A dry-type air-core reactor auxiliary production device
The rotating platform and adjusting push rod of the dry-type air-core reactor auxiliary production device push the chain structure to solve the problem of complicated arrangement of supporting columns, realize adaptive winding, and improve production efficiency and stability.
Patent Information
- Application Number
- CN202411365206.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-29
- Publication Date
- 2025-09-05
- Estimated Expiration
- 2044-09-29
AI Technical Summary
The arrangement of supporting columns during the winding process of existing dry-type air-core reactors is cumbersome and not adaptable, resulting in low production efficiency. In particular, when changing the winding diameter or height, the supporting columns need to be disassembled and rearranged, which is time-consuming and labor-intensive.
An auxiliary production device for dry-type air-core reactors is used, which includes a rotating platform, an adjusting push rod and a chain structure. The push rod is adjusted to push the chain to form an arc support to adapt to different winding diameters and heights. Combined with the lifting mechanism and the winding mechanism, automated winding is achieved.
It improves production efficiency, simplifies the operation of supporting columns, adapts to reactors of different specifications, reduces manual intervention, and improves the stability and efficiency of winding.
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Figure CN118942889B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of air-core reactor production equipment, in particular to an auxiliary production device for dry-type air-core reactors. Background Art
[0002] The dry-type hollow reactor includes a reactor body and a reactor bracket fixed at the upper and lower ends of the reactor body, and the reactor body and the reactor bracket are fixedly connected to ensure that they can move as a whole. When a conventional reactor body is produced, it is necessary to fill the gap of the reactor bracket with vertical support columns, and then the above-mentioned support columns are fixed and used as the support body of the winding for winding through the winding mechanism, and the winding is continued after setting spacer bars as subsequent support. It can be seen that in the above structure, the arrangement of the support columns is the basis of the winding. If the winding diameter of all hollow reactors is the same, the production efficiency is higher. However, there are many specifications of existing hollow reactors. Therefore, when the winding diameter is changed, the staff needs to dismantle the above-mentioned support columns and rearrange them with a preset diameter. The efficiency is low and after the reactor processing is completed, the above-mentioned support columns need to be dismantled, which is time-consuming and labor-intensive. Summary of the Invention
[0003] In order to solve the problem that the arrangement of support columns used for supporting the above-mentioned air-core reactor during the winding process is relatively cumbersome and lacks adaptability, the present invention provides an auxiliary production device for dry-type air-core reactors.
[0004] The technical solutions of the present invention are as follows:
[0005] An auxiliary production device for dry-type air-core reactors, comprising a rotating platform, wherein a plurality of support seats are arranged circumferentially around a rotating axis on the upper surface of the rotating platform, and the plurality of support seats can be used to place and fix reactor brackets of dry-type air-core reactors;
[0006] The upper surface of the rotating platform is further circumferentially provided with a plurality of adjusting push rods around the rotation axis. The adjusting push rods can rotate relative to the rotating platform, and the rotation center is located on the rotation axis of the rotating platform. The rotation angle range of a single adjusting push rod is limited to the space between two adjacent support seats, and the adjusting push rod can extend or retract toward the end away from the rotation center.
[0007] A chain is provided within the rotation range of a single adjusting push rod, with one end of the chain being fixed and the other end being movable. The chain does not affect the rotation of the adjusting push rod. The chain can be pushed by the adjusting push rod to form an arc arrangement, with the center point of the arc located on the rotation axis of the rotating platform.
[0008] A lifting mechanism is vertically provided on one side of the rotating platform, a rotating support arm is provided on the top of the lifting mechanism, a horizontal cover is provided on the end of the rotating support arm away from the lifting mechanism, the horizontal cover can rotate on a horizontal plane relative to the rotating support arm, and the lower surface of the horizontal cover can be used to place and fix the reactor bracket of the dry-type air-core reactor;
[0009] The horizontal cover plate can be moved in the vertical direction until the lower surface contacts the upper end of the row chain;
[0010] A winding mechanism that can be raised and lowered is also provided on one side of the rotating platform.
