An end disc assembly, a stator end winding device, a motor stator and a motor

CN224653270UActive Publication Date: 2026-08-18TAIZHOU QUANSHUN ELECTRIC DRIVE TECH CO LTD
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Patent Information

Application Number
CN202522011605.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-18
Publication Date
2026-08-18
Estimated Expiration
2035-09-18

AI Technical Summary

Technical Problem

[0004]绕线在线绕组上缠绕后,其端部的接线端通常采用人工缠绕在绕组组件的位置,或者通过端盘进行定型,但是无论是那种方案,绕线的接线端均缺乏固定的接线焊接位置,不利于自动化生产,造成整体加工效率难以提升,且绕线接线端的最终焊接,依旧需要人工进行操作,造成接线端的位置凌乱,整体性不佳

Benefits of technology

[0033] 1. By adding wire grooves inside the fixed plate to fix and accommodate the busbar, the busbar has a stable relative position to the end plate assembly. The phase wire terminals of the coil winding are welded to the busbar, that is, the phase wire terminals have a stable welding position, which further improves the convenience of automated welding, helps to replace manual welding, and improves production efficiency.

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Abstract

The utility model discloses a kind of end disc assembly, stator end portion wiring device, motor stator and motor, it is related to motor technical field, wherein, end disc assembly, including fixed disc, the fixed disc includes: a plurality of wire slot, for accommodating busbar assembly, same wire slot is arranged with a plurality of first hollow hole along length direction, first hollow hole is communicated with corresponding wire slot;Connecting piece is used to be fixedly connected with the motor stator;This end disc assembly, stator end portion wiring device, motor stator and motor, wire slot is set at stator end portion, busbar is fixed, make the wiring end of winding have stable wiring position, first hollow hole is set simultaneously in wiring position, first hollow hole is communicated with wire slot, increase welding space, it is convenient to carry out mechanization automatic processing, improve processing efficiency.
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Description

Technical Field

[0001] This utility model relates to the field of motor technology, and more specifically, to an end plate assembly, a stator end wiring device, a motor stator, and a motor. Background Technology

[0002] A motor stator typically includes a stator support and multiple sets of coil windings on its outer periphery. The coil windings include a coil support and winding wires. The phase wire ends of the multiple sets of coil windings (such as flat wires or round wires) need to be connected through terminal blocks to form a phase wire interface.

[0003] In the process of implementing this application, the applicant discovered the following problems with the prior art:

[0004] After the winding is wound on the wire winding, the end terminals are usually manually wound onto the winding assembly or shaped by end plates. However, regardless of the method, the winding terminals lack fixed welding positions, which is not conducive to automated production and makes it difficult to improve the overall processing efficiency. Moreover, the final welding of the winding terminals still requires manual operation, resulting in messy terminal positions and poor overall integrity.

[0005] In summary, how to solve the problems of the lack of fixed wiring positions for winding terminals, which is not conducive to automated production, and the messy wiring terminals caused by manual soldering, is a problem that urgently needs to be solved by those skilled in the art. Utility Model Content

[0006] In view of this, the purpose of this utility model is to provide an end plate assembly, which is provided with a wire groove to fix the busbar so that the wiring end of the winding has a stable wiring position. At the same time, a first hollow hole is provided at the wiring position, which is connected to the wire groove to increase the welding space, facilitate mechanized automatic processing, and improve processing efficiency.

[0007] The second objective of this invention is to provide a stator terminal wiring device including the aforementioned end plate assembly, which has the same technical solution and can solve the same technical problem.

[0008] The third objective of this utility model is to provide a motor stator that includes the above-mentioned stator end wiring device, which has the same technical solution and can solve the same technical problem.

[0009] The fourth objective of this utility model is to provide a motor that includes the above-mentioned motor stator, has the same technical solution, and can solve the same technical problem.

[0010] To achieve the above objectives, this utility model provides the following technical solution:

[0011] An end plate assembly for wiring arrangement at the stator end of a motor;

[0012] The end plate assembly includes a fixing plate, the fixing plate comprising:

[0013] Several grooves are provided for accommodating busbar components. Several first hollow holes are arranged along the length of the same groove, and the first hollow holes are connected to the corresponding grooves.

[0014] A connector for fixed connection with the motor stator.

[0015] Preferably, the end plate assembly further includes a terminal positioning component fixed relative to the fixed plate. The terminal positioning component is arranged in a ring array and is used to fix the wires connected to the busbar assembly.

[0016] Preferably, the end plate assembly further includes a cover plate, which is fixedly connected to the fixed plate and is used to cover the wire groove;

[0017] The cover plate includes a threading channel, which is arranged in a one-to-one correspondence with the first hollow hole.

[0018] Preferably, the cover plate includes a threading protrusion, the threading channel passes through the threading protrusion, and the entrance end of the threading channel is wide.

[0019] Preferably, the fixing disk includes an inner ring portion and an outer ring portion;

[0020] The groove is arranged in the inner ring portion;

[0021] The projection of the cover plate and the inner ring portion along its own axial direction overlaps.

[0022] Preferably, the fixing plate and the covering plate are provided with interlocking annular grooves and flanges;

[0023] The fixed plate and the cover plate are provided with positioning protrusions and positioning recesses that engage with each other.

[0024] A stator end wiring device includes a bus assembly and an end plate assembly as described in any one of the above;

[0025] The busbar assembly includes several busbars, and each busbar is installed in a one-to-one correspondence with a cable tray.

[0026] An electric motor stator includes a stator support assembly, coil windings, and the stator end wiring device described above.

[0027] The coil windings are arranged in a ring array around the stator support assembly, and the end plate assembly is fixedly disposed at the axial end of the stator support assembly.

[0028] The coil winding includes several winding units, and each winding unit includes a phase line terminal. All phase line terminals of different coil windings are connected through the same busbar.

