CN202214055U - Equiangular one-way rotating mechanism - Google Patents

Equiangular one-way rotating mechanism Download PDF

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Publication number
CN202214055U
CN202214055U CN2011203247328U CN201120324732U CN202214055U CN 202214055 U CN202214055 U CN 202214055U CN 2011203247328 U CN2011203247328 U CN 2011203247328U CN 201120324732 U CN201120324732 U CN 201120324732U CN 202214055 U CN202214055 U CN 202214055U
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CN
China
Prior art keywords
unidirectional
rotating mechanism
fork
wheel
equal angles
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Expired - Fee Related
Application number
CN2011203247328U
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Chinese (zh)
Inventor
张林法
郭礼虎
周东
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NDT Science & Technology Co., Ltd.
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Shenzhen Newdatong Science & Technology Corp
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Priority to CN2011203247328U priority Critical patent/CN202214055U/en
Application granted granted Critical
Publication of CN202214055U publication Critical patent/CN202214055U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The embodiment of the utility model discloses an equiangular one-way rotating mechanism which comprises a swing stem, a stop wheel rotating shaft, a stop wheel, and a driving component, wherein a first one-way rotation stop bearing is nested at the first end of the swing stem; the one-way rotary stop wheel rotating shaft is fixedly arranged in the first one-way rotation stop bearing, and rotate uniaxially; the stop wheel is fixed on the stop wheel rotating shaft; and the driving component is propped against the second end of the swing stem and periodically pushes the second end of the swing stem to carry out up and down reciprocating swing, so as to enable the first end of the swing stem to drive the stop wheel to carry out one-way rotation. The equiangular one-way rotating mechanism provided by the utility model can not only further protect the work surface of a transmission wheel demanding high wearing resistance, avoid long term fatigue abrasion, and remarkably prolong the service life of the transmission wheel, but also prevent the effective work surface from localized wear, so as to remarkably improve the work efficiency and the stability in separating chip medium, lower separation failure rate, and avoid manual labor and material cost waste caused by frequent maintenance and replacement of precision components.

