WO2020000195A1 - 一种改进型验钞机 - Google Patents

一种改进型验钞机 Download PDF

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Publication number
WO2020000195A1
WO2020000195A1 PCT/CN2018/092915 CN2018092915W WO2020000195A1 WO 2020000195 A1 WO2020000195 A1 WO 2020000195A1 CN 2018092915 W CN2018092915 W CN 2018092915W WO 2020000195 A1 WO2020000195 A1 WO 2020000195A1
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WIPO (PCT)
Prior art keywords
banknote
fanning
twisting
wheel
rubber ring
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PCT/CN2018/092915
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English (en)
French (fr)
Inventor
陈钦鹏
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深圳齐心集团股份有限公司
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Application filed by 深圳齐心集团股份有限公司 filed Critical 深圳齐心集团股份有限公司
Priority to PCT/CN2018/092915 priority Critical patent/WO2020000195A1/zh
Publication of WO2020000195A1 publication Critical patent/WO2020000195A1/zh

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    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07DHANDLING OF COINS OR VALUABLE PAPERS, e.g. TESTING, SORTING BY DENOMINATIONS, COUNTING, DISPENSING, CHANGING OR DEPOSITING
    • G07D7/00Testing specially adapted to determine the identity or genuineness of valuable papers or for segregating those which are unacceptable, e.g. banknotes that are alien to a currency

