Sheet-type medium separating apparatus and self-service financial device
09540194 ยท 2017-01-10
Assignee
Inventors
Cpc classification
B65H3/0653
PERFORMING OPERATIONS; TRANSPORTING
B65H2404/1523
PERFORMING OPERATIONS; TRANSPORTING
B65H2402/54
PERFORMING OPERATIONS; TRANSPORTING
B65H2404/144
PERFORMING OPERATIONS; TRANSPORTING
B65H3/0638
PERFORMING OPERATIONS; TRANSPORTING
B65H2404/1415
PERFORMING OPERATIONS; TRANSPORTING
B65H2701/1912
PERFORMING OPERATIONS; TRANSPORTING
B65H3/5246
PERFORMING OPERATIONS; TRANSPORTING
B65H2404/133
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A sheet-type medium separating apparatus applicable in a self-service financial device for reliable sheet-by-sheet separation of an entire stack of banknotes. The apparatus includes a pickup roller component; a reversal roller component; and a separation roller component, where the reversal roller component includes a reversal roller, the reversal roller is fitted onto a reversal roller shaft via a one-way bearing, the reversal roller is provided with an inner sleeve cylinder fixed with the one-way bearing and a reversal roller sleeve sleeved onto the inner sleeve cylinder and capable of moving axially and flexibly. The separating apparatus allows for automatic adjustment of the meshing clearance between the reversal roller and the separation roller on the basis of the thickness of sheet-type media to be separated, thus effectively solving the problem of the sheet-type media being jammed or torn.
Claims
1. A sheet-type medium separating device, comprising: a pickup roller assembly configured to frictionally convey one sheet of sheet type medium, in contact with the pickup roller assembly, in a whole stack of sheet-type media; a reverse roller assembly configured to block the whole stack of sheet-type media to prevent more than one sheet of the sheet-type media from being frictionally conveyed; and a separating roller assembly arranged opposite to the reverse roller assembly with a clearance passage being formed between the separating roller assembly and the reverse roller assembly and configured to convey a single sheet of the sheet-type media, and the separating roller assembly configured to provide a conveying power for a single sheet of the sheet-type media conveyed frictionally by the pickup roller assembly; wherein the reverse roller assembly comprises a reverse roller, the reverse roller is assembled onto a reverse roller shaft through a one-way bearing, and the reverse roller comprises an inner sleeve fixed to the one-way bearing and a reverse roller jacket sleeved on the inner sleeve and movable axially and elastically, wherein an accommodating groove is provided in an outer surface of the inner sleeve in an axial direction, a protruding strip corresponding to the accommodating groove is provided on an inner surface of the reverse roller jacket, and elastic components are respectively provided at two axial ends of the protruding strip to abut against the protruding strip in the case that the protruding strip is accommodated in the accommodating groove.
2. The sheet-type medium separating device according to claim 1, wherein the elastic components are rubber rings, and annular grooves configured to accommodate the rubber rings are provided in the outer surface of the inner sleeve.
3. The sheet-type medium separating device according to claim 2, wherein an elastic tooth corresponding to the accommodating groove is provided on each of the rubber rings.
4. The sheet-type medium separating device according to claim 1, wherein the reverse roller jacket comprises a rigid sleeve and a rubber roller fixedly sleeved on the rigid sleeve.
5. The sheet-type medium separating device according to claim 4, wherein an accommodating groove is provided in an outer surface of the inner sleeve in an axial direction, a protruding strip corresponding to the accommodating groove is provided on an inner surface of the rigid sleeve, and elastic components are respectively provided at two axial ends of the protruding strip to abut against the protruding strip in the case that the protruding strip is accommodated in the accommodating groove.
6. The sheet-type medium separating device according to claim 5, wherein the elastic components are rubber rings, and annular grooves configured to accommodate the rubber rings are provided in the outer surface of the inner sleeve.
7. The sheet-type medium separating device according to claim 6, wherein an elastic tooth corresponding to the accommodating groove is provided on each of the rubber rings.
8. The sheet-type medium separating device according to claim 1, wherein the reverse roller is assembled on the reverse roller shaft by being borne by at least one one-way bearing and at least one normal bearing which are arranged in parallel with each other axially.