Description

The unidirectional rotating mechanism of equal angles
Technical field
The utility model relates to the device that a kind of flaky medium separates automatically or piles up one by one, relates in particular to the unidirectional rotating mechanism of a kind of equal angles.
Background technology
Along with making constant progress of social state-of-art; The intelligent ray machine electricity automatic equipment of each field advanced IT application obtains a large amount of the use; And be used for flaky medium (for example banknote, paper, bill and card etc.) is separated or the device that piles up is used very generally one by one, make the unidirectional rotation of minute angle obtain wide application space simultaneously with the mechanism of adjustment transmission part phase place.All be widely used separating of flaky medium and stack device of the cash of the cash-access money among the ATM and the integrated money depositing apparatus of cash on bank, bank and fields such as bill sorting equipment, chopping machine, duplicator, printer and card sender for example.
Flaky medium separates or the cooresponding principle of work of stack device is: drive member drives power wheel and multiple sheet class medium is delivered in the gap of separating between wheel and the prevention wheel; Said separation wheel is rotated further; A medium that drives in the multiple sheet medium passes through the gap; Stop wheel to rely on skin friction force to stop all the other multiple sheet media simultaneously, realize the purpose that whole folded medium is separated into individual medium one by one and transmits successively by formation through Separation.
Wherein, the prevention wheel that is used to separate second laminated dielectric has two kinds of mode of operation, and a kind of is transfixion, another kind ofly is rotation continuously.First kind of mode of operation causes high-precision prevention wheel surface localized wear to occur because laminated dielectric continuously at a high speed through Separation, stops the wheel part to be in the weariness working state for a long time continually; As time goes on, Separation constantly increases, the fault rate fast rise; Work life is short; Need and adjust the Separation regular monitoring, even need periodic replacement to stop wheel, cause maintenance cost to heighten.Second kind of mode of operation is because the Separation of flaky medium is very little; Stop wheel to continue the work of reversing incessantly, can cause stoping wheel to be in the friction mode of operation for a long time, though avoided localized wear like this; But stop the wearing and tearing of wheel integral surface even more serious, service life is short.
The utility model content
The utility model embodiment technical matters to be solved is; Provide a kind of equal angles unidirectional rotating mechanism; Automatically in the working process that stops wheel, periodically carry out equal angular minor rotation with the adjustment phase place; Avoid stoping the part of wheel or the severe wear of integral surface, improve the service life that stops wheel greatly.
In order to solve the problems of the technologies described above, the utility model embodiment has proposed the unidirectional rotating mechanism of a kind of equal angles, and the unidirectional rotating mechanism of said equal angles comprises: fork, first end of fork are embedded with the first unidirectional spline bearing; Be fixedly arranged on prevention wheel in the said first unidirectional spline bearing, unidirectional rotation rotating shaft; Be fixedly arranged on the prevention wheel in the rotating shaft of said prevention wheel; Driven unit, second end that it is connected to said fork periodically promotes and second end of said fork is up and down reciprocatingly swung, and then is driven by first end of said fork and to stop the unidirectional rotation of wheel.
Further, the unidirectional rotating mechanism of said equal angles also comprises: be fixedly arranged on the second unidirectional spline bearing in the rotating shaft of said prevention wheel; And be fixedly arranged on the peripheral spline align member of the said second unidirectional spline bearing.
Further, the unidirectional rotating mechanism of said equal angles also comprises frame, and said fork, driven unit, prevention wheel rotating shaft and spline align member all are located on the said frame.
Further, said spline align member comprise the second unidirectional spline bearing outer cover be fixedly arranged on the said frame, the said second unidirectional spline bearing outer cover is fixedly connected on the locking piece on the said frame.
Further, also be provided with on the said fork end and said frame the overlap joint other end be pressed in said fork first end, be used to apply elastic force so that second end of said fork fits in the retracing spring of said driven unit.
Further, said driven unit comprises: propulsion source; Transmission gear by said propulsion source drive; Be provided with and the synchronous driving body that rotates with said transmission gear concentric.
Further, said driving body is eccentric wheel or cam.
Further, second end of said fork is provided with the jacking block with the driving body butt.
The beneficial effect of the unidirectional rotating mechanism of equal angles of the utility model embodiment is: take turns rotating shaft, be fixedly arranged on prevention wheel and driven unit in the rotating shaft of said prevention wheel through employing fork, the first unidirectional spline bearing that is embedded at fork first end, the prevention that is fixedly arranged in the first unidirectional spline bearing; Make that stoping wheel rotating shaft drive to stop wheel periodically to carry out equal angular minor rotation carries out the phase place adjustment; Can not only further protect the high transfer wheel running surface of resistance to abrasion requirement; Avoid the chronic fatigue wearing and tearing; Significantly improve its service life, can prevent that also localized wear from appearring in effective running surface simultaneously, and then significantly improve the work efficiency and the stability of separating slices class medium; Reduce and separate fault rate, manpower and the material cost waste of avoiding frequent maintenance to cause with changing precise part.
