CN218124511U - Winding framework shaping tool - Google Patents

Winding framework shaping tool Download PDF

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Publication number
CN218124511U
CN218124511U CN202222136685.5U CN202222136685U CN218124511U CN 218124511 U CN218124511 U CN 218124511U CN 202222136685 U CN202222136685 U CN 202222136685U CN 218124511 U CN218124511 U CN 218124511U
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China
Prior art keywords
winding
support frame
cooling channel
frame
shaping tool
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CN202222136685.5U
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Chinese (zh)
Inventor
齐德稳
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Shanghai Puju Plastic Technology Co ltd
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Shanghai Puju Plastic Technology Co ltd
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Priority to CN202222136685.5U priority Critical patent/CN218124511U/en
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Abstract

The utility model relates to a winding skeleton production technical field especially relates to the design frock of using in the winding skeleton production process. In order to improve the production efficiency and the yield of the winding framework, the utility model provides a winding framework shaping tool which comprises a support frame, wherein a cooling channel is arranged in the middle of the support frame; when the cooling device is used, the winding framework is clamped and sleeved on the supporting frame, and the cooling liquid injected into the cooling channel cools the winding framework. The winding framework shaping tool of the utility model is adopted to cool and shape the winding framework taken out from the production mould, so that the use efficiency of the production mould can be improved, and the production efficiency of the winding framework is further improved; the deformation of the winding frame, especially the two ends of the opening of the winding frame, in the cooling process can be avoided, and the production yield of the winding frame is improved.

