CN107489749A - A kind of rotation stepless speed changing mechanism for non-colinear transmission - Google Patents
A kind of rotation stepless speed changing mechanism for non-colinear transmission Download PDFInfo
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- CN107489749A CN107489749A CN201710703250.5A CN201710703250A CN107489749A CN 107489749 A CN107489749 A CN 107489749A CN 201710703250 A CN201710703250 A CN 201710703250A CN 107489749 A CN107489749 A CN 107489749A
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- spherical
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- swingle
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F16—ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
- F16H—GEARING
- F16H15/00—Gearings for conveying rotary motion with variable gear ratio, or for reversing rotary motion, by friction between rotary members
- F16H15/02—Gearings for conveying rotary motion with variable gear ratio, or for reversing rotary motion, by friction between rotary members without members having orbital motion
- F16H15/04—Gearings providing a continuous range of gear ratios
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- General Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Friction Gearing (AREA)
Abstract
The invention belongs to gear technical field, disclose a kind of rotation stepless speed changing mechanism for non-colinear transmission, it includes gearbox body, spherical cavity wall, universal shaft sleeve, power transmission shaft, hydraulic cylinder, swingle, spherical partses, it is driven reel, spherical partses disk supports, rotary shaft etc., universal shaft sleeve is arranged on inside spherical cavity, input and output shaft axis can be made not conllinear, gear is set to be applied to the situation of input and output shaft non-colinear transmission gear shift, spherical partses and transmission reel frictional drive are used in the design, spherical partses centered on rotating shaft by being turned an angle come the contact surface for changing spherical partses outer surface with being driven reel, and different contact surface, distance is different radially of the axis of rotation apart from spherical partses for spherical partses contact surface, cause gearratio different, and because the consecutive variations of sphere, realize variable speed.Mechanism design is simple, because without using gear, the relatively conventional gear of weight mitigates significantly, has good market prospects.
Description
The application is entitled:It is a kind of for non-colinear transmission rotation stepless speed changing mechanism, the applying date be:2015 7
Month 10 days, Application No.:201510400661.8 application for a patent for invention divisional application.
Technical field
The invention belongs to gear technical field, more particularly, to a kind of rotation variable speed for non-colinear transmission
Mechanism.
Background technology
Gear is divided into two kinds of gear speed-changing and variable speed, and variable speed is because gearratio can be with the excellent of consecutive variations
Point gradually instead of gear speed-changing, the requirement to pto input shaft for current gear with fixed angle, for
Pto input shaft is unstable, in the case of having certain angle change, directly using meeting if traditional gear to variable-speed motor
Structure has large effect, or even the transmission parts of damage gear.Current solution method is, it is necessary to additionally add universal joint
To match the position of input shaft and output shaft and angle, certain complexity is implemented.In the design using spherical partses with
Reel frictional drive is driven, spherical partses change spherical partses outer surface and power transmission shaft by being turned an angle centered on rotating shaft
The contact surface of disk, and different contact surfaces, distance is different radially of the axis of rotation apart from spherical partses for spherical partses contact surface, causes to be driven
Than difference, and because the consecutive variations of sphere, realize variable speed.Mechanism design is simple, to input and output shaft axis
The precision of angle requirement is relatively low, and because mitigating significantly without using gear, the relatively conventional gear of weight, has good city
Field prospect.
The content of the invention
To solve the disadvantages described above of prior art, the present invention discloses a kind of rotation stepless speed changer for non-colinear transmission
Structure, it is realized using following technical scheme.