Definitions

  • the invention relates to the technical field of banknote detection, in particular to an improved banknote detector.
  • the banknote counting mechanism of the existing banknote counting machine includes a main body, a banknote winding shaft provided on the main body, and a banknote winding wheel provided on the banknote rotating shaft.
  • the banknote wheel rotates, and the banknotes are sent into the coin passage through the friction between the banknote twisting wheel and the banknote.
  • the outer circumferential surface of the banknote twisting wheel is all rubber, the banknote is twisted when the banknote twisting mechanism works.
  • the wheel is continuously fed into the coin passing channel, which is prone to coin following and stacking. Therefore, a banknote passing shaft that drags the banknotes to bring the banknotes out of the coin passing channel is provided on the back side of the banknote twisting shaft.
  • the linear speed at which the banknote wheel rotates is greater than the linear speed of the banknote twisting wheel, so that the stacked banknotes can be separated, but this will easily cause the banknotes to be broken, and there will be more continuous follow-up between banknotes, which is prone to errors such as subsequent counting. .
  • the Chinese patent document "200510094210.2 banknote counting machine's banknote twisting mechanism” discloses a banknote twisting wheel with only a partial rubber surface.
  • the banknotes can be sent to the coin channel separately, so that the banknotes are separated Enter the coin-passing channel at a distance, so as to separate the banknotes entering the coin-passing channel back and forth, so that the banknotes can be smoothly taken out by the drag belt, which can avoid the phenomenon of coin following and stacking, and prevent the banknotes from being broken.
  • the banknote twisting rubber block is installed on the banknote twisting wheel.
  • the banknote twisting rubber block is a soft material, small in size, and difficult to fix. Deformation under repeated pressure is easy to fall off, and the working surface area of the banknote twisting rubber block is small, which is easy to wear. After the wear, the banknote twisting wheel needs to be replaced completely. The cost is high and needs to be improved.
  • An object of the present invention is to provide an improved banknote detector capable of sending coins at intervals and being easily installed.
  • An improved banknote detector includes a frame, a banknote twisting component, a banknote dispensing component, a banknote receiving component, a display, a driving component and a control circuit board.
  • the banknote twisting component includes a banknote twisting shaft, Banknote twisting wheel, banknote twisting ring and banknote twisting plate, the banknote twisting ring is sleeved on the banknote twisting shaft, the banknote twisting ring is sleeved on the banknote twisting wheel, and the banknote twisting ring is provided with a complete circle of non-slip
  • the axial cross section where the banknote twisting wheel matches the banknote twisting rubber ring is D-shaped.
  • a ring-shaped groove is provided on the outer circumferential surface of the banknote twisting wheel, and an annular protrusion is provided on the inner surface of the banknote twisting ring, and the annular protrusion is embedded in the annular groove.
  • a ring-shaped groove is provided on the outer circumferential surface of the banknote twisting wheel, and the banknote twisting rubber ring is embedded in the annular groove.
  • the surface of the apron does not exceed the outer circumferential surface of the banknote twisting wheel.
  • the anti-slip pattern is a ratchet type.
  • the banknote twisting wheel is a metal wheel or a POM plastic wheel.
  • the banknote twisting assembly of the improved banknote detector includes a banknote twisting shaft, a banknote twisting wheel, a banknote twisting apron and a banknote twisting plate.
  • the banknote rubber ring is sleeved on the banknote twisting wheel.
  • the banknote twisting ring is provided with a complete anti-skid pattern.
  • the axial cross section of the banknote twisting wheel and the banknote twisting ring is D-shaped.
  • the banknote twisting rubber ring has elasticity, and it is relatively easy to set the banknote twisting rubber ring on the banknote twisting roller.
  • the banknote twisting rubber ring After installation, the overall shape is also D-shaped. During the banknote twisting process, only about half of the surface of the banknote twisting ring can contact the banknotes, which can achieve the effect of sending banknotes at intervals, avoiding the phenomenon of coin stacking and coin stacking.
  • the anti-skid pattern on the banknote rubber ring is provided with a complete circle of anti-skid patterns, so after the banknote twisting rubber ring is set on the banknote twisting wheel, there is no need to align and other operations, which is more convenient.
  • the anti-skid pattern is worn for a long time, you can manually rotate the banknote twisting rubber ring to keep other non-abrasive surfaces in the working position. It can extend the service life by two to three times compared with the prior art. After it is completely worn, it can be replaced directly. The banknote twisting apron is sufficient, and the maintenance cost is low.
  • FIG. 1 is a schematic structural diagram of a first embodiment of an improved banknote detector according to the present invention
  • FIG. 2 is a schematic cross-sectional view of a banknote twisting assembly in Embodiment 1;
  • FIG. 3 is a schematic longitudinal sectional view of a banknote twisting assembly according to the first embodiment
  • FIG. 4 is a schematic longitudinal sectional view of another embodiment of a banknote twisting assembly according to the first embodiment
  • FIG. 5 is a schematic structural diagram of a second embodiment of the improved banknote detector according to the present invention.
  • FIG. 6 is a cooperation relationship diagram of a fixed shaft and a banknote pressing member in the second embodiment
  • FIG. 7 is a diagram illustrating a fitting relationship between a fixed shaft and a banknote pressing member according to another embodiment of the second embodiment.
  • banknote twisting assembly 11, banknote twisting shaft; 12, banknote twisting wheel; 121, annular groove; 13, banknote twisting rubber ring; 131, non-slip pattern; 132, annular protrusion; 14, banknote twisting plate; 2, Frame; 21, left side plate; 22, right side plate; 3, fixed shaft; 31, raised; 4, banknote pressing member; 41, collar; 411, groove; 412, notch; 42, tail bead.
