CN221494007U - Wire bonding bending mechanism and coil packing device - Google Patents

Wire bonding bending mechanism and coil packing device Download PDF

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Publication number
CN221494007U
CN221494007U CN202323169216.4U CN202323169216U CN221494007U CN 221494007 U CN221494007 U CN 221494007U CN 202323169216 U CN202323169216 U CN 202323169216U CN 221494007 U CN221494007 U CN 221494007U
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CN
China
Prior art keywords
swing arm
swing
coil
packing
bending mechanism
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CN202323169216.4U
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Chinese (zh)
Inventor
范彦宏
王剑峰
卢文
李天柱
王鹏
丁科
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Chongqing Infinite Technology Co ltd
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Chongqing Infinite Technology Co ltd
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Priority to CN202323169216.4U priority Critical patent/CN221494007U/en
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Abstract

The utility model discloses a packing line bending mechanism and a coil packing device, which comprise a mounting seat and a swing arm movably arranged on the mounting seat, wherein the swing arm is provided with a cavity for accommodating a packing line, a driving assembly is arranged between the swing arm and the mounting seat, and the driving assembly works to drive the swing arm to swing along the mounting seat so as to bend the packing line. The utility model is provided with the driving component on the basis of the prior art, the driving component can be a pneumatic or hydraulic cylinder or a linear driving motor and the like, the swing arm can be forced to rotate to bend the packaging line, the problems of high bending operation difficulty and inconvenient use caused by manual breaking of the packaging line can be avoided, the packaging line bending mechanism provided by the utility model can bend a large quantity of packaging lines in a short time, and the bending efficiency of the packaging line can be improved.

Description

Wire bonding bending mechanism and coil packing device
Technical Field
The utility model relates to the technical field of copper coil packaging, in particular to a packaging line bending mechanism and a coil packaging device.
Background
Copper wire is used as a common conductive material and is widely applied to the fields of electric power, communication, construction, traffic and the like. Copper wire is generally sold in a coil mode in the selling process so as to be convenient for consumers to use. Because copper wires have different thickness sizes (the national standard copper wire specification varies from 0.05mm to 10 mm), the packing mode of copper coils is also different. After the finer copper money is generally wound on the spool to form a coil, the coil is packaged and then sold by plastic packaging or a mode of fixing the end part of the copper wire and the copper coil; and after the thicker copper wire is directly bent and wound into a coil, the coil is packaged by the packaging wire and then is externally pinned.
The baling line is usually a basket strap, but the strap needs to be equipped with a suitable baling machine. In the use process of the packer, the two ends of the through cavity of the whole coil are required to be arranged in an overhead mode, so that the packing belt can be inserted into the coil along the axial direction of the coil to wind and pack the coil. If the coil is packed in this way, the coil formed by winding the copper wire is required to be relatively regular. The copper wire is large in diameter and not easy to bend, and the copper coil is required to be straightened and used in the using process, so that the coil is wound regularly and is not necessary to operate; therefore, copper wire with higher hardness is used for packing the coils in the prior art.
When the copper wire is used as a packing wire for packing the coil, the copper wire with proper length is firstly cut according to the length of the coil, then the copper wire is bent into a U-shaped structure in a manual bending mode, and finally the bent copper wire is clamped and arranged on the coil to wind and knot the bent copper wire, so that the coil can be packed. The packing mode does not require the coil to be regular, and is convenient for winding copper wires into coils and packing the coils.
In the prior art, when a copper wire is bent, a bending tool is used for bending in a manual bending mode. The tool is used as an aid in the process, the angle of bending of the copper wire is ensured to be a preset angle, and the tool mainly uses a swing arm which is movably arranged to pull the swing arm to bend the copper wire, for example, a structure recorded in a patent with a patent application number of CN202321362237.5 and a patent with a name of a flat copper wire bender.
