WO2014008804A1 - 新型电子提花机 - Google Patents

新型电子提花机 Download PDF

Info

Publication number
WO2014008804A1
WO2014008804A1 PCT/CN2013/077446 CN2013077446W WO2014008804A1 WO 2014008804 A1 WO2014008804 A1 WO 2014008804A1 CN 2013077446 W CN2013077446 W CN 2013077446W WO 2014008804 A1 WO2014008804 A1 WO 2014008804A1
Authority
WO
WIPO (PCT)
Prior art keywords
reciprocating
electromagnetic selection
pulley
electromagnetic
electronic jacquard
Prior art date
Application number
PCT/CN2013/077446
Other languages
English (en)
French (fr)
Inventor
王勇
Original Assignee
江苏友诚数控科技有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 江苏友诚数控科技有限公司 filed Critical 江苏友诚数控科技有限公司
Publication of WO2014008804A1 publication Critical patent/WO2014008804A1/zh

Links

Classifications

    • DTEXTILES; PAPER
    • D03WEAVING
    • D03CSHEDDING MECHANISMS; PATTERN CARDS OR CHAINS; PUNCHING OF CARDS; DESIGNING PATTERNS
    • D03C3/00Jacquards
    • D03C3/20Electrically-operated jacquards
    • DTEXTILES; PAPER
    • D03WEAVING
    • D03CSHEDDING MECHANISMS; PATTERN CARDS OR CHAINS; PUNCHING OF CARDS; DESIGNING PATTERNS
    • D03C3/00Jacquards
    • D03C3/24Features common to jacquards of different types
    • D03C3/26General arrangements of jacquards, or disposition in relation to loom
    • DTEXTILES; PAPER
    • D03WEAVING
    • D03CSHEDDING MECHANISMS; PATTERN CARDS OR CHAINS; PUNCHING OF CARDS; DESIGNING PATTERNS
    • D03C3/00Jacquards
    • D03C3/24Features common to jacquards of different types
    • D03C3/32Jacquard driving mechanisms
    • D03C3/36Griffe operating mechanisms
    • DTEXTILES; PAPER
    • D03WEAVING
    • D03CSHEDDING MECHANISMS; PATTERN CARDS OR CHAINS; PUNCHING OF CARDS; DESIGNING PATTERNS
    • D03C3/00Jacquards
    • D03C3/24Features common to jacquards of different types
    • D03C3/42Arrangements of lifting-cords