[0029] Preferably, the central portion of the stator support assembly is recessed inward to form a recessed area;

[0030] The fixed plate has a recessed section for the wire groove, and is accommodated in the recessed area.

[0031] An electric motor includes a motor rotor and the motor stator described above.

[0032] The end plate assembly provided by this utility model has at least the following advantages compared with the prior art:

[0033] 1. By adding wire grooves inside the fixed plate to fix and accommodate the busbar, the busbar has a stable relative position to the end plate assembly. The phase wire terminals of the coil winding are welded to the busbar, that is, the phase wire terminals have a stable welding position, which further improves the convenience of automated welding, helps to replace manual welding, and improves production efficiency.

[0034] 2. At the same time, a first hollow hole is set at the corresponding position of the welding position of the busbar, and the first hollow hole is connected to the wire groove, which increases the welding operation space, makes it easier for the welding equipment to go into the designated position for welding, facilitates mechanized automatic welding, and improves production efficiency.

[0035] The stator end wiring device provided by this utility model includes the aforementioned end plate assembly and has the same beneficial effects.

[0036] The motor stator provided by this utility model includes the stator end wiring device described above and has the same beneficial effects.

[0037] The motor provided by this utility model includes the motor stator described above and has the same beneficial effects. Attached Figure Description

[0038] 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 embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on the provided drawings without creative effort.

[0039] Figure 1 This is a schematic diagram of the structure of the first embodiment of the motor stator provided by this utility model;

[0040] Figure 2 for Figure 1Bottom view of the stator of the electric motor;

[0041] Figure 3 This is a schematic diagram of the structure of the first embodiment of the end plate assembly provided by this utility model;

[0042] Figure 4 A schematic diagram of the structure of a first embodiment of the stator end wiring device provided by this utility model;

[0043] Figure 5 This is a schematic diagram of the busbar assembly provided by this utility model;

[0044] Figure 6 A schematic diagram of the assembly of the coil winding and busbar assembly provided by this utility model;

[0045] Figure 7 This is a schematic diagram of the structure of a second embodiment of the motor stator provided by this utility model;

[0046] Figure 8 A schematic diagram of the structure of a second embodiment of the stator end wiring device provided by this utility model;

[0047] Figure 9 Provided by this utility model Figure 7 Enlarged view of point A in the middle;

[0048] Figure 10 This is a schematic diagram of the structure of the first embodiment of the cover plate provided by this utility model;

[0049] Figure 11 This is a schematic diagram of the third embodiment of the motor stator provided by this utility model;

[0050] Figure 12 Provided by this utility model Figure 11 Bottom view of the stator of the electric motor;

[0051] Figure 13 Provided by this utility model Figure 11 Enlarged view of point B in the image;

[0052] Figure 14 This is a schematic diagram of the third embodiment of the stator end wiring device provided by this utility model;

[0053] Figure 15 A schematic diagram of the assembly of the coil winding and the stator end wiring device provided by this utility model;

[0054] Figure 16 Provided by this utility model Figure 11 A sectional view of the stator of the electric motor;

[0055] Figure 17This is a schematic diagram of the fourth embodiment of the motor stator provided by this utility model;

[0056] Figure 18 This is a schematic diagram of the structure of the second embodiment of the cover plate provided by this utility model;

[0057] Figure 19 This is a schematic diagram of the structure of a second embodiment of the end plate assembly provided by this utility model;

[0058] Figure 20 Provided by this utility model Figure 17 Enlarged view of point C in the middle;

[0059] Figure 21 Provided by this utility model Figure 18 Enlarged view of point D in the middle.

[0060] In the picture:

[0061] 1. End plate assembly; 11. Fixing plate; 111. Inner ring; 1111. Wire groove; 1112. First hollow hole; 1113. Positioning protrusion; 1114. Ring groove; 112. Outer ring; 1121. Terminal positioning assembly; 1122. Countersunk hole; 12. Cover plate; 121. Bending protrusion; 122. Second hollow hole; 123. Positioning notch; 124. Pressing notch; 125. Wire threading protrusion; 1251. Wide opening;

[0062] 2. Busbar assembly; 2U, U-phase busbar; 2V, V-phase busbar; 2W, W-phase busbar; 21. Wiring protrusion; 22. Phase wire protrusion; 23. Phase wire terminal;

[0063] 3. Stator support assembly;

[0064] 4. Coil winding; 41. Phase wire terminal; 411. Straight section; 412. Terminal section; 42. Wire terminal;

[0065] 5. Conductor components. Detailed Implementation

[0066] 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 of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0067] The core of this utility model is to provide an end plate assembly, which is provided with a wire groove to fix the busbar so that the winding end has a stable connection position. At the same time, a first hollow hole is provided at the connection position, which is connected to the wire groove to increase the welding space, facilitate mechanized automatic processing, and improve processing efficiency.

[0068] The second core of this utility model is to provide a stator end wiring device including the above-mentioned end plate assembly, which has the same technical solution and can solve the same technical problem.

[0069] The third core of this utility model is to provide a motor stator including the above-mentioned stator end wiring device, which has the same technical solution and can solve the same technical problem.

[0070] The fourth core of this utility model is to provide a motor including the above-mentioned motor stator, which has the same technical solution and can solve the same technical problem.

[0071] Example 1:

[0072] Please refer to Figures 11-19 As shown, an end plate assembly is used for wiring arrangement at the end of a motor stator;

[0073] The end plate assembly includes a fixed plate 11, which includes:

[0074] Several wire grooves 1111 are used to accommodate busbar assembly 2. Several first hollow holes 1112 are arranged along the length of the same wire groove 1111. The first hollow holes 1112 are connected to the corresponding wire grooves 1111.