The tool for bending the packaging wire (copper wire) disclosed in the above patent is manually bent, and the bending packaging wire needs to apply enough external force due to thicker routing wire and large hardness, so that the operation difficulty of the conventional packaging wire bending mechanism is high and the use is inconvenient.
Disclosure of utility model
Aiming at the defects in the prior art, the utility model provides a packing line bending mechanism and a coil packing device, and solves the problems of high bending operation difficulty and inconvenient use of a packing line (copper wire) in the prior art.
In order to achieve the above purpose, the present utility model adopts the following technical scheme: the utility model provides a packing line bending mechanism, includes the swing arm that activity set up on mount pad and the mount pad, and the swing arm is equipped with the cavity that holds the wire bonding, and is equipped with drive assembly between swing arm and the mount pad, and drive assembly work drive swing arm makes the packing line buckle along the mount pad swing.
The principle of the utility model is as follows: the number of the swing arms provided by the utility model can be one or two. If set up a swing arm on the mount pad, only need set up fixed block or mounting or manual fixed of fixed wire (copper line) on the mount pad, place the other end that will buckle in the cavity of swing arm, drive assembly work drive swing arm is swung on the mount pad, buckles the baling line in the swing arm for the baling line is buckled into "U" structure roughly, the subsequent baling operation of baling line pair coil of being convenient for. If two swing arms are arranged on the mounting seat, the packing line is arranged in the two cavities during use, and the two driving assembly companies bend the packing line in the cavities to form a U-shaped structure, so that subsequent packing operation on the coils is performed.
Compared with the prior art, the utility model has the following beneficial effects:
the utility model is provided with the driving component on the basis of the prior art, the driving component can be a pneumatic or hydraulic cylinder or a linear driving motor and the like, the swing arm can be forced to rotate to bend the packaging line, the problems of high bending operation difficulty and inconvenient use caused by manual breaking of the packaging line can be avoided, the packaging line bending mechanism provided by the utility model can bend a large quantity of packaging lines in a short time, and the bending efficiency of the packaging line can be improved.
Further, the number of the swing arms is two, a driving assembly is arranged between each swing arm and the mounting seat, and the two driving assemblies work simultaneously to enable the two swing arms to swing relatively, bend and form a wrapping wire.
Further, the swing arms are of a through groove structure, a transition groove of the through groove structure matched with the swing arms is arranged on the mounting seat, the two swing arms are respectively arranged at two ends of the transition groove, and the transition groove is communicated with the groove structures of the two swing arms;
The routing is along the setting of swing arm logical groove direction, and is equipped with the interception subassembly that uses with the cooperation of packing line on the swing arm, and interception subassembly makes the packing line be located the swing arm and buckles or separate the unloading with the swing arm.
Further, the swing arm is logical groove structure, and the packing line passes through the groove direction along the swing arm and sets up, and is equipped with the interception subassembly that uses with the cooperation of packing line on the swing arm, and interception subassembly makes the packing line be located the swing arm and buckles or separate the unloading with the swing arm.
Further, the driving assembly comprises a pneumatic telescopic rod, one end of the pneumatic telescopic rod is hinged with the mounting seat, and the other end of the pneumatic telescopic rod is hinged with the swing arm.
Further, the installation seat is provided with a lifting assembly matched with the installation seat for use, and the lifting assembly comprises a screw rod connected through threads and a rotating motor coaxially arranged on the screw rod.
Further, the mounting seat is provided with a rotating seat which is matched with the mounting seat for use, and the mounting seat is rotatably arranged on the rotating seat.
Further, the correction assembly is matched with the wire harness, the correction assembly comprises two roller groups which are arranged in a gap and are parallel, the gap between the two roller groups is matched with the width of the wire harness, and the roller groups comprise a plurality of rolling wheels which are arranged in a row.
In another embodiment of the present utility model, a coil packing apparatus is provided, which includes the packing line bending mechanism described above.