Definitions

  • the present invention relates to a textile machine, and more particularly to an electronic jacquard machine using a novel warp opening mechanism. Background technique
  • the electronic jacquard weaving machine is the trend of individualized development of weaving products, and the traditional electronic jacquard machine equipped with the electronic jacquard weaving machine places all the electromagnetic selecting components on the weaving mouth of the electronic jacquard weaving machine, because of the large number of electromagnetic selecting components.
  • Large size in order to solve the problem of wear of the hanging wire and the fixed plate when matching with the weaving machine, it is necessary to build a high-rise frame, place the jacquard machine on the high-rise frame, and then install the long-pass wire and long transmission parts, and the high-rise frame.
  • the lower ⁇ 3 ⁇ 4 machine mainframe is connected.
  • the disadvantage is that the building frame has many consumables.
  • the present invention provides a compact structure, convenient use and transfer, and A new electronic jacquard machine that greatly shortens the production, installation and commissioning cycle of jacquard weaving machines.
  • a novel electronic jacquard machine comprising: a control electric box, a frame, an upper electromagnetic selection execution component, a lower electromagnetic selection execution component, a suspension wire, and a a hole heald, a return spring, an upper and lower fixing plate, a synchronous reciprocating mechanism and an upper and lower blade assembly, the upper electromagnetic selection executing component and the lower electromagnetic selection executing component are arranged in a vertical symmetrical arrangement on the center line of the electronic jacquard loom
  • the upper, lower and lower electromagnetic selection execution components are all juxtaposed by a plurality of electromagnetic selection components, and each electromagnetic selection component is sequentially connected with a suspension wire, a perforated heald and a return spring, and an electromagnetic selection component of the upper and lower electromagnetic selection execution components.
  • the suspension wires respectively pass through the upper and lower fixing plates, and the return springs on the electromagnetic selection components of the upper and lower electromagnetic selection executing components are respectively connected to the lower and upper fixing plates; the synchronous reciprocating mechanism is driven and connected by the connecting rod reciprocating component
  • the knife assembly causes the upper and lower knife assemblies to reciprocate up and down, and the upper and lower knife assemblies Electrically connected to the control box drives the upper and lower electromagnet assembly choose to perform a corresponding vertical component of the electromagnetic two electromagnetic selection component selection goes on pull-down or pull-delegated state to put the suspension wires.
  • the electromagnetic selection component comprises an electromagnet, a lock hook, a fulcrum, a wire hook, an upper and a lower pulley, a reciprocating suspension wire and a pulley seat.
  • the electromagnet is connected to the electric box through a circuit connection, and the lock hook is hinged on the fulcrum.
  • the line hook is connected to the upper and lower knife assembly to hook up the lower part of the hook or the lower part of the lock hook; the lower part of the line hook is connected with the reciprocating suspension line, the reciprocating suspension line crane Connect the pulley, the upper pulley is connected to the lower pulley via the pulley seat, and the lower pulley is connected to the hanging wire.
  • the electromagnetic selection component comprises an electromagnet, a reed, a reciprocating suspension wire and an upper and lower pulley seat.
  • the electromagnet is connected to the electric box through a circuit connection, the lower end of the reed is connected with the reciprocating suspension wire, and the reciprocating suspension wire is suspended from the upper pulley.
  • the upper pulley is connected to the lower pulley through the pulley seat, and the lower pulley is connected to the hanging wire.
  • the control electric box controls the electromagnet to pull or release the cymbal to make the reed and the upper and lower knives assembly disengage or interlock.
  • the upper and lower blade assembly includes an upper and a lower blade and a blade connecting rod, and the upper and lower blades are connected by a knife connecting rod.
  • the connection, the upper and lower lifting knives and the wire hooks or reeds of the electromagnetic selection components corresponding to the upper and lower sides are not in the joint connection state, and the upper and lower electromagnetic selection components share a lifting knife between the two electromagnetic selection components. Component.
  • the synchronous reciprocating mechanism adopts a synchronous rotating wheel or a conjugate cam