Description of drawings
Fig. 1 is the principle of work scheme drawing of the unidirectional rotating mechanism of equal angles of the utility model embodiment.
Fig. 2 is the birds-eye view of the unidirectional rotating mechanism of equal angles shown in Figure 1.
Fig. 3 is driven unit and the generalized section of fork of the unidirectional rotating mechanism of equal angles of the utility model embodiment.
Fig. 4 is fork, the first unidirectional spline bearing of the unidirectional rotating mechanism of equal angles of the utility model embodiment and the generalized section that stops the wheel rotating shaft.
Fig. 5 is the second unidirectional spline bearing and the cutaway view of spline align member of the unidirectional rotating mechanism of equal angles of the utility model embodiment.
The specific embodiment
The utility model provides a kind of equal angles unidirectional rotating mechanism, is used for drive stoping wheel periodically to carry out equal angular minor rotation and carries out the phase place adjustment.
Please refer to Fig. 1 ~ Fig. 5, the unidirectional rotating mechanism of said equal angles comprises: the unidirectional spline bearing of fork 10, driven unit 20, first 30, stop wheel rotating shaft 40 and stop wheel 50.
Fork 10 is rectangular curved bar, and first end of fork 10 is embedded with the said first unidirectional spline bearing 30.
Driven unit 20 periodically upwards promotes and makes second end of said fork 10 up and down reciprocatingly swing (as shown in Figure 1).Said driven unit 20 comprises: propulsion source (not shown), transmission gear 21 and driving body 23.
Said propulsion source is a motor, can be common electric machine, brushless motor, stepping motor or servomotor.
Transmission gear 21 is connected through drive disk assembly with said propulsion source synchronously rotationally.
Driving body 23 and said transmission gear 21 concentric settings and rotation synchronously are fixed in the eccentric wheel rotating shaft 25 with transmission gear 21, and accordingly, second end of said fork 10 is provided with the jacking block with driving body 23 butts.Driving body 23 is eccentric wheel or cam, and in this embodiment, preferred eccentric wheel is as the parts of driven unit 20.Wherein, said angle can change through attribute such as the eccentric eccentric parameter that changes driving body 23, to be fit to phase place adjustment requirement.
The first unidirectional spline bearing 30 is connected with said fork 10 to be connected in as an overall fixed and stops in the wheel rotating shaft 40.
Stop wheel rotating shaft 40 to be fixedly arranged in the said first unidirectional spline bearing 30, drive unidirectional rotation during by said fork 10 upward movements.
Stop wheel 50 to be fixedly arranged in the rotating shaft 40 of said prevention wheel, stoping wheel 50 numbers is one or parallel be provided with a plurality of.Thereby the driving body 23 of driven unit 20 is connected to the jacking block of second end of said fork 10, periodically promotes and second end of said fork 10 is up and down reciprocatingly swung, and then driven by first end of said fork 10 and to stop wheel 50 unidirectional rotations.
The unidirectional rotating mechanism of said equal angles also comprises: the second unidirectional spline bearing 60, spline align member 70, frame 80 and retracing spring 90.
The second unidirectional spline bearing 60 is fixedly arranged in the rotating shaft 40 of said prevention wheel.In this embodiment, the second unidirectional spline bearing 60 cooperates the first unidirectional spline bearing 30 to carry out unidirectional spline as the bearing with unidirectional rotation stopping function.
Spline align member 70 is fixedly arranged on the said second unidirectional spline bearing 60 peripheries, is used to improve said prevention wheel rotating shaft 40 unidirectional rotation reliability and stability.Said spline align member 70 comprises the second unidirectional spline bearing outer cover 71 and locking piece 73.
Locking piece 73 is fixedly arranged on the frame 80, is used for the said second unidirectional spline bearing outer cover 71 is fixedly connected on said frame 80.Through locking piece 73 the second unidirectional spline bearing outer cover 71 is fixed on the frame 80; And the second unidirectional spline bearing outer cover 71 is connected with the second unidirectional spline bearing 60 reliably; Thereby the prevention wheel rotating shaft 40 unidirectional rotation low-angles that improved the unidirectional rotating mechanism of equal angles are adjusted the reliability and stability of phase places.
Said eccentric wheel rotating shaft 25, fork 10, driven unit 20, stop wheel rotating shaft 40 and spline align member 70 all to be located on the said frame 80.
Retracing spring 90 is sheathed on the said fork 10; One end and frame 80 overlap joints; The other end is pressed in " arm " position of first end of fork 10, is used to apply elastic force and second end of said fork 10 is fitted tightly in said driven unit 20.
To sum up; Propulsion source drives transmission gear 21 and rotates; The swing that moves in circles up and down of driving body 23 driving pendulum rod 10 when rotating synchronously with transmission gear 21; The first unidirectional spline bearing 30 and the second unidirectional spline bearing 60 are converted into the unidirectional rotation of equal angles that stops wheel rotating shaft 40 with the up-and-down movement of fork 10, thereby have realized being fixedly arranged on the unidirectional rotation low-angle phase place adjustment of the prevention wheel 50 in the rotating shaft 40 of said prevention wheel.Wherein, the numerical value of phase place adjustment when the different parameters setting of driving body 23 and fork 10 can change unidirectional rotation the, applying flexible.
The above is the specific embodiment of the utility model; Should be pointed out that for those skilled in the art, under the prerequisite that does not break away from the utility model principle; Can also make some improvement and retouching, these improvement and retouching also are regarded as the protection domain of the utility model.