[0011] Different from existing production equipment, the chain of this device can be freely adjusted and arranged in an arc shape, which can then serve as a support for the winding and is very stable. After the winding action is completed, the air-core reactor can be lifted out as a whole, which significantly improves production efficiency.
[0012] The specific structure of the above-mentioned chain is as follows: the chain includes a fixed base mounted on a rotating platform, which is sequentially connected to a plurality of supporting chain rods. Adjacent supporting chain rods can rotate relative to each other, and the rotation plane is a horizontal plane. The end supporting chain rod away from the fixed base is rotatably connected to a movable base, which can move along a preset path on the rotating platform. The movable base can freely change state and is suitable for various arc lengths.
[0013] As a preferred solution, the moving path of the movable seat is set in a direction away from the center of the rotating platform.
[0014] In order to be suitable for hollow reactors of different heights, the rotating platform is provided with a through long hole. The length direction of the through long hole is in the direction away from the center of the rotating platform and avoids the moving path of the adjusting push rod. The movable seat can move along the through long hole, and the lower surface of the rotating platform is provided with a telescopic device that drives the movable seat to move along the through long hole.
[0015] To prevent the chain from deviating from the pre-set arrangement, the supporting chain rods include electromagnetic bases mounted on the upper surface of a rotating platform made of magnetic material. Two adjacent electromagnetic bases are connected by rotating collars, and vertical rods are inserted and fixed to the upper ends of the electromagnetic bases. Magnetic attraction provides initial fixation, followed by secondary compression and fixation using a horizontal cover plate.
[0016] As a preferred solution, the vertical pole is provided with multiple length specifications.
[0017] In order to prevent the adjusting push rod from being unable to arrange the chain row into a preset state, the end of the adjusting push rod away from the rotation center is T-shaped, and the surface away from the rotation center is arc-shaped.
[0018] The specific arrangement of the above-mentioned adjusting push rod is that the left and right sides of the ends of the adjusting push rod away from the rotation center can contact the supporting chain rods on both sides of the chain before the adjusting push rod contacts the fixed seat or the movable seat.
[0019] In order to avoid affecting the lowering of the hollow reactor, there is no obstruction between the two reactor brackets set on the rotating platform and the horizontal cover.
[0020] The method for arranging the chain according to a preset path is that the order in which the electromagnetic bases of a single chain are connected to the power is that the electromagnetic bases arranged in sequence from the fixed seat to the movable seat are energized in sequence along the arrangement order, and the order in which the electromagnetic bases are connected to the power is affected by the length of the adjustment push rod and the rotation angle of the adjustment push rod.
[0021] A method for using a dry-type air-core reactor auxiliary production device comprises the following steps:
[0022] S1. Place the reactor bracket on multiple support seats and ensure that the center of the reactor bracket is coaxial with the center of the rotating platform;
[0023] S2. According to the preset winding diameter, the push rod is driven to extend or retract to a suitable length;
[0024] S3, rotating the adjusting push rod to a position close to the fixed seat, and then rotating the adjusting push rod to a position close to the movable seat, and during this process, the electromagnetic base is energized according to the arrangement sequence;
[0025] S4. Fix the second reactor bracket to the lower surface of the horizontal cover plate through the clamping mechanism, and adjust the rotating support arm until the two reactor brackets are aligned. Then lower the height of the horizontal cover plate until the lower surface contacts the upper end of the row chain.
[0026] S5. Winding the wire using a winding mechanism, and arranging a plurality of windings from the inside out;
[0027] S6. Release the clamping mechanism and move the horizontal cover away from the rotating platform to remove the reactor.