Compared with the prior art, the utility model has the following beneficial effects:
When the coil is packed by the packing line, the coil is required to be vertically arranged on a support, the support is approximately of a spool structure, a notch is formed in an upper plate of the spool, the folded packing line can be conveniently wound and knotted by the notch, and packing operation is completed; therefore, the utility model also provides a coil packing device comprising the packing line bending mechanism, which is convenient for the whole coil packing process.
Drawings
FIG. 1 is a schematic structural view of a wire bonding bending mechanism according to the present utility model;
FIG. 2 is a schematic view of the structure of the mounting base, the driving assembly and the swing arm of the present utility model;
FIG. 3 is a schematic diagram of a coil packing apparatus according to the present utility model;
FIG. 4 is a schematic view of the coil from another view of FIG. 3;
FIG. 5 is a schematic view of a supporting mechanism according to another embodiment of the present utility model;
FIG. 6 is a schematic view of the structure of FIG. 5 with the coil removed;
Fig. 7 is a schematic view of the structure of fig. 6 at another view angle.
In the figure: the device comprises a supporting seat 1, a rolling wheel 11, a mounting seat 2, a transition groove 21, a swing arm 22, an interception rod 221, a pneumatic telescopic rod 23, a rotating seat 3, a bottom plate 41, a rotating motor 42, a guide rod 43, a screw rod 44, a fixed plate 45, a support 5, a notch 51, a packing line 101, a coil 102, a pressing plate 10, a mounting rod 110, a lifting piece 130, a stand column 140, a guide block 20, a supporting shaft 30, a bearing plate 40, a notch 401, a base 50, a pneumatic rotating cylinder 6, a connecting seat 7, a clamp 8 and a rotating assembly 9.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments.
As shown in fig. 1, a baling line bending mechanism comprises a mounting seat 2 and a swing arm 22 movably arranged on the mounting seat 2, wherein the swing arm 22 is provided with a cavity for accommodating a baling line 101, a driving assembly is arranged between the swing arm 22 and the mounting seat 2, and the driving assembly works to drive the swing arm 22 to swing along the mounting seat 2 so as to bend the baling line 101. The bending mechanism provided by the utility model is provided with the driving component on the basis of the existing bending device, and the packaging line 101 arranged in the swing arm 22 can be bent by forcing the swing arm 22 to rotate by using the driving component.
In order to realize the movable arrangement of the swing arm 22 and the mounting seat 2, the swing arm 22 and the mounting seat 2 can be hinged by referring to the prior art (CN 202321362237.5), and the hinge point can be at the end or the middle of the swing arm 22. The bending of the wire 101 can be realized only by arranging a cavity for the wire 101 to pass through on the swing arm 22.
In order to achieve the above-mentioned operation, one swing arm 22 or two swing arms 22 can realize the bending of the wire harness 101, therefore, in one embodiment of the utility model, the number of the swing arms 22 provided by the utility model can be one, when one swing arm 22 is provided on the mounting seat 2, only a fixing block or a fixing piece for fixing the wire harness 101 (copper wire) is required to be provided on the mounting seat 2 or manually fixed, the other end to be bent is placed in a cavity of the swing arm 22, the driving assembly works to drive the swing arm 22 to swing on the mounting seat 2, and the wire harness 101 in the swing arm 22 is bent, so that the wire harness 101 is bent into a U-shaped structure, thereby facilitating the subsequent packaging operation of the wire harness 101 on the coil 102.
In another embodiment of the present utility model, the number of the swing arms 22 is two, and a driving assembly is disposed between each swing arm 22 and the mounting seat 2, and the two driving assemblies work simultaneously to enable the two swing arms 22 to swing relatively to bend the wrapping wire 101. When in use, the packing line 101 is arranged in the two cavities, and the two driving assembly companies bend the packing line 101 in the cavities to form a U-shaped structure for subsequent packing operation of the coil 102.
