CN114103196B - Air spring processing chassis - Google Patents
Air spring processing chassis Download PDFInfo
- Publication number
- CN114103196B CN114103196B CN202010901337.5A CN202010901337A CN114103196B CN 114103196 B CN114103196 B CN 114103196B CN 202010901337 A CN202010901337 A CN 202010901337A CN 114103196 B CN114103196 B CN 114103196B
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- Prior art keywords
- motor
- rack
- air spring
- box body
- spring processing
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B29—WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
- B29D—PRODUCING PARTICULAR ARTICLES FROM PLASTICS OR FROM SUBSTANCES IN A PLASTIC STATE
- B29D22/00—Producing hollow articles
- B29D22/02—Inflatable articles
- B29D22/023—Air springs; Air bellows
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- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Auxiliary Devices For Machine Tools (AREA)
- Transmission Devices (AREA)
Abstract
The invention provides an air spring processing machine box which comprises a box body, an optical axis, a forming drum expansion and contraction driving part and a first rack, wherein the optical axis is movably arranged in the box body and used for driving the forming drum to expand and contract, the forming drum expansion and contraction driving part comprises a first motor, the first motor is movably arranged on the box body and fixed with the first motor, the box body is provided with the first rack, the extending direction of the first rack is parallel to the extending direction of the optical axis, the output end of the first motor is provided with a first gear, and the first gear is meshed with the first rack. According to the invention, the first gear is driven by the first motor, and the first gear is matched with the first rack on the box body, so that the first motor is moved back and forth, the optical axis is driven to move back and forth, the optical axis feeding is realized, the whole driving process is realized by adopting a rack-and-pinion structure instead of a pneumatic mechanism, the control precision is greatly improved, and the feeding movement is more stable.
Description
Technical Field
The invention relates to the field of air spring manufacturing, in particular to an air spring processing machine box.
Background
In the existing air spring forming equipment, the driving force of a forming drum is controlled by the air on a case, the impact force is large, the glue stock is not uniformly stretched during the reverse wrapping, and the air spring case generally adopts the actions of pneumatically controlling the expansion and the contraction of the forming drum and the like.
The prior device can realize various actions of the forming drum, but the pneumatic control is realized, the pneumatic control precision is low, the motion stability is poor, the force of each rod is difficult to control, and the uneven stretching of sizing materials is easily caused, so that the quality of an air spring is influenced.
Disclosure of Invention
The invention mainly aims to provide an air spring processing machine box, which aims to solve the problem of low control precision of the air spring processing machine box in the prior art.
In order to achieve the above purpose, the invention provides an air spring processing machine box, which comprises a box body, an optical axis, a forming drum expansion and contraction driving part and a forming drum expansion and contraction driving part, wherein the optical axis is movably arranged in the box body and used for driving the expansion and contraction of a forming drum, the forming drum expansion and contraction driving part comprises a first motor, the first motor is movably arranged on the box body, the optical axis is fixed with the first motor, a first rack is arranged on the box body, the extending direction of the first rack is parallel to the extending direction of the optical axis, a first gear is arranged at the output end of the first motor, and the first gear is meshed with the first rack.
Further, be provided with first slide rail on the box, the drive of shaping drum inflation shrink still includes first movable frame, and first movable frame movably installs on first slide rail, and first motor installs on first movable frame, and the optical axis is connected with first movable frame.
Further, the top of the box body is provided with a second rack, the extending direction of the second rack is parallel to the extending direction of the first rack, the air spring processing machine box further comprises a forming drum anti-wrapping disc driving part, the forming drum anti-wrapping disc driving part comprises a first guide rod and a second motor, the first guide rod is parallel to the optical axis, the second motor is movably arranged at the top of the box body, the first guide rod is fixed with the second motor, the output end of the second motor is provided with a second gear, and the second gear is meshed with the second rack.
Further, the drum anti-package tray driving part further comprises a second movable frame, the top of the box body is provided with a second sliding rail, the second sliding rail is parallel to the second rack, the second movable frame is movably arranged on the second sliding rail, and the second motor is arranged on the second movable frame.
Further, be provided with the third rack on the box, the extending direction of third rack is parallel with the extending direction of first rack, air spring processing machine case still includes the driving assembly of anti-chartered plane, and the driving assembly of anti-chartered plane includes pushing away a set subassembly and third motor, and the movable setting of third motor is in the lateral part of box, pushes away a set subassembly and third motor to be fixed, and the output of third motor is provided with the third gear, and the third gear meshes with the third rack.