  • the link reciprocating assembly includes a link, a reciprocating link and a lifting arm, and two symmetric driving on the synchronous rotating wheel
  • the hinged link is respectively arranged, or the conjugate cam drives the swing arm to drive the two links to reciprocate, and the two links are respectively connected with the lifting arm, and the lifting arm is respectively connected to the upper and lower lifting members by the reciprocating link.
  • Two adjacent upper and lower blade assemblies are respectively connected to the two lifting arms.
  • the beneficial effects of the present invention are: the electronic jacquard electromagnetic selection execution component is symmetrically mounted above and below the weaving loom woven mouth, so that the jacquard machine acts on the warp by half of the electromagnetic selection execution component.
  • the linkage of the upper and lower electromagnetic selection components is linked by the connecting rod, which simplifies the movement structure of the lower electromagnetic selection component, and shortens the front and rear width of the electronic jacquard, so that the front and the last row of electromagnetic selection execution components are connected.
  • the inclination angle of the fixed plate meets the installation requirements, is not easy to wear, and shortens the length of the hanging wire.
  • the entire electronic jacquard machine can be integrated and installed in the weaving machine body, and the uppermost height is also greatly reduced, thereby realizing the manufacturer of the weaving machine. All the installation work of the main machine, electronic jacquard machine and transmission part can be completed inside. After the car and the factory weaving test, the whole machine can be transported to the user directly to the upper shaft or the warp yarn to weave the finished fabric, so that the electronic jacquard loom is as convenient as the multi-arm loom in installation, debugging and movement, saving the user and weaving. Machine manufacturers have a lot of time, manpower, material resources and financial resources.
  • the present invention uniformly distributes all electromagnetic selection execution components conventionally mounted above the weaving mouth of the electronic jacquard loom to the upper and lower sides of the weaving mouth, and drives the connecting rod by the synchronous reciprocating mechanism to raise the corresponding upper and lower electromagnetic selection execution components. Knife linkage, electromagnetic selection and execution components are controlled by the knife to pull up and down the hanging wire and the perforated weaving of the fabric is controlled by the perforated heald to complete different jacquard weaving.
  • the overall structure is compact, occupying small space, easy to assemble and move, effectively reducing production. ,The cost. BRIEF DESCRIPTION OF THE DRAWINGS — ⁇
  • FIG. 1 is a schematic structural view of a jacquard machine of the present invention
  • FIG. 2 is a schematic structural view of an electromagnetic selection component of the present invention.
  • jacquard frame 1 jacquard frame 1, electromagnetic selection execution assembly 2, electromagnet 201, lock hook 202, fulcrum 203, wire hook 204, reciprocating suspension wire 205, upper pulley 206, lower pulley 207, pulley block 208, hanging wire 209, joint sleeve 210, perforated heald 211, return spring 212, left synchronous eccentric rotating wheel 301, right synchronous eccentric rotating wheel 302, upper fixed plate 4, lower fixed plate 401, upper lifting knife 501, lower The knife 502, the connecting rod 503, the first lifting arm 601, the second lifting arm 602, the reciprocating link 603, and the links 604, 605, 606, 607 control the electric box 7.
  • a novel electronic jacquard machine includes a frame 1, an electromagnetic selection execution assembly 2, an upper fixing plate 4, a lower fixing plate 401, an upper lifting knife 501, a lower lifting knife 502, and a connecting rod 503.
  • a plurality of electromagnetic selection components 2 are juxtaposed to form an upper electromagnetic selection component, and a plurality of electromagnetic selection components 2 are juxtaposed to form a lower electric
  • the magnetic selection component, the upper and lower electromagnetic selection components are symmetrically disposed on the upper and lower portions of the jacquard frame 1, and the synchronous reciprocating mechanism is mounted on the upper or both sides of the upper electromagnetic selection component, and the retracting arms 601, 602 are reciprocated via the linkage 604
  • the connecting rod 603 is coupled with the lifting knife assembly, and the upper fixing plate 4 and the lower fixing plate 401 are sequentially arranged from top to bottom, and each electromagnetic selecting component comprises an electromagnet 201, a locking hook 202 and a fulcrum 203.
  • the electromagnet 201 is connected to the control electric box 7
  • two lock hooks 202 is symmetrical to the two ends of the electromagnet 201 and is hinged on the two points 203 to rotate the upper part of the lock hook around the fulcrum to pull or disengage the electromagnet.
