and combine the embodiments to detail this application.
[0035] In order to enable those skilled in the art to better understand the present application, the technical solutions in the embodiments of the present application will be clearly and completely described below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by ordinary technicians in this field without creative work should fall within the scope of protection of this application.
[0036] Embodiment 1:
[0037] like Figures 1 - 4 As shown, the present application provides a drying device for inductor production, referring to Figure 1 , Figure 2 , including a box body 1, a distance adjustment component 2, and a placement rack 3. A working chamber 11 is opened on one side of the box body 1; two slide rails 13 are fixedly installed on the side wall of the working chamber 11, and a slide groove 12 is located between the two slide rails 13;
[0038] Reference Figure 2 The distance adjusting component 2 is arranged in the box body 1, and a set of distance adjusting components 2 are movably installed on the inner walls of both sides of the working chamber 11; the side of the distance adjusting component 2 is slidably connected with the inner wall of the adjacent working chamber 11; the distance adjusting component 2 includes a plurality of sliding seats 21, and the plurality of sliding seats 21 are located in the working chamber 11, and the side close to the inner wall of the working chamber 11 is slidably connected with the two slide rails 13;
[0039] Reference Figure 1 There are multiple placement racks 3, and the multiple placement racks 3 are transversely arranged in the working chamber 11, and one side of the multiple placement racks 3 is installed in a one-to-one correspondence with the adjacent sliding seat 21;
[0040] Therefore, the staff controls multiple sliding seats 21 to move on the slide rail 13 respectively, and then drives the corresponding placement racks 3 to move up and down in the working chamber 1, so as to adjust the distance between the multiple placement racks 3; when the multiple placement racks 3 are folded together, it is convenient for the staff to quickly take the inductor; when the multiple placement racks 3 are separated, space is freed up for later drying processing.
[0041] Among them: Reference Figure 1 , Figure 2 , Figure 3 A card slot 211 is provided on one side of the sliding seat 21 away from the inner wall of the working chamber 11; card strips 31 are respectively installed on both sides of the placement rack 3, and the card strips 31 and the adjacent card slots 211 are a matching structure; thereby, the placement rack 3 and the sliding seat 21 are detachably installed, which is convenient for the later replacement of the placement rack 3.
[0042] In addition: See Figure 3 , Figure 4, the placement rack 3 is an H-shaped body, and heat transfer holes 301 are evenly formed on the side surface of the cross beam of the placement rack 3. The heat transfer holes 301 are used for the circulation of hot air inside the drying furnace;
[0043] Two groups of clamping grooves 302 are formed on the end face of the placement rack 3, and the cross beam of the placement rack 3 is located between the two groups of clamping grooves 302; Each group of clamping grooves 302 is installed with a placement plate 32 through a sliding connection. The long side of the placement plate 32 is parallel to the long side of the cross beam of the placement rack 3; The placement plate 32 is used for placing inductor components; The two placement plates 32 are respectively located at the notch of the H-shaped placement rack 3. At the same time, there is a gap for air flow between the placement plate 32 and the cross beam of the placement rack 3, which increases the accommodation capacity of the working chamber 11 while ensuring the drying strength remains unchanged.
[0044] Embodiment 2: As Figures 5 - 7 , on the basis of Embodiment 1, the distance adjustment component 2 is optimized as follows:
[0045] Referring to Figure 5 , a plurality of sliding grooves 12 are formed on the side wall at the working chamber 11. The long side of the sliding groove 12 is parallel to the height of the box body 1, and the plurality of sliding grooves 12 are evenly distributed along the height of the box body 1; The sliding seats 21 correspond to the sliding grooves 12 one by one. A sliding rod 22 is fixedly installed on the side of the sliding seat 21 close to the inner side wall of the box body 1. One end of the sliding rod 22 penetrates through the box body 1 from the corresponding sliding groove 12, and the side surface is slidably connected with the sliding groove 12; Thus, the sliding groove 12 restricts the moving distance of the sliding seat 21 through the sliding rod 22, preventing collision between two adjacent sliding seats 21.