[0028] The beneficial effects of the present invention are: the present invention is an auxiliary production device for dry-type hollow reactors. Different from the existing method of manually building support columns for winding, the present device pushes the chain through an adjustable push rod, which can realize the construction of support columns of any radius specification within a certain range, thereby facilitating the winding operation of the hollow reactor. The above structure does not affect the normal offline operation of the reactor, and is not limited to changes in diameter. The present device can also be adaptively adjusted according to changes in the height specifications of the hollow reactor. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] By reading the detailed description of the preferred embodiment below, the solutions and advantages of the present application will become clear to those skilled in the art. The accompanying drawings are only for illustrating the preferred embodiment and are not to be considered as limiting the present invention.
[0030] In the attached figure:
[0031] Figure 1 It is a schematic diagram of the structure of the present invention;
[0032] Figure 2 The present invention is a schematic structural diagram (with Figure 1 different states);
[0033] Figure 3 This is a front view structural diagram of the present invention (the chain is not shown);
[0034] Figure 4 A schematic top view of the rotating platform and related structures of the present invention;
[0035] Figure 5 for Figure 4 Schematic diagram of local structure;
[0036] Figure 6 This is a schematic diagram of the supporting chain rod structure of the present invention;
[0037] Figure 7 This is a schematic diagram of the top view of the rotating platform and related structures of the present invention;
[0038] Figure 8 This is a structural diagram of the dry-type air-core reactor of the present invention after production is completed;
[0039] Figure 9 This is a schematic diagram of the chain structure during the adjustment process for products with different diameters according to the present invention;
[0040] Figure 10 This is a schematic diagram of the structure of the chain support state at different positions of the present invention;
[0041] Figure 11 This is a schematic diagram of the structure of the rotating platform and related structures of the present invention before production;
[0042] The components represented by the reference numerals in the figure are:
[0043] 1. Rotating platform; 11. Support seat; 2. Adjusting push rod; 3. Chain; 31. Fixed seat; 32. Support chain rod; 321. Electromagnetic base; 322. Rotating collar; 323. Vertical pole; 33. Movable seat; 4. Lifting mechanism; 5. Rotating support arm; 6. Horizontal cover; 61. Clamping mechanism; 7. Winding mechanism; 8. Reactor bracket; 9. Reactor body; 91. Winding; 92. Locking rope; 93. Spacer. DETAILED DESCRIPTION
[0044] like Figure 1-11 An auxiliary production device for a dry-type hollow reactor is shown, comprising a rotating platform 1, which is circular and can rotate on a horizontal plane to facilitate subsequent winding. Afterwards, a plurality of support seats 11 are circumferentially arranged on the upper surface of the rotating platform 1 around the rotation axis. The number of support seats 11 corresponds to the structure of the reactor bracket 8, and is used to lock the reactor bracket 8 and make it higher than the upper surface of the rotating platform 1. Afterwards, the plurality of support seats 11 can place and fix the reactor bracket 8 of the dry-type hollow reactor, ensuring that the reactor bracket 8 is in a locked state to facilitate subsequent winding operations.
[0045] Then, the key point is that a plurality of adjusting push rods 2 are circumferentially arranged on the upper surface of the rotating platform 1 around the rotation axis. The number of the above-mentioned adjusting push rods 2 corresponds to the number of support seats 11, that is, an adjusting push rod 2 must be set between two support seats 11, and the above-mentioned adjusting push rod 2 can rotate relative to the rotating platform 1, and the rotation center is located on the rotation axis of the rotating platform 1, that is, the rotation plane of the adjusting push rod 2 is also a plane, and the rotation angle range of a single adjusting push rod 2 is limited to between two adjacent support seats 11 and cannot exceed the above range, that is, the above-mentioned adjusting push rod 2 can only move between the adjacent fork arms of the fixed reactor bracket 8, and the adjusting push rod 2 can extend or shrink toward the end away from the rotation center. Since the diameter of the winding is not fixed, but is wound according to actual use and needs, the above-mentioned adjusting push rod 2 needs to be adjusted in length to adapt to the above-mentioned usage requirements.
