CN1331359A - Full-automatic washer - Google Patents

Full-automatic washer Download PDF

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Publication number
CN1331359A
CN1331359A CN 00109732 CN00109732A CN1331359A CN 1331359 A CN1331359 A CN 1331359A CN 00109732 CN00109732 CN 00109732 CN 00109732 A CN00109732 A CN 00109732A CN 1331359 A CN1331359 A CN 1331359A
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CN
China
Prior art keywords
washing machine
guide groove
track
steel ball
motor
Prior art date
Legal status (The legal status 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 status listed.)
Granted
Application number
CN 00109732
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Chinese (zh)
Other versions
CN1174136C (en
Inventor
梁仕伦
潘皓炫
镡丹中
张建明
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Jinling Electrical Co Ltd
Original Assignee
Jinling Electrical Co Ltd
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 Jinling Electrical Co Ltd filed Critical Jinling Electrical Co Ltd
Priority to CNB001097326A priority Critical patent/CN1174136C/en
Publication of CN1331359A publication Critical patent/CN1331359A/en
Application granted granted Critical
Publication of CN1174136C publication Critical patent/CN1174136C/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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  • Main Body Construction Of Washing Machines And Laundry Dryers (AREA)

Abstract

A full-automatic washer features that the spiral track and guide slot and made on drive element, and the steel ball is arranged between said guide slot and spiral track. On washing, the rotor of motor rotates forward and reverse and the steel ball does reciprocating movement in spiral track, not driving the dewatering axle. On dewatering, the washing axle is unidirectionally driven by motor to make steel ball move to end of spiral track unidirectionally for driving dewatering axle to rotate. Its advantages are simpified structure, low power of motor.