[0075] Connector, used for fixed connection with motor stator.

[0076] like Figure 19 As shown, the fixing plate 11 of the end plate assembly 1 is provided with a connector, such as a through hole for bolts to pass through, so that the fixing plate 11 can be fixedly connected to the stator support assembly 3 of the motor stator by bolts. When designing the fixing plate 11, it is preferable that the outer diameter of the fixing plate 11 is not greater than the outer diameter of the motor stator, so that the fixing plate 11 is fixedly set at the end of the motor stator. After the phase wire connection terminal 41 of the vertical winding coil winding 4 extends along the motor axis to the tail, it is bent in the direction of the motor axis, so that it can be fixed with the components in the end plate assembly 1.

[0077] Meanwhile, the first hollow hole 1112 is provided on the fixed plate 11, which can play a role in weight reduction. The first hollow hole 1112 is connected to the wire groove 1111, and the busbar located at the position of the first hollow hole 1112 can be used as the welding position of the phase wire terminal 41, thereby increasing the welding operation space, facilitating mechanized automatic welding, and improving production efficiency. At the same time, the same busbar is provided with several first hollow holes 1112 along the length direction, which can enable the phase wire terminals 41 of the same phase in different coil windings 4 to be welded to the busbars corresponding to different first hollow holes 1112 respectively, thereby reducing the mutual interference of different phase wire terminals 41, ensuring neat wiring at the stator end, and thus reducing the space occupied by the motor axis.

[0078] In some embodiments, the end plate assembly further includes a terminal positioning component 1121 fixed relative to the fixed plate 11. The terminal positioning component 1121 is arranged in a ring array for fixing the wires connected to the bus assembly 2.

[0079] like Figure 19 As shown, the terminal positioning assembly 1121 is arranged in a ring array to directly fix the phase wire terminal 41 extending from the circumference of the fixed plate 11, thereby making the phase wire terminal 41 have a stable relative positional relationship with the fixed plate 11 and the busbar, which is convenient for the robot arm to grasp and weld it to the busbar.

[0080] In some embodiments, the end plate assembly further includes a cover plate 12, which is fixedly connected to the fixed plate 11 and is used to cover the wire groove 1111.

[0081] The cover plate 12 includes a wire-threading channel, which is arranged in a one-to-one correspondence with the first hollow hole 1112.

[0082] like Figure 18 As shown, a cover plate 12 is used to cover the wire trough 1111 to prevent the busbar from falling out of the wire trough 1111 and to ensure its stability. At the same time, a wire passage is provided on the cover plate 12 to facilitate the phase wire terminal 41 to pass through and be welded to the busbar.

[0083] In some embodiments, the cover plate 12 is also provided with a second perforation 122 for heat dissipation of the busbar and lightweight design of the cover plate 12.

[0084] In some embodiments, the cover plate 12 includes a threading protrusion 125, a threading channel passing through the threading protrusion 125, and the entrance end of the threading channel is a wide opening 1251.

[0085] like Figure 18 , Figure 20 and Figure 21As shown, the cover plate 12 is provided with a wire-passing protrusion 125, and the wire-passing channel passes through the axis of the wire-passing protrusion 125, thereby increasing the length of the wire-passing channel. This allows the phase wire terminal 41 to be guided and fixed radially when passing through the wire-passing channel, ensuring that the phase wire terminal 41 has a stable relative position with the welding position of the busbar after passing through the wire-passing channel. This facilitates mechanized and automated welding production and improves production efficiency.

[0086] like Figure 21 As shown, the cross-section of the wire passage is rectangular, and the opening at the wire inlet is a wide opening 1251. Guide slopes are provided on all four sides to facilitate the quick passage of the phase wire terminal 41 of the flat wire type.

[0087] It is worth noting that, such as Figure 20 As shown, when the phase wire terminal 41 of some flat wire types is welded to the busbar, its contact surface is the side surface in the non-width direction. Therefore, the straight section 411 of the phase wire terminal 41 is twisted to ensure that the side wall in the width direction of the phase wire terminal 41 is clamped by the terminal positioning component 1121 and abuts against the busbar welding position.

[0088] In some embodiments, the cross-section of the wire passage is circular, and the opening at the wire inlet is provided with a beveled surface or an arc surface to facilitate the quick passage of the phase wire terminal 41 of the circular wire type.

[0089] In some embodiments, the fixed disk 11 includes an inner ring portion 111 and an outer ring portion 112;

[0090] The cable tray 1111 is arranged in the inner ring 111;

[0091] The projection of the cover plate 12 and the inner ring 111 along their own axial direction overlaps.

[0092] like Figure 16 and Figure 19 As shown, the fixed disk 11 includes an inner ring portion 111 and an outer ring portion 112. The inner ring portion 111 is recessed downwards, and the wire groove 1111 is arranged in the inner ring portion 111, so that the busbar is accommodated in the recessed area of ​​the fixed disk 11, thereby reducing the axial space occupied by the motor stator and helping to shorten the axial dimension of the motor.

[0093] At the same time, the inner ring 111 is covered by the cover plate 12, that is, the cable tray 1111 is covered to prevent the busbar in the cable tray 1111 from detaching.

[0094] In some embodiments, the fixing disk 11 and the covering disk 12 are provided with interlocking annular grooves 1114 and flanges;

[0095] The fixed plate 11 and the cover plate 12 are provided with positioning protrusions 1113 and positioning recesses 123 that engage with each other.

[0096] like Figure 19 As shown, an annular groove 1114 is provided on the outer periphery of the inner ring 111, which is fitted with the flange on the outer periphery of the cover plate 12 for installation, thereby enabling the cover plate 12 to be snapped and fixed to the fixed plate 11.