As shown in fig. 1 and 2, the utility model adopts two swing arms 22, in order to facilitate the swing arms 22 to movably arrange on the mounting seat 2 and bend the packing line 101 into a preset structure under the action of a driving assembly, the driving assembly of the utility model comprises a pneumatic telescopic rod 23, one end of the pneumatic telescopic rod 23 is hinged with the mounting seat 2, and the other end of the pneumatic telescopic rod 23 is hinged with the swing arms 22. Of course, the driving assembly may also adopt a cylinder, a telescopic hydraulic rod or other structures, so that the function of the driving assembly is ensured to make the two swing arms 22 bend relatively to deform the packing line 101 into a preset structure. In the utility model, the pneumatic telescopic rod 23 is utilized, when the pneumatic telescopic rod 23 works, the pneumatic telescopic rod 23 stretches to force the two swing arms 22 to move relatively, so that the packing line 101 is bent, and the problem that the packing line 101 and the mounting seat 2 need to be fixed when one swing arm 22 is adopted can be effectively avoided.
Further, in order to ensure that the two swing arms 22 can place the wire harness 101, the folded wire harness 101 can be conveniently separated from the swing arms 22. As shown in fig. 2, in the through groove structure of the swing arms 22, the layout manner of the two swing arms 22 is symmetrically arranged with the transition groove 21 arranged on the mounting seat 2 as a center, specifically, the transition groove 21 is in the through groove structure, the two swing arms 22 are respectively arranged at two ends of the transition groove 21, and the transition groove 21 is arranged in communication with the groove-shaped structure of the two swing arms 22. In addition, in order to avoid the separation of the packing line 101 and the swing arm 22 in the bending process, an interception component matched with the packing line 101 is arranged on the swing arm 22, and the interception component enables the packing line 101 to be positioned in the swing arm 22 for bending or separated from the swing arm 22 for discharging. The blocking component can be a plurality of blocking rods 221 which are arranged at intervals along the through groove direction of the swing arm 22, each blocking rod 221 is perpendicular to the through groove direction of the swing arm 22, the blocking rods 221 can be of a pneumatic telescopic rod structure, the blocking rods 221 extend out to block the notch direction of the swing arm 22, the packing line 101 can be blocked in the swing arm 22, and the packing line 101 can be bent by matching with the driving component; after the wrapping wire 101 is bent, the blocking rod 221 is contracted to conduct the notch of the swing arm 22, and the bent wrapping wire 101 can be fed from between the two swing arms 22 to complete the bending operation of the wrapping wire 101. Meanwhile, the blocking rods 221 can also adopt threaded rods, the blocking rods 221 are in threaded connection with the groove side walls of the swing arms 22, and the plurality of blocking rods 221 can also block the notch positions of the swing arms 22 or conduct the notch of the swing arms 22 by rotating the blocking rods 221, so that the bending and blanking of the wrapping wire 101 are realized. Of course, if only one swing arm 22 is provided, the interception assembly can also be utilized to ensure that the wire 101 can be bent smoothly.
Further, if the interception rod 221 adopts a pneumatically driven telescopic rod, automatic feeding of the wire harness 101 can be achieved, and the wire harness 101 needs to be clamped on the coil 102 after being bent, and the coil 102 has a certain height, so that in order to facilitate transferring the wire harness 101 to the coil 102 and reduce the manual workload, the mounting seat 2 of the utility model is provided with a lifting assembly matched with the lifting assembly, as shown in fig. 1, 3 and 4, the lifting assembly comprises a screw rod 44 in threaded connection and a rotating motor 42 coaxially arranged on the screw rod 44. The rotating motor 42 is fixed on the bottom plate 41, the screw rod 44 is vertically arranged, the lower end of the screw rod 44 is coaxially arranged with the rotating motor 42, the upper end of the screw rod 44 is provided with the fixed plate 45, two guide rods 43 are arranged between the fixed plate 45 and the bottom plate 41, the guide rods 43 penetrate through the mounting seat 2 and are slidably arranged with the mounting seat 2, and the guide rods 43 are parallel to the screw rod 44. The guide rod 43, the bottom plate 41 and the fixing plate 45 form a supporting frame, so that the mounting seat 2 can stably move up and down. The rotating motor 42 adopts a servo motor, the rotating direction and the rotating speed of the servo motor are controlled through PWM signals, the whole mounting seat 2 can be moved to a proper height, and then the interception assembly is controlled to discharge the bent packaging line 101 to a preset position. Of course, other structures that can realize the up-and-down movement of the mounting seat 2, such as a drag chain assembly, a slider assembly, etc., may be adopted for the lifting assembly.