Description

Winding framework shaping tool
Technical Field
The utility model relates to a winding skeleton production technical field especially relates to the design frock of using in the winding skeleton production process.
Background
As shown in fig. 1, the bobbin 01 is inserted into a stator of a motor before winding. However, when the bobbin 01 is produced, if the bobbin is cooled and shaped in a production mold, the cooling and shaping time is long, which affects the production efficiency of the bobbin; if the winding framework is cooled and shaped outside a production die, the opening end of the winding framework 91 is easy to shrink and deform in the cooling and shaping process due to the fact that the winding framework 01 is of the U-shaped structure, and the yield of the winding framework 01 is affected.
SUMMERY OF THE UTILITY MODEL
In order to improve the production efficiency and yield of the winding framework, the utility model provides a winding framework shaping tool, which comprises a support frame, wherein a cooling channel is arranged in the middle of the support frame; when the cooling device is used, the winding frame is clamped on the support frame, and cooling liquid injected into the cooling channel is used for cooling the winding frame. In-process at production bobbin, the bobbin card cover that will take out from the production mould on the utility model discloses on the support frame in the bobbin design frock, utilize the support frame to support the interval between the both ends that bobbin made bobbin's opening part keep fixed to utilize the coolant liquid that pours into in the cooling channel of support frame to carry out cooling to bobbin, make the bobbin cool off the design fast. Therefore, the winding framework shaping tool is adopted to cool and shape the winding framework taken out of the production mould, so that the use efficiency of the production mould can be improved, and the production efficiency of the winding framework is further improved; the deformation of the winding frame, especially the two ends of the opening of the winding frame, in the cooling process can be avoided, and the production yield of the winding frame is improved.
Preferably, the support frame is a rectangular block, an upper cooling channel and a lower cooling channel are arranged in the rectangular block, and the upper cooling channel and the lower cooling channel are parallel to each other and perpendicular to the end face of the rectangular block. Thus, the rectangular block is used as the support frame, the structure is simple, the manufacture is convenient and the cost is low; set up the last cooling channel and the lower cooling channel of intercommunication on the support frame, in order to improve the utility model discloses the cooling effect of wire winding skeleton design frock when using. Further, the upper cooling channel and the lower cooling channel are communicated through a vertical channel, and the vertical channel is close to the closed end of the support frame. Thus, in using the utility model discloses when bobbin design frock cools off the design to bobbin, the coolant liquid can avoid at the same end business turn over cooling channel of support frame the utility model discloses the coolant liquid leakage appears at bobbin design frock's both ends, improves the utility model discloses bobbin design frock's safety in utilization.
Preferably, the connecting part of the top surface and the side surface of the support frame is provided with a guide surface. Like this, when with the winding skeleton card cover on the support frame, usable spigot surface direction makes things convenient for the winding skeleton card cover, and then can improve the production efficiency of winding skeleton. Further, the guide surface is an inclined plane or a chamfered surface. Therefore, the inclined plane or the chamfer surface is used as the guide surface, the structure is simple, and the processing is convenient and fast.
Preferably, this winding skeleton design frock still includes the base, the support frame sets up on the top surface of base and be located the middle part of top surface. Like this, in using the utility model discloses when bobbin design frock cools off the design to bobbin, usable base support frame avoids the carriage to incline because of the atress is uneven in the use, emptys even, influences bobbin's production efficiency. Further, the base and the support frame are of an integrated structure. Therefore, the base and the supporting frame are arranged into an integral structure, and the assembly is not needed during manufacturing, so that the device is simple and convenient and has low cost. Further preferably, the vertical channel on the supporting frame penetrates through the base, and the vertical channel is located at an upper opening of the base and is provided with a sealing plug. Therefore, when the vertical channel is machined, the vertical channel can be directly formed by drilling from the bottom of the base, machining is simple and convenient, and in the meeting process, the opening of the vertical channel can be plugged by the plugging plug, so that leakage of cooling liquid is avoided.
Drawings
FIG. 1 is a schematic structural diagram of a bobbin;
fig. 2 is a schematic structural view of the winding frame shaping tool of the present invention in a use state;
fig. 3 isbase:Sub>A schematic sectional structure view ofbase:Sub>A-base:Sub>A in fig. 2.
Detailed Description
The following, with reference to fig. 2 and 3, describes the winding frame shaping tool in detail.
As shown in fig. 2 and 3, the utility model discloses bobbin design frock includes support frame 1 and base 2. Wherein, the middle part of the support frame 1 is provided with a cooling channel; when the cooling device is used, the winding framework 3 is clamped on the support frame 1, and cooling liquid injected into the cooling channel cools the winding framework. Preferably, the support frame 1 is a rectangular block, and the rectangular block is provided with an upper cooling channel 11 and a lower cooling channel 12, and the upper cooling channel 11 and the lower cooling channel 12 are parallel to each other and perpendicular to the end surface of the rectangular block. Thus, the rectangular block is adopted as the support frame 1, the structure is simple, the manufacture is convenient and the cost is low; set up the last cooling channel 11 and the lower cooling channel 12 of intercommunication on support frame 1, in order to improve the utility model discloses the cooling effect of bobbin design frock when using, and then improve bobbin's cooling design efficiency. Preferably, the upper cooling channel 11 and the lower cooling channel 12 are communicated through a vertical channel 13, and the vertical channel 13 is close to the closed end of the support frame 1. Thus, in using the utility model discloses when bobbin design frock cools off the design to bobbin 3, can use the coolant liquid to pour into from cooling channel 12's import down, from the export discharge of last cooling channel 11, even the coolant liquid is in support frame 1 with the end business turn over cooling channel, can avoid the utility model discloses the coolant liquid leaks, improves at bobbin design frock's both ends the utility model discloses bobbin design frock's safety in utilization. Preferably, the connecting portion of the top surface 101 and the side surface 102 of the supporting frame 1 is provided with a guiding surface 103. Like this, when covering winding skeleton 3 card cover on support frame 1, usable spigot surface 103 leads winding skeleton 3's cutting ferrule direction, makes things convenient for winding skeleton 3 cutting ferrule, and then can improve winding skeleton 3's production efficiency. Preferably, the guide surface 103 is a beveled or chamfered surface. Therefore, the inclined plane or the chamfer surface is used as the guide surface 103, the structure is simple, and the processing is convenient and fast. Of course, a trapezoidal block with a trapezoidal section can be used as the support frame 1, and the value range of the acute included angle alpha between the two side surfaces and the top surface of the trapezoidal block is [1 degree ], 5 degrees ]. Like this, adopt trapezoidal piece as support frame 1, make things convenient for winding skeleton 3 card cover on support frame 1.
As shown in fig. 2 and 3, the base 2 may be a rectangular plate, and the supporting frame 1 is disposed on the top surface 21 of the base 2 and in the middle of the top surface 21. Like this, in using the utility model discloses when bobbin design frock cools off the design to bobbin 3, usable base 2 supports support frame 1, avoids support frame 1 to incline because of the atress is uneven in the use, emptys even, influences bobbin 3's production efficiency. Preferably, the base 2 and the support 1 are of unitary construction. Like this, base 2 and support frame 1 set up to an organic whole structure, during the preparation, do not need the equipment, and is simple and convenient, with low costs. Preferably, the support frame 1 has a vertical channel 13 which communicates the upper cooling channel 11 and the lower cooling channel 12 and extends through the base 3, and the vertical channel 13 is provided with a plug 4 at the opening of the base 2. Like this, when processing vertical channel 13, can directly form vertical channel 13 from the bottom drilling of base 2, processing is simple and convenient, and in the meeting in-process, usable shutoff 4 blocks up the opening of vertical channel 13, avoids the coolant liquid to leak.
In-process at production bobbin 3, the 3 card covers of bobbin that will take out from the production mould is in the utility model discloses on support frame 1 in the bobbin design frock, utilize support frame 1 to support the interval between the both ends 31 of bobbin 3's the opening part that makes bobbin 3 to keep fixed to utilize the coolant liquid of pouring into in the cooling channel of support frame 1 to cool off bobbin 3, make bobbin 3 cool off the design fast. Therefore, the winding framework shaping tool is adopted to cool and shape the winding framework 3 taken out from the production mould, so that the use efficiency of the production mould can be improved, and the production efficiency of the winding framework 3 is further improved; the winding frame 3, especially the two ends 31 at the opening of the winding frame 3, can be prevented from deforming in the cooling process, and the production yield of the winding frame 3 is improved.

