WO2022227951A1 - 一种在制帽自动化产线设备上的翻页部件 - Google Patents

一种在制帽自动化产线设备上的翻页部件 Download PDF

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Publication number
WO2022227951A1
WO2022227951A1 PCT/CN2022/082509 CN2022082509W WO2022227951A1 WO 2022227951 A1 WO2022227951 A1 WO 2022227951A1 CN 2022082509 W CN2022082509 W CN 2022082509W WO 2022227951 A1 WO2022227951 A1 WO 2022227951A1
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WO
WIPO (PCT)
Prior art keywords
assembly
page
plate
mounting seat
production line
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PCT/CN2022/082509
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English (en)
French (fr)
Inventor
王爱美
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青岛前丰国际帽艺股份有限公司
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Application filed by 青岛前丰国际帽艺股份有限公司 filed Critical 青岛前丰国际帽艺股份有限公司
Priority to US18/009,974 priority Critical patent/US20230304204A1/en
Publication of WO2022227951A1 publication Critical patent/WO2022227951A1/zh

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    • DTEXTILES; PAPER
    • D05SEWING; EMBROIDERING; TUFTING
    • D05BSEWING
    • D05B23/00Sewing apparatus or machines not otherwise provided for
    • D05B23/002Hat hemming sewing machines
    • DTEXTILES; PAPER
    • D05SEWING; EMBROIDERING; TUFTING
    • D05BSEWING
    • D05B35/00Work-feeding or -handling elements not otherwise provided for
    • DTEXTILES; PAPER
    • D05SEWING; EMBROIDERING; TUFTING
    • D05BSEWING
    • D05B41/00Work-collecting devices

Definitions

  • the invention relates to the technical field of cap-making equipment, in particular to a page-turning component on an automatic cap-making production line device.
  • Hats are clothing worn on the head. Most of them can cover the entire top of the head and are mainly used to protect the head. Some hats have protruding edges that can cover the sun.
  • the double-needle sewing process the closed fabric needs to be opened before double-needle sewing.
  • the overall processing accuracy of the existing cap-making processing equipment is poor, and the double-needle sewing work and subsequent separation and opening work cannot be performed on the fabric. , which increases the secondary operation intensity of the staff, and the existing processing equipment has a small working range and cannot complete the cloth processing work in the designated area.
  • the existing technology has the following shortcomings: the overall processing accuracy of the existing hat-making processing equipment is poor, and the double-needle sewing work and subsequent separation and opening work cannot be performed on the cloth, so the secondary operation intensity of the staff is increased, which affects the overall processing.
  • the existing processing equipment has a small working range, cannot complete the cloth processing work in the designated area, and cannot dynamically adjust the processing angle and processing range according to the actual use requirements.
  • the purpose of the present invention is to provide a page-turning component on an automatic cap-making production line equipment, so as to solve the problems raised in the above-mentioned background art.
  • a page-turning component on a cap-making automatic production line equipment comprising a mounting seat, a page-turning assembly, two sets of drive assemblies, a translation assembly and an angle adjustment assembly, the page-turning assembly
  • the components are correspondingly installed on the top of the mounting seat, the two groups of the driving components are matched and installed on the two side walls of the mounting seat, and the output end of the driving components is connected to the page turning component in a transmission connection, and the angle adjustment component is installed on the lower surface of the mounting seat, so
  • the translation component is matched and installed on the lower surface of the angle adjustment component.
  • the mounting seat has a rectangular structure as a whole, and the mounting seat is pressed from steel.
  • sliding rails are installed on both side walls of the mounting seat, and the sliding rails are arranged corresponding to the driving components.
  • the page turning assembly includes a rotating shaft, a No. 1 support member, a No. 2 support member, a left side plate and a right side plate
  • the rotating shaft is installed at the center of the top end of the mounting seat through a bracket
  • the No. 1 support member It is rotatably installed on one side of the rotating shaft
  • the No. 2 support is rotatably installed on one side of the rotating shaft
  • the left side plate is correspondingly installed on the No. 1 support
  • the right side plate is correspondingly locked and installed on the No. on the support member
  • the left side plate and the right side plate are symmetrically arranged along the rotation axis.