Further, during the space layout process, the position of the coil 102 will not be right facing the lower side of the mounting seat 2, so that the mounting seat 2 is provided with the rotating seat 3 for cooperation, and the mounting seat 2 is rotatably arranged on the rotating seat 3 in order to smoothly clamp the packing line 101 bent on the mounting seat 2 on the coil 102. As shown in fig. 1, the rotating base 3 is used in cooperation with the lifting assembly, and therefore, the rotating base 3 adopts a rotating platform to fix the bottom plate 41 with the rotating platform, so that the rotating platform rotates to drive the lifting assembly and the mounting base 2 to rotate together to realize the rotation of the mounting base 2, the folded packaging line 101 can be conveniently rotated to the position above the coil 102 at the side position, and then the folded packaging line 101 can be clamped on the coil 102 by cooperation with the lifting assembly.
Further, since each coil 102 needs a plurality of wrapping wires 101 to be fixed, in order to reduce the difference of the shapes of the wrapping wires 101 after the two swing arms 22 are bent, the utility model further comprises a correction component used in cooperation, the correction component comprises two roller groups which are arranged in parallel and are in gap, the gap between the two roller groups is adapted to the width of the wrapping wires 101, and the roller groups comprise a plurality of rolling wheels 11 arranged in a row. The rotation directions of the plurality of rolling wheels 11 of each group of rolling wheel groups are the same, and the rotation directions of the plurality of rolling wheels 11 of the other group of rolling wheel groups are opposite. The rolling wheel 11 is fixed on the supporting seat 1, the rolling wheel 11 can be driven by a driver (motor) to rotate on the supporting seat 1, and can also be rotatably arranged on the supporting seat 1, and the packing line 101 can be straightened by dragging the packing line 101 in the process of passing along the two roller sets. The correction assembly can be used for correcting the shapes of different packing lines 101 to be bent, so that the shape difference of the packing lines 101 entering the swing arm 22 is smaller, the shape difference of the folded packing lines 101 is smaller, and the automatic packing operation is more facilitated.
In summary, the utility model sets up the drive assembly on the basis of the prior art, the drive assembly can be pneumatic or hydraulic cylinder or linear driving motor, etc., can force the swing arm 22 to rotate and make the wire harness 101 buckle, can avoid the difficult and inconvenient problem of bending operation that the manual force breaks the wire harness 101 and causes, make the wire harness 101 bending mechanism that the utility model sets up buckle a large amount of wire harnesses 101 in a short time, can also improve the wire harness 101 and buckle efficiency.
The utility model also provides a coil packing device, which comprises the packing line 101 bending mechanism, and the packing line 101 bending mechanism is also provided with a supporting mechanism matched with the coil packing device, wherein the supporting mechanism comprises a support 5, the support 5 is approximately in a spool structure, and a notch 51 is formed in an upper plate of the spool.
When in use, the support 5 is arranged at the side position of the whole bending mechanism, and the coil 102 to be packaged is placed on the support 5; the packaging line 101 to be bent enters between the two swing arms 22 after being corrected by the correction component, and the two driving components work to bend the packaging line 101; the lifting assembly is controlled to work to move the folded packaging line 101 upwards, the rotating seat 3 is controlled to move the folded packaging line 101 to the coil 102 on the support 5, the lifting assembly is controlled to move the mounting seat 2 downwards, the interception assembly is controlled to feed the folded packaging line 101, the folded packaging line 101 passes through the notch 51, and workers can wind and tie the folded packaging line 101 to complete packaging of the coil 102.