A kind of rotation stepless speed changing mechanism for non-colinear transmission, it is characterised in that it includes gearbox body, spherical cavity
Wall, universal shaft sleeve, power transmission shaft, rotating mechanism fix support, hydraulic cylinder, unilateral hinge, hinge fixed cover, swingle, spherical partses,
It is driven reel, bilateral hinge, swingle rotary sleeve, the support of spherical partses disk, spherical partses fixed cover, swingle retainer ring, rotation
Axle axle sleeve, rotary shaft, wherein spherical cavity wall, universal shaft sleeve, power transmission shaft, transmission reel are using gearbox body median plane as the plane of symmetry pair
Claim distribution;
For the structure of any side of the plane of symmetry, above-mentioned spherical cavity wall is hemispherical cavity wall, and two spherical cavity walls pass through respective
Anchor ring is provided with inside and outside the position at round mouth installed in the side plate of gearbox body on spherical cavity wall ring cross-section, two balls
The cylindrical of shape cavity wall and side plate round mouth is into almost spherical cavity;It is hollow circular cylinder in universal shaft sleeve, outer surface both ends are
The face of cylinder, interlude are sphere, and power transmission shaft is arranged in universal shaft sleeve inner cylinder face, universal shaft sleeve by interlude spherical outside surface with
Internal Spherical Surface, which coordinates, inside spherical cavity is arranged on inside spherical cavity;Power transmission shaft one terminates external equipment, and one end is provided with transmission and turned
Disk;Universal shaft sleeve be sphere can the universal slip in spherical cavity wall because this mechanism acts on, gear allows certain
Input shaft and output shaft angle wild effect, i.e. non-colinear phenomenon;
Above-mentioned disk support side is fixedly and coaxially connected with spherical partses fixed cover one end, and peace is fixed in disk support outer rim cylinder end face
Mounted in spherical partses inner surface, the spherical partses fixed cover other end is arranged at spherical partses inner surface circular hole;Swingle is arranged on spherical
In part fixed cover and disk supporting circular holes, swingle retainer ring is arranged on rotation shaft end and on the outside of spherical partses fixed cover;Rotation
Bull stick is placed in swingle rotary sleeve, and rotary shaft is fixed on swingle rotary sleeve side, and is installed in rotary sleeve, whirler
Structure is fixed support one end and is fixed on rotary sleeve side, and the other end is arranged on body side;Cut with scissors by bilateral hydraulic stem one end
Chain is arranged on body side, and in rotary sleeve in the position on the lower side of body side subpoint, the other end by unilateral hinge with
The end fixed hinge fixed cover connection of swingle;Above-mentioned rotating shaft axis need to pass through the spherical partses centre of sphere.Spherical partses disk supports
Form a revolving part with spherical partses fixed cover and spherical partses, rotated around rotation rod axis, the support of spherical partses disk play by
The effect that spherical partses are supported on swingle, spherical partses fixed cover have certain length, are risen in spherical partses rotation process
The mesh of one stable rotation, prevent spherical partses from occurring the phenomenon swung in rotation process;Swingle retainer ring is arranged on rotation
Shaft end and on the outside of spherical partses fixed cover, the effect for preventing that spherical partses from coming off from swingle one end of working;Hydraulic stem and rotation
Bull stick is moved and rotated in the plane that it is formed, and swingle rotates around rotary shaft.
Further improved as this technology, spherical cavity wall is easy to axle sleeve in ball with having lubricating system at universal shaft sleeve cooperation
Universal fine setting in shape cavity wall, lower the mechanical loss for sliding and rotating, it is allowed to which input and output shaft has certain low-angle deviation.
Further improved as this technology, transmission reel contacts friction surface with spherical partses using the high material of coefficient of friction
Material, and there is certain elasticity, using on the one hand to increase the contact of spherical partses and drive plate for elastomeric material is another
Aspect is in order to offset the gap of drive plate and spherical partses caused by pto input shaft angle change.When pto input shaft is non-
When collinearly degree is very big, transmission reel may depart from spherical partses contact surface, so the input and output shaft that this gear is allowed
Angular deviation very little, it is only capable of allowing a small amount of non-colinear degree.
Further improved as this technology, rotating mechanism is fixed support and formed for 90 degree of bendings twice, to ensure and rotate
Bar small gap, in speed change, spherical partses rotate with swingle, and when rotating, spherical partses edge may be consolidated with rotating mechanism
Fixed support interference, and rotating mechanism support and swingle be apart from smaller, the possibility of interference is smaller, so fixed in the design
Support needs 90 degree of bendings twice.
Further improved as this technology, unilateral hinge only has side journal stirrup, and fixing support side close to rotating mechanism does not have
There is journal stirrup, because fixed support and swingle gap very little, can only select unilateral journal stirrup.
Compared to traditional gear, in of the invention, universal shaft sleeve is arranged on inside spherical cavity, can make input
Output shaft axis is not conllinear, gear is applied to the situation of input and output shaft non-colinear transmission gear shift, is used in the design
Spherical partses change spherical partses outer surface with transmission reel frictional drive, spherical partses by being turned an angle centered on rotating shaft
Contact surface with being driven reel, and different contact surfaces, distance is different radially of the axis of rotation apart from spherical partses for spherical partses contact surface,
Cause gearratio different, and because the consecutive variations of sphere, realize variable speed.Mechanism design is simple, defeated to inputting
Shaft axis angle permissible accuracy is relatively low, and because mitigates significantly, have without using gear, the relatively conventional gear of weight
Good market prospects.