  • the lower part of the two hooks 202 is correspondingly hooked to the two-line hook 204, and the lower part of the two-line hook 204 is connected to and reciprocated.
  • the suspension wire 205, the reciprocating suspension wire 205 is connected to the upper pulley 206, the upper pulley 206 is connected to the lower pulley 207 via the pulley seat 208, the lower pulley 207 is connected to the suspension wire 209, the suspension wire 209 is fixed at the end, and the other end of the suspension wire 209 is connected to the perforated heald through the joint sleeve 210.
  • the heald wire of the heald 211 is connected with a return spring 212; the wire hook of the electromagnetic selection component of the upper electromagnetic selection component and the wire hook of the electromagnetic selection component of the lower electromagnetic selection component symmetrically connected thereto are passed through the upper blade 501,
  • the connecting rod 503 and the lower lifting knife 502 are coupled, and the adjacent upper and lower electromagnetic selecting components of the adjacent electromagnetic selecting components share the same upper lifting knife, the connecting rod and the lower lifting knife, and the electromagnetic selection of the upper electromagnetic selecting component
  • the other end of the suspension wire in the assembly passes through the upper fixing plate 4 and its return spring is connected to the lower fixing base 401.
  • the other end of the suspension wire in the electromagnetic selection component of the lower electromagnetic selection component passes through the lower fixing plate 401 and its return spring is connected thereto.
  • the adjacent connecting rods 503 are respectively hingedly coupled to the first and second lifting arms 601 and 602 via the reciprocating link 603, and the two ends of the first lifting arm 601 respectively move the hinged links 604 and 605-ends.
  • the other ends of the links 604, 605 are respectively movably hinged on the non-rotating axes of the left and right synchronous eccentric rotating wheels 301, 302, and the two ends of the second lifting arms 602 respectively move the articulated links 606, 607-end, respectively
  • the other ends of the rods 606, 607 are respectively active Hinged to the non-rotating axis of the left and right synchronous eccentric rotating wheels 301, 302, and the two hinges of the first and second lifting arms 601, 602 on the left and right synchronous eccentric rotating wheels 301, 302
  • the points are symmetrical with each other by the axis of rotation of the synchronous eccentric rotating wheel.
  • the electric box controls the electromagnet
  • the synchronous eccentric rotating wheel drives the first and second lifting arms via the connecting rod
  • the first and second lifting arms drive the adjacent two through the reciprocating link.
  • the rod is staggered upward and downward, and the first link of the adjacent two links moves upward to drive the upper knife to tighten the upper electromagnetic selection component line hook, and the line hook top locks the lower part of the hook to rotate the lock hook around the fulcrum.
  • the wire hook continues to move downward with the lifting knife under the action of the return spring, and if the electric box control electromagnet does not suck, the lower part of the locking hook hooks the hook to make the reciprocating hanging wire One end is fixed, and the second link of the adjacent two connecting rods moves downward to drive the lower knife to tighten the lower electromagnetic selection component line hook, and the upper part of the line hook tightly locks the hook to rotate around the fulcrum, if the electric box controls the When the electromagnet is energized and sucked, the wire hook continues to move upward with the lower blade under the action of the return spring, and if the electric box control electromagnet does not suck, the upper hook of the hook hooks the hook to fix the end of the reciprocating suspension wire.
  • the reciprocating suspension wire sequentially drives the upper pulley and the lower pulley to tighten or loosen the suspension wire, so that the warp thread in the heald hole of the perforated heald is pressed.
  • the sequential cross motion is formed to form a weave for weaving.
  • the position of the heald hole of the perforated heald is tightened or relaxed by the suspension wire, and the tension or relaxation of the suspension wire is tensioned or relaxed by the first and second pulleys through the reciprocating suspension wire, and the reciprocating suspension wire is connected to the same electromagnetic
  • the fixing of the adjacent two wire hooks and the up and down movement of the lifting knife are controlled by the electromagnet through the control electric box.
  • the hole of the controlled heddle wire is the closest to the electromagnetic selection component; if the two wire hooks reciprocate with the lifting knife on both sides, Then the hole of the perforated heddle controlled by it is farthest from the electromagnetic selection component.