Therefore, it can be seen that the bending mechanism and the supporting mechanism are all tools required in the coil 102 packaging process, so that the coil 102 packaging decoration provided by the utility model comprises the bending mechanism of the packaging wire 101, and the matching of the bending mechanism and the supporting mechanism facilitates the whole coil 102 packaging process.
Of course, the specific structure of the supporting mechanism may also be as shown in fig. 5-7, and in particular, in another embodiment of the present utility model, the supporting mechanism includes a base 50 and a carrier plate 40 suspended on the base 50 and horizontally disposed, and a notch 401 is formed on the carrier plate 40, where the notch 401 is adapted to the thickness of the coil 102. The base 50 is plate-shaped structure, the base 50 is horizontally arranged on the base 50, the vertically arranged supporting shaft 30 is arranged on the base 50, the bearing plate 40 is arranged at the upper end of the supporting shaft 30 and is suspended from the base 50, the bearing plate 40 is of circular plate structure, the notch 401 on the bearing plate 40 is of a strip-shaped structure, and the length direction of the notch 401 is along the radius direction of the bearing plate 40. And the length of the notch 401 is greater than the thickness of the coil 102, and when the coil 102 is placed on the carrier plate 40, the coil 102 is mounted on the notch 401, the notch 401 being partially located in the center of the coil 102. When the supporting mechanism is used, the coil 102 to be packaged is vertically placed on the bearing plate 40, the bearing plate 40 can lift the whole coil 102 off the ground, the winding wire 101 is bent to pass through the coil 102 and then pass through the notch 401 in cooperation with the notch 401 formed in the bearing plate 40, the bearing plate 40 and the base 50 are suspended, and the suspended distance can facilitate winding and knotting of the winding wire 101, so that the packaging operation of the coil 102 can be completed. The supporting mechanism can avoid the problem that the coil 102 is directly and vertically placed on the ground, and the coil 102 needs to be lifted for a long time in the knotting process of the packing wire 101, so that the whole packing process is difficult to operate; and due to the existence of the supporting mechanism, the problems that the coil 102 is easy to roll and the coil 102 is easy to deform in a large area caused by the horizontal arrangement of the coil 102 can be avoided.
Further, since a plurality of wire bonds 101 are sleeved on one coil 102, a plurality of notches 401 are formed on the carrier plate 40 in the present utility model, and the plurality of notches 401 are annularly disposed on the carrier plate 40. In the case of not moving the coil 102, the plurality of folded packing wires 101 may be respectively knotted through the plurality of notches 401, thereby completing the packing operation of the coil 102.
Further, in order to avoid manual rotation along the carrying plate 40, the support shaft 30 of the present utility model is rotatably connected to the base 50, and the support shaft 30 is provided with a rotation assembly 9 for cooperating with the support shaft to enable the positions of different notches 401 on the carrying plate 40 to be moved to a predetermined position. The rotating assembly 9 can adopt rotating components such as a rotating motor 42, a rotating platform, a rotating cylinder and the like in the prior art, so that the rotating assembly 9 can drive the supporting shaft 30 and the bearing plate 40 to rotate. When the wire-wrapping machine is used, an operator is located at a fixed position, the rotating assembly 9 drives the supporting shaft 30 and the bearing plate 40 to rotate, different notches 401 on the bearing plate 40 can be moved to an operation station of the operator, and the operator can clamp the folded wire-wrapping 101 in the notches 401 without moving the position to achieve winding and knotting operation of the wire-wrapping 101.