Brief description of the drawings
Fig. 1 is overall appearance figure of the present invention.
Fig. 2 is each block diagram inside the gear with side plate.
Fig. 3 is each component diagram inside the gear without side plate.
Fig. 4 is speed change spherical partses schematic diagram.
Fig. 5 is speed change spherical partses rotating mechanism schematic diagram.
Fig. 6 is rotating mechanism top view.
Fig. 7 is rotating mechanism side view.
Fig. 8 is the side plate figure of spherical chamber.
Fig. 9 is power transmission shaft schematic diagram.
Figure 10 is power transmission shaft universal shaft sleeve schematic diagram.
Figure 11 is rotating fixing machine schematic diagram.
Figure 12 is rotation executive item schematic diagram.
Figure 13 is the speed change example schematic of gear.
Label title in figure:1st, gearbox body, 2, spherical cavity wall, 3, universal shaft sleeve, 4, power transmission shaft, 5, rotating mechanism fixes
Support, 6, hydraulic cylinder, 7, unilateral hinge, 8, hinge fixed cover, 9, swingle, 10, spherical partses, 11, transmission reel, 12, bilateral
Hinge, 13, swingle rotary sleeve, 14, the support of spherical partses disk, 15, spherical partses fixed cover, 16, swingle retainer ring, 17, rotation
Rotating shaft axle sleeve, 18, rotary shaft, 19, journal stirrup.
Embodiment
As Figure 1-3, a kind of rotation stepless speed changing mechanism for non-colinear transmission, it is characterised in that it includes speed change
Casing, spherical cavity wall, universal shaft sleeve, power transmission shaft, rotating mechanism fix support, hydraulic cylinder, unilateral hinge, hinge fixed cover, rotation
Bull stick, spherical partses, transmission reel, bilateral hinge, swingle rotary sleeve, the support of spherical partses disk, spherical partses fixed cover, swingle
Retainer ring, rotary shaft axle sleeve, rotary shaft, wherein spherical cavity wall, universal shaft sleeve, power transmission shaft, transmission reel are with gearbox body center
Face is that the plane of symmetry is symmetrical.
As shown in Fig. 2,8,9,10, for the structure of any side of the plane of symmetry, above-mentioned spherical cavity wall is hemispherical cavity wall, two
The side plate that individual spherical cavity wall is arranged on gearbox body by anchor ring on respective spherical cavity wall ring cross-section is provided with round mouth
On inside and outside position, the cylindrical of two spherical cavity walls and side plate round mouth is into almost spherical cavity;In being in universal shaft sleeve
Hollow cylinder, outer surface both ends are the face of cylinder, and interlude is sphere, and power transmission shaft is arranged in universal shaft sleeve inner cylinder face, universal
Axle sleeve is coordinated by Internal Spherical Surface inside interlude spherical outside surface and spherical cavity to be arranged on inside spherical cavity;Power transmission shaft one terminates outer
Equipment, one end are provided with driving turntable;Universal shaft sleeve be sphere can the universal slip in spherical cavity wall because this mechanism
Effect, gear allow the angle wild effect of certain input shaft and output shaft, i.e. non-colinear phenomenon.
As shown in FIG. 4,5,6, 7, above-mentioned disk support side is fixedly and coaxially connected with spherical partses fixed cover one end, disk branch
Support outer rim cylinder end face is fixedly mounted on spherical partses inner surface, and the spherical partses fixed cover other end is arranged on spherical partses inner surface circular hole
Place;Swingle be arranged on spherical partses fixed cover and disk supporting circular holes in, swingle retainer ring be arranged on rotation shaft end and
On the outside of spherical partses fixed cover;Swingle is placed in swingle rotary sleeve, and as shown in figure 12, rotary shaft is fixed on swingle rotary sleeve
Side, and be installed in rotary sleeve, rotating mechanism is fixed support one end and is fixed on rotary sleeve side, and the other end is arranged on
Body side;Hydraulic stem one end is arranged on body side by bilateral hinge, and in rotary sleeve in body side subpoint
Position on the lower side, the other end are connected by unilateral hinge with the end fixed hinge fixed cover of swingle;Above-mentioned rotating shaft axis need
By the spherical partses centre of sphere.Spherical partses disk supports and spherical partses fixed cover forms a revolving part with spherical partses, around swingle
Axis rotates, and the support of spherical partses disk is played a part of supporting to spherical partses on swingle, and spherical partses fixed cover has certain
Length, the mesh of a stable rotation is played in spherical partses rotation process, prevents spherical partses from being swung in rotation process
Phenomenon;Swingle retainer ring is arranged on rotation shaft end and on the outside of spherical partses fixed cover, and working prevents spherical partses from rotation
The effect that bull stick one end comes off;Hydraulic stem is moved and rotated in the plane that it is formed with swingle, and swingle surrounds rotary shaft
Rotate.