[0097] Meanwhile, positioning protrusions 1113 and positioning recesses 123 are provided at corresponding positions on the fixed plate 11 and the cover plate 12 for positioning. The two are installed together to ensure that the relative position of the cover plate 12 and the fixed plate 11 is determined when they are assembled, so that the wire channel corresponds one-to-one with the welding position on the busbar.

[0098] In addition to the end plate assembly disclosed in the above embodiments, the present invention also provides a stator end wiring device, including bus assembly 2 and the end plate assembly of any one of the above.

[0099] Busbar assembly 2 includes several busbars, and each busbar is installed in a one-to-one correspondence with cable tray 1111.

[0100] like Figure 15 and Figure 17 As shown, different phase buses are set in several slots 1111 of the end panel assembly 1, and the different buses do not interfere with each other.

[0101] like Figure 20 As shown, after the phase wire terminal 41 of the coil winding 4 extends along the motor axis, it bends towards the motor axis. Its straight section 411 is twisted at 90° and is clamped and fixed by the terminal positioning component 1121. Then it bends downward, passes through the wire channel, and is welded to the busbar at the first hollow hole 1112 for conduction.

[0102] The structure of the other parts of the stator end wiring device is described in reference to existing technology and will not be repeated here.

[0103] In addition to the end plate assembly and stator end wiring device disclosed in the above embodiments, the present invention also provides a motor stator, including a stator support assembly 3, a coil winding 4 and the above-mentioned stator end wiring device.

[0104] The coil windings 4 are arranged in a ring array around the stator support assembly 3, and the end plate assembly is fixedly installed at the axial end of the stator support assembly 3.

[0105] The coil winding 4 includes several winding units, and each winding unit includes a phase line terminal 41. All phase line terminals 41 of different coil windings 4 are connected through the same busbar.

[0106] In some embodiments, the central portion of the stator support assembly 3 is recessed inward to form a recessed region;

[0107] The fixed plate 11 has a partial recess of the wire groove 1111, and is accommodated in the recessed area.

[0108] like Figure 16 As shown, the support portion of the stator support assembly 3 is recessed inward to form a recessed area, which is accommodated by the inner ring portion 111 of the recessed fixed plate 11, so as to reduce the influence of the stator end phase wire wiring on the axial dimension of the motor and help to shorten the axial dimension of the motor.

[0109] The structure of the other parts of the motor is described in reference to existing technologies and will not be repeated here.

[0110] Example 2:

[0111] Please refer to Figure 1 and Figure 3 An end plate assembly for wiring arrangement at the stator end of a motor;

[0112] The terminal assembly includes a relatively fixed fixed plate 11 and several terminal positioning components 1121;

[0113] Fixed disk 11 includes:

[0114] Several cable trays 1111 are used to accommodate busbar assembly 2;

[0115] Connecting components, used for fixed connection with the motor stator;

[0116] Terminal positioning assembly 1121 is used to fix the wires connected to bus assembly 2.

[0117] like Figure 3 As shown, the end plate assembly 1 includes a fixed plate 11. The fixed plate 11 is provided with connecting parts, such as through holes for bolts to pass through, so that the fixed plate 11 can be fixedly connected to the stator support assembly 3 of the motor stator by bolts. When designing the fixed plate 11, it is preferable that the outer diameter of the fixed plate 11 is not greater than the outer diameter of the motor stator, so that the fixed plate 11 is fixedly set at the end of the motor stator. The phase wire terminal 41 of the vertical winding coil winding 4 extends along the motor axis towards the tail and then bends in the direction of the motor axis, so that it can be fixed with the components in the end plate assembly 1. Specifically, the end plate assembly 1 is provided with a terminal positioning component 1121. When the phase wire terminal 41 is bent in the direction of the motor axis, it can be fixed by the terminal positioning component 1121, so that the phase wire terminal 41 and the end plate assembly 1 have a stable positional relationship.

[0118] Furthermore, the fixed disk 11 is provided with several wire slots 1111, and the busbars in the busbar assembly 2 are arranged corresponding to the wire slots 1111. Taking the position of a three-phase motor as an example, its three phases are U phase, V phase, and W phase, so the fixed disk 11 is provided with a total of three wire slots 1111. The busbar assembly 2 includes a U phase busbar 2U, a V phase busbar 2V, and a W phase busbar 2W. The coil winding 4 includes three winding units, namely a U phase winding unit, a V phase winding unit, and a W phase winding unit. In the actual production process, the motor stator includes several coil windings 4. Taking three coil windings 4 as an example, a total of three U phases are included in one electronic stator. The phase line terminals 41 of the winding unit, the phase line terminals 41 of the three V-phase winding units, and the phase line terminals 41 of the three W-phase winding units are all welded and connected to the U-phase busbar. The phase line terminals 41 of the three V-phase winding units are all welded and connected to the V-phase busbar. The phase line terminals 41 of the three W-phase winding units are all welded and connected to the W-phase busbar. The U-phase busbar 2U, the V-phase busbar 2V, and the W-phase busbar 2W are respectively provided with phase line terminals 23 of the U-phase, V-phase, and W-phase, which are used to electrically connect to the U-phase, V-phase, and W-phase of the power supply line, respectively.

[0119] Since the busbar is fixedly installed in the wire slot 1111, the busbar and the end plate assembly 1 have a stable relative positional relationship. The phase wire terminal 41 is fixed by the terminal positioning assembly 1121, so the phase wire terminal 41 also has a stable relative positional relationship with the end plate assembly 1. That is, both the busbar and the phase wire terminal 41 have a stable positional relationship with the end plate assembly 1, and there is a stable welding point between the phase wire terminal 41 and the busbar, which facilitates mechanized automatic welding, thereby improving production efficiency and ensuring the neatness of the phase wire arrangement at the end of the motor stator.