Further, the pushing disc assembly comprises a second guide rod and a pushing disc connected to the first end of the second guide rod, the second end of the second guide rod is fixed to the third motor, and the second guide rod is parallel to the optical axis.
Further, one end of the push disc, which is far away from the guide rod, is provided with a magnetic block.
Further, the magnetic blocks are arc-shaped magnetic blocks, and the arc-shaped magnetic blocks are arranged at intervals along the circumferential direction of the push disc.
Further, the air spring processing machine box further comprises a main shaft and a fourth motor, the main shaft is rotatably arranged on the box body, the fourth motor is arranged on the box body, and the fourth motor is in driving connection with the main shaft.
Further, the output end of the fourth motor is provided with a synchronizing wheel, and the main shaft is connected with the synchronizing wheel through a synchronizing belt.
By applying the technical scheme of the invention, the first gear is driven by the first motor, the first motor is driven to move back and forth by the cooperation of the first gear and the first rack on the box body, so that the optical axis is driven to move back and forth, the optical axis feeding is realized, the whole driving process is realized by adopting a gear-rack structure instead of a pneumatic mechanism, the control precision is greatly improved, and the feeding movement is more stable.
Drawings
The accompanying drawings, which are included to provide a further understanding of the application and are incorporated in and constitute a part of this specification, illustrate embodiments of the application and together with the description serve to explain the application. In the drawings:
FIG. 1 schematically illustrates a block diagram of an embodiment of an air spring processor case of the present invention;
fig. 2 schematically illustrates a front view of an embodiment of an air spring processor case of the present invention.
Wherein the above figures include the following reference numerals:
10. The device comprises a box body, 11, a first motor, 111, a first gear, 12, a first rack, 13, an outer frame, 14, a first sliding rail, 15, an optical axis, 21, a second motor, 22, a second rack, 23, a first guide rod, 24, a connecting piece, 31, a third motor, 32, a third rack, 33, a second guide rod, 34, a pushing disc, 41, a fourth motor, 42, a synchronous wheel, 43, a main shaft and 6, and a sealing component.
Detailed Description
It should be noted that, without conflict, the embodiments of the present application and features of the embodiments may be combined with each other. The application will be described in detail below with reference to the drawings in connection with embodiments.
As described in the background art, the conventional device can realize various actions of the forming drum, but the conventional device is controlled pneumatically, so that the pneumatic control precision is low, the motion stability is poor, the force of each rod is difficult to control, and uneven stretching of sizing material is easily caused, so that the quality of an air spring is affected.
In order to solve the above problems, referring to fig. 1 and 2, an embodiment of the present invention provides an air spring processing machine box, comprising a box 10, an optical axis 15, and a drum expansion and contraction driving part, wherein the optical axis 15 is movably installed in the box 10 for driving expansion and contraction of a drum, the drum expansion and contraction driving part comprises a first motor 11, the first motor 11 is movably arranged on the box 10, the optical axis 15 is fixed with the first motor 11, a first rack 12 is arranged on the box 10, the extending direction of the first rack 12 is parallel to the extending direction of the optical axis 15, a first gear 111 is arranged at the output end of the first motor 11, and the first gear 111 is meshed with the first rack 12. The invention adopts a first motor to drive a first gear, and realizes the front-back movement of the first motor through the cooperation of the first gear and a first rack on a box body, thereby driving the optical axis to move back and forth, realizing the optical axis feeding, and realizing the whole driving process by adopting a gear-rack structure instead of a pneumatic mechanism, thereby greatly improving the control precision and ensuring the feeding movement to be more stable.
In order to make the movement of the first motor smoother, the case 10 in this embodiment is provided with a first slide rail 14, and the drum expansion and contraction driving part further includes a first moving frame movably mounted on the first slide rail 14, the first motor 11 is mounted on the first moving frame, and the optical axis 15 is connected with the first moving frame. The first sliding rail can guide the movement of the first movable frame, so that the feeding precision is ensured. For reasonable space utilization, the side wall of the box body is provided with an outer frame 13 for mounting the first sliding rail.