[0046] Moreover, based on the above structure, it should be noted that a chain 3 is provided at the rotation range of the single adjusting push rod 2. The chain 3 is used to serve as a supporting structure for winding, so it needs to be set vertically, and one end of the chain 3 is fixed and the other end can be moved to ensure that when the winding diameter is changed, the chain 3 can change its state according to actual needs, such as Figure 7 、 9 As shown in FIG. 10 , the chain 3 does not affect the rotation of the adjusting push rod 2, thereby avoiding the mutual interference phenomenon, and the chain 3 can be pushed by the adjusting push rod 2 to be arranged in an arc shape, as shown in FIG. Figure 7 、 10 As shown, the center point of the arc is located on the rotation axis of the rotating platform 1, as shown in FIG. Figure 7 The supporting foundation shown can be Figure 8 As shown, winding is performed to form a winding, and the winding can be provided with multiple layers. In the above structure, it is not possible to fix it only by the row chain 3. Therefore, the following structure is also required:
[0047] like Figure 1 、 2As shown in Figure 3, a lifting mechanism 4 is vertically provided on one side of the rotating platform 1, and a rotating support arm 5 is provided at the top of the lifting mechanism 4. Therefore, the rotating support arm 5 can be adjusted in height in the vertical direction as needed to adapt to various situations, and a horizontal cover plate 6 is provided at the end of the rotating support arm 5 away from the lifting mechanism 4, and the horizontal cover plate 6 can rotate on the horizontal plane relative to the rotating support arm 5. In order to ensure that it can rotate synchronously with the rotating platform 1, the above-mentioned horizontal cover plate 6 also needs to have the function of rotating on the horizontal plane, and the lower surface of the horizontal cover plate 6 can be used to place and fix the reactor bracket 8 of the dry-type hollow reactor. After fixation, it can cooperate with the reactor bracket 8 set below to form a complete reactor structure. And the above-mentioned method for fixing the reactor bracket 8 is that two clamping mechanisms 61 are symmetrically arranged along the center on the lower surface of the horizontal cover 6, and the ends of the clamping mechanisms 61 are toward the center of the horizontal cover 6 and can be retracted. After the reactor bracket 8 is set, the reactor bracket 8 can be clamped by extending the ends of the clamping mechanism 61, and the clamping mechanism 61 needs to be located between the two fork arms of the reactor bracket 8.
[0048] Afterwards, based on the above structure, the horizontal cover plate 6 can be moved in the vertical direction to the lower surface to contact the upper end of the row chain 3. After the contact, the row chain 3 can be pressed tightly, and irregular winding can be avoided during the winding process.
[0049] Finally, a winding mechanism 7 that can be raised and lowered is provided on one side of the rotating platform 1 and can perform winding. Since the above-mentioned winding mechanism 7 and winding operation are conventional means, they will not be described in detail. The essence of the present invention replaces the previous support structure and has no effect on the original winding.
[0050] The above structure can be used to achieve that, unlike existing production devices, the chain 3 of the device can be freely adjusted and arranged in an arc shape, which can then serve as a support for the winding 91 and is very stable. After the winding action is completed, the air-core reactor can be lifted out as a whole, which significantly improves the production efficiency. According to the actual specifications of the winding 91, it is only necessary to adjust the length of the above-mentioned adjustment push rod 2 and rotate it, so the operation is very convenient and the process is relatively fast.