[0120] In some embodiments, the groove 1111 is an arc-shaped groove or an annular groove;

[0121] Several wire grooves 1111 have different radii and are arranged concentrically with the fixed plate 11.

[0122] like Figure 1 and Figure 3 As shown, the wire groove 1111 is arranged concentrically with the end plate assembly 1 and the stator support assembly 3, while the coil winding 4 is arranged on the circumferential side of the stator support assembly 3. Therefore, when the busbar is arranged in the wire groove 1111 which is concentrically arranged with the stator support assembly 3, the length of the phase wire terminal 41 can be effectively shortened, thereby reducing the accumulation of windings at the end of the motor stator, reducing the space occupied at the end of the motor stator, reducing the axial length of the motor, and maintaining the neatness of the wiring at the end of the motor stator.

[0123] Meanwhile, the radii of different wire troughs 1111 are not equal, so that multiple wire troughs 1111 can be arranged concentrically, and thus multiple busbars can be arranged concentrically to meet the wiring needs of two-phase or three-phase motor stator ends.

[0124] In some embodiments, the wire groove 1111 includes a plurality of straight segments that form an angle with each other.

[0125] like Figure 3 As shown, the wire groove 1111 adopts a broken line design, which includes several straight line segments that form an angle with each other, and the lengths of any two straight line segments are equal, and the angle between any two straight line segments is equal.

[0126] like Figure 5 As shown, the busbar in the busbar assembly 2 also adopts a zigzag design. Therefore, after the busbar is assembled into the wire groove 1111, it can be limited at the bend of the zigzag, thereby ensuring that the busbar can have a stable positional relationship in the wire groove 1111.

[0127] In some embodiments, the wire trough 1111 is designed to have the same length as the busbar, that is, the wire trough 1111 and the busbar are assembled in a one-to-one correspondence, and the relative positional relationship between the two during assembly is unique.

[0128] In some embodiments, the cable tray 1111 adopts a ring design, that is, when the busbar and the cable tray 1111 are assembled, the appropriate installation position of the busbar can be selected according to the wiring requirements. In other words, the relative positional relationship between the busbar and the cable tray 1111 during assembly is not unique, which has higher flexibility. However, after assembly, it is still limited by the broken line design, and the assembled busbar and the cable tray 1111 still have a stable relative positional relationship.

[0129] In some embodiments, the fixing plate 11 further includes a plurality of first hollow holes 1112, at least one of the first hollow holes 1112 overlapping with all the wire grooves 1111.

[0130] like Figure 4 As shown, the fixed plate 11 is provided with several first hollow holes 1112, which helps to dissipate heat from the busbars inside the fixed plate 11 and achieves the purpose of lightweight design; moreover, at least one first hollow hole 1112 overlaps with all the wire grooves 1111 at the same time, so after the busbar assembly 2 is assembled with the wire grooves 1111, all the busbars are exposed in the first hollow hole 1112. When disassembling and assembling the busbars, all the busbars can be removed simply by passing through the first hollow hole 1112, which improves the convenience of motor maintenance.

[0131] In some embodiments, the end plate assembly further includes a cover plate 12, which is fixedly connected to the fixed plate 11 and is used to cover the opening of the wire groove 1111;

[0132] The cover plate 12 includes a second hollow hole 122 through which the connection end of the coil winding 4 in the motor stator passes, and / or through which the wiring protrusion 21 and / or phase wire protrusion 22 of the bus assembly 2 pass.

[0133] like Figure 7 , Figure 8 and Figure 10 As shown, a cover plate 12 is provided on the fixed plate 11 to cover the opening of the wire groove 1111, so as to prevent the busbar from falling out of the wire groove 1111. Moreover, a second hollow hole 122 is provided on the cover plate 12 so that the phase wire terminal 41 can be welded and connected to the busbar through the second hollow hole 122.

[0134] In some embodiments, the busbar is completely hidden inside the wire groove 1111, that is, below the cover plate 12, and the phase wire terminal 41 needs to pass through the second hollow hole 122 into the wire groove 1111 to be welded to the busbar.

[0135] In some embodiments, such as Figure 6 , Figure 7 and Figure 8 As shown, the busbar is provided with a wiring protrusion 21, which passes through the second hollow hole 122 and is located above the cover plate 12. Therefore, the phase wire terminal 41 can be directly welded to the wiring protrusion 21 for conduction.

[0136] In some embodiments, the fixed disk 11 includes an inner ring portion 111 and an outer ring portion 112 that are coaxially fixed;

[0137] The wire groove 1111 is provided in the inner ring 111;

[0138] The terminal positioning assembly 1121 is fixedly connected to the outer ring 112 and arranged in a ring array;

[0139] The projection of the cover plate 12 and the inner ring 111 along their own axial direction overlaps.

[0140] like Figure 8 As shown, the terminal positioning component 1121 is set in the outer ring 112. The phase wire terminal 41 extends along the motor axis and bends towards the motor axis to form a straight section 411. The terminal positioning component 1121 can fix the straight section 411 of the phase wire terminal 41. The wire groove 1111 is set in the inner ring 111. The end of the phase wire terminal 41 is fixed by the busbar, which realizes the fixation of the phase wire terminal 41 at different positions, thereby ensuring that the phase wire terminal 41 as a whole has a stable relative positional relationship with the end plate component 1, and ensuring that the position of the phase wire terminal 41 is stable during motor operation.

[0141] In addition to the end plate assembly disclosed in the above embodiments, the present invention also provides a stator end wiring device, including bus assembly 2 and the end plate assembly of any one of the above.

[0142] Busbar assembly 2 includes several busbars, and each busbar is installed in a one-to-one correspondence with cable tray 1111.

[0143] like Figure 1 and Figure 7 As shown, the busbars and cable trays 1111 are arranged accordingly, and different busbars are used to weld and connect to the phase wire terminals 41 of different phases.