  • two sets of left suction cups are installed in parallel on one side of the upper surface of the left side panel
  • two sets of right suction cups are installed in parallel on one side of the upper surface of the right side panel
  • the left suction cups are parallel to the right suction cups distributed.
  • the drive assembly includes a positioning plate, a fixing member, a cylinder and a connecting member, the positioning plate is installed in parallel on both side walls of the mounting seat, and the positioning plate is slidably engaged with the sliding track, and the fixing member locks It is installed on one side of the positioning plate, the bottom end of the cylinder is rotatably connected with the head end of the fixing piece through a pin shaft, the connecting piece is correspondingly installed in the middle of the lower surface of the No. 1 support piece and the No. 2 support piece, and the output end of the cylinder is It is movably connected with the connecting piece through a hinge.
  • the fixing member is locked and fixed with the positioning plate by bolts, and the fixing member has a concave structure as a whole.
  • the translation assembly includes a moving cavity, a driving motor, a screw rod, a driving block and a moving plate
  • the moving cavity is arranged below the mounting seat
  • the driving motor is mounted on the side wall of the moving cavity through a bracket
  • the screw rod The two ends are rotatably connected to both sides of the inner wall of the moving cavity through bearings, and the output end of the drive motor is connected to the screw drive.
  • the moving plate is slidably mounted on the upper surface of the moving cavity and is connected with the driving block.
  • limit plates are installed in parallel with the bottom ends of the two side walls of the moving cavity, and installation holes are formed through the limit plates.
  • the angle adjustment assembly includes a fixed column, a top plate, a stepping motor, a drive gear and a transmission gear
  • the fixed column is rotatably mounted on the upper surface of the moving plate
  • the top plate is mounted on the top of the fixed column
  • the top plate is connected to the top of the fixed column.
  • the mounting seat is locked and fixed by bolts
  • the stepper motor is installed on one side of the fixed column through a bracket
  • the drive gear is installed on the output end of the stepper motor
  • the transmission gear is sleeved outside the fixed column
  • the drive gear It is meshed and connected with the transmission gear.
  • the present invention is provided with a page-turning component. After the cloth is transported, it falls on the left and right plates.
  • the left and right plates can be used to collect the cloth, and the cloth can be clamped and opened.
  • Action double-needle sewing on the fabric and subsequent opening of the fabric, which can be controlled by the operator.
  • the stability of the fabric is guaranteed to avoid falling.
  • an angle adjustment component is provided, a fixed column is used to realize the connection between the moving cavity and the mounting seat, and the stepper motor is electronically controlled to drive the driving gear to rotate.
  • the rotation of the column realizes the overall angle adjustment of the equipment, which can be dynamically regulated and used during the processing process, and can process fabrics of different angles synchronously and quickly.
  • a translation component is provided, and the operator controls the driving motor electrically to drive the screw rod to rotate. Because the driving block is connected with the screw rod, the moving plate is driven to slide left and right on the upper surface of the moving cavity, and the linkage mounting seat is located in the moving cavity. The upper surface is moved in translation, which increases the overall processing range, and can stably process the fabric in the specified range, which enhances the overall processing effect.
  • Fig. 1 is the overall structure schematic diagram of the present invention
  • FIG. 2 is a schematic structural diagram of the drive assembly of the present invention
  • FIG. 3 is a schematic diagram of the connection between the mounting seat and the cylinder of the present invention.
  • FIG. 4 is a schematic structural diagram of a page-turning component of the present invention.
  • FIG. 5 is a schematic diagram of the connection between the moving cavity and the fixed column of the present invention.
  • FIG. 6 is a schematic structural diagram of an angle adjustment assembly of the present invention.
  • FIG. 7 is a schematic structural diagram of a translation assembly of the present invention.
  • FIG. 8 is an enlarged schematic view of the position A in FIG. 3 of the present invention.