[0051] Furthermore, in the above structure, the specific structure of the above-mentioned row chain 3 is that the row chain 3 includes a fixed seat 31 arranged on the rotating platform 1, the fixed seat 31 is fixed in position, and the fixed seat 31 is sequentially connected to a plurality of supporting chain rods 32, and adjacent supporting chain rods 32 can rotate relative to each other, such as Figure 9 As shown, it can be arranged freely, and under the push of the adjustment push rod 2, it can be Figure 10As shown, the arrangement is in an arc shape. Therefore, the rotation plane between the above-mentioned support chain rods 32 is a horizontal plane. The end support chain rod 32 away from the fixed seat 31 is rotatably connected to the movable seat 33. In order to prevent the redundant support chain rods 32 from affecting the normal winding during the setting process of the small-diameter winding, it is necessary to store them. For this purpose, the movable seat 33 can move along a preset path on the rotating platform 1. After moving, it can freely change its state and thus be suitable for various arc lengths. It should be noted that in the above structure, the moving path of the movable seat 33 is set in a direction away from the center of the rotating platform 1, as shown in FIG. Figure 7 、 10 As shown in the comparison, when winding wires of different diameters are to be wound, the redundant support chain rods 32 can be stored in a position that does not affect the winding.
[0052] And from Figure 10 Transition to Figure 7 In order to store the redundant support chain rods 32, a driving structure is required to drive the movable seat 33 to move toward a position close to the center of the rotating platform 1. To this end, the rotating platform 1 is provided with a through-long hole, the length of which is in the direction away from the center of the rotating platform 1 and avoids the moving path of the adjusting push rod 2. It should be noted that in the above structure, the movable seat 33 can move along the through-long hole, and a telescoping device is provided on the lower surface of the rotating platform 1 to drive the movable seat 33 to move along the through-long hole. The extension or contraction of the telescoping device can drive the movable seat 33 to store the redundant support chain rods 32 along the through-long hole at a position that does not affect the winding.
[0053] Afterwards, it should be noted that when pushing the row chain 3, except for the support chain rod 32 in contact with the adjustment push rod 2, the movement path of the other support chain rods 32 cannot be preset. It is possible that in the process of rotating the adjustment push rod 2, the support chain rod 32 that has reached the preset position will move. Therefore, in order to prevent the arrangement of the row chain 3 from deviating from the preset mode, the support chain rod 32 includes an electromagnetic base 321 arranged on the upper surface of the rotating platform 1. The rotating platform 1 is made of magnetic material. The two adjacent electromagnetic bases 321 are rotatably connected by a rotating ring 322, and the upper end of the electromagnetic base 321 is fixed with a vertical rod 323. Preliminary fixation can be achieved through magnetic attraction, and then secondary compression and fixation can be achieved through the horizontal cover plate 6. The support chain rod 32 that is contacted and pushed by the adjustment push rod 2 can be powered on first to ensure that it will not move in the subsequent process.
[0054] That is to say, in the above structure, the arrangement of the chain 3 according to the preset path is achieved by powering on the electromagnetic bases 321 of a single chain 3 in the order from the fixed base 31 to the movable base 33, and the powering on order of the electromagnetic bases 321 is affected by the length of the adjusting push rod 2 and the rotation angle of the adjusting push rod 2.
[0055] In addition to the above structure, since reactors have multiple height specifications to choose from, the vertical rods 323 are provided with multiple length specifications to accommodate the processing of reactors of different height specifications. Replacing the vertical rods 323 of different lengths can make the horizontal cover plate 6 contact the top of the chain 3 at different heights.
[0056] It should also be noted that to prevent the adjustment push rod 2 from being unable to arrange the chain 3 into the preset state, the end of the adjustment push rod 2 away from the rotation center is T-shaped, and the surface away from the rotation center is arc-shaped. This ensures that it can push the support chain rod 32 near the fork arm of the reactor bracket 8 to the normal position.
[0057] That is to say, the specific arrangement of the above-mentioned adjusting push rod 2 is that the left and right ends of the adjusting push rod 2 away from the rotation center can contact the supporting chain rods 32 on both sides of the chain 3 before the adjusting push rod 2 contacts the fixed seat 31 or the movable seat 33.