[0144] In some embodiments, the busbar includes a plurality of wiring protrusions 21 and phase line protrusions 22, which extend to the outside of the wire groove 1111;

[0145] The wiring protrusion 21 is used to connect and conduct with the coil winding 4 inside the motor stator;

[0146] The phase wire protrusion 22 is used to connect and conduct with the phase wire.

[0147] like Figure 5 and Figure 6 As shown, a number of wiring protrusions 21 and phase line protrusions 22 are provided on one side of the busbar. Taking a three-phase motor with three sets of coil windings 4 inside the motor as an example, the busbar assembly 2 includes three sets of busbars, and each busbar is provided with three wiring protrusions 21 and one phase line protrusion 22 at equal intervals. The three wiring protrusions 21 are welded to the phase line terminals 41 of the same phase in the three corresponding coil windings 4 for conduction. The phase line protrusions 22 are used to be welded to the phase line terminals 23 for conduction.

[0148] Furthermore, both the wiring protrusion 21 and the phase wire protrusion 22 can extend to the outside of the wire groove 1111, which facilitates automated welding.

[0149] The structure of the other parts of the stator end wiring device is described in reference to existing technology and will not be repeated here.

[0150] In addition to the end plate assembly and stator end wiring device disclosed in the above embodiments, the present invention also provides a motor stator, including a stator support assembly 3, a coil winding 4 and a stator end wiring device of any one of the above.

[0151] The coil windings 4 are arranged in a ring array around the stator support assembly 3, and the end plate assembly is fixedly installed at the axial end of the stator support assembly 3.

[0152] The coil winding 4 includes several winding units, and each winding unit includes a phase line terminal 41. All phase line terminals 41 of different coil windings 4 are connected through the same busbar.

[0153] It is worth noting that, such as Figure 2 As shown, the winding unit of the coil winding 4 also includes a wire connection terminal 42. Preferably, the wire connection terminal 42 and the phase wire connection terminal 41 extend in opposite directions along the motor axis to avoid mutual interference during wiring.

[0154] Furthermore, multiple wire terminals 42 within the same coil winding 4 are connected by welding through the conductor assembly 5, and the conductor assembly 5 itself is fixed to the stator support assembly 3.

[0155] Example 3:

[0156] Please refer to Figure 1 , Figure 3 , Figure 4 and Figure 5 As shown, a stator end wiring device is used for end wiring of a motor stator;

[0157] Stator end wiring device, including:

[0158] The end plate assembly 1 includes a connector and several wire grooves 1111, the connector being used for fixed connection with the motor stator;

[0159] Bus assembly 2 includes several busbars, which are arranged one-to-one with the cable trays 1111. Each busbar includes several wiring protrusions 21 and phase line protrusions 22. Both wiring protrusions 21 and phase line protrusions 22 extend to the outside of the cable trays 1111. The wiring protrusions 21 of the same busbar are arranged in a ring array about the axis of the end plate assembly 1. All wiring protrusions 21 and / or phase line protrusions 22 do not overlap when projected radially along the end plate assembly 1.

[0160] like Figure 1 and Figure 3 As shown, the end plate assembly 1 is provided with a connector, such as a through hole for bolts to pass through, so that the fixed plate 11 can be fixedly connected to the stator support assembly 3 of the motor stator by bolts. When designing the fixed plate 11, it is preferable that the outer diameter of the fixed plate 11 is not greater than the outer diameter of the motor stator, so that the fixed plate 11 is fixedly set at the end of the motor stator. After the phase wire connection terminal 41 of the vertical winding coil winding 4 extends along the motor axis to the tail, it is bent in the direction of the motor axis, so that it can be fixed with the components in the end plate assembly 1.

[0161] Specifically, the end panel assembly 1 is provided with several wire grooves 1111, and different phase busbars are provided in the wire grooves 1111 respectively. Several wiring protrusions 21 are arranged in a ring array on each busbar, and the wiring protrusions 21 extend to the outside of the wire grooves 1111.

[0162] Therefore, the phase wire terminal 41, after being bent towards the motor axis, can be directly welded to the nearest wiring protrusion 21, thereby shortening the length of the phase wire terminal 41. Furthermore, the terminal segment 412 of the phase wire terminal 41 is directly welded and fixed to the wiring protrusion 21. Thus, the shorter phase wire terminal 41 is fixed by welding the terminal segment 412 to the wiring protrusion 21, thereby fixing the phase wire terminal 41 and ensuring a relatively stable relative position between the phase wire terminal 41 and the end plate assembly 1, preventing different phase wire terminals 41 from contacting and conducting with each other.

[0163] Moreover, the wiring protrusions 21 and / or phase line protrusions 22 of different busbars do not overlap in the radial projection of the end plate assembly 1. That is, when the phase line wiring end 41 extending from the coil winding 4 on the outer periphery of the end plate assembly 1 is bent inward for welding, there will be no mutual interference. By designing the arrangement angle of the busbars, a one-to-one arrangement of the wiring protrusion 21 position and the phase line wiring end 41 position can be achieved, which helps to realize mechanized automatic welding and improve production efficiency.

[0164] In some embodiments, the wire groove 1111 is an arc groove;

[0165] Several wire troughs 1111 have different radii and are arranged concentrically;

[0166] The areas enclosed by the central angles of any two wire grooves 1111 have partially non-overlapping regions.

[0167] like Figure 3 As shown, the cable trough 1111 is an arc-shaped groove. When the busbar is installed into the cable trough 1111, the busbar is fixed, that is, the busbar and the cable trough 1111 have a fixed installation angle, and the angle is unique.