Description

Automatic washing machine
What the present invention relates to is a kind of automatic washing machine, specifically, the present invention relates to a kind of automatic washing machine that adopts guide groove, helical orbit to combine with steel ball to substitute clutch and clutch driving unit.
Prior art discloses the driving structure of many kinds of washing machines, for example, CN1232097A discloses and a kind of motor, clutch, reducing gear has been linked together coaxially, act on clutch by a clutch driving unit (electromagnetism or electric element) again, make the rotation of motor can transmit or not pass to dehydrating shaft, realize the separately rotation of wash shaft and dehydrating shaft; Described designs simplification the transmission mechanism of washing machine, improved the anti-unbalance ability of washing machine.
Among the embodiment of the disclosed content of CN1232097A, because washing machine needs clutch, and clutch switches needs a Power Drive Unit, drive unit is to the clutch effect, the rotation that could realize motor can be transmitted or do not passed to dehydrating shaft, finishes separating washing and dehydration action; Described structure is simplified inadequately, and cost is higher, and the vulnerability of clutch element and clutch driving unit has influenced the reliability of complete machine greatly; Secondly, the rotor of this structure is that single armed supports, less stable, and motor can not become independently unit, thereby the accumulated error after the assembling concentrates between rotor and the stator all, in batch process, coaxial between very difficult assurance motor stator and the rotor, for guaranteeing motor energy operate as normal, have to air gap between expanded motor stator and rotor, thereby electric efficiency is reduced, need expanded motor power, bigger to the consumption and the waste of electric energy.
Main purpose of the present invention is to provide a kind of and adopts guide groove, helical orbit to combine with steel ball to substitute the automatic washing machine of clutch and clutch driving unit; Thereby overcome above-mentioned existing in prior technology problem, simplified the structure, reduced cost, and can improve reliability and reduce power of motor.
Purpose of the present invention can be solved by the following method: 1, be provided with helical orbit in the bottom of hollow dehydrating shaft, be provided with guide groove in the power shaft that connects with rotor (or axle sleeve); Or in the power shaft that connects with rotor (or axle sleeve), be provided with helical orbit, be provided with guide groove in the bottom of hollow dehydrating shaft.Between guide groove and helical orbit, be provided with steel ball.Rotor is done rotating campaign in short-term when washing, at this moment, steel ball reciprocating motion in helical orbit and guide groove, can not move to the end of track or guide groove, rotor can not drive the rotation of hollow outer shaft, only drives the power shaft rotation, and the rotation of power shaft passes to axle in the output after slowing down by gear train again, axle is passed to impeller with rotation again in the output, finishes the laundry function.When dehydration, rotor is made the folk prescription of long period to rotatablely moving, steel ball moves to the end of helical orbit or guide groove, drive the hollow outer shaft and make high speed rotary motion, the hollow outer shaft drives the dehydration barrel rotation, make the clothing moisture in dehydration barrel under centrifugal action, be thrown out of steel ladle, finish dehydrating function; 2, be provided with bearing at the rotor two ends, it is supported on the housing, make motor become a unit independently, thereby more stable, assembly precision is higher, easily guarantees between motor stator and the rotor coaxial; Therefore can reduce the air gap between motor stator and rotor, reduce the power of used motor, improve efficiency of motor, energy savings.
Be accompanying drawing of the present invention below,, can be expressly understood technology contents of the present invention by description of drawings and in conjunction with the following detailed description, specific as follows:
Fig. 1 is the cutaway view of first embodiment of the invention washing machine.
Fig. 2 is the exploded perspective view of washing machine drive division structure shown in Figure 1.
Fig. 3 is the amplification view of washing machine drive division structure shown in Figure 1
Fig. 4 is the cutaway view of second embodiment of the invention washing machine.
Fig. 5 is the amplification view of washing machine drive division structure shown in Figure 4
Fig. 6 is the cutaway view of third embodiment of the invention washing machine.
Fig. 7 is the amplification view of washing machine drive division structure shown in Figure 6
Fig. 8 is the cutaway view of fourth embodiment of the invention washing machine.
Fig. 9 is the amplification view of washing machine drive division structure shown in Figure 8
Figure 10 is the cutaway view of fifth embodiment of the invention washing machine.
Figure 11 is the amplification view of washing machine drive division structure shown in Figure 10
Figure 12 is the cutaway view of the washing machine of prior art.
Below with reference to Fig. 1, Fig. 2, Fig. 3 the first embodiment of the present invention is described.
As shown in Figure 1, be provided with rotatable dehydration barrel 2 in the steel ladle 1.Be provided with the impeller 3 that is used to stir clothing in the bottom of dehydration barrel 2, the upper end of hollow outer shaft 4 connects with the bottom of dehydration barrel 2.Axle 5 is configured in the hollow bulb of hollow outer shaft 4 in the output, and with the configuration of hollow outer shaft 4 concentrics, the top of axle 5 connects with impeller 3 in the output.
