CN215287228U - Automatic blowing device of braid - Google Patents

Automatic blowing device of braid Download PDF

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Publication number
CN215287228U
CN215287228U CN202121143657.5U CN202121143657U CN215287228U CN 215287228 U CN215287228 U CN 215287228U CN 202121143657 U CN202121143657 U CN 202121143657U CN 215287228 U CN215287228 U CN 215287228U
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China
Prior art keywords
material shaft
mounting
unreeling
braid
support
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CN202121143657.5U
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Chinese (zh)
Inventor
莫俊安
韩玉桥
林雄星
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Guangxi Guanzai Automation Equipment Co ltd
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Guangxi Guanzai Automation Equipment Co ltd
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Abstract

The utility model provides an automatic blowing device of braid, include drive assembly and send the subassembly, it includes material axle and locating part to send the subassembly, the one end of material axle with drive assembly connects, the locating part install in the material is epaxial, and it truns into mechanized operation with the defeated area of braid and send the area into, and not only degree of automation is high, the operation process precision is high and practiced thrift the cost of labor greatly.

Description

Automatic blowing device of braid
Technical Field
The utility model relates to a semiconductor electronic product production technical field, concretely relates to automatic blowing device of braid.
Background
The IC product is an important key component in the electronic industry and is the control core of electronic components. The existing components such as IC products are stored in a braid in a coil material mode, the braid is wound on a braid disc, and the components can be directly disassembled and used when the components such as IC products are used. In the prior art, the braid conveying mode is manual conveying and belt conveying, the process precision is not high, the automation degree is low, and the cost is higher.
Disclosure of Invention
The utility model discloses aim at solving one of the above-mentioned technical problem that provides, provide an automatic blowing device of braid, its defeated area and the area of sending of braid truns into mechanized operation, not only degree of automation is high, the operation process precision is high and practiced thrift the cost of labor greatly.
In order to achieve the above purpose, the utility model adopts the technical proposal that:
the utility model provides an automatic blowing device of braid, includes drive assembly and send the subassembly, it includes material axle and locating part to send the subassembly, the one end of material axle with drive assembly is connected, the locating part is installed in on the material axle.
Furthermore, the limiting part comprises a material shaft clamping strip and a spring, one end of the material shaft clamping strip is rotatably connected with the material shaft, and the material shaft clamping strip extends along the length direction of the material shaft; one end of the spring is connected with the material shaft, the spring extends along the direction far away from the material shaft, and the other end of the spring is connected with the material shaft clamping strip.
Furthermore, a hollow groove is formed in the material shaft.
Furthermore, one end, away from the driving assembly, of the hollow groove is communicated with the outside of the material shaft, so that a pressing port is formed at one end, away from the driving assembly, of the material shaft; one end of the material shaft clamping strip, corresponding to the abutting port, is provided with an abutting hook which can abut against the inner wall of the hollow groove; the material shaft clamping strip is provided with a guide inclined plane corresponding to one end of the abutting hook, and the distance between the guide inclined plane and the central axis of the material shaft is gradually reduced.
Further, the automatic braid discharging device comprises a braid baffle, and the braid baffle is sleeved on the material shaft.
Furthermore, the automatic braid feeding device comprises a mounting seat, the mounting seat comprises a connecting end and a mounting end, the material shaft is arranged on one side of the connecting end, and the driving assembly is arranged on one side, away from the material shaft, of the connecting end; the mounting end is used for mounting the driving assembly and the belt conveying assembly on a production instrument.
Furthermore, the mounting base comprises an unreeling support plate, a support assembly and a mounting plate, the connecting end is located at one end of the unreeling support plate, and the support assembly is connected with one end, away from the material shaft, of the unreeling support plate; the mounting panel is connected the support subassembly, the installation end is located on the mounting panel.