  • the banknote twisting assembly 1 includes a banknote twisting shaft 11, a banknote twisting wheel 12, a banknote twisting ring 13 and a banknote twisting plate 14.
  • the banknote twisting wheel 12 is set on the banknote twisting shaft 11 and the banknote twisting ring 13 is set.
  • a complete circle of anti-skid patterns 131 is provided on the banknote twisting rubber ring 13.
  • the axial cross section of the banknote twisting roller 12 and the banknote twisting rubber ring 13 are D-shaped.
  • the banknote twisting rubber ring 13 has elasticity, and it is relatively easy to set the banknote twisting rubber ring 13 on the banknote twisting roller 12, because the axial cross section of the banknote twisting roller 12 and the banknote twisting rubber ring 13 are as follows: D-shape, so the banknote twisting apron 13 is also D-shaped as a whole after installation. During the banknote twisting process, only about half of the surface of the banknote twisting apron 13 can contact the banknotes.
  • the anti-skid pattern 131 on the banknote twisting ring 13 is provided with a complete circle of anti-slip patterns, after the banknote twisting ring 13 is set on the banknote twisting wheel 12, there is no need to align and other operations. Convenience. If the anti-skid pattern 131 is worn for a long time, you can manually rotate the banknote twisting rubber ring 13 to put other non-abrasive surfaces in the working position. It can be extended by two to three times compared with the prior art. After complete wear, It is sufficient to directly replace the banknote twisting rubber ring 13, which is easy to operate and has low maintenance costs.
  • the anti-slip pattern 131 is ratchet-shaped, has a large frictional force, and is in contact with banknotes in an ultra-flexible contact, has a large elastic space, and can accept a large amount of wear. Can guarantee good work results, so long life.
  • the banknote twisting wheel 12 is a metal wheel or a POM plastic wheel.
  • a ring-shaped groove 121 is provided on the outer circumferential surface of the banknote twisting wheel 12, and the banknote twisting rubber ring 13 is embedded in the annular groove 121, and the surface of the banknote twisting rubber ring 13 exceeds the banknote twisting ring.
  • the outer circumferential surface of the wheel 12 and a part of the surface of the banknote twirling apron 13 do not exceed the outer circumferential surface of the banknote twirling wheel 12.
  • the friction between the banknote twirling apron 13 and the annular groove 121 is large. 12 and banknote twisting apron 13 have high position stability during work and will not shift.
  • an annular groove 121 is provided on the outer circumferential surface of the banknote twisting wheel 12, and an annular protrusion is provided on the inner surface of the banknote twisting apron 13. From 132, the annular protrusion 132 is embedded in the annular groove 121, and the frictional force formed between the annular groove 121 and the annular protrusion 132 is large. This structure can also increase the banknote twisting wheel 12 and banknote twisting. The frictional force between the rubber rings 13 effectively prevents the relative displacement of the two.
  • the banknote detector further includes a banknote pressing member 4, and the frame 2 includes The left and right side plates 21 and 22 are each provided with a fixed shaft 3, the fixed shaft 3 is disposed beside the banknote twisting shaft 11, and the banknote pressing member 4 is sleeved on the fixed shaft 3, so The shortest distance between the banknote pressing member 4 and the banknote twisting plate 14 is 3-5 mm.
  • the banknote is carried by the banknote twisting wheel 12 and passed between the banknote twisting wheel 12 and the banknote twisting plate 14.
  • the banknote pressing member 4 described in this embodiment can hold the banknotes sent from the banknote twisting wheel 12 and smoothly leave the banknote twisting wheel 12 and the banknote twisting plate 14 to smoothly enter the banknote dispensing module to prevent flying banknotes and make the banknote twisting process. More stable. Due to the irregularity of the crease of the banknote, the banknote pressing member 4 should not be in direct contact with the banknote twisting plate 14 and there is a chance to jam the banknote. The closest distance between the banknote pressing member 4 and the banknote twisting plate 14 is set to 3-5mm, which is a comparison. Appropriately, it can ensure the passing rate of banknotes, and can also ensure a better press effect, and prevent flying banknotes.
  • the banknote pressing member 4 includes a collar 41 and a tail bead 42.
  • the inner surface of the collar 41 is provided with a groove 411, and the outer surface of the fixed shaft 3 is provided with a protrusion 31.
  • the protrusion 31 is located in the groove 411, so that the collar 41 and the fixed shaft 3 can rotate freely within a range of 3-5 degrees, and the length of the tail bead 42 is greater than 5 cm. Since the banknote pressing member 4 can rotate freely within a range of 3-5 degrees around the fixed axis, when a high-speed banknote hits the banknote pressing member 4, the gravity of the banknote pressing member 4 is not enough to suppress the banknote, and it will rotate upward. , Increase the space to add banknotes, increase the flexibility of the structure.
  • the general situation is that the crease of the banknote is too large, and the banknote is too uneven. Increase the banknote input space to avoid banknote jams.
  • the banknote pressing member 4 cannot rotate upward too much, otherwise it will easily collide with other external structures and generate noise.
  • a silicone sleeve can be sleeved on the protrusion 31 to prevent contact wear between the protrusion 31 and the groove 411 and reduce contact noise.
  • the length of the tail bead 42 should be greater than 5 cm.
  • the banknote pressing member 4 includes a collar 41 and a tail bead 42.
  • the collar 41 is provided with a notch 412, and the outer circle of the fixed shaft 3
  • a protrusion 31 is provided on the surface, and the protrusion 31 is located in the notch 412, so that the collar 41 and the fixed shaft 3 can rotate freely within a range of 3-5 degrees, and the length of the tail bead 42 is greater than 5 cm. Due to the existence of the notch 412, the protrusion 31 can be made thicker and stronger, and its height is no longer limited. It can be designed higher to solve the product strength problem, reduce the maintenance rate, and improve user satisfaction.
  • a silicon sleeve can be sleeved on the protrusion 31 to prevent contact wear between the protrusion 31 and the notch 412 and reduce contact noise.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Inspection Of Paper Currency And Valuable Securities (AREA)