The gear train 6 that is used to slow down is arranged in the hollow outer shaft 4, and its outlet side links to each other with axle 5 in the output, and input side links to each other with power shaft 7, and power shaft 7 also is arranged in the hollow outer shaft 4, and the concentric configuration; Hollow outer shaft 4 is respectively equipped with two spring bearings 8 and 9 at the two ends of gear train 6, and is included in the shell 10; The bottom of hollow outer shaft 4 under spring bearing 9 is provided with helical orbit.
Motor 11 is used for the washing machine transmission of power, by rotor 12 and stator 13, electric machine casing 14 phase compositions; Electric machine casing 14 is fixing by bolt and shell 10, and coaxial heart is fixed with axle sleeve 15 in rotor 12, and the upper end of axle sleeve 15 is provided with a guide groove.The bottom of power shaft 7 connects by spline or square hole with axle sleeve 15.Hollow outer shaft 4 links together by steel ball 16 and axle sleeve, and steel ball 16 is located in the guide groove of the helical orbit of hollow outer shaft 4 and axle sleeve 15 inboards.In electric machine casing 14, dispose bearing 18 and 19, supporting the upper and lower end of rotor 12 respectively, guarantee between motor stator and the rotor coaxial, improve the stability of rotor running and avoid rotor 12 to produce offset, can make the rotor 12 and the air gap of stator 13 design as far as possible for a short time, avoid expanded motor power, make the design of electrical motor miniaturization, and energy savings.
In the above-mentioned structure, in washing, during rinsing, give the positive and negative energising mutually of motor short time by controller 17 controls, rotor is done the rotating campaign of short time, at this moment, because the rotating time is short, steel ball 16 is reciprocating in the helical orbit of hollow outer shaft 4 and/or guide groove, not moving to the end of track and/or guide groove, can not drive 4 motions of hollow outer shaft, can only be that rotor 12 will move through 7 rotations of axle sleeve 15 drive power shafts, power shaft 7 slows down by gear train 6 again, axle 5 in the output is passed in rotation after slowing down, and axle 5 is passed to rotation impeller 3 again in the output, and washing clothes is applied mechanical force.Like this, the clothing in the dehydration barrel 2 is finished washing, rinsing.When dehydration, controller 17 control rotors are done unidirectional rotation of long period, at this moment, steel ball 16 moves to the track and/or the guide groove end in the helical orbit of hollow outer shaft 4, drive 4 runnings of hollow outer shaft, hollow outer shaft 4 drives dehydration barrel 2 and does unidirectional high speed rotation, and the moisture of clothing is under centrifugal action in the dehydration barrel 2, be thrown out of in the steel ladle 1, finish dehydration clothing.
Below, with reference to Fig. 4, Fig. 5 the second embodiment of the present invention is described, be marked with same mark with the above-mentioned first embodiment same configuration among Fig. 4, Fig. 5, its explanation is omitted.
As Fig. 4, shown in Figure 5, bearing 18 and 19 in the cancellation motor, coaxial heart is fixed with axle sleeve 15 in rotor 12, and the bottom of power shaft 7 connects by spline or square hole with axle sleeve 15, fix with nut again, axle sleeve 15, power shaft 7, rotor 12 are connected as one.
In the above-mentioned structure, in washing, during rinsing, give the positive and negative energising mutually of motor short time by controller 17 controls, rotor is done the rotating campaign of short time, at this moment, because the rotating time is short, steel ball 16 is reciprocating in the helical orbit of hollow outer shaft 4, not moving to tail track, can not drive 4 motions of hollow outer shaft, can only be that rotor 12 will move through 7 rotations of axle sleeve 15 drive power shafts, power shaft 7 slows down by gear train 6 again, axle 5 in the output is passed in rotation after slowing down, and axle 5 is passed to rotation impeller 3 again in the output, and washing clothes is applied mechanical force.Like this, the clothing in the dehydration barrel 2 is finished washing, rinsing.When dehydration, controller 17 control rotors are done unidirectional rotation of long period, at this moment, steel ball 16 in the helical orbit of hollow outer shaft 4 and/or guide groove, move to track/and or the end of guide groove, drive 4 runnings of hollow outer shaft, hollow outer shaft 4 drives dehydration barrel 2 and does unidirectional high speed rotation, and the moisture of clothing is under centrifugal action in the dehydration barrel 2, be thrown out of in the steel ladle 1, finish dehydration clothing.
Below, with reference to Fig. 6, Fig. 7 the third embodiment of the present invention is described.Be marked with same mark with the above-mentioned second embodiment same configuration among Fig. 6, Fig. 7, its explanation is omitted.
As Fig. 6, shown in Figure 7, outer surface is provided with guide groove in the bottom of hollow outer shaft 4, is provided with helical orbit in the inboard, upper end of axle sleeve 15, is provided with steel ball 16 between guide groove and helical orbit.