Landscapes

  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Looms (AREA)

Abstract

一种新型电子提花机,包括控制电箱(7)、机架(1)、上部电磁选择执行组件、下部电磁选择执行组件、同步往复运动机构、上下提刀组件、吊线(205)、有孔综丝(211)、回复弹簧(212)及固定板(4,401)组成。将传统安装于电子提花织机织口上方的所有电磁选择执行组件均匀分布到织口的上方和下方,由同步往复运动机构驱动连杆(503)将对应的上下电磁选择执行组件的提刀联动,吊线(205)在通过固定板孔时与固定板(4,401)形成的夹角控制在允许范围内,提花机可直接装于织机内部,结构合理,运行平稳,大大缩短了电子提花织机生产、安装、调试周期,降低了对用户的使用空间要求,更便于电子提花织机的转移,节约了大量的人力、物力和财力资源。

Description

新型电子提花机 技术领域
[0001 ] 本发明涉及一种纺织机械,具体说是一种使用新型经纱开口机构的电子提花机。 背景技术
C0002] 电子提花织机是织造产品个性化发展的趋势,而电子提花织机所配的传统电子提 花机将所有电磁选择组件全部安置于电子提花织机织口上方,因其电磁选择组件数目多、 体积大,在与织机配套时为解决吊线与固定板磨损的问题,需要搭建一个高楼架,将提花机 放置于高楼架上,然后通过长通丝装造和长传动件,与高楼架下方的^ ¾机主机相联,其缺点 是:楼架制造耗材多,在生产提花织机厂内不能像生产多臂织机一样完成整台织机组装工 作,大量安装工作需在用户处完成,从安装到投入正常生产耗费时间长,传动结构复杂,且 提花织机占用空间大,转移不便,浪费了大量的财力和人力。 发明内容
[0003] 为了克服现有技术中电子提花机须配套楼架使用空间大、耗材多、安装周期长、转 移不便、使用成本高等缺陷,本发明提供了一种结构紧凑,使用、转移方便且能大大缩短提 花织机生产、安装调试周期的新型电子提花机。
[0004] 为了达到上述目的,本发明采用的技术方案是:一种新型电子提花机,其特征在 于:包括控制电箱、机架、上部电磁选择执行组件、下部电磁选择执行组件、吊线、有孔综丝、 回复弹簧、上下固定板、同步往复运动机构和上下提刀组件,所述上部电磁选择执行组件和 下部电磁选择执行组件以电子提花织机织口中心线上下对称固定排列于机架上,上、下部 电磁选择执行组件均由多个电磁选择组件并列组成,每个电磁选择组件均依次联接有吊 线、有孔综丝和回复弹簧,上、下部电磁选择执行组件的电磁选择组件上的吊线分别穿过 上、下固定板,上、下部电磁选择执行组件的电磁选择组件上的回复弹簧分别连接下、上固 定板;所述同步往复运动机构经联杆往复运动组件驱动连接上下提刀组件使上下提刀组件 呈上下往复运动状态,上下提刀组件和控制电箱驱动连接上、下部电磁选择执行组件上下 对应的两只电磁选择组件使电磁选择组件呈上拉下放或下拉上放吊线状态。
[0005] 进一步地,所述电磁选择组件包括电磁铁、锁钩、支点、线钩、上、下滑轮、往复吊线 和滑轮座,电磁铁通过电路连接控制电箱,锁钩铰接于支点上呈绕支点旋转锁钩上部吸合 或脱开电磁铁状态,线钩连接于上下提刀组件上呈向上勾合锁钩下部或向下脱开锁钩下部 状态;线钩下部连接往复吊线,往复吊线吊接上滑轮,上滑轮经滑轮座连接下滑轮,下滑轮 连接吊线。
[0006] 进一步地,所述所述电磁选择组件包括电磁铁、簧片、往复吊线和上下滑轮座,电 磁铁通过电路连接控制电箱,簧片下端联接往复吊线,往复吊线吊接上滑轮,上滑轮经滑轮 座连接下滑轮,下滑轮连接吊线,控制电箱控制电磁铁吸合或释放黉片使簧片与上下提刀 组件呈脱开或联动状态。
[0007] 进一步地,所述上下提刀组件包括上、下提刀和提刀连杆,上、下提刀经提刀连杆 连接,上、下提刀与上下对应的电磁选择组件的线钩或簧片呈不同时配合连接状态,所述 上、下部电磁选择执行组件中相邻两电磁选择组件之间共用一上下提刀组件。
[0008] 再进一步地,所述同步往复运动机构采用同步旋转轮或共轭凸轮,所述联杆往复 运动组件包括联杆、往复联杆和提压臂,同步旋转轮上的两个对称驱动点分别铰接联杆,或 共轭凸轮驱动摆臂带动两联杆呈往复运动运动状态,两联杆分别联接提压臂,提压臂分别 经往复联杆连接上下提刀组件呈上下往复运动状态,相邻两上下提刀组件分别连接于两提 压臂上。
[0009] 采用以上技术方案,本发明的有益效果是:将电子提花机电磁选择执行组件对称 性的安装于提花织机织口上方和下方,使提花机对经线的作用一半靠电磁选择执行组件上 拉、弹簧下回,一半靠电磁选择执行组件下拉、弹簧上回,从而使提花机的前后宽度缩短了 一半,电磁选择执行组件排列由原来全部处于提花织机织口上方变为上下对称分布;将上、 下部电磁选择组件的提刀由连杆联动后,简化了下部电磁选择组件的运动结构,同时缩短 了电子提花机前后宽度,使最前和最后一排电磁选择执行组件相联的吊线与固定板的倾角 符合了装造要求,不易磨损,缩短了吊线的长度,因此整个电子提花机得以在织造机械机身 内集成安装,最上端高度也大大降低,进而实现了在织机生产厂家内即可完成主机、电子提 花机、传动部分的所有安装工作,经空车和厂内织造试验后即可整机运往用户直接上轴或 接经纱织造出成品织物,使电子提花织机在安装、调试、移动等方面像多臂织机一样方便, 节约了用户和织机生产厂家大量的时间、人力、物力和财力。