  • a page-turning component on a cap-making automatic production line equipment including a mounting seat 1, a page-turning component 2, two sets of driving components 3, a translation component 4 and an angle Adjustment assembly 5,
  • the page turning assembly 2 is correspondingly installed on the top of the mounting seat 1
  • two sets of the driving assemblies 3 are matched and installed on the two side walls of the mounting seat 1
  • the output end of the driving assembly 3 is drivingly connected with the page turning assembly 2
  • the angle adjustment component 5 is installed on the lower surface of the mounting seat 1
  • the translation component 4 is matched and installed on the lower surface of the angle adjustment component 5 .
  • the mounting seat 1 of the present invention has a rectangular structure as a whole, and the mounting seat 1 is made of pressed steel.
  • the two side walls of the mounting seat 1 of the present invention are mounted with sliding rails 6 , and the sliding rails 6 are arranged corresponding to the driving assembly 3 .
  • the page turning assembly 2 of the present invention includes a rotating shaft 7, a No. 1 support member 8, a No. 2 support member 9, a left side plate 10 and a right side plate 11.
  • the rotating shaft 7 is installed at the center of the top end of the mounting base 1 through a bracket
  • the No. 1 supporting member 8 is rotatably installed on the side of the rotating shaft 7
  • the No. 2 supporting member 9 is rotatably installed on one side of the rotating shaft 7
  • the left side plate 10 is correspondingly locked and installed on the No. 1 supporting member 8
  • the right side plate 11 is correspondingly locked and installed on the second support member 9, and the left side plate 10 and the right side plate 11 are symmetrically arranged along the rotation axis 7.
  • the left side panel 10 and the right side panel 11 can be used to collect fabrics, clamp and open the fabrics, perform double-needle sewing on the fabrics and subsequent opening of the fabrics, which are available for the operator regulation.
  • two sets of left suction cups 12 are installed in parallel on one side of the upper surface of the left side plate 10
  • two sets of right suction cups 13 are installed in parallel on one side of the upper surface of the right side plate 11
  • the left suction cups 12 and The right suction cups 13 are distributed in parallel, and with the assistance of the left suction cup 12 and the right suction cup 13, the stability of the cloth is ensured and the situation of falling down is avoided.
  • the drive assembly 3 of the present invention includes a positioning plate 14 , a fixing member 15 , a cylinder 16 and a connecting member 17 .
  • the positioning plate 14 is installed in parallel on both side walls of the mounting seat 1 , and the positioning plate 14 slides correspondingly with the sliding track 6
  • the fixing member 15 is locked and installed on one side of the positioning plate 14, the bottom end of the cylinder 16 is rotatably connected with the head end of the fixing member 15 through a pin shaft, and the connecting member 17 is correspondingly installed on the No.
  • the middle of the lower surface of the second support member 9, and the output end of the cylinder 16 is movably connected with the connecting member 17 through a hinge.
  • the staff electronically controls the cylinder 16, and under the transmission of the connecting member 17, the left side plate 10 and the right side plate 11. The clamping and opening work is performed to provide a stable power source for the subsequent left side plate 10 and right side plate 11 .
  • the fixing member 15 of the present invention is locked and fixed with the positioning plate 14 by bolts, and the fixing member 15 has a concave structure as a whole.
  • the translation assembly 4 of the present invention includes a moving cavity 18 , a driving motor 19 , a screw rod 20 , a driving block 21 and a moving plate 22 , the moving cavity 18 is arranged under the mounting seat 1 , and the driving motor 19 is installed on the moving plate through a bracket.
  • the side wall of the cavity 18, the two ends of the screw rod 20 are rotatably connected with the two sides of the inner wall of the moving cavity 18 through bearings, and the output end of the drive motor 19 is connected to the screw rod 20 in a driving manner, and the driving block 21 is sleeved by screwing Outside the screw rod 20 and slidingly attached to the inner wall of the moving cavity 18, the moving plate 22 is slidably installed on the upper surface of the moving cavity 18 and is connected with the driving block 21, which drives the moving plate 22 to slide left and right on the upper surface of the moving cavity 18, and is installed in linkage
  • the base 1 performs a translational movement on the upper surface of the moving cavity 18, which increases the overall processing range and enables stable processing of fabrics within a specified range.
  • Limiting plates 23 are installed in parallel with the bottom ends of the two side walls of the moving cavity 18 in the present invention, and the limiting plates 23 are provided with mounting holes, which are convenient for the staff to assemble.