[0058] Finally, to avoid affecting the unloading of the hollow reactor, there is no obstruction between the two reactor brackets 8 installed on the rotating platform 1 and the horizontal cover plate 6. A locking hanging rope 92 can be freely installed between the two reactor brackets 8, which is convenient for use and ensures that the two reactor brackets 8 can be fixedly connected to avoid separation.
[0059] In addition, with respect to the above-mentioned equipment, a method for using a dry-type air-core reactor auxiliary production device is also disclosed, comprising the following steps:
[0060] S1. Place the reactor bracket 8 on multiple support seats 11, and ensure that the center of the reactor bracket 8 is coaxial with the center of the rotating platform 1, as shown in FIG. Figure 1 Status shown;
[0061] S2, according to the preset diameter of the winding 91, drive the adjustment push rod 2 to extend or retract to the appropriate length. Under normal specifications, such as Figure 1 The state shown is sufficient. When it is necessary to adapt to different diameter requirements, such as Figure 9 As shown, the chain 3 needs to be adjusted;
[0062] S3, the adjusting push rod 2 is rotated to the position close to the fixed seat 31, and then the adjusting push rod 2 is rotated to the position close to the movable seat 33. During this process, the electromagnetic base 321 is energized according to the arrangement sequence. After the above actions, the Figure 10 As shown, it is different from Figure 1 The diameter of the chain 3 supports the winding diameter requirement.
[0063] S4. Fix the second reactor bracket 8 to the lower surface of the horizontal cover plate 6 through the clamping mechanism 61, and adjust the rotating support arm 5 until the two reactor brackets 8 are aligned. Then lower the height of the horizontal cover plate 6 until the lower surface contacts the upper end of the chain 3. During this process, according to the different height specifications of the reactors actually processed, the vertical poles 323 of different lengths can be replaced to ensure that the spacing between the two reactor brackets 8 meets the actual requirements when the chain 3 is compressed.
[0064] S5. Winding is performed by the winding mechanism 7, and multiple windings 91 are arranged from the inside out. During this process, each time a winding is arranged, a spacer 93 needs to be arranged. This process is the same as the existing processing process, and only the rotating platform 1 and the horizontal cover plate 6 need to be rotated, which will not be repeated.
[0065] S6. Release the pressing mechanism 61 and move the horizontal cover 6 to a position away from the rotating platform 1, and remove the reactor.
Claims
1. A dry-type air-core reactor auxiliary production device, characterized in that: It comprises a rotating platform (1), wherein a plurality of support seats (11) are provided on the upper surface of the rotating platform (1) in a circumferential direction around the rotating axis, and the plurality of support seats (11) are capable of placing and fixing reactor brackets (8) of dry-type air-core reactors; A plurality of adjusting push rods (2) are circumferentially arranged on the upper surface of the rotating platform (1) around the rotating axis. The adjusting push rods (2) can rotate relative to the rotating platform (1), and the rotation center is located on the rotating axis of the rotating platform (1). The rotation angle range of a single adjusting push rod (2) is limited between two adjacent support seats (11), and the adjusting push rod (2) can extend or retract toward an end away from the rotation center. A chain (3) is provided within the rotation range of a single adjusting push rod (2), and one end of the chain (3) is fixed and the other end is movable. The chain (3) does not affect the rotation of the adjusting push rod (2). The chain (3) can be pushed by the adjusting push rod (2) to be arranged in an arc shape, and the center point of the arc is located on the rotation axis of the rotating platform (1); A lifting mechanism (4) is vertically provided on one side of the rotating platform (1), a rotating support arm (5) is provided at the top end of the lifting mechanism (4), a horizontal cover plate (6) is provided at one end of the rotating support arm (5) away from the lifting mechanism (4), the horizontal cover plate (6) is rotatable on a horizontal plane relative to the rotating support arm (5), and a reactor bracket (8) of a dry-type air-core reactor can be placed and fixed on the lower surface of the horizontal cover plate (6); The horizontal cover plate (6) can be moved in the vertical direction until the lower surface contacts the upper end of the row chain (3); A winding mechanism (7) capable of lifting and lowering is also provided on one side of the rotating platform (1).