Claims (8)

1. A winding framework shaping tool is characterized by comprising a support frame, wherein a cooling channel is arranged in the middle of the support frame; when the cooling device is used, the winding framework is clamped and sleeved on the supporting frame, and the cooling liquid injected into the cooling channel cools the winding framework.
2. The winding frame shaping tool according to claim 1, wherein the support frame is a rectangular block, an upper cooling channel and a lower cooling channel are arranged in the rectangular block, and the upper cooling channel and the lower cooling channel are parallel to each other and perpendicular to the end face of the rectangular block.
3. The bobbin shaping tool according to claim 2, wherein the upper cooling channel and the lower cooling channel are communicated through a vertical channel, and the vertical channel is close to the closed end of the support frame.
4. The winding frame shaping tool according to claim 2 or 3, wherein a guide surface is arranged at a connecting part of the top surface and the side surface of the support frame.
5. The bobbin shaping tool according to claim 4, wherein the guide surface is a slanted plane or a chamfered surface.
6. The bobbin shaping tool according to claim 3, further comprising a base, wherein the support frame is disposed on a top surface of the base and located in a middle of the top surface.
7. The winding frame shaping tool according to claim 6, wherein the base and the support frame are of an integrated structure.
8. The winding frame shaping tool according to claim 7, wherein the vertical channel on the support frame penetrates through the base, and a sealing plug is arranged at an upper opening of the base on the vertical channel.
CN202222136685.5U 2022-08-15 2022-08-15 Winding framework shaping tool Active CN218124511U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222136685.5U CN218124511U (en) 2022-08-15 2022-08-15 Winding framework shaping tool

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222136685.5U CN218124511U (en) 2022-08-15 2022-08-15 Winding framework shaping tool

Publications (1)

Publication Number Publication Date
CN218124511U true CN218124511U (en) 2022-12-23

Family

ID=84523901

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222136685.5U Active CN218124511U (en) 2022-08-15 2022-08-15 Winding framework shaping tool

Country Status (1)

Country Link
CN (1) CN218124511U (en)

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