  • the angle adjustment assembly 5 of the present invention includes a fixed column 24, a top plate 25, a stepping motor 26, a driving gear 27 and a transmission gear 28.
  • the fixed column 24 is rotatably mounted on the upper surface of the moving plate 22, and the top plate 25 is mounted on the fixed the top of the column 24, the top plate 25 and the mounting seat 1 are locked and fixed by bolts, the stepping motor 26 is installed on the side of the fixing column 24 through a bracket, and the driving gear 27 is installed on the output end of the stepping motor 26, so
  • the drive gear 28 is sleeved on the outside of the fixed column 24, and the drive gear 27 and the drive gear 28 are meshed and connected to each other.
  • the drive gear 27 and the drive gear 28 are meshed and connected to the drive gear 28, the drive gear 28 and the fixed column 24 are rotated. In order to adjust the overall angle of the equipment, it can be dynamically adjusted and used during the processing process, and the fabrics of different angles can be processed synchronously and quickly.
  • the staff When in use, the staff first uses the limit plate 23 to position and fix the whole equipment, which ensures the efficient and stable progress of the subsequent processing work. With the page turning component 2, the cloth falls on the left plate after the conveying is completed. 10. On the right side panel 11, the left side panel 10 and the right side panel 11 can be used to collect the fabric, clamp and open the fabric, perform double-needle sewing on the fabric and subsequent opening of the fabric. The operator controls, and at the same time, with the assistance of the left suction cup 12 and the right suction cup 13, the stability of the cloth is ensured, the falling situation is avoided, and the overall processing accuracy is improved. 6. The orientation of the positioning plate 14 is realized, which is convenient for the operator to carry out the installation operation.