[0046] Referring to Figure 6 , a left inclined plate 231 and a right inclined plate 232 are hinged to one end of each sliding rod 22 away from the corresponding sliding seat 21, and the left inclined plate 231 and the right inclined plate 232 at the same sliding rod 22 are not connected to each other; The end of the left inclined plate 231 at one sliding rod 22 is hinged to the right inclined plate 232 at another adjacent sliding rod 22; Thus, each sliding rod 22 realizes synchronous movement through the left inclined plate 231 and the right inclined plate 232 therebetween, and further the sliding seats 21 can realize fixed-distance movement.
[0047] Referring to Figure 6 , the distance adjustment component 2 further includes a control seat one 241 and a control seat two 242, and the control seat one 241 and the control seat two 242 are located between two adjacent sliding rods 22; One side of the control seat one 241 is fixedly connected to one of the right inclined plates 232, and one side of the control seat 242 is fixedly connected to the other right inclined plate 232; Thus, by controlling the relative movement of the control seat one 241 and the control seat two 242, the corresponding right inclined plates 232 are made to approach or move away from each other, and further the distance between the sliding rods 22 is adjusted.
[0048] Referring to Figure 7, the distance adjustment component 2 further includes a support column 251. One end of the support column 251 is fixedly connected to the side wall of the working chamber 11 away from the sliding seat 21, and the support column 251 is located on one side of the sliding rod 22. The other end of the support column 251 is fixedly installed with a support plate 252, and the end face of the support plate 252 is fixedly installed with a first motor 261 and a second motor 262. The output ends of the first motor 261 and the second motor 262 both penetrate through the support plate 252, and both the first motor 261 and the second motor 262 are servo motors.
[0049] Wherein: gears are respectively installed at the output ends of the first motor 261 and the second motor 262, and racks are respectively arranged on the sides of the first control seat 241 and the second control seat 242 away from the sliding rod 22. The gear corresponding to the first motor 261 meshes with the rack corresponding to the first control seat 241, and the gear corresponding to the second motor 262 meshes with the rack corresponding to the second control seat 242. Thus, when the first motor 261 starts and the second motor 262 does not start, the first motor 261 rotates clockwise, and the corresponding gear pushes the first control seat 242 to move away from the sliding rod 22 through the meshing rack. The connected right inclined plate 232 rotates and opens on the corresponding sliding rod 22, and at the same time pulls the connected left inclined plate 231 to rotate and open on the corresponding sliding rod 22. The rotating left inclined plate 231 pushes the connected right inclined plate 232 at the other end to rotate and open. At this time, the second control seat 242 moves synchronously, and the distance between adjacent sliding rods 22 is shortened. When the second motor 262 starts and the first motor 261 does not start, the second motor 262 rotates clockwise, and the corresponding gear pushes the second control seat 242 to move towards the sliding rod 22 through the meshing rack. The connected right inclined plate 232 rotates inwards on the corresponding sliding rod 22, and at the same time pulls the connected left inclined plate 231 to rotate inwards on the corresponding sliding rod 22. The rotating left inclined plate 231 pushes the connected right inclined plate 232 at the other end to rotate. At this time, the first control seat 242 moves synchronously, and the distance between adjacent sliding rods 22 is enlarged. The distance between the sliding seats 21 is changed through the sliding rods 22, so as to realize the folding and unfolding of the plurality of placing racks 3, which is convenient for the staff to take the inductors.
[0050] The above are only the preferred embodiments of the present application and are not used to limit the present application. For those skilled in the art, various changes and modifications can be made to the present application. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A drying device for inductor production, applied to an inductor production line, characterized in that: include: A box body (1), wherein a working chamber (11) is provided on one side of the box body (1); two slide rails (13) are fixedly mounted on the side wall of the working chamber (11); and a slide groove (12) is provided between the two slide rails (13); A distance adjusting component (2), the distance adjusting component (2) being arranged in the housing (1), and a group of distance adjusting components (2) being movably mounted on both inner walls of the working chamber (11); the side of the distance adjusting component (2) being slidably connected to the inner wall of the adjacent working chamber (11); the distance adjusting component (2) comprising a plurality of sliding seats (21), the plurality of sliding seats (21) being located in the working chamber (11), and the side close to the inner wall of the working chamber (11) being slidably connected to the two slide rails (13); A placement rack (3), wherein a plurality of the placement racks (3) are provided, and the plurality of the placement racks (3) are transversely arranged in the working chamber (11), and one side of the plurality of the placement racks (3) is installed in a one-to-one correspondence with an adjacent sliding seat (21).