Abstract

一种改进型验钞机,包括机架(2)、捻钞组件(1)、出钞组件、接钞组件、显示器、驱动组件和控制电路板,捻钞组件(1)包括捻钞轴(11)、捻钞轮(12)、捻钞胶圈(13)和捻钞板(14),捻钞轮(12)套设在捻钞轴(11)上,捻钞胶圈(13)套设在捻钞轮(12)上,捻钞胶圈(13)上设有一圈完整的防滑纹(131),捻钞轮(12)与捻钞胶圈(13)相配合处的轴向截面为D形。捻钞胶圈(13)具有弹性,把捻钞胶圈(13)套设在捻钞轮(12)上是比较容易的,捻钞胶圈(13)在安装后整体也为D形,在捻钞工作过程中,捻钞胶圈(13)大约只有一半的表面能与纸币接触,可以达到间隔送钞的效果,避免出现跟币、叠币现象;又由于捻钞胶圈(13)上的防滑纹(131)设有一圈完整的防滑纹(131),所以把捻钞胶圈(13)套设到捻钞轮(12)上之后,不必对齐等操作,更方便。

Description

一种改进型验钞机 技术领域
本发明涉及验钞技术领域,尤其涉及一种改进型验钞机。
背景技术
现有的点钞机的捻钞机构包括本体、设置于本体上的捻钞轴和设置于捻钞轴上的捻钞轮,纸币放入捻钞轮与本体之间,由捻钞轴带动捻钞轮转动,通过捻钞轮与纸币之间的摩擦力将纸币送入走币通道,但由于捻钞轮的外圆周表面全部为橡胶面,在该捻钞机构工作时,纸币即被捻钞轮连续地送入走币通道,易出现跟币、叠币等现象,故在捻钞轴后侧还设置有拖动纸币以将纸币带出走币通道的过钞轴,过钞轴上的送钞轮转动的线速度大于捻钞轮的线速度,使得叠币的纸币可被分开,但这易导致纸币被拉断,并且纸币之间连续的跟币较多,易出现后续的计数等错误。
为了解决这个问题,中国专利文献“200510094210.2点钞机的捻钞机构”公开了一种只有部分橡胶面的捻钞轮,捻钞时可以将纸钞分开送走币通道内,这样就使得纸币间隔一段距离地进入走币通道,从而将前后进入走币通道的纸币分开,以便于拖币皮带将纸币平稳地带出,即可避免出现跟币、叠币现象,又可防止纸币被拉断。捻钞橡胶块安装在捻钞轮上,事实上在直径不足2cm的捻钞轮上设置安装捻钞橡胶块是较为困难的事情,捻钞橡胶块是软质材料,体积又小,固定困难,反复受压变形,容易脱落,而且捻钞橡胶块的工作表面面积较小,容易磨损,磨损之后,捻钞轮需要全部更换,成本较高,有待改进。
发明内容
本发明的目的在于提供一种可以间隔送币、安装简易的改进型验钞机。
本发明是这样实现的:一种改进型验钞机,包括机架、捻钞组件、出钞组件、接钞组件、显示器、驱动组件和控制电路板,所述捻钞组件包括捻钞轴、捻钞轮、捻钞胶圈和捻钞板,所述捻钞轮套设在捻钞轴上,捻钞胶圈套设在捻钞轮上,所述捻钞胶圈上设有一圈完整的防滑纹,所述捻钞轮与捻钞胶圈相配合处的轴向截面为D形。
其中,所述捻钞轮外圆周面设有一圈环形凹槽,所述捻钞胶圈的内表面上设有环形凸起,所述环形凸起嵌入所述环形凹槽内。
其中,所述捻钞轮外圆周面设有一圈环形凹槽,所述捻钞胶圈嵌入所述环形凹槽内,部分捻钞胶圈的表面超出捻钞轮的外圆周面,部分捻钞胶圈的表面未超出捻钞轮的外圆周面。
其中,所述防滑纹为棘齿型。
其中,所述捻钞轮为金属轮或者POM塑料轮。