  • the operator electrically controls the cylinder 16, and under the transmission of the connecting piece 17, the left plate 10 and the right plate 11 are clamped and opened. , provides a stable power source for the subsequent left side panel 10 and right side panel 11, the overall operation is convenient, and it is convenient for operators to operate and use.
  • the operator electronically controls the stepping motor 26 to drive the drive gear 27 to rotate. Since the drive gear 27 is meshed with the transmission gear 28, the transmission gear 28 and the fixed column 24 are rotated, and the overall angle adjustment of the equipment is realized. , which can be used for dynamic control during the processing process, and can process fabrics of different angles synchronously and quickly.
  • the operator electronically controls the driving motor 19 to drive the screw 20 to rotate.
  • the rod 20 is screwed and connected, which drives the moving plate 22 to slide left and right on the upper surface of the moving cavity 18, and the linkage mounting base 1 performs a translational movement on the upper surface of the moving cavity 18, which increases the overall processing range and can stably process the fabric in the specified range. , to strengthen the overall processing effect.

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Sewing Machines And Sewing (AREA)

Abstract

一种在制帽自动化产线设备上的翻页部件,包括安装座(1)、翻页组件(2)、两组驱动组件(3)、平移组件(4)以及角度调节组件(5),翻页组件对应安装在安装座顶端,两组驱动组件匹配安装在安装座两侧壁,且驱动组件输出端与翻页组件传动连接,角度调节组件安装在安装座下表面,平移组件匹配安装在角度调节组件下表面。翻页部件能够利用左侧板、右侧板对布料进行收集,对布料进行夹住以及张开动作,对布料进行双针缝制以及后续布料打开工作,可供操作人员调控,同时在左侧吸盘、右侧吸盘的辅助下,保证了布料的稳定,避免发生掉落的状况,且在平移组件以及角度调节组件的辅助下,实现了对设备加工角度以及加工范围进行动态调整的效果。

Description

一种在制帽自动化产线设备上的翻页部件 技术领域
本发明涉及制帽设备技术领域,具体为一种在制帽自动化产线设备上的翻页部件。
背景技术
帽子是戴在头部的服饰,多数可以覆盖头的整个顶部,主要用于保护头部,部分帽子会有突出的边缘,可以遮盖阳光,在帽子缝制的过程中,合片完成后需要做双针缝制工艺,在双针缝制前需要对合完片的布料进行打开动作,但是现有的制帽加工设备整体加工精度较差,无法对布料进行双针缝制工作以及后续分离打开工作,增大了工作人员的二次操作强度,且现有的加工设备工作范围较小,不能在完成指定区域内的布料加工工作。
现有技术有以下不足:现有的制帽加工设备整体加工精度较差,无法对布料进行双针缝制工作以及后续分离打开工作,因此增大了工作人员的二次操作强度,影响了整体加工的效果,且现有的加工设备工作范围较小,不能在完成指定区域内的布料加工工作,且无法根据实际使用需求对加工角度以及加工范围进行动态调整。