Spherical cavity wall is easy to axle sleeve universal fine setting in spherical cavity wall, lowered with having lubricating system at universal shaft sleeve cooperation
Slide the mechanical loss rotated, it is allowed to which input and output shaft has certain low-angle deviation.
Transmission reel contacts friction surface with spherical partses using the high material of coefficient of friction, and has certain elasticity, bullet
Property material using on the one hand in order to increase the contact of spherical partses and drive plate, on the other hand in order to offset input shaft output
The gap of drive plate and spherical partses caused by axle angle change.When pto input shaft non-colinear degree is very big, reel is driven
It may depart from spherical partses contact surface, so the input and output shaft angular deviation very little that this gear is allowed, is only capable of allowing
A small amount of non-colinear degree.
As shown in figure 11, rotating mechanism is fixed support and formed for 90 degree bendings twice, to ensure and swingle small gap,
In speed change, spherical partses rotate with swingle, and when rotating, spherical partses edge may fix support interference with rotating mechanism,
And rotating mechanism support with swingle apart from smaller, the possibility of interference is smaller, so fixed support needs are twice in the design
90 degree of bendings.
As shown in fig. 6, unilateral hinge only has side journal stirrup, fixing support side close to rotating mechanism does not have journal stirrup, because
Fixed support and swingle gap very little, so unilateral journal stirrup can only be selected.
As shown in Fig. 2 in the present invention, universal shaft sleeve is arranged on inside spherical cavity, can make input and output shaft axis
It is not conllinear, gear is applied to the situation of input and output shaft non-colinear transmission gear shift, spherical partses and biography are used in the design
Moving axis disk frictional drive, spherical partses change spherical partses outer surface and transmission reel by being turned an angle centered on rotating shaft
Contact surface, and different contact surface, distance is different radially of the axis of rotation apart from spherical partses for spherical partses contact surface, causes gearratio
Difference, and because the consecutive variations of sphere, realize variable speed.
As shown in figure 13, it is gear speed change example, a, b are two extreme positions of spherical partses, as shown in a, in hydraulic pressure
Under bar telescopic action, on the one hand centre of sphere part is overall to rotate to an angle around rotary shaft, on the other hand rotate and be used for around swingle
It is driven, the gearratio of two power transmission shafts can be represented with the spherical radial direction cord length ratio in figure, at this moment the rotating speed of left side input shaft
It is greater than the rotating speed of the right output shaft, when hydraulic stem shortens, spherical partses rotate clockwise, in rotation process, gearratio change,
As shown in b, when reaching this position, gearratio is that 1 liang of rotating speed of transmission shaft is identical;The rotating speed of this gear left side input shaft is big
In the rotating speed of the output shaft equal to the right, that is, now gear is reducing gear, if desired speedup then input shaft with it is defeated
Shaft is exchanged.