本发明的有益效果为:所述改进型验钞机的捻钞组件包括捻钞轴、捻钞轮、捻钞胶圈和捻钞板,所述捻钞轮套设在捻钞轴上,捻钞胶圈套设在捻钞轮上,所述捻钞胶圈上设有一圈完整的防滑纹,所述捻钞轮与捻钞胶圈相配合处的轴向截面为D形。捻钞胶圈具有弹性,把捻钞胶圈套设到捻钞轮上是比较容易的,由于所述捻钞轮与捻钞胶圈相配合处的轴向截面为D形,所以捻钞胶圈在安装后整体也为D形,在捻钞工作过程中,捻钞胶圈大约只有一半的表面能与纸币接触,可以达到间隔送钞的效果,避免出现跟币、叠币现象;又由于捻钞胶圈上的防滑纹设有一圈完整的防滑纹,所以把捻钞胶圈套设到捻钞轮上之后,不必对齐等操作,更方便。如果防滑纹长时间使用磨损,那么可以手动旋转捻钞胶圈使其它未磨损的表面处于工作位置,就可以了,相比现有技术使用寿命得以延长两至三倍,完全磨损后,直接替换捻钞胶圈就可以了,维护成本较低。
附图说明
图1是本发明所述改进型验钞机的实施例一的结构示意图;
图2是实施例一中捻钞组件的横截面示意;
图3是实施例一中捻钞组件的纵截面示意;
图4是实施例一中捻钞组件另一实施例的纵截面示意;
图5是本发明所述改进型验钞机的实施例二的结构示意图;
图6是实施例二中固定轴和压钞件的配合关系图;
图7是实施例二中固定轴和压钞件另一实施例的配合关系图。
1、捻钞组件;11、捻钞轴;12、捻钞轮;121、环形凹槽;13、捻钞胶圈;131、防滑纹;132、环形凸起;14、捻钞板;2、机架;21、左侧板;22、右侧板;3、固定轴;31、凸起;4、压钞件;41、套环;411、凹槽;412、缺口;42、尾部压条。
具体实施方式
为了使本发明的目的、技术方案及优点更加清楚明白,以下结合附图及实施例,对本发明进行进一步详细说明。应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
作为本发明所述改进型验钞机的实施例一,如图1至3所示,包括机架2、捻钞组件1、出钞组件、接钞组件、显示器、驱动组件和控制电路板,所述捻钞组件1包括捻钞轴11、捻钞轮12、捻钞胶圈13和捻钞板14,所述捻钞轮12套设在捻钞轴11上,捻钞胶圈13套设在捻钞轮12上,所述捻钞胶圈13上设有一圈完整的防滑纹131,所述捻钞轮12与捻钞胶圈 13相配合处的轴向截面为D形。
所述捻钞胶圈13具有弹性,把捻钞胶圈13套设到捻钞轮12上是比较容易的,由于所述捻钞轮12与捻钞胶圈13相配合处的轴向截面为D形,所以捻钞胶圈13在安装后整体也为D形,在捻钞工作过程中,捻钞胶圈13大约只有一半的表面能与纸币接触,可以达到间隔送钞的效果,避免出现跟币、叠币现象;又由于捻钞胶圈13上的防滑纹131设有一圈完整的防滑纹,所以把捻钞胶圈13套设到捻钞轮12上之后,不必对齐等操作,更方便。如果防滑纹131长时间使用磨损,那么可以手动旋转捻钞胶圈13使其它未磨损的表面处于工作位置,就可以了,相比现有技术使用寿命得以延长两至三倍,完全磨损后,直接替换捻钞胶圈13就可以了,操作容易,维护成本较低。
在本实施例中,所述防滑纹131为棘齿型,摩擦力大,而且与纸钞接触为超柔性接触,弹性空间大,可以接受的磨损量大,或者说磨损量较大之后,仍然能保证不错的工作效果,所以使用寿命长。
在本实施例中,所述捻钞轮12为金属轮或者POM塑料轮。