发明内容
本发明的目的在于提供一种在制帽自动化产线设备上的翻页部件,以解决上述背景技术中提出的问题。
为实现上述目的,本发明提供如下技术方案:一种在制帽自动化产线设备 上的翻页部件,包括安装座、翻页组件、两组驱动组件、平移组件以及角度调节组件,所述翻页组件对应安装在安装座顶端,两组所述驱动组件匹配安装在安装座两侧壁,且所述驱动组件输出端与翻页组件传动连接,所述角度调节组件安装在安装座下表面,所述平移组件匹配安装在角度调节组件下表面。
优选的,所述安装座整体呈矩形结构,且所述安装座采用钢材压制而成。
优选的,所述安装座两侧壁均安装有滑动轨道,且所述滑动轨道与驱动组件对应设置。
优选的,所述翻页组件包括旋转轴、一号支撑件、二号支撑件、左侧板以及右侧板,所述旋转轴通过支架安装在安装座顶端中心处,所述一号支撑件转动安装在旋转轴一侧,所述二号支撑件转动安装在旋转轴一侧,所述左侧板对应锁合安装在一号支撑件上,所述右侧板对应锁合安装在二号支撑件上,且所述左侧板、右侧板延旋转轴对称设置。
优选的,所述左侧板上表面一侧平行安装有两组左侧吸盘,所述右侧板上表面一侧平行安装有两组右侧吸盘,且所述左侧吸盘与右侧吸盘平行分布。
优选的,所述驱动组件包括定位板、固定件、气缸以及连接件,所述定位板平行安装在安装座两侧壁,且所述定位板与滑动轨道对应滑动卡合,所述固定件锁合安装在定位板一侧,所述气缸底端通过销轴与固定件头端转动连接,所述连接件对应安装在一号支撑件、二号支撑件下表面中部,且所述气缸输出端通过铰链与连接件活动连接。
优选的,所述固定件通过螺栓与定位板锁合固定,且所述固定件整体呈凹 状结构。
优选的,所述平移组件包括移动腔、驱动电机、丝杆、驱动块以及移动板,所述移动腔设置在安装座下方,所述驱动电机通过支架安装在移动腔侧壁,所述丝杆两端通过轴承与移动腔内壁两侧转动连接,且所述驱动电机输出端与丝杆传动连接,所述驱动块通过螺纹旋合套设在丝杆外部且与移动腔内壁滑动贴合,所述移动板滑动安装在移动腔上表面且与驱动块连接。
优选的,所述移动腔两侧壁底端平行安装有限位板,且所述限位板上贯穿开设有安装孔。
优选的,所述角度调节组件包括固定柱、顶板、步进电机、驱动齿轮以及传动齿轮,所述固定柱转动安装在移动板上表面,所述顶板安装在固定柱顶端,且所述顶板与安装座通过螺栓锁合固定,所述步进电机通过支架安装在固定柱一侧,所述驱动齿轮安装在步进电机输出端,所述传动齿轮套设在固定柱外部,且所述驱动齿轮与传动齿轮啮合传动连接。
与现有技术相比,本发明的有益效果是:
1、本发明通过设有翻页组件,布料输送完成后掉落在左侧板、右侧板上,利用左侧板、右侧板可对布料进行收集,可对布料进行夹住以及张开动作,对布料进行双针缝制以及后续布料打开工作,可供操作人员调控,同时在左侧吸盘、右侧吸盘的辅助下,保证了布料的稳定,避免发生掉落的状况。
2、本发明通过设有角度调节组件,利用固定柱实现移动腔与安装座的连接,电控步进电机,带动驱动齿轮进行转动,由于驱动齿轮与传动齿轮啮合传 动连接,使得传动齿轮以及固定柱进行转动,实现了对设备进行整体的角度调整,可在加工过程中进行动态调控使用,同步快速的对不同角度的布料进行加工。
3、本发明通过设有平移组件,操作人员电控驱动电机,带动丝杆进行转动,由于驱动块与丝杆旋合连接,带动移动板在移动腔上表面左右滑动,联动安装座在移动腔上表面进行平移动作,增大了整体加工范围,可对指定范围的布料进行稳定的加工,加强了整体加工效果。
附图说明
图1为本发明的整体结构示意图;
图2为本发明驱动组件结构示意图;
图3为本发明的安装座与气缸连接示意图;
图4为本发明的翻页组件结构示意图;
图5为本发明的移动腔与固定柱连接示意图;
图6为本发明的角度调节组件结构示意图;
图7为本发明的平移组件结构示意图;
图8为本发明图3中A处放大示意图。
图中:1、安装座;2、翻页组件;3、驱动组件;4、平移组件;5、角度调节组件;6、滑动轨道;7、旋转轴;8、一号支撑件;9、二号支撑件;10、左侧板;11、右侧板;12、左侧吸盘;13、右侧吸盘;14、定位板;15、固定 件;16、气缸;17、连接件;18、移动腔;19、驱动电机;20、丝杆;21、驱动块;22、移动板;23、限位板;24、固定柱;25、顶板;26、步进电机;27、驱动齿轮;28、传动齿轮。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
请参阅图1-8,本发明提供一种技术方案:一种在制帽自动化产线设备上的翻页部件,包括安装座1、翻页组件2、两组驱动组件3、平移组件4以及角度调节组件5,所述翻页组件2对应安装在安装座1顶端,两组所述驱动组件3匹配安装在安装座1两侧壁,且所述驱动组件3输出端与翻页组件2传动连接,所述角度调节组件5安装在安装座1下表面,所述平移组件4匹配安装在角度调节组件5下表面。