Furthermore, the support assembly comprises a fixed handle, the fixed handle can perform lifting motion relative to the mounting plate, and when the fixed handle moves towards the direction of the mounting plate and abuts against the mounting plate, the mounting plate is fixed relative to the unreeling support plate; when the fixed handle moves towards the direction deviating from the mounting plate, the mounting plate can rotate relative to the unreeling support plate.
Furthermore, the support assembly comprises an unreeling support, an unreeling rotating shaft and a rotating shaft seat, wherein the unreeling support is provided with a mounting groove communicated with the outside of the unreeling support, and the unreeling support plate is connected with one side of the unreeling support, which is far away from the mounting groove; the unreeling rotating shaft is positioned in the mounting groove, two opposite ends of the unreeling rotating shaft are connected with the inner wall of the unreeling support, and the rotating shaft seat is rotatably sleeved on the unreeling rotating shaft; one end of the mounting plate, which is deviated from the mounting end, is connected with the rotating shaft seat; the fixed handle movably penetrates through the unreeling support and corresponds to one end, deviating from the installation end, of the installation plate.
Further, the automatic feeding device for the braids comprises a connecting plate, one end of the connecting plate is connected with the connecting end, and the other end of the connecting plate is connected with the material shaft.
Due to the adoption of the technical scheme, the utility model discloses following beneficial effect has:
1. according to the automatic braid feeding device, the braid disc is connected to the material shaft in a sleeved mode, the limiting part plays a limiting role on the braid disc, the driving assembly drives the material shaft to rotate axially, the material shaft completes the operation of conveying the braid and conveying the braid, and therefore the automatic braid feeding device can transfer the conveying of the braid and the conveying of the braid into mechanical operation, the automation degree is high, the operation process precision is high, and the labor cost is greatly saved.
2. When the braiding disc needs to be sleeved on the material shaft, when the material shaft clamping strip is pressed towards the direction of the central axis of the material shaft under the stress, the material shaft clamping strip presses against the spring, the spring elastically deforms, one end of the material shaft clamping strip rotates, the braiding disc can move along the length direction of the material shaft, when the braiding disc reaches a preset position, the spring generates elasticity due to deformation and applies pre-tightening force to the braiding disc through the material shaft clamping strip, and the braiding disc can be limited on the material shaft; when needs take off the braid dish, will braid the dish and remove from the direction that deviates from drive assembly 1 and can directly take off from the material axle with the braid dish promptly, then braid dish no longer receives the spacing of material axle card strip and can directly take off from the material axle with the braid dish, and it is thus clear that the setting of locating part can be convenient and fast with braid dish cup joint on the material axle or take off from the material axle.
Drawings
Fig. 1 is a schematic structural view of an automatic feeding device for braids in a preferred embodiment of the present invention.
Fig. 2 is a schematic structural view of the automatic braid feeding device in fig. 1 from another view angle.
Fig. 3 is an explosion diagram of the automatic discharging device for the braid.
In the drawing, 1-a driving assembly, 11-a mounting cover, 12-a stepping motor, 2-a belt conveying assembly, 21-a material shaft, 211-a hollow groove, 212-a pressing port, 213-an annular retainer ring, 22-a limiting piece, 220-a pressing hook, 221-a material shaft clamping strip, 222-a guide inclined plane, 223-a spring, 3-a braiding baffle, 4-a mounting seat, 41-an unreeling support plate, 411-a connecting end, 42-a support assembly, 421-a fixed handle, 422-an unreeling support, 423-an unreeling rotating shaft, 424-a rotating shaft seat, 43-a mounting plate, 431-a mounting end and 5-a connecting plate.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
It will be understood that when an element is referred to as being "secured to" another element, it can be directly on the other element or intervening elements may also be present. When a component is referred to as being "connected" to another component, it can be directly connected to the other component or intervening components may also be present. When a component is referred to as being "disposed on" another component, it can be directly on the other component or intervening components may also be present. The terms "vertical," "horizontal," "left," "right," and the like as used herein are for illustrative purposes only.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs. The terminology used in the description of the invention herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. As used herein, the term "and/or" includes any and all combinations of one or more of the associated listed items.