In the above-mentioned structure, in washing, during rinsing, give the positive and negative energising mutually of motor short time by controller 17 controls, rotor is done the rotating campaign of short time, at this moment, because the rotating time is short, steel ball 16 is reciprocating in the helical orbit of axle sleeve 15 and/or guide groove, not moving to the end of track and/or guide groove, can not drive 4 motions of hollow outer shaft, can only be that rotor 12 will move through 7 rotations of axle sleeve 15 drive power shafts, power shaft 7 slows down by gear train 6 again, axle 5 in the output is passed in rotation after slowing down, and axle 5 is passed to rotation impeller 3 again in the output, and washing clothes is applied mechanical force.Like this, the clothing in the dehydration barrel 2 is finished washing, rinsing.When dehydration, controller 17 control rotors are done unidirectional rotation of long period, at this moment, steel ball 16 moves to the end of track and/or guide groove in the helical orbit of axle sleeve 15 and/or guide groove, drive 4 runnings of hollow outer shaft, hollow outer shaft 4 drives dehydration barrel 2 and does unidirectional high speed rotation, and the moisture of clothing is under centrifugal action in the dehydration barrel 2, be thrown out of in the steel ladle 1, finish dehydration clothing.
Below, with reference to Fig. 8, Fig. 9 the fourth embodiment of the present invention is described.Be marked with same mark with the above-mentioned second embodiment same configuration among Fig. 8, Fig. 9, its explanation is omitted.
As Fig. 8, shown in Figure 9, the medial surface in hollow outer shaft 4 bottoms is provided with helical orbit, is provided with guide groove in the bottom of power shaft 7, is provided with steel ball between guide groove and the helical orbit.The bottom of power shaft 7 directly connects with rotor 12.
In the above-mentioned structure, in washing, the rinsing stroke, give the positive and negative energising mutually of motor short time by controller 17 controls, rotor is done the rotating campaign of short time, at this moment, because the rotating time is short, steel ball 16 is reciprocating in the helical orbit of hollow outer shaft 4, not moving to the end of track and/or guide groove, can not drive 4 motions of hollow outer shaft, can only be that rotor 12 drives power shaft 7 rotations, power shaft 7 slows down by gear train 6 again, axle 5 in the output is passed in rotation after slowing down, and axle 5 is passed to rotation impeller 3 again in the output, and washing clothes is applied mechanical force.Like this, the clothing in the dehydration barrel 2 is finished washing, rinsing.When dehydration, controller 17 control rotors are done unidirectional rotation of long period.At this moment, steel ball 16 moves to the end of track and/or guide groove in the helical orbit of hollow outer shaft 4 and/or guide groove, drive 4 runnings of hollow outer shaft, hollow outer shaft 4 drives dehydration barrel 2 and does unidirectional high speed rotation, the moisture of clothing is under centrifugal action in the dehydration barrel 2, be thrown out of in the steel ladle 1, finish dehydration clothing.
Below, with reference to Figure 10, Figure 11 the fifth embodiment of the present invention is described.Be marked with same mark with the above-mentioned second embodiment same configuration among Figure 10, Figure 11, its explanation is omitted.
As Figure 10, shown in Figure 11, the endoporus in hollow outer shaft 4 bottoms is provided with guide groove, is provided with helical orbit in the bottom of power shaft 7, is provided with steel ball between guide groove and the helical orbit, and the bottom of power shaft 7 directly connects with rotor 12.
In the above-mentioned structure, when washing, rinsing, give the positive and negative energising mutually of motor short time by controller 17 controls, rotor is done the rotating campaign of short time.At this moment, because the rotating time is short, steel ball 16 is reciprocating in the helical orbit of power shaft 7, not moving to the end of track and/or guide groove, can not drive 4 motions of hollow outer shaft, can only be that rotor 12 drives power shaft 7 rotations, power shaft 7 slows down by gear train 6 again, axle 5 in the output is passed in rotation after slowing down, and axle 5 is passed to rotation impeller 3 again in the output, and washing clothes is applied mechanical force.Like this, the clothing in the dehydration barrel 2 is finished washing, rinsing; When dehydration, controller 17 control rotors are done unidirectional rotation of long period, at this moment, steel ball 16 moves to the end of track and/or guide groove in the helical orbit of power shaft 7 and/or guide groove, drive 4 runnings of hollow outer shaft, hollow outer shaft 4 drives dehydration barrel 2 and does unidirectional high speed rotation, and the moisture of clothing is under centrifugal action in the dehydration barrel 2, be thrown out of in the steel ladle 1, finish dehydration clothing.
As replenishing to the foregoing description, researcher of the present invention is this also special proposition, no matter helical orbit is arranged on hollow dehydrating shaft, power shaft or the axle sleeve, track and/guide groove has end, track is designed to the minimum stroke that spiral form is needed rotating when satisfying washing, and, the citation form of guide groove is a straight line and consistent with the spiral ascent direction of helical orbit, guide groove and track citation form are the indent circle, and the space between their mutual crosspoints forms to roll with described rolling steel ball and cooperates; But, in basic design of the present invention, can do a lot of distortion, for example; the helical guide groove that described guide groove also can match with helical orbit, even their hand of spiral can be consistent; can be opposite, these variations be separated from design of the present invention and protection domain yet.
The present invention has simplified washing machine structure by above-mentioned solution, has reduced cost, has reduced power of motor, energy savings.And cancelled higher clutch and the clutch driving unit of fault rate, improved the washing machine reliability greatly.