9. A self-service financial equipment, comprising: a banknote depositing and withdrawing module configured to allow a user to deposit and withdraw banknotes; a conveying passage configured to convey a single sheet of banknotes; an identification module configured to identify the banknotes individually; and a cashbox configured to receive the identified and confirmed banknotes, wherein the banknote depositing and withdrawing module comprises a sheet-type medium separating device, and sheet-type medium separating device, comprises: a pickup roller assembly configured to frictionally convey one sheet of sheet type medium, in contact with the pickup roller assembly, in a whole stack of sheet-type media; a reverse roller assembly configured to block the whole stack of sheet-type media to prevent more than one sheet of the sheet-type media from being frictionally conveyed; and a separating roller assembly arranged opposite to the reverse roller assembly with a clearance passage being formed between the separating roller assembly and the reverse roller assembly and configured to convey a single sheet of the sheet-type media, and the separating roller assembly configured to provide a conveying power for a single sheet of the sheet-type media conveyed frictionally by the pickup roller assembly; wherein the reverse roller assembly comprises a reverse roller, the reverse roller is assembled onto a reverse roller shaft through a one-way bearing, and the reverse roller comprises an inner sleeve fixed to the one-way bearing and a reverse roller jacket sleeved on the inner sleeve and movable axially and elastically, wherein an accommodating groove is provided in an outer surface of the inner sleeve in an axial direction, a protruding strip corresponding to the accommodating groove is provided on an inner surface of the reverse roller jacket, and elastic components are respectively provided at two axial ends of the protruding strip to abut against the protruding strip in the case that the protruding strip is accommodated in the accommodating groove.
10. The self-service financial equipment according to claim 9, wherein the elastic components are rubber rings, and annular grooves configured to accommodate the rubber rings are provided in the outer surface of the inner sleeve.
11. The self-service financial equipment according to claim 10, wherein an elastic tooth corresponding to the accommodating groove is provided on each of the rubber rings.
12. The self-service financial equipment according to claim 9, wherein the reverse roller jacket comprises a rigid sleeve and a rubber roller fixedly sleeved on the rigid sleeve.
13. The self-service financial equipment according to claim 12, wherein an accommodating groove is provided in an outer surface of the inner sleeve in an axial direction, a protruding strip corresponding to the accommodating groove is provided on an inner surface of the rigid sleeve, and elastic components are respectively provided at two axial ends of the protruding strip to abut against the protruding strip in the case that the protruding strip is accommodated in the accommodating groove.
14. The self-service financial equipment according to claim 13, wherein the elastic components are rubber rings, and annular grooves configured to accommodate the rubber rings are provided in the outer surface of the inner sleeve.
15. The self-service financial equipment according to claim 14, wherein an elastic tooth corresponding to the accommodating groove is provided on each of the rubber rings.
16. The self-service financial equipment according to claim 9, wherein the reverse roller is assembled on the reverse roller shaft by being borne by at least one one-way bearing and at least one normal bearing which are arranged in parallel with each other axially.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) For more clearly illustrating embodiments of the present application or the technical solutions in the conventional technology, drawings referred to describe the embodiments or the conventional technology will be briefly described hereinafter. Apparently, the drawings in the following description are only some examples of the present application, and for the person skilled in the art, other drawings may be obtained based on these drawings without any creative efforts.
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DETAILED DESCRIPTION OF THE EMBODIMENTS
(14) For further describing a device for depositing and withdrawing banknotes according to the present application, further description is made in detail hereinafter in conjunction with illustrations of a preferred embodiment of the present application.
(15) Reference is made to
(16) Reference is made to
(17) Referring to
(18) The structure of the reverse roller 12 is further described hereinafter in conjunction with
(19) Referring to
(20) In a first step, the normal deep groove ball bearing 121 and the one-way bearing 122 are fixed in an inner hole of the inner sleeve 124 by glue, to form an assembly A.
(21) In a second step, the elastic rubber ring 123 is sleeved on one end of the assembly A assembled in the first step, to form an assembly B.
(22) In a third step, the rigid outer sleeve 125 is fixed to an inner side of the rubber roller 126 by glue, to form an assembly C. This step may also be achieved by manufacturing the assembly integrally by injection molding in a factory;
(23) In a fourth step, the assembly B assembled in the second step is slid into the assembly C assembled in the third step along the direction of the three guide grooves from one end of the assembly C, to form an assembly D.
(24) In a fifth step, on the basis of the fourth step, the assembly C is continued to slide forward with respect to the assembly B, to cause the elastic rubber ring 123 to deform, until the other end of the inner sleeve 124 is exposed, then another elastic rubber ring 123 is sleeved on the other end of the assembly D, and the deformation of the elastic rubber pad 123 is released to allow the assembly B and the assembly C to return to the original positions and be centered relatively, to form the reverse roller 12.
(25) The principle of the reverse roller assembly dynamically and adaptively allocating a meshing clearance between the reverse roller and the separating roller is further described in conjunction with
(26) The above description is only preferred embodiments of the present application. It should be noted that, the above preferred embodiments should not be deemed as a limitation to the present application, and the scope of the present application is defined by the claims of the present application. For the person skilled in the art, several improvements and modifications may be made to the present application without departing from the principle and scope of the present application, and these improvements and modifications are also deemed to fall into the scope of the present application.