2. A drying device for inductor production according to claim 1, characterized in that: A card slot (211) is provided on one side of the sliding seat (21) away from the inner wall of the working chamber (11); card strips (31) are respectively installed on both sides of the placement rack (3), and the card strips (31) and the adjacent card slots (211) are in matching structure.
3. A drying device for inductor production according to claim 2, characterized in that: The placement rack (3) is an H-shaped body, and heat transfer holes (301) are evenly opened on the side of the crossbeam of the placement rack (3), and the heat transfer holes (301) are used for the circulation of hot air inside the drying furnace.
4. A drying device for inductor production according to claim 3, characterized in that: The end surface of the placement rack (3) is provided with two groups of clamping grooves (302), and the crossbeam of the placement rack (3) is located between the two groups of clamping grooves (302); each group of the clamping grooves (302) is installed with a storage plate (32) through a sliding connection, and the long side of the storage plate (32) is parallel to the long side of the crossbeam of the placement rack (3); the storage plate (32) is used to hold the inductor element.
5. A drying device for inductor production according to claim 4, characterized in that: A plurality of slide grooves (12) are provided on the side wall of the working chamber (11), the long sides of the slide grooves (12) are parallel to the height of the box body (1), and the plurality of slide grooves (12) are evenly distributed along the height of the box body (1); the sliding seat (21) corresponds to the slide grooves (12) one by one, and a slide rod (22) is fixedly installed on one side of the sliding seat (21) close to the inner side wall of the box body (1), one end of the slide rod (22) passes through the box body (1) from the corresponding slide groove (12), and the side surface is slidably connected to the slide groove (12).
6. A drying device for inductor production according to claim 5, characterized in that: A left inclined plate (231) and a right inclined plate (232) are hingedly connected at one end of each sliding rod (22) away from the corresponding sliding seat (21); the left inclined plate (231) and the right inclined plate (232) at the same sliding rod (22) are not connected to each other; the end of the left inclined plate (231) at one sliding rod (22) is hingedly connected to the right inclined plate (232) at another adjacent sliding rod (22).
7. A drying device for inductor production according to claim 6, characterized in that: The distance adjustment assembly (2) further comprises an adjustment seat 1 (241) and an adjustment seat 2 (242), wherein the adjustment seat 1 (241) and the adjustment seat 2 (242) are located between two adjacent slide bars (22); one side of the adjustment seat 1 (241) is fixedly connected to one of the right inclined plates (232), and one side of the adjustment seat is fixedly connected to the other right inclined plate (232).
8. The drying device for inductor production according to claim 7, characterized in that: The pitch adjustment component (2) also includes a support column (251), one end of which is fixedly connected to a side of a side wall of the working chamber (11) away from the sliding seat (21), and the support column (251) is located on one side of the sliding rod (22); a support plate (252) is fixedly installed on the other end of the support column (251), and a motor 1 (261) and a motor 2 (262) are fixedly installed on the end surface of the support plate (252), and the output ends of the motor 1 (261) and the motor 2 (262) both pass through the support plate (252), and the motor 1 (261) and the motor 2 (262) are both servo motors.
9. A drying device for inductor production according to claim 8, characterized in that: The output ends of the motor 1 (261) and the motor 2 (262) are respectively installed with gears, and the sides of the regulating seat 1 (241) and the regulating seat 2 (242) away from the slide rod (22) are respectively provided with racks; the gear corresponding to the motor 1 (261) is meshed with the rack corresponding to the regulating seat 1 (241), and the gear corresponding to the motor 2 (262) is meshed with the rack corresponding to the regulating seat 2 (242).