在本实施例中,所述捻钞轮12外圆周面设有一圈环形凹槽121,所述捻钞胶圈13嵌入所述环形凹槽121内,部分捻钞胶圈13的表面超出捻钞轮12的外圆周面,部分捻钞胶圈13的表面未超出捻钞轮12的外圆周面,所述捻钞胶圈13和环形凹槽121之间形成的摩擦力较大,捻钞轮12和捻钞胶圈13在工作过程中,位置稳定性高,不会移位。
作为所述捻钞组件的另一实施例,如图4所示,所述捻钞轮12外圆周面设有一圈环形凹槽121,所述捻钞胶圈13的内表面上设有环形凸起132,所述环形凸起132嵌入所述环形凹槽121内,所述环形凹槽121和环形凸起132之间形成的摩擦力较大,该结构也能增加捻钞轮12和捻钞胶圈13之间的摩擦力,有效防止两者相对移位。
作为本发明所述改进型验钞机的实施例二,如图5至图6所示,与实施例一不同之处在于所述验钞机还包括压钞件4,所述机架2包括左右侧板21、22,所述左右侧板21、22均设有固定轴3,所述固定轴3设置在捻钞轴11旁边,所述压钞件4套设在固定轴3上,所述压钞件4与捻钞板14之间最近的距离为3-5mm。纸钞被捻钞轮12带起从捻钞轮12和捻钞板14之间穿过,由于纸钞具有较大的速度,而且纸钞的折痕不规则,容易向上飞起,产生飞钞的情况。本实施例所述压钞件4可以压住从捻钞轮12送来纸钞,平稳地离开捻钞轮12和捻钞板14,顺利地进入出钞组件,防止飞钞,使捻钞过程更加平稳。由于纸钞的折痕不规则性,压钞件4不宜直接与捻钞板14接触,有机会卡钞,压钞件4与捻钞板14之间最近的距离设置为3-5mm,是比较合适的,保证纸钞的通过率,又能保证较好的压钞效果,防止飞钞。
在本实施例中,所述压钞件4包括套环41和尾部压条42,所述套环41内表面设有凹槽 411,所述固定轴3的外圆面上设有凸起31,所述凸起31位于凹槽411内,使套环41与固定轴3在3-5度的范围内自由旋转,所述尾部压条42的长度大于5cm。由于压钞件4可以绕固定轴在3-5度的范围内自由旋转,所以高速过来的纸钞冲击压钞件4时,压钞件4的重力不足以压制纸钞时,就会向上旋转,增加进钞空间,增加了结构的柔性,此时一般情况是纸钞的折痕太大,纸钞太不平整导致的,增加进钞空间以避免卡钞。但是压钞件4也不能向上旋转角度过大,否则容易与外部其它结构碰撞,产生噪音。另外,还可以在所述凸起31上套设一硅胶套,防止凸起31和凹槽411之间接触磨损,以及降低接触噪音。在允许的范围下,纸钞的引导距离越大越好,为了保证基本的纸钞引导效果,所述尾部压条42的长度应大于5cm。
作为所述压钞件的另一实施例,如图7所示,所述压钞件4包括套环41和尾部压条42,套环41上设有缺口412,所述固定轴3的外圆面上设有凸起31,所述凸起31位于缺口412内,使套环41与固定轴3在3-5度的范围内自由旋转,所述尾部压条42的长度大于5cm。由于缺口412的存在,所述凸起31可以做的较粗较强壮,高度上也不再受限,可以设计得更高,解决产品的强度问题,降低维护率,提高用户满意度。可以在所述凸起31上套设一硅胶套,防止凸起31和缺口412之间接触磨损,以及降低接触噪音。
以上所述仅为本发明的较佳实施例而已,并不用以限制本发明,凡在本发明的精神和原则之内所作的任何修改、等同替换和改进等,均应包含在本发明的保护范围之内。