Claims (4)
1. it is a kind of for non-colinear transmission rotation stepless speed changing mechanism, it is characterised in that it include gearbox body, spherical cavity wall,
Universal shaft sleeve, power transmission shaft, rotating mechanism fix support, hydraulic cylinder, unilateral hinge, hinge fixed cover, swingle, spherical partses, biography
Moving axis disk, bilateral hinge, swingle rotary sleeve, the support of spherical partses disk, spherical partses fixed cover, swingle retainer ring, rotary shaft
Axle sleeve, rotary shaft, wherein spherical cavity wall, universal shaft sleeve, power transmission shaft, transmission reel are paired as the plane of symmetry using gearbox body median plane
It is symmetrical;
For the structure of any side of the plane of symmetry, above-mentioned spherical cavity wall is hemispherical cavity wall, and two spherical cavity walls pass through respective
Anchor ring is provided with inside and outside the position at round mouth installed in the side plate of gearbox body on spherical cavity wall ring cross-section, two balls
The cylindrical of shape cavity wall and side plate round mouth is into almost spherical cavity;It is hollow circular cylinder in universal shaft sleeve, outer surface both ends are
The face of cylinder, interlude are sphere, and power transmission shaft is arranged in universal shaft sleeve inner cylinder face, universal shaft sleeve by interlude spherical outside surface with
Internal Spherical Surface, which coordinates, inside spherical cavity is arranged on inside spherical cavity;Power transmission shaft one terminates external equipment, and one end is provided with transmission and turned
Disk;
Above-mentioned disk support side is fixedly and coaxially connected with spherical partses fixed cover one end, and peace is fixed in disk support outer rim cylinder end face
Mounted in spherical partses inner surface, the spherical partses fixed cover other end is arranged at spherical partses inner surface circular hole;Swingle is arranged on spherical
In part fixed cover and disk supporting circular holes, swingle retainer ring is arranged on rotation shaft end and on the outside of spherical partses fixed cover;Rotation
Bull stick is placed in swingle rotary sleeve, and rotary shaft is fixed on swingle rotary sleeve side, and is installed in rotary sleeve, whirler
Structure is fixed support one end and is fixed on rotary sleeve side, and the other end is arranged on body side;Cut with scissors by bilateral hydraulic stem one end
Chain is arranged on body side, and in rotary sleeve in the position on the lower side of body side subpoint, the other end by unilateral hinge with
The end fixed hinge fixed cover connection of swingle;Above-mentioned rotating shaft axis need to pass through the spherical partses centre of sphere;
The spherical cavity wall at universal shaft sleeve cooperation with having lubricating oil.
The rotating mechanism, which fixes support, needs 90 degree of bending shapings twice.
2. a kind of rotation stepless speed changing mechanism for non-colinear transmission according to claim 1, it is characterised in that described
Transmission reel, which contacts friction surface with spherical partses, need to have certain elasticity.
3. a kind of rotation stepless speed changing mechanism for non-colinear transmission according to claim 1 or claim 2, it is special
Sign is that the unilateral hinge only has side journal stirrup, and fixing support side close to rotating mechanism does not have journal stirrup.
4. it is a kind of for non-colinear transmission rotation stepless speed changing mechanism, it is characterised in that it include gearbox body, spherical cavity wall,
Universal shaft sleeve, power transmission shaft, rotating mechanism fix support, hydraulic cylinder, unilateral hinge, hinge fixed cover, swingle, spherical partses, biography
Moving axis disk, bilateral hinge, swingle rotary sleeve, the support of spherical partses disk, spherical partses fixed cover, swingle retainer ring, rotary shaft
Axle sleeve, rotary shaft, wherein spherical cavity wall, universal shaft sleeve, power transmission shaft, transmission reel are paired as the plane of symmetry using gearbox body median plane
It is symmetrical;
For the structure of any side of the plane of symmetry, above-mentioned spherical cavity wall is hemispherical cavity wall, and two spherical cavity walls pass through respective
Anchor ring is provided with inside and outside the position at round mouth installed in the side plate of gearbox body on spherical cavity wall ring cross-section, two balls
The cylindrical of shape cavity wall and side plate round mouth is into almost spherical cavity;It is hollow circular cylinder in universal shaft sleeve, outer surface both ends are
The face of cylinder, interlude are sphere, and power transmission shaft is arranged in universal shaft sleeve inner cylinder face, universal shaft sleeve by interlude spherical outside surface with
Internal Spherical Surface, which coordinates, inside spherical cavity is arranged on inside spherical cavity;Power transmission shaft one terminates external equipment, and one end is provided with transmission and turned