[0168] Moreover, different wire grooves 1111 have the same central angle, and the area enclosed by the central angle partially overlaps. That is, the arrangement angle of different wire grooves 1111 is different. Therefore, different busbars have different installation angles when assembled relative to the end plate assembly 1, that is, staggered installation. This allows the wiring protrusions 21 on different busbars to be staggered, thereby ensuring that the radial projections of different wiring protrusions 21 along the end plate assembly 1 do not overlap.

[0169] In some embodiments, the wire groove 1111 includes a plurality of straight segments that form an angle with each other.

[0170] like Figure 3 As shown, the wire groove 1111 adopts a broken line design, which includes several straight line segments that form an angle with each other;

[0171] like Figure 5As shown, the busbar in the busbar assembly 2 also adopts a zigzag design. Therefore, after the busbar is assembled into the wire groove 1111, it can be limited at the bend of the zigzag, thereby ensuring that the busbar can have a stable positional relationship in the wire groove 1111.

[0172] In some embodiments, the groove 1111 is an annular groove, and all straight segments within the same groove 1111 have the same length, and the included angle between any two straight segments is equal.

[0173] The lengths of any two straight segments within the trough 1111 are equal, and the included angle between any two straight segments is equal.

[0174] The cable tray 1111 adopts a ring design, which means that when the busbar and the cable tray 1111 are assembled, the appropriate installation position of the busbar can be selected according to the wiring requirements. In other words, the relative position relationship between the busbar and the cable tray 1111 during assembly is not unique, which has higher flexibility. However, after assembly, it is still limited by the broken line design, and the assembled busbar and the cable tray 1111 still have a stable relative position relationship.

[0175] In some embodiments, bus assembly 2 includes a U-phase bus 2U, a V-phase bus 2V, and a W-phase bus 2W;

[0176] There are three sets of cable trays 1111, which are used to assemble the U-phase busbar 2U, the V-phase busbar 2V and the W-phase busbar 2W respectively;

[0177] The starting ends of the U-phase bus 2U, the V-phase bus 2V, and the W-phase bus 2W are arranged sequentially in a counterclockwise direction along the end plate assembly 1, or the starting ends of the U-phase bus 2U, the W-phase bus 2W, and the V-phase bus 2V are arranged sequentially in a counterclockwise direction along the end plate assembly 1.

[0178] like Figure 4 , Figure 5 and Figure 6 As shown, taking a three-phase motor as an example, the coil winding 4 includes U-phase coil units, V-phase coil units and W-phase coil units arranged in a counterclockwise direction, while the bus assembly 2 includes W-phase bus 2W, U-phase bus 2U and V-phase bus 2V arranged from the inside to the outside. Their order is different from the coil unit arrangement order in the coil winding 4. The U-phase bus 2U in the middle protrudes from the other two buses, and the arrangement angles of the other two buses are also different. Therefore, under the premise that the arrangement angles of all buses are different, the difference in arrangement angles between the inner and outer busbars is effectively reduced.

[0179] Within different busbars, the position of the phase line protrusion 22 is proportional to the distance between the two ends of the corresponding busbar. Reducing the difference in the arrangement angle of the inner and outer busbars helps to reduce the spacing of the phase line protrusions 22 of the three busbars, thereby making the three phase line terminals 23 have a smaller spacing, which facilitates the wiring of different phase lines of the external power supply.

[0180] In some embodiments, the end plate assembly 1 includes a fixed plate 11 and a cover plate 12;

[0181] The cover plate 12 is used to cover the wire groove 1111, and the cover plate 12 includes a second hollow hole 122 for the wire connection protrusion 21 to pass through. A bending protrusion 121 is provided on the cover plate 12 around the second hollow hole 122 for the wire to bend around the bending protrusion 121 and then contact and conduct with the wire connection protrusion 21.

[0182] like Figure 7 , Figure 8 and Figure 9 As shown, the end plate assembly 1 includes a fixed plate 11 and a cover plate 12. The wire groove 1111 is arranged on the fixed plate 11, while the cover plate 12 covers the wire groove 1111 to prevent the busbar from falling out of the wire groove 1111. At the same time, a second hollow hole 122 is provided on the cover plate 12, which can not only play a role in weight reduction, but also allow the wiring protrusion 21 and / or the phase wire protrusion 22 to extend to the top of the cover plate 12, which facilitates the welding operation of the phase wire terminal 41.

[0183] like Figure 9 As shown, the cover plate 12 is also provided with a bending protrusion 121. The phase wire terminal 41 extends from the coil unit along the motor axis and bends towards the motor axis to form a straight section 411. When the straight section 411 passes the bending protrusion 121, it is bent with the bending protrusion 121 as the bending point to form a connection section 412. The connection section 412 is directly welded to the connection protrusion 21. That is, by setting the bending protrusion 121, a bending support point for the second bend is provided for the mechanized automatic welding of the phase wire terminal 41.

[0184] Furthermore, the bending protrusion 121 and the wiring protrusion 21 are located on both sides of the wiring segment 412, clamping the wiring segment 412 to ensure its positional stability and prevent the wiring segment 412 from detaching from the wiring protrusion 21 due to poor soldering.

[0185] It is worth noting that the entire end plate assembly 1 is made of insulating material, meaning that the wiring segment 412 abuts against the bent protrusion 121 but is not conductive.

[0186] In some embodiments, the inner ring portion of the fixed disk 11 is recessed downward to form an inner ring portion 111, and the non-recessed area forms an outer ring portion 112;

[0187] The cable tray 1111 is arranged in the inner ring 111;

[0188] The outer ring 112 is provided with a countersunk hole 1122. The large diameter portion of the countersunk hole 1122 has a notch on the side near the inner ring 111, so that the head of the bolt assembled in the countersunk hole 1122 can abut and press against the surface of the cover plate 12.