[0010] 本发明将传统安装于电子提花织机织口上方的所有电磁选择执行组件均匀分布 到织口的上方和下方,由同步往复运动机构驱动连杆将对应的上下电磁选择执行组件的提 刀联动,电磁选择执行组件经提刀控制上拉和下放吊线并由带孔综丝控制织物每一根经线 完成不同提花织造,其整体结构紧凑,占用空间小,便于组装和移动,有效降低生产、使用成 本。 附图说明 — ―
[0011 ] 图 1为本发明提花机一种结构示意图;
图 2为本发明电磁选择组件一种结构示意图。
[0012] 图中:提花机机架 1,电磁选择执行组件 2,电磁铁 201,锁钩 202,支点 203,线钩 204,往复吊线 205,上滑轮 206,下滑轮 207,滑轮座 208,吊线 209,接头套 210,带孔综丝 211,复位弹簧 212,,左同步偏芯旋转轮 301,右同步偏芯旋转轮 302,上固定板 4,下固定板 401,上提刀 501,下提刀 502,连杆 503,第一提压臂 601,第二提压臂 602,往复联杆 603,联 杆 604、605、606、607,控制电箱 7。 具体实施方式
[0013] 以下结合附图对本发明作进一步举例说明。
[0014] 图 1、2所示,一种新型电子提花机包括机架 1、电磁选择执行组件 2、上固定板 4、 下固定板 401、上提刀 501、下提刀 502、连杆 503、第一提压臂 601、第二提压臂 602、往复联 杆 603、联杆 604、605、606、607、左同步偏芯旋转轮 301、右同步偏芯旋转轮 302和控制电箱 7。 多个电磁选择组件 2并列组成上部电磁选择组件,多个电磁选择组件 2并列组成下部电 磁选择组件,上、下部电磁选择组件对称设置于提花机机架 1的上部和下部,同步往复运动 机构安装于上部电磁选择组件的上部或两侧,经联杆 604提压臂 601、602往复联杆 603联 接提刀组件,上、下部电磁选择组件之间由上至下依次设有上固定板 4、下固定板 401,每个 电磁选择组件均包括电磁铁 201、锁钩 202、支点 203、线钩 204、往复吊线 205、上滑轮 206、 下滑轮 207、滑轮座 208、吊线 209、接头套 210、带孔综丝 211和复位弹簧 212,电磁铁 201连 接控制电箱 7,两锁钩 202对称于电磁铁 201两端铰接于两支点 203上呈绕支点旋转锁钩上 部吸合或脱开电磁铁状态,两锁钩 202下部对应钩合两线钩 204,两线钩 204下部连接往复 吊线 205,往复吊线 205吊接上滑轮 206,上滑轮 206经滑轮座 208连接下滑轮 207,下滑轮 207连接吊线 209,吊线 209—端固定, 吊线 209另一端经接头套 210连接带孔综丝 211,带 孔综丝 211的综丝孔连接有复位弹簧 212;上部电磁选择组件的电磁选择组件中的线钩和 与之对称的下部电磁选择组件的电磁选择组件中的线钩之间经上提刀 501、连杆 503和下 提刀 502联接,上部或下电磁选择组件相邻两电磁选择组件之间相邻的线钩共用同一上提 刀、连杆和下提刀联接,上部电磁选择组件的电磁选择组件中的吊线另一端穿过上固定板 4 且其复位弹簧连接于下固定座 401上,下部电磁选择组件的电磁选择组件中的吊线另一端 穿过下固定板 401且其复位弹簧连接于上固定板 4上,相邻连杆 503上分别经往复联杆 603 活动铰接第一、二提压臂 601、602,第一提压臂 601的两端分别活动铰接联杆 604、605—端, 联杆 604、605另一端分别活动铰接于左、右同步偏芯旋转轮 301、302的非旋转轴心上,第二 提压臂 602的两端分别活动铰接联杆 606、607—端,联杆 606、607另一端分别活动铰接于 左、右同步偏芯旋转轮 301、302的非旋转轴心上,且第一、二提压臂 601、602的联杆在左、右 同步偏芯旋转轮 301、302上的两铰接点以同步偏芯旋转轮的旋转轴心相互对称。
[0015] 本提花机交织状态时,控制电箱控制电磁铁,同步偏芯旋转轮经联杆带动第一、二 提压臂,第一、二提压臂经往复联杆带动相邻两连杆呈向上、向下交错运动,相邻两连杆的 第一连杆向上运动带动上提刀顶紧上部电磁选择组件线钩,线钩顶紧锁钩下部使锁钩绕支 点旋转,此时如果电箱控制该电磁铁通电吸合,则线钩在回复弹簧的作用下继续随提刀向 - 下运动,反之如果电箱控制电磁铁不吸合则锁钩下部钩住线钩使往复吊线一端固定,相邻 两连杆的第二连杆向下运动带动下提刀顶紧下部电磁选择组件线钩,线钩顶紧锁钩上部使 锁钩绕支点旋转,此时如果电箱控制该电磁铁通电吸合则线钩在回复弹簧的作用下继续随 下提刀向上运动,反之如果电箱控制电磁铁不吸合则锁钩上部钩住线钩使往复吊线一端固 定,此时第一连杆联接的下提刀和第二连杆联接的上提刀均带动线钩拉紧或放松往复吊线 另一端,往复吊线依次带动上滑轮和下滑轮使吊线拉紧或放松,从而使带孔综丝的综丝孔 内所穿经线按所设顺序交叉运动形成织口进行织造。
[0016] 本发明中带孔综丝的综丝孔的位置由吊线拉紧或放松,吊线的拉紧或放松由第 一、二滑轮经往复吊线拉紧或放松,而往复吊线连接于同一电磁选择组件的相邻两线钩之 间,相邻两线钩的固定和随提刀上下运动是由电磁铁经控制电箱控制。
[0017] 如果某一电磁选择件的线钩均被锁钩锁住,则其控制的有孔综丝的孔离该电 磁选择组件最近;如果两线钩均随两侧的提刀往复运动,则其所控制的有孔综丝的孔离该 电磁选择组件最远。