Disk;
Above-mentioned disk support side is fixedly and coaxially connected with spherical partses fixed cover one end, and peace is fixed in disk support outer rim cylinder end face
Mounted in spherical partses inner surface, the spherical partses fixed cover other end is arranged at spherical partses inner surface circular hole;Swingle is arranged on spherical
In part fixed cover and disk supporting circular holes, swingle retainer ring is arranged on rotation shaft end and on the outside of spherical partses fixed cover;Rotation
Bull stick is placed in swingle rotary sleeve, and rotary shaft is fixed on swingle rotary sleeve side, and is installed in rotary sleeve, whirler
Structure is fixed support one end and is fixed on rotary sleeve side, and the other end is arranged on body side;Cut with scissors by bilateral hydraulic stem one end
Chain is arranged on body side, and in rotary sleeve in the position on the lower side of body side subpoint, the other end by unilateral hinge with
The end fixed hinge fixed cover connection of swingle;Above-mentioned rotating shaft axis need to pass through the spherical partses centre of sphere;
The spherical cavity wall at universal shaft sleeve cooperation with having lubricating oil;
The unilateral hinge only has side journal stirrup, and fixing support side close to rotating mechanism does not have journal stirrup.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201710703250.5A CN107489749A (en) | 2015-07-10 | 2015-07-10 | A kind of rotation stepless speed changing mechanism for non-colinear transmission |
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201710703250.5A CN107489749A (en) | 2015-07-10 | 2015-07-10 | A kind of rotation stepless speed changing mechanism for non-colinear transmission |
CN201510400661.8A CN105003610B (en) | 2015-07-10 | 2015-07-10 | A kind of rotation stepless speed changing mechanism suitable for non-colinear transmission |
Related Parent Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201510400661.8A Division CN105003610B (en) | 2015-07-10 | 2015-07-10 | A kind of rotation stepless speed changing mechanism suitable for non-colinear transmission |
Publications (1)
Publication Number | Publication Date |
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CN107489749A true CN107489749A (en) | 2017-12-19 |
Family
ID=54376404
Family Applications (4)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201710703266.6A Withdrawn CN107327549A (en) | 2015-07-10 | 2015-07-10 | The rotation stepless speed changing mechanism being driven suitable for non-colinear |
CN201710703250.5A Withdrawn CN107489749A (en) | 2015-07-10 | 2015-07-10 | A kind of rotation stepless speed changing mechanism for non-colinear transmission |
CN201510400661.8A Active CN105003610B (en) | 2015-07-10 | 2015-07-10 | A kind of rotation stepless speed changing mechanism suitable for non-colinear transmission |
CN201710703959.5A Withdrawn CN107504141A (en) | 2015-07-10 | 2015-07-10 | A kind of rotation stepless speed changing mechanism suitable for non-colinear transmission |
Family Applications Before (1)
Application Number | Title | Priority Date | Filing Date |
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CN201710703266.6A Withdrawn CN107327549A (en) | 2015-07-10 | 2015-07-10 | The rotation stepless speed changing mechanism being driven suitable for non-colinear |
Family Applications After (2)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201510400661.8A Active CN105003610B (en) | 2015-07-10 | 2015-07-10 | A kind of rotation stepless speed changing mechanism suitable for non-colinear transmission |
CN201710703959.5A Withdrawn CN107504141A (en) | 2015-07-10 | 2015-07-10 | A kind of rotation stepless speed changing mechanism suitable for non-colinear transmission |
Country Status (1)
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CN (4) | CN107327549A (en) |
Family Cites Families (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US3626453A (en) * | 1970-03-02 | 1971-12-07 | Trevor J Riley | Riljack power transducer |
US4183253A (en) * | 1977-02-07 | 1980-01-15 | Domenic Borello | Dual surface angular power transfer wheel traction nipping device |
JPH04131547A (en) * | 1990-09-19 | 1992-05-06 | Hanix Ind Co Ltd | Differential gear |
DE102006016955A1 (en) * | 2006-04-11 | 2007-10-25 | Schürmann, Erich, Dr. | Friction gear used as a continuously variable transmission comprises a drive shaft with a concave universal ball joint and a driven shaft with a universal ball joint |
CN102094946A (en) * | 2011-02-28 | 2011-06-15 | 李凯 | Continuously variable transmission of spherical wheel |
-
2015
- 2015-07-10 CN CN201710703266.6A patent/CN107327549A/en not_active Withdrawn
- 2015-07-10 CN CN201710703250.5A patent/CN107489749A/en not_active Withdrawn
- 2015-07-10 CN CN201510400661.8A patent/CN105003610B/en active Active
- 2015-07-10 CN CN201710703959.5A patent/CN107504141A/en not_active Withdrawn
Also Published As
Publication number | Publication date |
---|---|
CN105003610A (en) | 2015-10-28 |
CN107504141A (en) | 2017-12-22 |
CN105003610B (en) | 2017-12-08 |
CN107327549A (en) | 2017-11-07 |
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Application publication date: 20171219 |