本发明所述安装座1整体呈矩形结构,且所述安装座1采用钢材压制而成。
本发明所述安装座1两侧壁均安装有滑动轨道6,且所述滑动轨道6与驱动组件3对应设置。
本发明所述翻页组件2包括旋转轴7、一号支撑件8、二号支撑件9、左侧板10以及右侧板11,所述旋转轴7通过支架安装在安装座1顶端中心处,所 述一号支撑件8转动安装在旋转轴7一侧,所述二号支撑件9转动安装在旋转轴7一侧,所述左侧板10对应锁合安装在一号支撑件8上,所述右侧板11对应锁合安装在二号支撑件9上,且所述左侧板10、右侧板11延旋转轴7对称设置,布料输送完成后掉落在左侧板10、右侧板11上,利用左侧板10、右侧板11可对布料进行收集,可对布料进行夹住以及张开动作,对布料进行双针缝制以及后续布料打开工作,可供操作人员调控。
本发明所述左侧板10上表面一侧平行安装有两组左侧吸盘12,所述右侧板11上表面一侧平行安装有两组右侧吸盘13,且所述左侧吸盘12与右侧吸盘13平行分布,在左侧吸盘12、右侧吸盘13的辅助下,保证了布料的稳定,避免发生掉落的状况。
本发明所述驱动组件3包括定位板14、固定件15、气缸16以及连接件17,所述定位板14平行安装在安装座1两侧壁,且所述定位板14与滑动轨道6对应滑动卡合,所述固定件15锁合安装在定位板14一侧,所述气缸16底端通过销轴与固定件15头端转动连接,所述连接件17对应安装在一号支撑件8、二号支撑件9下表面中部,且所述气缸16输出端通过铰链与连接件17活动连接,工作人员电控气缸16,在连接件17的传动下,使得左侧板10、右侧板11进行夹持、张开工作,为后续左侧板10、右侧板11提供了稳定的动力源。
本发明所述固定件15通过螺栓与定位板14锁合固定,且所述固定件15整体呈凹状结构。
本发明所述平移组件4包括移动腔18、驱动电机19、丝杆20、驱动块21以及移动板22,所述移动腔18设置在安装座1下方,所述驱动电机19通过支 架安装在移动腔18侧壁,所述丝杆20两端通过轴承与移动腔18内壁两侧转动连接,且所述驱动电机19输出端与丝杆20传动连接,所述驱动块21通过螺纹旋合套设在丝杆20外部且与移动腔18内壁滑动贴合,所述移动板22滑动安装在移动腔18上表面且与驱动块21连接,带动移动板22在移动腔18上表面左右滑动,联动安装座1在移动腔18上表面进行平移动作,增大了整体加工范围,可对指定范围的布料进行稳定的加工。
本发明所述移动腔18两侧壁底端平行安装有限位板23,且所述限位板23上贯穿开设有安装孔,便于工作人员进行装配。
本发明所述角度调节组件5包括固定柱24、顶板25、步进电机26、驱动齿轮27以及传动齿轮28,所述固定柱24转动安装在移动板22上表面,所述顶板25安装在固定柱24顶端,且所述顶板25与安装座1通过螺栓锁合固定,所述步进电机26通过支架安装在固定柱24一侧,所述驱动齿轮27安装在步进电机26输出端,所述传动齿轮28套设在固定柱24外部,且所述驱动齿轮27与传动齿轮28啮合传动连接,由于驱动齿轮27与传动齿轮28啮合传动连接,使得传动齿轮28以及固定柱24进行转动,实现了对设备进行整体的角度调整,可在加工过程中进行动态调控使用,同步快速的对不同角度的布料进行加工。
工作原理:在使用时,工作人员首先利用限位板23对设备整体进行定位固定,保证了后续加工工作的高效稳定进行,通过设有翻页组件2,布料输送完成后掉落在左侧板10、右侧板11上,利用左侧板10、右侧板11可对布料进行收集,可对布料进行夹住以及张开动作,对布料进行双针缝制以及后续布料 打开工作,可供操作人员调控,同时在左侧吸盘12、右侧吸盘13的辅助下,保证了布料的稳定,避免发生掉落的状况,提升了整体加工精度,且在驱动组件3的配合下,通过滑动轨道6实现了对定位板14的导向,便于操作人员进行安装操作,随后工作人员电控气缸16,在连接件17的传动下,使得左侧板10、右侧板11进行夹持、张开工作,为后续左侧板10、右侧板11提供了稳定的动力源,整体操作便捷,方便操作人员运行使用,通过设有角度调节组件5,利用固定柱24实现移动腔18与安装座1的连接,操作人员电控步进电机26,带动驱动齿轮27进行转动,由于驱动齿轮27与传动齿轮28啮合传动连接,使得传动齿轮28以及固定柱24进行转动,实现了对设备进行整体的角度调整,可在加工过程中进行动态调控使用,同步快速的对不同角度的布料进行加工,通过设有平移组件4,操作人员电控驱动电机19,带动丝杆20进行转动,由于驱动块21与丝杆20旋合连接,带动移动板22在移动腔18上表面左右滑动,联动安装座1在移动腔18上表面进行平移动作,增大了整体加工范围,可对指定范围的布料进行稳定的加工,加强了整体加工效果。