Further, in order to avoid the problems of high operation difficulty and high working strength in the manual knotting and binding process of the wire 101, a knotting assembly is arranged between the base 50 and the bearing, and the knotting assembly comprises a connecting seat 7 which is rotatably arranged and two clamps 8 which are arranged on the connecting seat 7 at intervals. The two clamps 8 are distributed at intervals along the horizontal direction, and the rotation axis of the connecting seat 7 is vertically arranged. The clamp 8 comprises a pneumatic three-jaw chuck, and the connecting seat 7 is connected with a pneumatic rotary cylinder 6. When the knotting assembly is used, the bent packaging wire 101 (U-shaped structure) is clamped on the coil 102 from the upper side of the coil 102, two ends of the packaging wire 101 penetrate through the notch 401 and are respectively matched with positions of the two clamps 8, the two ends of the packaging wire 101 are clamped by the clamps 8, the pneumatic rotary cylinder 6 works to drive the connecting seat 7 and the two clamps 8 to rotate, winding and knotting of the packaging wire 101 are achieved, and packaging operation of the coil 102 is completed. After the packing wire 101 is knotted, the rotating assembly 9 works to rotate the other notch 401 to the knotting assembly adapting position, and the knotting assembly repeats the action to complete the knotting operation. The loop is thus circulated, and the fixation of the plurality of wire bonds 101 to the coil 102 is achieved.
Further, in order to facilitate the placement of different coils 102 to be packaged at specific positions on the carrier plate 40 and the packaging of the wire-bonding wire 101, the carrier plate 40 is provided with a plurality of vertically arranged guide blocks 20, and the plurality of guide blocks 20 are arranged in a ring shape to form a ring-shaped guide cylinder matched with the coils 102. The upper end of the guide block 20 is provided with an inclined plane which is downwards arranged from the inner layer to the outer layer of the annular guide cylinder in an inclined way, the coil 102 can conveniently pass through the annular guide cylinder smoothly by the inclined plane arranged on the guide block 20, and the coils 102 which are conveniently different are arranged on the annular guide cylinder can be arranged at the same position on the bearing plate 40. The plurality of guide blocks 20 are arranged, the plurality of guide blocks 20 are arranged at intervals, and the notch 401 is arranged between two adjacent guide blocks 20, so that the packaged coil 102 can be smoothly taken out from the upper part of the annular guide cylinder.
Further, since the copper wire of the coil 102 to be packed is thicker, the coil 102 is easy to be loosened up and down after being bent into the coil 102, in order to make the packing process smoother, the utility model is provided with the pressing plate 10 assembly on the bearing plate 40, and the pressing plate 10 assembly comprises the mounting rod 110 fixed on the bearing plate 40, the pressing plate 10 hinged on the mounting rod 110 and the lifting member 130 driving the pressing plate 10 to swing along the hinging point thereof. As shown in fig. 6 and 7, the lifting member 130 includes a telescopic cylinder, however, other components for realizing the telescopic function may be used for the lifting member 130. One end of the telescopic cylinder is hinged with one end of the pressing plate 10, the other end of the telescopic cylinder is hinged with the upright post 140, and the upright post 140 is vertically arranged on the bearing plate 40 and is parallel to the mounting rod 110. When the coil 102 is used, the telescopic cylinder works to drive the other end of the pressing plate 10 to swing, the periphery of the coil 102 is extruded, the shape of the coil 102 is properly regulated, and the folded packing wire 101 conveniently passes through the coil 102 to pack the coil 102.
In the present utility model, unless explicitly specified and limited otherwise, the terms "mounted," "connected," "secured," and the like are to be construed broadly, and may be, for example, fixedly connected, detachably connected, or integrally formed; can be mechanically or electrically connected; can be directly connected or indirectly connected through an intermediate medium, and can be communicated with the inside of two elements or the interaction relationship of the two elements. The specific meaning of the above terms in the present utility model can be understood by those of ordinary skill in the art according to the specific circumstances.