As shown in fig. 1 to 3, a preferred embodiment of the present invention provides an automatic braiding feeding device, which includes a driving assembly 1 and a belt conveying assembly 2, wherein the belt conveying assembly 2 includes a material shaft 21 and a limiting member 22, one end of the material shaft 21 is connected to the driving assembly 1, and the limiting member 22 is installed on the material shaft 21.
According to the automatic braid feeding device, the braid disc is sleeved on the material shaft 21, the limiting part 22 plays a limiting role on the braid disc, the driving assembly 1 drives the material shaft 21 to axially rotate, the material shaft 21 finishes the operation of conveying the braid and conveying the braid, and therefore the automatic braid feeding device can transfer the conveying of the braid and the conveying of the braid into mechanical operation, the degree of automation is high, the precision of the operation process is high, and the labor cost is greatly saved.
In the present embodiment, the number of the stoppers 22 is two, and the two stoppers 22 are respectively disposed on two sides of the material shaft 21 that are symmetrical to each other. The limiting member 22 includes a spindle locking strip 221 and a spring 223. One end of the material shaft clamping strip 221 is rotatably connected with the material shaft 21, specifically, one end of the material shaft 21 is provided with a pin hole, one end of the material shaft clamping strip 221 movably penetrates through a clamping strip pin, and the clamping strip pin is rotatably inserted into the pin hole. The stub shaft clip strip 221 extends along the length direction of the stub shaft 21. One end of the spring 223 is connected with the material shaft 21, the spring 223 extends along the direction far away from the material shaft 21, and the other end of the spring 223 is connected with the material shaft clamping strip 221.
When the braiding disc needs to be sleeved on the material shaft 21, when the material shaft clamping strip 221 is stressed to press towards the direction of the central axis of the material shaft 21, the material shaft clamping strip 221 presses against the spring 223, the spring 223 elastically deforms, one end of the material shaft clamping strip 221 rotates, the braiding disc can move along the length direction of the material shaft 21, when the braiding disc moves to a preset position, the elastic force generated by the deformation of the spring 223 applies pre-tightening force to the braiding disc through the material shaft clamping strip 221, and the braiding disc is limited on the material shaft 21; when the braiding disc needs to be taken down, the braiding disc can be directly taken down from the material shaft 21 by moving the braiding disc from the direction departing from the driving component 1, and therefore the arrangement of the limiting part 22 can conveniently and quickly enable the braiding disc to be sleeved on the material shaft 21 or taken down from the material shaft 21.
In the present embodiment, the material shaft 21 is provided with the hollow groove 211, and the hollow groove 211 can reduce the weight of the material shaft 21, thereby reducing the energy consumption required by the driving assembly 1 to drive the material shaft 21 to rotate.
In this embodiment, an end of the hollow groove 211 facing away from the driving assembly 1 communicates with an outside of the material shaft 21 to form a pressing opening 212 at an end of the material shaft 21 facing away from the driving assembly 1. One end of the material shaft clamping strip 221 corresponding to the abutting port 212 is provided with an abutting hook 220, the abutting hook 220 can abut against the inner wall of the hollow groove 211, and specifically, the abutting hook 220 bends towards the central axis direction of the material shaft 21 and abuts against the inner wall corresponding to the abutting port 212. One end of the material shaft clamping strip 221 corresponding to the pressing hook 220 is provided with a guiding inclined surface 222, and specifically, the guiding inclined surface 222 and the pressing hook 220 are respectively located at two opposite sides of one end of the material shaft 21 departing from the driving assembly 1. The distance between the guiding inclined surface 222 and the central axis of the material shaft 21 is gradually reduced, so that the inner ring of the winding disc can be pressed against the material shaft clamping strip 221.
In the initial state, the pressing hook 220 presses against the inner wall corresponding to the pressing opening 212, which not only ensures that the end of the material shaft clamping strip 221 departing from the driving component 1 does not separate from the material shaft 21 due to the elastic force of the spring 223, but also limits the material shaft clamping strip 221 to the position where the inner ring of the tape coiling disc can press against the guide slope 222. When the braiding disc needs to be sleeved on the material shaft 21, the inner ring of the braiding disc is pressed against the guide inclined surface 222, the braiding disc is pushed towards the driving component 1 under the guide effect of the guide inclined surface 222, the braiding disc is pressed against the material pressing shaft clamping strip 221 in the process, the material pressing shaft clamping strip 221 is pressed against the spring, and finally the braiding disc moves to a preset position. It can be seen that, due to the arrangement of the abutting hook 220 and the guide slope 222, an operator can sleeve the braiding disc on the material shaft without pressing the material shaft clamping strip 221 towards the direction of the central axis of the material shaft 21, so that the loading and unloading of the braiding disc are further accelerated, and the production progress is accelerated.