In order to improve the feeding precision of the first guide rod, wherein the first guide rod is a mechanism for driving the anti-wrapping disc of the forming drum, the first guide rod is connected with the connecting piece 24, the anti-wrapping disc of the forming drum is connected through the connecting piece, the anti-wrapping of the anti-wrapping disc can be realized through the feeding of the first guide rod, the feeding precision of the first guide rod belongs to the conventional scheme at present, the top of the box 10 in the embodiment is provided with the second rack 22, the extending direction of the second rack 22 is parallel to the extending direction of the first rack 12, the air spring processing box further comprises a forming drum anti-wrapping disc driving part, the forming drum anti-wrapping disc driving part comprises the first guide rod 23 and the second motor 21, the first guide rod 23 is parallel to the optical axis 15, the second motor 21 is movably arranged at the top of the box 10, the first guide rod 23 is fixed with the second motor 21, the output end of the second motor 21 is provided with the second gear, and the second gear is meshed with the second rack 22.
According to the embodiment, the second gear is driven by the second motor, the second motor is matched with the second rack on the box body, so that the second motor is moved back and forth, the first guide rod is driven to move back and forth, the first guide rod is driven to feed, the whole driving process is realized by adopting a rack-and-pinion structure instead of a pneumatic mechanism, the control precision is greatly improved, and the feeding motion is more stable.
In order to make the movement of the second motor smoother, the drum anti-ladle driving part in this embodiment further includes a second moving frame, the top of the box 10 is provided with a second sliding rail, the second sliding rail is parallel to the second rack 22, the second moving frame is movably mounted on the second sliding rail, and the second motor 21 is mounted on the second moving frame. The second sliding rail can guide the movement of the second movable frame, so that the feeding precision is ensured.
In order to realize the drive to the anti-package pole of shaping drum, be provided with third rack 32 on the box 10 in this embodiment, the extending direction of third rack 32 is parallel with the extending direction of first rack 12, air spring processing machine case still includes anti-package mechanism drive assembly, anti-package mechanism drive assembly includes pushing away a set of spare and third motor 31, third motor 31 movably sets up the lateral part at box 10, pushing away a set of spare and third motor 31 is fixed, the output of third motor 31 is provided with the third gear, the third gear meshes with third rack 32. According to the embodiment, the third gear is driven by the third motor, the third motor is driven to move back and forth through the cooperation of the third gear and the third rack on the box body, the push disc assembly is driven to move back and forth, the whole driving process is realized by adopting a gear-rack structure instead of a pneumatic mechanism, the control precision is greatly improved, and the feeding motion is stable.
Specifically, the push plate assembly in this embodiment includes a second guide rod 33 and a push plate 34 connected to a first end of the second guide rod 33, where a second end of the second guide rod 33 is fixed to the third motor 31, and the second guide rod 33 is parallel to the optical axis 15.
The pushing disc 34 in this embodiment is provided with a magnetic block at one end far away from the guide rod, and the magnetic block adsorbs the anti-wrapping rod, so that the anti-wrapping rod is conveniently controlled to return.
In order to ensure the magnetic attraction range, the magnetic blocks in this embodiment are arc-shaped magnetic blocks, which are disposed at intervals along the circumferential direction of the push plate 34.
In order to realize the rotation of the forming drum, the air spring processing machine box in the embodiment further comprises a main shaft 43 and a fourth motor 41, wherein the main shaft 43 is rotatably arranged on the box body 10, the fourth motor 41 is arranged on the box body 10, and the fourth motor 41 is in driving connection with the main shaft 43. The main shaft is a mechanism for driving the forming drum to rotate, and belongs to the conventional scheme at present.
The output end of the fourth motor 41 in this embodiment is provided with a synchronizing wheel 42, and the main shaft 43 is connected with the synchronizing wheel 42 through a timing belt.
The air spring processing machine box is driven by the motor, and can realize the driving of all actions of the machine box by only one power source, thereby being more convenient and portable and having low requirements on processing power equipment. The air spring processor case of the present invention also includes a sealing assembly 6 for sealing the ends of the building drum, as is presently conventional.
The optical axis is used for being in driving connection with a driving mechanism for driving the flat drum to expand and contract in the forming drum in the prior art, and the control of the driving mechanism on the expansion and contraction of the flat drum is realized through feeding of the optical axis. The forming drum anti-package tray is a device for carrying out anti-package by an auxiliary anti-package mechanism in the forming drum in the prior art, the forming drum anti-package mechanism is a structure for realizing a material anti-package steel ring on the forming drum, and the mechanisms are all existing devices and are not repeated here.
From the above description, it can be seen that the above embodiments of the present invention achieve the following technical effects:
According to the invention, the first gear is driven by the first motor, and the first gear is matched with the first rack on the box body, so that the first motor is moved back and forth, the optical axis is driven to move back and forth, the optical axis feeding is realized, the whole driving process is realized by adopting a rack-and-pinion structure instead of a pneumatic mechanism, the control precision is greatly improved, and the feeding movement is more stable.