2. The dry-type air-core reactor auxiliary production device according to claim 1, characterized in that: The row chain (3) comprises a fixed seat (31) arranged on the rotating platform (1), the fixed seat (31) is sequentially connected to a plurality of supporting chain rods (32), and adjacent supporting chain rods (32) can rotate relative to each other, and the rotation plane is a horizontal plane, and the end supporting chain rod (32) away from the fixed seat (31) is rotatably connected to a movable seat (33), and the movable seat (33) can move along a preset path on the rotating platform (1).
3. The dry-type air-core reactor auxiliary production device according to claim 2, characterized in that: The rotating platform (1) is provided with a through long hole, the length direction of the through long hole is a direction away from the center of the rotating platform (1) and avoids the moving path of the adjusting push rod (2), the movable seat (33) can move along the through long hole, and the lower surface of the rotating platform (1) is provided with a telescopic device for driving the movable seat (33) to move along the through long hole.
4. The dry-type air-core reactor auxiliary production device according to claim 2, characterized in that: The supporting chain rod (32) comprises an electromagnetic base (321) arranged on the upper surface of the rotating platform (1); the rotating platform (1) is made of magnetic material; two adjacent electromagnetic bases (321) are rotatably connected via a rotating collar (322); and a vertical rod (323) is inserted and fixed to the upper end of the electromagnetic base (321).
5. The dry-type air-core reactor auxiliary production device according to claim 4, characterized in that: The vertical pole (323) is provided with a plurality of length specifications.
6. The dry-type air-core reactor auxiliary production device according to claim 1, characterized in that: The end of the adjusting push rod (2) away from the rotation center is T-shaped, and the surface away from the rotation center is arc-shaped.
7. The dry-type air-core reactor auxiliary production device according to claim 6, characterized in that: The left and right sides of the end of the adjusting push rod (2) away from the rotation center can abut against the row chain (3) before the adjusting push rod (2) contacts the fixed seat (31) or the movable seat (33).
8. The dry-type air-core reactor auxiliary production device according to claim 1, characterized in that: There is no shielding between the two reactor brackets (8) arranged on the rotating platform (1) and the horizontal cover plate (6).
9. The dry-type air-core reactor auxiliary production device according to claim 4, characterized in that: The order in which the electromagnetic bases (321) of the individual row chains (3) are connected to electricity is that the electromagnetic bases (321) arranged in sequence from the fixed seat (31) to the movable seat (33) are energized in sequence along the arrangement order, and the order in which the electromagnetic bases (321) are connected to electricity is affected by the length of the adjustment push rod (2) and the rotation angle of the adjustment push rod (2).
10. The method for using the auxiliary production device for dry-type air-core reactor according to claim 9, characterized in that: The following steps are involved: S1. Place the reactor bracket (8) on a plurality of support seats (11), and ensure that the center of the reactor bracket (8) is coaxial with the center of the rotating platform (1); S2, driving the adjustment push rod (2) to extend or retract to a suitable length according to the preset winding diameter; S3, rotating the adjusting push rod (2) to a position close to the fixed seat (31), and then rotating the adjusting push rod (2) to a position close to the movable seat (33), and during this process, the electromagnetic base (321) is energized according to the arrangement sequence; S4. Fix the second reactor bracket (8) to the lower surface of the horizontal cover plate (6) through the clamping mechanism (61), and adjust the rotating support arm (5) until the two reactor brackets (8) are aligned, and then lower the height of the horizontal cover plate (6) until the lower surface contacts the upper end of the row chain (3); S5, winding the wire through the winding mechanism (7), and arranging a plurality of windings from the inside out; S6. Release the clamping mechanism (61) and move the horizontal cover (6) to a position away from the rotating platform (1), and remove the reactor.
Citation Information
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