In this embodiment, the automatic discharging device for the braid comprises a braid baffle 3, the braid baffle 3 is sleeved on the material shaft 21, specifically, an annular retaining ring 213 is arranged at one end of the material shaft 21 connected with the driving assembly 1, and the braid baffle 3 is sleeved on the material shaft 21 and is fixedly connected with the annular retaining ring 213. The arrangement of the braiding baffle 3 can limit the braiding disc, and the braiding disc is prevented from moving towards the driving component 1.
In this embodiment, the automatic braid feeding device includes a mounting seat 4, the mounting seat 4 includes a connecting end 411 and a mounting end 431, the material shaft 21 is installed on one side of the connecting end 411, and the driving assembly 1 is installed on one side of the connecting end 411 away from the material shaft 21; the mounting end 431 is used to mount the driving assembly 1 and the tape feeding assembly 2 to other production apparatuses. Specifically, the mounting base 4 includes an unwinding support plate 41, a support assembly 42 and a mounting plate 43, the connection end 411 is located at one end of the unwinding support plate 41, and the support assembly 42 is connected to one end of the unwinding support plate 41 away from the material shaft 21; the mounting plate 43 is attached to the seat assembly 42 and the mounting end 431 is located on the mounting plate 43.
In this embodiment, the support assembly 42 includes a fixing handle 421, an unwinding support 422, an unwinding rotation shaft 423, and a rotation shaft seat 424. The unreeling support 422 is provided with a mounting groove communicated with the outside of the unreeling support 422, and the unreeling support plate 41 is connected with one side of the unreeling support 422 departing from the mounting groove. Unreel the pivot 423 and be located the mounting groove and unreel the relative both ends of pivot 423 and unreel the interior wall connection of support 422, pivot seat 424 cup joints in unreeling pivot 423 with rotating, and the relative both ends of pivot seat 424 all fill up and are equipped with a bearing. The end of the mounting plate 43 facing away from the mounting end 431 is connected to the spindle base 424. The fixed handle 421 movably penetrates through the unwinding support 422, the fixed handle 421 corresponds to one end of the mounting plate 43 departing from the mounting end 431, and the fixed handle 421 is a fastening handle.
The fixed handle 421 can do lifting movement relative to the mounting plate 43, and when the fixed handle 421 moves in a direction away from the mounting plate 43, the mounting plate 43 can rotate relative to the unwinding support plate 41; when the fixing handle 421 moves toward the mounting plate 43 and abuts against the mounting plate 43, the mounting plate 43 is fixed relative to the unwinding support plate 41. It can be seen that the support assembly 42 can enable the mounting plate 43 to rotate to a proper mounting angle and then fix the mounting plate 43, so that the selection of the mounting position of the automatic braid feeding device is more flexible.
In this embodiment, the automatic braid feeding device comprises a connecting plate 5, one end of the connecting plate 5 is connected with a connecting end 411, the other end of the connecting plate 5 is connected with a material shaft 21, and specifically, one end of the connecting plate 5 is connected with the connecting end 411 through a bolt; the other end of the connecting plate 5 is provided with a through hole in a penetrating way, and the material shaft 21 penetrates through the through hole and is connected with the other end of the connecting plate 5 through a ball bearing.
In this embodiment, the driving assembly 1 includes a mounting cover 11 and a stepping motor 12, the stepping motor 12 is mounted in the mounting cover 11, and a driving end of the stepping motor 12 is connected to the material shaft 21 through a bearing.
It is to be understood that the number of the limiting members 22 is not limited to two in the present embodiment, and in other embodiments, the number of the limiting members 22 may be one or several.
It is understood that in other embodiments, the pressing hook 220 and the guide slope 222 may be omitted.
It is understood that the installation manner of the driving assembly 1 is not limited to the stepping motor 12 installed in the installation cover 11 in this embodiment, and in other embodiments, the driving assembly 1 may only include the stepping motor 12.
The above description is for the detailed description of the preferred possible embodiments of the present invention, but the embodiments are not intended to limit the scope of the present invention, and all equivalent changes or modifications accomplished under the technical spirit suggested by the present invention should fall within the scope of the present invention.