Claims

权 利 要 求 书
1. 一种新型电子提花机,其特征在于:包括控制电箱、机架、上部电磁选择执行组件、 下部电磁选择执行组件、吊线、有孔综丝、回复弹簧、上下固定板、同步往复运动机构和上下 提刀组件,所述上部电磁选择执行组件和下部电磁选择执行组件以电子提花织机织口中心 线上下对称固定排列于机架上,上、下部电磁选择执行组件均由多个电磁选择组件并列组 成,每个电磁选择组件均依次联接有吊线、有孔综丝和回复弹簧,上、下部电磁选择执行组 件的电磁选择组件上的吊线分别穿过上、下固定板,上、下部电磁选择执行组件的电磁选择 组件上的回复弹簧分别连接下、上固定板;所述同步往复运动机构经联杆往复运动组件驱 动连接上下提刀组件使上下提刀组件呈上下往复运动状态,上下提刀组件和控制电箱驱动 连接上、下部电磁选择执行组件上下对应的两只电磁选择组件使电磁选择组件呈上拉下放 或下拉上放吊线状态。
2.根据权利要求 1所述的新型电子提花机,其特征是:所述电磁选择组件包括电磁铁、 锁钩、支点、线钩、上、下滑轮、往复吊线和滑轮座,电磁铁通过电路连接控制电箱,锁钩铰接 于支点上呈绕支点旋转锁钩上部吸合或脱开电磁铁状态,线钩连接于上下提刀组件上呈向 上勾合锁钩下部或向下脱开锁钩下部状态;线钩下部连接往复吊线,往复吊线吊接上滑轮, 上滑轮经滑轮座连接下滑轮,下滑轮连接吊线。
3.根据权利要求 1所述的新型电子提花机,其特征是:所述所述电磁选择组件包括电 磁铁、簧片、往复吊线和上下滑轮座,电磁铁通过电路连接控制电箱,簧片下端联接往复吊 线,往复吊线吊接上滑轮,上滑轮经滑轮座连接下滑轮,下滑轮连接吊线,控制电箱控制电 磁铁吸合或释放簧片使簧片与上下提刀组件呈脱开或联动状态。
4.根据权利要求 1或 2或 3所述的新型电子提花机,其特征是:所述上下提刀组件包 括上、下提刀和提刀连杆,上、下提刀经提刀连杆连接,上、下提刀与上下对应的电磁选择组 件的线钩或簧片呈不同时配合连接状态,所述上、下部电磁选择执行组件中相邻两电磁选 择组件之间共用一上下提刀组件。
5.根据权利要求 1所述的新型电子提花机,其特征是:所述同歩往复运动机构釆用同 步旋转轮或共轭凸轮,所述联杆往复运动组件包括联杆、往复联杆和提压臂,同步旋转轮上 的两个对称驱动点分别铰接联杆,或共轭凸轮驱动摆臂带动两联杆呈往复运动运动状态, 两联杆分别联接提压臂,提压臂分别经往复联杆连接上下提刀组件呈上下往复运动状态, 相邻两上下提刀组件分别连接于两提压臂上。
PCT/CN2013/077446 2012-07-07 2013-06-19 新型电子提花机 WO2014008804A1 (zh)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201210233518.0 2012-07-07
CN201210233518.0A CN102733034B (zh) 2012-07-07 2012-07-07 电子提花机

Publications (1)

Publication Number Publication Date
WO2014008804A1 true WO2014008804A1 (zh) 2014-01-16

Family

ID=46989303

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2013/077446 WO2014008804A1 (zh) 2012-07-07 2013-06-19 新型电子提花机

Country Status (2)

Country Link
CN (1) CN102733034B (zh)
WO (1) WO2014008804A1 (zh)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113005592A (zh) * 2021-04-29 2021-06-22 浙江杰卡德智能科技有限公司 一种提花机调试装置及其调试方法

Families Citing this family (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102733034B (zh) * 2012-07-07 2014-01-15 江苏友诚数控科技有限公司 电子提花机
CN103352287A (zh) * 2013-07-25 2013-10-16 涟水天宫云锦织造有限公司 云锦织机大纤的电磁式提拉装置
CN104775209B (zh) * 2015-04-16 2017-04-12 浙江慧林智能设备有限公司 一种电子提花机
CN104775228B (zh) * 2015-04-16 2017-04-12 浙江慧林智能设备有限公司 一种提花机电磁选针机构
CN105207138A (zh) * 2015-10-20 2015-12-30 卓郎(金坛)纺织机械有限公司 一种消除纺织机械电控系统中线索接头意外故障的固定结构
CN105401309B (zh) * 2015-12-29 2017-12-12 苏州汪永亨丝绸科技文化有限公司 手动易调节经线拉动装置
CN105590716B (zh) * 2016-03-11 2017-06-20 苏州易利耐机电科技有限公司 “电子凸轮”摆动式多臂机的专用电磁铁
CN109853105A (zh) * 2018-12-16 2019-06-07 昆山高斯特电磁科技有限公司 可自动检测异常的智能提花机
CN110670228A (zh) * 2019-11-22 2020-01-10 浙江慧林智能设备有限公司 一种高集成电子提花选针机构