Claims (6)

1, a kind of automatic washing machine includes motor, reducing gear, dehydration barrel and impeller and forms.Reducing gear is made of axle, power shaft and the change-speed gearing group that is configured in the hollow outer shaft in hollow outer shaft, the output, it is characterized in that at least one track respectively being set, between corresponding track, place a rolling steel ball at least in the outside, bottom of described hollow dehydrating shaft and/or the inboard of power shaft or axle sleeve.
2, automatic washing machine according to claim 1 is characterized in that described track is the track that end is arranged.
3, automatic washing machine according to claim 1 is characterized in that described corresponding track all is a helical orbit, and its hand of spiral is identical or opposite.
4, automatic washing machine according to claim 1 is characterized in that at least one in the described corresponding track is the line channel parallel with spiralling direction.
5, automatic washing machine according to claim 1 is characterized in that the motor that described motor stator, electric machine casing are formed connects by housing and reducing gear are coaxial, and the rotor two ends are provided with bearings on housing.
6, require any one described automatic washing machine according to aforesaid right, the citation form that it is characterized in that described helical orbit and guide groove, helical orbit and screw type guide groove is the indent circle, and the space between their mutual crosspoints forms to roll with described rolling steel ball and cooperates.
CNB001097326A 2000-07-03 2000-07-03 Full-automatic washer Expired - Fee Related CN1174136C (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CNB001097326A CN1174136C (en) 2000-07-03 2000-07-03 Full-automatic washer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CNB001097326A CN1174136C (en) 2000-07-03 2000-07-03 Full-automatic washer

Publications (2)

Publication Number Publication Date
CN1331359A true CN1331359A (en) 2002-01-16
CN1174136C CN1174136C (en) 2004-11-03

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Family Applications (1)

Application Number Title Priority Date Filing Date
CNB001097326A Expired - Fee Related CN1174136C (en) 2000-07-03 2000-07-03 Full-automatic washer

Country Status (1)

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CN (1) CN1174136C (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1847505B (en) * 2005-03-31 2010-04-07 刘登华 Jet washer
CN101478194B (en) * 2009-02-06 2012-01-25 洛阳轴研科技股份有限公司 Dual shaft structured high speed precise electric main shaft capable of performing rotation, linear reciprocating movement
CN104153158A (en) * 2014-07-31 2014-11-19 刘富春 Power transmission structure of pulsator washing machine

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1847505B (en) * 2005-03-31 2010-04-07 刘登华 Jet washer
CN101478194B (en) * 2009-02-06 2012-01-25 洛阳轴研科技股份有限公司 Dual shaft structured high speed precise electric main shaft capable of performing rotation, linear reciprocating movement
CN104153158A (en) * 2014-07-31 2014-11-19 刘富春 Power transmission structure of pulsator washing machine

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Publication number Publication date
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Granted publication date: 20041103

Termination date: 20120703