Claims (10)

1. The utility model provides an automatic blowing device of braid which characterized in that: including drive assembly (1) and send tape unit spare (2), send tape unit spare (2) including material axle (21) and locating part (22), the one end of material axle (21) with drive assembly (1) is connected, locating part (22) install in on material axle (21).
2. The automatic discharging device for the braids as claimed in claim 1, is characterized in that: the limiting part (22) comprises a material shaft clamping strip (221) and a spring (223), one end of the material shaft clamping strip (221) is rotatably connected with the material shaft (21), and the material shaft clamping strip (221) extends along the length direction of the material shaft (21); one end of the spring (223) is connected with the material shaft (21), the spring (223) extends along the direction far away from the material shaft (21), and the other end of the spring (223) is connected with the material shaft clamping strip (221).
3. The automatic discharging device for the braids as claimed in claim 2, is characterized in that: the material shaft (21) is provided with a hollow groove (211).
4. The automatic discharging device for the braids as claimed in claim 3, is characterized in that: one end, away from the driving assembly (1), of the hollow groove (211) is communicated with the outside of the material shaft (21) so as to form a pressing port (212) at one end, away from the driving assembly (1), of the material shaft (21); one end, corresponding to the pressing port (212), of the material shaft clamping strip (221) is provided with a pressing hook (220), and the pressing hook (220) can press against the inner wall of the hollow groove (211); one end of the material shaft clamping strip (221) corresponding to the abutting hook (220) is provided with a guide inclined plane (222), and the distance between the guide inclined plane (222) and the central axis of the material shaft (21) is gradually reduced.
5. The automatic discharging device for the braids as claimed in any one of claims 1 to 4, which is characterized in that: the automatic braid discharging device comprises a braid baffle (3), and the braid baffle (3) is sleeved on the material shaft (21).
6. The automatic discharging device for the braids as claimed in claim 5, is characterized in that: the automatic braid discharging device comprises a mounting seat (4), the mounting seat (4) comprises a connecting end (411) and a mounting end (431), the material shaft (21) is arranged on one side of the connecting end (411), and the driving assembly (1) is arranged on one side, deviating from the material shaft (21), of the connecting end (411); the mounting end (431) is used for mounting the driving assembly (1) and the belt feeding assembly (2) on other production instruments.
7. The automatic discharging device for the braids as claimed in claim 6, is characterized in that: the mounting seat (4) comprises an unreeling support plate (41), a support assembly (42) and a mounting plate (43), the connecting end (411) is located at one end of the unreeling support plate (41), and the support assembly (42) is connected with one end, deviating from the material shaft (21), of the unreeling support plate (41); the mounting plate (43) is connected with the support assembly (42), and the mounting end (431) is located on the mounting plate (43).
8. The automatic discharging device for the braids as claimed in claim 7, is characterized in that: the support assembly (42) comprises a fixed handle (421), the fixed handle (421) can do lifting motion relative to the mounting plate (43), and when the fixed handle (421) moves towards the direction of the mounting plate (43) and abuts against the mounting plate (43), the mounting plate (43) is fixed relative to the unreeling support plate (41); when the fixed handle (421) moves towards the direction departing from the mounting plate (43), the mounting plate (43) can rotate relative to the unreeling support plate (41).
9. The automatic discharging device for the braids as claimed in claim 8, is characterized in that: the support assembly (42) comprises an unreeling support (422), an unreeling rotating shaft (423) and a rotating shaft support (424), wherein the unreeling support (422) is provided with a mounting groove communicated with the outside of the unreeling support (422), and the unreeling support plate (41) is connected with one side of the unreeling support (422) departing from the mounting groove; the unreeling rotating shaft (423) is positioned in the mounting groove, two opposite ends of the unreeling rotating shaft (423) are connected with the inner wall of the unreeling support (422), and the rotating shaft seat (424) is rotatably sleeved on the unreeling rotating shaft (423); one end of the mounting plate (43), which is far away from the mounting end (431), is connected with the rotating shaft seat (424); the fixed handle (421) movably penetrates through the unreeling support (422) and the fixed handle (421) corresponds to one end, deviating from the installation end (431), of the installation plate (43).
10. The automatic discharging device for the braids as claimed in claim 6, is characterized in that: the automatic discharging device for the braids comprises a connecting plate (5), one end of the connecting plate (5) is connected with the connecting end (411), and the other end of the connecting plate (5) is connected with the material shaft (21).
CN202121143657.5U 2021-05-26 2021-05-26 Automatic blowing device of braid Active CN215287228U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121143657.5U CN215287228U (en) 2021-05-26 2021-05-26 Automatic blowing device of braid

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121143657.5U CN215287228U (en) 2021-05-26 2021-05-26 Automatic blowing device of braid

Publications (1)

Publication Number Publication Date
CN215287228U true CN215287228U (en) 2021-12-24

Family

ID=79542312

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121143657.5U Active CN215287228U (en) 2021-05-26 2021-05-26 Automatic blowing device of braid

Country Status (1)

Country Link
CN (1) CN215287228U (en)

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