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6494237B1 (en) * 1999-05-16 2002-12-17 Gerhard Piegeler Shed forming device for the textile industry
CN2641076Y (zh) * 2003-06-27 2004-09-15 王学培 电子提花装置
DE102007014869A1 (de) * 2007-03-26 2008-10-02 Gerhard Piegeler Harnischlose Fachbildevorrichtung - Textil
CN102733034A (zh) * 2012-07-07 2012-10-17 王勇 新型电子提花机
CN202658320U (zh) * 2012-07-07 2013-01-09 王勇 新型电子提花机

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
SE515000C2 (sv) * 2000-05-08 2001-05-28 Micael Schmitz Electronic Ab Anordning för skälbildande förflyttning av varptrådar i en vävstol
CN2506661Y (zh) * 2001-10-17 2002-08-21 常熟纺织机械厂有限公司 提花机的电磁阀执行机构
CN201512636U (zh) * 2009-04-23 2010-06-23 傅加龙 电脑提花机
CN101858004B (zh) * 2010-06-23 2011-06-29 浙江理工大学 电子提花机的选针装置

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6494237B1 (en) * 1999-05-16 2002-12-17 Gerhard Piegeler Shed forming device for the textile industry
CN2641076Y (zh) * 2003-06-27 2004-09-15 王学培 电子提花装置
DE102007014869A1 (de) * 2007-03-26 2008-10-02 Gerhard Piegeler Harnischlose Fachbildevorrichtung - Textil
CN102733034A (zh) * 2012-07-07 2012-10-17 王勇 新型电子提花机
CN202658320U (zh) * 2012-07-07 2013-01-09 王勇 新型电子提花机

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113005592A (zh) * 2021-04-29 2021-06-22 浙江杰卡德智能科技有限公司 一种提花机调试装置及其调试方法
CN113005592B (zh) * 2021-04-29 2023-02-28 浙江杰卡德智能科技有限公司 一种提花机调试装置及其调试方法

Also Published As

Publication number Publication date
CN102733034A (zh) 2012-10-17
CN102733034B (zh) 2014-01-15

Similar Documents

Publication Publication Date Title
WO2014008804A1 (zh) 新型电子提花机
CN201065458Y (zh) 装有压纱板的双针床经编机
CN202658320U (zh) 新型电子提花机
CN202913155U (zh) 一种多层织物织机
CN203007557U (zh) 一种用于试织纱罗组织的小样织机
CN101580993B (zh) 能形成三个经纱位置的电子提花选纱装置
CN201473684U (zh) 一种高效织带机
CN206279301U (zh) 一种用于纺织机的综框
CN210529150U (zh) 提花机的绞边装置
CN209368437U (zh) 一种360度旋转式云锦大纤
US3456691A (en) Shed-forming apparatus for a loom
CN110485056A (zh) 一种数字化全自动打结网编织机
CN202786616U (zh) 织机综框升降装置
CN216891414U (zh) 一种织机综框结构
CN206204533U (zh) 一种新型三维织物织机提综机构
CN206486645U (zh) 吊带开口机构及塑料编织布织机
CN201158734Y (zh) 织机多臂装置选综机构的离合结构
CN211471717U (zh) 一种用于综框的高强度连接装置
CN216639822U (zh) 一种便于安装的穿综扒筘架
CN101560716B (zh) 简易下置式电子多臂机及应用该电子多臂机的织机
CN205343045U (zh) 纺织机用综框维修架
CN2202758Y (zh) 织机起综装置
CN216998745U (zh) 一种提花机用开口选择机构
CN204661950U (zh) 一种用于剑杆织机的绞综织造工艺的装置
CN215757810U (zh) 一种电子提花机用龙头机构

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 13816561

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

WWE Wipo information: entry into national phase

Ref document number: IDP00201500722

Country of ref document: ID

122 Ep: pct application non-entry in european phase

Ref document number: 13816561

Country of ref document: EP

Kind code of ref document: A1