In the description of the present utility model, it should be noted that, directions or positional relationships indicated by terms such as "center", "upper", "lower", "left", "right", "inner", "outer", etc., are directions or positional relationships based on those shown in the drawings, or are directions or positional relationships conventionally put in use of the inventive product, are merely for convenience of describing the present utility model and simplifying the description, and are not indicative or implying that the apparatus or element to be referred to must have a specific direction, be constructed and operated in a specific direction, and thus should not be construed as limiting the present utility model. Furthermore, the terms "first," "second," and the like, are used merely to distinguish between descriptions and should not be construed as indicating or implying relative importance.

Claims (10)

1. A packing line kink mechanism which characterized in that: including mount pad (2) and swing arm (22) that activity set up on mount pad (2), swing arm (22) are equipped with the cavity that holds wire bonding (101), and are equipped with drive assembly between swing arm (22) and mount pad (2), and drive assembly work drive swing arm (22) make wire bonding (101) buckle along mount pad (2) swing.
2. The baling line bending mechanism of claim 1, wherein: the number of the swing arms (22) is two, a driving assembly is arranged between each swing arm (22) and the mounting seat (2), and the two driving assemblies work simultaneously to enable the two swing arms (22) to swing relatively, bend and wrap the wire (101).
3. A baling line bending mechanism as in claim 2, wherein: the swing arms (22) are of a through groove structure, the mounting base (2) is provided with transition grooves (21) of the through groove structure matched with the swing arms (22), the two swing arms (22) are respectively arranged at two ends of the transition grooves (21), and the transition grooves (21) are communicated with the groove-shaped structures of the two swing arms (22);
The routing wire (101) is arranged along the through groove direction of the swing arm (22), and an interception component matched with the routing wire (101) for use is arranged on the swing arm (22), so that the routing wire (101) is positioned in the swing arm (22) for bending or is separated from the swing arm (22) for blanking.
4. The baling line bending mechanism of claim 1, wherein: swing arm (22) are logical groove structure, and packing line (101) are along swing arm (22) logical groove direction setting, and are equipped with the interception subassembly that uses with the cooperation of routing (101) on swing arm (22), interception subassembly make routing (101) be located swing arm (22) and buckle or separate the unloading with swing arm (22).
5. A baling line bending mechanism according to any one of claims 1-4, wherein: the driving assembly comprises a pneumatic telescopic rod (23), one end of the pneumatic telescopic rod (23) is hinged with the mounting seat (2), and the other end of the pneumatic telescopic rod (23) is hinged with the swing arm (22).
6. The baling line bending mechanism of claim 5, wherein: the mounting seat (2) is provided with a lifting assembly matched with the mounting seat for use, and the lifting assembly comprises a screw rod (44) in threaded connection and a rotating motor (42) coaxially arranged on the screw rod (44).
7. The baling line bending mechanism of claim 5, wherein: the installation seat (2) is provided with a rotation seat (3) which is matched with the installation seat (2), and the installation seat (2) is rotatably arranged on the rotation seat (3).
8. The baling line bending mechanism of claim 6, wherein: the installation seat (2) is provided with a rotation seat (3) which is matched with the installation seat (2), and the installation seat (2) is rotatably arranged on the rotation seat (3).
9. A baling line bending mechanism according to claim 6, 7 or 8, wherein: the correcting assembly is matched with the packing line (101), the correcting assembly comprises two roller groups which are arranged in a gap and are parallel, the gap between the two roller groups is matched with the width of the packing line (101), and the roller groups comprise a plurality of rolling wheels (11) which are arranged in a row.
10. A coil packing apparatus, characterized in that: comprising a baling line bending mechanism as claimed in any one of claims 1-9.
CN202323169216.4U 2023-11-23 2023-11-23 Wire bonding bending mechanism and coil packing device Active CN221494007U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202323169216.4U CN221494007U (en) 2023-11-23 2023-11-23 Wire bonding bending mechanism and coil packing device

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CN202323169216.4U CN221494007U (en) 2023-11-23 2023-11-23 Wire bonding bending mechanism and coil packing device

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