It should be noted that the foregoing detailed description is illustrative and is intended to provide further explanation of the application. 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 application belongs.
It is noted that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of exemplary embodiments according to the present application. As used herein, the singular is also intended to include the plural unless the context clearly indicates otherwise, and furthermore, it is to be understood that the terms "comprises" and/or "comprising" when used in this specification are taken to specify the presence of stated features, steps, operations, devices, components, and/or combinations thereof.
It should be noted that the terms "first," "second," and the like in the description and the claims of the present application and the above figures are used for distinguishing between similar objects and not necessarily for describing a particular sequential or chronological order. It is to be understood that the terms so used are interchangeable under appropriate circumstances such that the embodiments of the application described herein are, for example, capable of operation in sequences other than those illustrated or otherwise described herein.
Furthermore, the terms "comprises," "comprising," and "having," and any variations thereof, are intended to cover a non-exclusive inclusion, such that a process, method, system, article, or apparatus that comprises a list of steps or elements is not necessarily limited to those steps or elements expressly listed but may include other steps or elements not expressly listed or inherent to such process, method, article, or apparatus.
Spatially relative terms, such as "above," "upper" and "upper surface," "above" and the like, may be used herein for ease of description to describe one device or feature's spatial relationship to another device or feature as illustrated in the figures. It will be understood that the spatially relative terms are intended to encompass different orientations in use or operation in addition to the orientation depicted in the figures.
For example, if the device in the figures is turned over, elements described as "above" or "over" other devices or structures would then be oriented "below" or "beneath" the other devices or structures. Thus, the process is carried out, the exemplary term "above" may be included. Upper and lower. Two orientations below. The device may also be positioned in other different ways (rotated 90 degrees or at other orientations) and the spatially relative descriptors used herein interpreted accordingly.
In the above detailed description, reference is made to the accompanying drawings, which form a part hereof. In the drawings, like numerals typically identify like components unless context indicates otherwise. The illustrated embodiments described in the detailed description, drawings, and claims are not meant to be limiting. Other embodiments may be utilized, and other changes may be made, without departing from the spirit or scope of the subject matter presented herein. It will be readily understood that the aspects of the present disclosure, as generally described herein, and illustrated in the figures, can be arranged, substituted, combined, separated, and designed in a wide variety of different configurations, all of which are explicitly contemplated herein.
The present disclosure, in accordance with the particular embodiments described herein, is not to be limited in scope and is intended as an illustration of the various aspects. As will be apparent to those skilled in the art, many modifications and variations are possible without departing from the spirit and scope of the disclosure. Functionally equivalent methods and apparatus, other than those enumerated herein, will be apparent to those skilled in the art from the foregoing description, within the scope of the present disclosure. Such modifications and variations are intended to fall within the scope of the appended claims. The present disclosure is to be limited only by the terms of the appended claims, along with the full scope of equivalents to which such claims are entitled. It will be understood that the present disclosure is not limited to particular methods, reagents, compounds, compositions, or biological systems, which may, of course, vary. It is also to be understood that the terminology used herein is for the purpose of describing particular embodiments only, and is not intended to be limiting.
The above description is only of the preferred embodiments of the present invention and is not intended to limit the present invention, but various modifications and variations can be made to the present invention by those skilled in the art. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention should be included in the protection scope of the present invention.
Claims (10)
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202010901337.5A CN114103196B (en) | 2020-08-31 | 2020-08-31 | Air spring processing chassis |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202010901337.5A CN114103196B (en) | 2020-08-31 | 2020-08-31 | Air spring processing chassis |
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| Publication Number | Publication Date |
|---|---|
| CN114103196A CN114103196A (en) | 2022-03-01 |
| CN114103196B true CN114103196B (en) | 2025-04-11 |
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| CN202010901337.5A Active CN114103196B (en) | 2020-08-31 | 2020-08-31 | Air spring processing chassis |
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Citations (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN212352995U (en) * | 2020-08-31 | 2021-01-15 | 软控股份有限公司 | Air spring processing case |
Family Cites Families (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| GB1149271A (en) * | 1966-05-06 | 1969-04-23 | Nii Shinnoi Promy | Bead-forming device for tyre building machines |
| CN108274789B (en) * | 2017-12-29 | 2024-05-28 | 青岛软控机电工程有限公司 | Molding chassis and air spring molding machine having the same |
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Patent Citations (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN212352995U (en) * | 2020-08-31 | 2021-01-15 | 软控股份有限公司 | Air spring processing case |
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