需要说明的是,在本文中,诸如第一和第二等之类的关系术语仅仅用来将一个实体或者操作与另一个实体或操作区分开来,而不一定要求或者暗示这些实体或操作之间存在任何这种实际的关系或者顺序。而且,术语“包括”、“包含”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者设备不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、物品或者设备所固有的要素。
尽管已经示出和描述了本发明的实施例,对于本领域的普通技术人员而言,可以理解在不脱离本发明的原理和精神的情况下可以对这些实施例进行多种变化、修改、替换和变型,本发明的范围由所附权利要求及其等同物限定。

Claims (10)

  1. 一种在制帽自动化产线设备上的翻页部件,包括安装座(1)、翻页组件(2)、两组驱动组件(3)、平移组件(4)以及角度调节组件(5),所述翻页组件(2)对应安装在安装座(1)顶端,两组所述驱动组件(3)匹配安装在安装座(1)两侧壁,且所述驱动组件(3)输出端与翻页组件(2)传动连接,所述角度调节组件(5)安装在安装座(1)下表面,所述平移组件(4)匹配安装在角度调节组件(5)下表面。
  2. 根据权利要求1所述的一种在制帽自动化产线设备上的翻页部件,其特征在于:所述安装座(1)整体呈矩形结构,且所述安装座(1)采用钢材压制而成。
  3. 根据权利要求1所述的一种在制帽自动化产线设备上的翻页部件,其特征在于:所述安装座(1)两侧壁均安装有滑动轨道(6),且所述滑动轨道(6)与驱动组件(3)对应设置。
  4. 根据权利要求1所述的一种在制帽自动化产线设备上的翻页部件,其特征在于:所述翻页组件(2)包括旋转轴(7)、一号支撑件(8)、二号支撑件(9)、左侧板(10)以及右侧板(11),所述旋转轴(7)通过支架安装在安装座(1)顶端中心处,所述一号支撑件(8)转动安装在旋转轴(7)一侧,所述二号支撑件(9)转动安装在旋转轴(7)一侧,所述左侧板(10)对应锁合安装在一号支撑件(8)上,所述右侧板(11)对应锁合安装在二号支撑件(9)上,且所述左侧板(10)、右侧板(11)延旋转轴(7)对称设置。
  5. 根据权利要求4所述的一种在制帽自动化产线设备上的翻页部件,其特征在于:所述左侧板(10)上表面一侧平行安装有两组左侧吸盘(12),所述 右侧板(11)上表面一侧平行安装有两组右侧吸盘(13),且所述左侧吸盘(12)与右侧吸盘(13)平行分布。
  6. 根据权利要求1所述的一种在制帽自动化产线设备上的翻页部件,其特征在于:所述驱动组件(3)包括定位板(14)、固定件(15)、气缸(16)以及连接件(17),所述定位板(14)平行安装在安装座(1)两侧壁,且所述定位板(14)与滑动轨道(6)对应滑动卡合,所述固定件(15)锁合安装在定位板(14)一侧,所述气缸(16)底端通过销轴与固定件(15)头端转动连接,所述连接件(17)对应安装在一号支撑件(8)、二号支撑件(9)下表面中部,且所述气缸(16)输出端通过铰链与连接件(17)活动连接。
  7. 根据权利要求6所述的一种在制帽自动化产线设备上的翻页部件,其特征在于:所述固定件(15)通过螺栓与定位板(14)锁合固定,且所述固定件(15)整体呈凹状结构。
  8. 根据权利要求1所述的一种在制帽自动化产线设备上的翻页部件,其特征在于:所述平移组件(4)包括移动腔(18)、驱动电机(19)、丝杆(20)、驱动块(21)以及移动板(22),所述移动腔(18)设置在安装座(1)下方,所述驱动电机(19)通过支架安装在移动腔(18)侧壁,所述丝杆(20)两端通过轴承与移动腔(18)内壁两侧转动连接,且所述驱动电机(19)输出端与丝杆(20)传动连接,所述驱动块(21)通过螺纹旋合套设在丝杆(20)外部且与移动腔(18)内壁滑动贴合,所述移动板(22)滑动安装在移动腔(18)上表面且与驱动块(21)连接。
  9. 根据权利要求8所述的一种在制帽自动化产线设备上的翻页部件,其特征在于:所述移动腔(18)两侧壁底端平行安装有限位板(23),且所述限位 板(23)上贯穿开设有安装孔。
  10. 根据权利要求1所述的一种在制帽自动化产线设备上的翻页部件,其特征在于:所述角度调节组件(5)包括固定柱(24)、顶板(25)、步进电机(26)、驱动齿轮(27)以及传动齿轮(28),所述固定柱(24)转动安装在移动板(22)上表面,所述顶板(25)安装在固定柱(24)顶端,且所述顶板(25)与安装座(1)通过螺栓锁合固定,所述步进电机(26)通过支架安装在固定柱(24)一侧,所述驱动齿轮(27)安装在步进电机(26)输出端,所述传动齿轮(28)套设在固定柱(24)外部,且所述驱动齿轮(27)与传动齿轮(28)啮合传动连接。
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