Claims (5)

  1. 一种改进型验钞机,包括机架、捻钞组件、出钞组件、接钞组件、显示器、驱动组件和控制电路板,其特征在于,所述捻钞组件包括捻钞轴、捻钞轮、捻钞胶圈和捻钞板,所述捻钞轮套设在捻钞轴上,捻钞胶圈套设在捻钞轮上,所述捻钞胶圈上设有一圈完整的防滑纹,所述捻钞轮与捻钞胶圈相配合处的轴向截面为D形。
  2. 根据权利要求1所述的改进型验钞机,其特征在于,所述捻钞轮外圆周面设有一圈环形凹槽,所述捻钞胶圈的内表面上设有环形凸起,所述环形凸起嵌入所述环形凹槽内。
  3. 根据权利要求1所述的改进型验钞机,其特征在于,所述捻钞轮外圆周面设有一圈环形凹槽,所述捻钞胶圈嵌入所述环形凹槽内,部分捻钞胶圈的表面超出捻钞轮的外圆周面,部分捻钞胶圈的表面未超出捻钞轮的外圆周面。
  4. 根据权利要求1所述的改进型验钞机,其特征在于,所述防滑纹为棘齿型。
  5. 根据权利要求1所述的改进型验钞机,其特征在于,所述捻钞轮为金属轮或者POM塑料轮。
PCT/CN2018/092915 2018-06-26 2018-06-26 一种改进型验钞机 WO2020000195A1 (zh)

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US5577589A (en) * 1992-12-17 1996-11-26 Garcia Tinoco; Jaime G. Document handler
CN101110138A (zh) * 2006-07-19 2008-01-23 柳永诠 连续走钞的验钞机
CN201749511U (zh) * 2010-01-20 2011-02-16 上海古鳌电子机械有限公司 小型清分机纸币传送装置
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CN203982435U (zh) * 2014-07-24 2014-12-03 浙江万联电器有限公司 点钞机的捻钞装置
CN205486423U (zh) * 2016-03-22 2016-08-17 浙江人杰机械电子有限公司 一种便于更换捻钞轮的纸币捻钞结构

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5577589A (en) * 1992-12-17 1996-11-26 Garcia Tinoco; Jaime G. Document handler
CN101110138A (zh) * 2006-07-19 2008-01-23 柳永诠 连续走钞的验钞机
CN201749511U (zh) * 2010-01-20 2011-02-16 上海古鳌电子机械有限公司 小型清分机纸币传送装置
CN203573396U (zh) * 2013-12-09 2014-04-30 浙江融翔电子有限公司 一种纸币清分机的捻钞装置
CN203982435U (zh) * 2014-07-24 2014-12-03 浙江万联电器有限公司 点钞机的捻钞装置
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