[0189] like Figure 3 As shown, the inner ring 111 of the fixed disk 11 is recessed downwards, and the wire groove 1111 is arranged in the recessed area, thereby fixing the busbar in the recessed area, reducing the occupation of the axial space of the motor, and further reducing the axial length of the motor.

[0190] Meanwhile, the inner ring 111 is completely covered by the cover plate 12, so that the end plate assembly 1 is flat and the stator end is neat. At the same time, by providing a countersunk hole 1122 in the outer ring 112, and providing a notch on the side of the countersunk hole 1122 near the inner ring 111, the bolt head passing through the countersunk hole 1122 can simultaneously press the outer ring 112 and the cover plate 12.

[0191] In some embodiments, such as Figure 10 A pressing notch 124 is provided on the surface of the cover plate 12 at a position corresponding to the countersunk hole 1122. The pressing notch 124 overlaps with the notch of the countersunk hole 1122 to form a complete countersunk hole 1122, so that the cover plate 12 and the outer ring 112 are coplanar with the abutment surface of the bolt head, thereby ensuring the stable pressing of the bolt on the cover plate 12 and the fixed plate 11, so that the two can have a stable relative positional relationship with the stator support assembly 3.

[0192] In some embodiments, the end plate assembly 1 further includes a plurality of terminal positioning components 1121 arranged in a ring array for fixing the wires connected to the bus assembly 2.

[0193] like Figure 8 and Figure 9 As shown, the end plate assembly 1 includes a terminal positioning assembly 1121 arranged in a ring array to fix the position of the straight section 411 of the phase line terminal 41, ensuring that the phase line terminal 41 as a whole has a stable relative positional relationship with the end plate assembly 1.

[0194] In some embodiments, the terminal positioning assembly 1121 includes two elastic arms that can approach each other for clamping and fixing the wire between the two elastic arms. The root of the elastic arm is fixedly connected to the end plate assembly 1, the top is a free end, and the top adjacent sides of the two elastic arms are provided with guide slopes.

[0195] like Figure 9As shown, the terminal positioning assembly 1121 consists of two sets of elastic arms, which allow the phase wire terminal 41 to enter between the two sets of elastic arms from the end, thereby fixing the phase wire terminal 41. Furthermore, a guide slope is provided at the end of the elastic arm to increase the opening size at the end, reduce the difficulty of the phase wire terminal 41 entering between the two sets of elastic arms, and facilitate mechanized processing.

[0196] In some embodiments, the coil unit is wound with flat wire, so that the width of the flat wire abuts against the inner wall of the elastic arm to prevent the phase wire terminal 41 from twisting within the terminal positioning assembly 1121.

[0197] The various embodiments in this specification are described in a progressive manner, with each embodiment focusing on the differences from other embodiments. The same or similar parts between the various embodiments can be referred to each other.

[0198] The end plate assembly, stator end wiring device, motor stator, and motor provided by this utility model have been described in detail above. Specific examples have been used to illustrate the principle and implementation of this utility model. The descriptions of the embodiments above are only for the purpose of helping to understand the method and core idea of ​​this utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made to this utility model without departing from the principle of this utility model, and these improvements and modifications also fall within the protection scope of the claims of this utility model.

Claims

1. An end plate assembly for wiring arrangement at the stator end of a motor, characterized in that, Includes a fixed disk (11), said fixed disk (11) comprising: Several grooves (1111) are used to accommodate busbar assembly (2). Several first hollow holes (1112) are arranged along the length of the same groove (1111). The first hollow holes (1112) are connected to the corresponding grooves (1111). A connector for fixed connection with the motor stator.

2. The end-panel assembly according to claim 1, characterized in that, It also includes a terminal positioning assembly (1121) that is fixed relative to the fixed plate (11), the terminal positioning assembly (1121) being arranged in a ring array for fixing the wires connected to the busbar assembly (2).

3. The end-panel assembly according to claim 1, characterized in that, It also includes a cover plate (12), which is fixedly connected to the fixed plate (11) and is used to cover the wire groove (1111). The cover plate (12) includes a threading channel, which is arranged in a one-to-one correspondence with the first hollow hole (1112).

4. The end-panel assembly according to claim 3, characterized in that, The cover plate (12) includes a threading protrusion (125), the threading channel passes through the threading protrusion (125), and the entrance end of the threading channel is a wide opening (1251).

5. The end-panel assembly according to claim 3, characterized in that, The fixed disk (11) includes an inner ring (111) and an outer ring (112). The groove (1111) is arranged in the inner ring (111). The projection of the cover plate (12) and the inner ring (111) along their own axial direction overlaps.

6. The end-panel assembly according to claim 3, characterized in that, The fixed plate (11) and the cover plate (12) are provided with interlocking annular grooves (1114) and flanges; The fixed plate (11) and the cover plate (12) are provided with positioning protrusions (1113) and positioning recesses (123) that engage with each other.

7. A stator end wiring device, characterized in that, Includes bus assembly (2) and end plate assembly as described in any one of claims 1-6; The bus assembly (2) includes several busbars, and each busbar is installed in a one-to-one correspondence with a cable tray (1111).

8. A motor stator, characterized in that, It includes a stator support assembly (3), a coil winding (4), and a stator end wiring device as described in claim 7; The coil windings (4) are arranged in a ring array around the stator support assembly (3), and the end plate assembly is fixedly disposed at the axial end of the stator support assembly (3). The coil winding (4) includes several winding units, each winding unit including a phase line terminal (41), and all phase line terminals (41) of different coil windings (4) are connected through the same busbar.

9. The motor stator according to claim 8, characterized in that, The central portion of the stator support assembly (3) is recessed inward to form a recessed area; The fixed plate (11) has a partial recess of the wire groove (1111) and is accommodated in the recessed area.

10. An electric motor, characterized in that, It includes the motor rotor and the motor stator as described in claim 9.