Claims (8)

1. the unidirectional rotating mechanism of equal angles is characterized in that, the unidirectional rotating mechanism of said equal angles comprises:
Fork, first end of fork are embedded with the first unidirectional spline bearing;
Be fixedly arranged on prevention wheel in the said first unidirectional spline bearing, unidirectional rotation rotating shaft;
Be fixedly arranged on the prevention wheel in the rotating shaft of said prevention wheel;
Driven unit, second end that it is connected to said fork periodically promotes and second end of said fork is up and down reciprocatingly swung, and then is driven by first end of said fork and to stop the unidirectional rotation of wheel.
2. the unidirectional rotating mechanism of equal angles as claimed in claim 1 is characterized in that, the unidirectional rotating mechanism of said equal angles also comprises:
Be fixedly arranged on the second unidirectional spline bearing in the rotating shaft of said prevention wheel; And
Be fixedly arranged on the peripheral spline align member of the said second unidirectional spline bearing.
3. the unidirectional rotating mechanism of equal angles as claimed in claim 2 is characterized in that the unidirectional rotating mechanism of said equal angles also comprises frame, and said fork, driven unit, prevention wheel rotating shaft and spline align member all are located on the said frame.
4. the unidirectional rotating mechanism of equal angles as claimed in claim 3; It is characterized in that, said spline align member comprise the second unidirectional spline bearing outer cover be fixedly arranged on the said frame, the said second unidirectional spline bearing outer cover is fixedly connected on the locking piece on the said frame.
5. the unidirectional rotating mechanism of equal angles as claimed in claim 3; It is characterized in that, also be arranged with on the said fork end and said frame the overlap joint other end be pressed in said fork first end, be used to apply elastic force so that second end of said fork fits in the retracing spring of said driven unit.
6. the unidirectional rotating mechanism of equal angles as claimed in claim 1 is characterized in that said driven unit comprises:
Propulsion source;
Transmission gear by said propulsion source drive;
Be provided with and the synchronous driving body that rotates with said transmission gear concentric.
7. the unidirectional rotating mechanism of equal angles as claimed in claim 6 is characterized in that said driving body is eccentric wheel or cam.
8. the unidirectional rotating mechanism of equal angles as claimed in claim 6 is characterized in that second end of said fork is provided with the jacking block with the driving body butt.
CN2011203247328U 2011-08-31 2011-08-31 Equiangular one-way rotating mechanism Expired - Fee Related CN202214055U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2011203247328U CN202214055U (en) 2011-08-31 2011-08-31 Equiangular one-way rotating mechanism

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2011203247328U CN202214055U (en) 2011-08-31 2011-08-31 Equiangular one-way rotating mechanism

Publications (1)

Publication Number Publication Date
CN202214055U true CN202214055U (en) 2012-05-09

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Application Number Title Priority Date Filing Date
CN2011203247328U Expired - Fee Related CN202214055U (en) 2011-08-31 2011-08-31 Equiangular one-way rotating mechanism

Country Status (1)

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CN (1) CN202214055U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102320487A (en) * 2011-08-31 2012-01-18 深圳市新达通科技股份有限公司 Equal-angle one-way rotation mechanism
WO2015096534A1 (en) * 2013-12-24 2015-07-02 广州广电汇通金融服务有限公司 Banknote gathering and separating apparatus and self-service financial device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102320487A (en) * 2011-08-31 2012-01-18 深圳市新达通科技股份有限公司 Equal-angle one-way rotation mechanism
WO2015096534A1 (en) * 2013-12-24 2015-07-02 广州广电汇通金融服务有限公司 Banknote gathering and separating apparatus and self-service financial device

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GR01 Patent grant
C56 Change in the name or address of the patentee

Owner name: NDT SCIENCE + TECHNOLOGY CO., LTD.

Free format text: FORMER NAME: SHENZHEN CITY NDT TECHNOLOGY CO., LTD.

CP01 Change in the name or title of a patent holder

Address after: Luohu District Buji road 518000 Shenzhen city Guangdong Province China No. 1028 compound 2 Building 4 layer

Patentee after: NDT Science & Technology Co., Ltd.

Address before: Luohu District Buji road 518000 Shenzhen city Guangdong Province China No. 1028 compound 2 Building 4 layer

Patentee before: Shenzhen Newdatong Science & Technology Corporation

C56 Change in the name or address of the patentee
CP02 Change in the address of a patent holder

Address after: 518000, building 13, No. two Shenzhen Software Park, Nanshan District science and technology, Shenzhen, Guangdong 601, China

Patentee after: NDT Science & Technology Co., Ltd.

Address before: Luohu District Buji road 518000 Shenzhen city Guangdong Province China No. 1028 compound 2 Building 4 layer

Patentee before: NDT Science & Technology Co., Ltd.

CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20120509

Termination date: 20180831