CN101701621B - Boosting lever and gear combination mechanism - Google Patents
Boosting lever and gear combination mechanism Download PDFInfo
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- CN101701621B CN101701621B CN2009101546163A CN200910154616A CN101701621B CN 101701621 B CN101701621 B CN 101701621B CN 2009101546163 A CN2009101546163 A CN 2009101546163A CN 200910154616 A CN200910154616 A CN 200910154616A CN 101701621 B CN101701621 B CN 101701621B
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- boosting
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- lever
- combination structure
- link arm
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Abstract
The invention relates to a boosting lever and gear combination structure which belongs to the technical field of transmission machines. The boosting lever and gear combination structure comprises an input shaft and an output shaft, wherein the input shaft and the output shaft are arranged at a gear box casing, the input shaft is linked with the output shaft by boosting levers, a stage tooth rotating shaft, a speed regulation driving wheel and a speed regulation driven wheel which are sequentially arranged, the boosting levers are arranged at the gear box casing in a matching way by fulcrum shafts on the boosting levers, one end of a long rod of the boosting levers is connected to the input shaft, one end of a short rod is connected to a connection arm wheel of a unidirectional movable tooth arranged on the stage tooth rotating shaft in a matching way, the stage tooth rotating shaft and the output shaft are respectively connected with the speed regulation driving wheel and the speed regulation driven wheel in a matching way, and the speed regulation driving wheel and the speed regulation driven wheel are engaged for transmission. The invention audaciously and skillfully combines levers and gear transmission together, utilizes a group of boosting levers which are arranged side by side to work alternately by turns and enables the transmission of each time to push the stage tooth rotating shaft by maximum force after being reinforced; by the structure with reasonable design, higher machine utilization rate is realized, the mechanical wear is lowered, and energy resources are saved.
Description
Technical field
The invention belongs to the gearing technical field, be specially a kind of boosting lever Gear combination structure.
Background technique
All advocating energy-saving and environmental protection, reduction of discharging all over the world at present, especially the energy is more and more in short supply, and the various countries scientist is being the energy-saving and emission-reduction effort.In the existing technology, there is the technology of various machineries, gear-box quite ripe, and is widely used on industrial and mining enterprise, vehicle and the steamer.Have speed regulation gear case and machinery in its main structure, thereby reach the purpose that is applicable to all kinds of machinery supports.But above-described gear-box does not all reach the purpose that cuts down the consumption of energy because the mechanical loss that gear transmission produces is higher.
Summary of the invention
To the problems referred to above that exist in the existing technology, the object of the present invention is to provide a kind of boosting lever Gear combination structure, its reasonable in design can effectively improve mechanical transmission efficiency, to reach the purpose that cuts down the consumption of energy.
Described a kind of boosting lever Gear combination structure; Comprise the input shaft, the output shaft that are arranged at gearhousing; It is characterized in that afterburning lever, level tooth rotatingshaft, speed governing driving wheel, the speed governing follower of said input shaft through setting gradually, with the output shaft interlock, said afterburning lever is equipped with in gearhousing through the fulcrum shaft on it; Its stock one end is connected to input shaft; Quarter butt one end is connected to the unidirectional movable tooth link arm wheel that is equipped with on grade tooth rotatingshaft, said level tooth rotatingshaft, output shaft be connected respectively speed governing driving wheel, speed governing follower, above-mentioned speed governing driving wheel, speed governing follower engagement driving.
Described a kind of boosting lever Gear combination structure is characterized in that cooperating on the said input shaft afterburning lever to be provided with the drive bar, and stock one end of afterburning lever cooperates the drive bar to be provided with sliding-groove.
Described a kind of boosting lever Gear combination structure is characterized in that the link arm interlock of stock one end of said unidirectional movable tooth link arm wheel, afterburning lever through hinged setting.
Described a kind of boosting lever Gear combination structure; It is characterized in that said unidirectional movable tooth link arm wheel is socketed on a grade tooth rotatingshaft through the link arm wheel bearing; And above-mentioned unidirectional movable tooth link arm is taken turns and is equipped with movable tooth, and this activity tooth is through the spring of connection setting in the unidirectional movable tooth link arm wheel and the level tooth interlock on the level tooth rotatingshaft.
Described a kind of boosting lever Gear combination structure; It is characterized in that said afterburning lever, unidirectional movable tooth link arm wheel are equipped with one group; The said input shaft one group of rolling disc that is connected; Connect between the two adjacent rotated dishes drive bar is set; The scattering of described one group of drive bar is distributed in input shaft, and stock one end of said one group of afterburning lever touches through the corresponding drive masthead of the sliding-groove on it and its and cooperates, and said one group of unidirectional movable tooth link arm wheel engage sleeves is connected in one group of level teeth groove of grade tooth rotatingshaft relative set.
Described a kind of boosting lever Gear combination structure is characterized in that described one group of afterburning lever, unidirectional movable tooth link arm wheel at least all are provided with three.
Described a kind of boosting lever Gear combination structure is characterized in that said afterburning lever is a duck shape lever.
Described a kind of boosting lever Gear combination structure is characterized in that this boosting lever Gear combination structure can be provided with one group of combination and use.
Described a kind of boosting lever Gear combination structure is characterized in that the laterally combination use side by side of this boosting lever Gear combination structure.
Described a kind of boosting lever Gear combination structure is characterized in that the vertical vertical setting of types combination of this boosting lever Gear combination structure use.
Boosting lever Gear combination structure of the present invention; Lever and gear transmission are courageously combined cleverly; Utilize one group of afterburning lever that is arranged side by side, the exchange work in turn of unidirectional movable tooth link arm wheel on the one hand; Make each transmission all promote level tooth rotatingshaft,, reduce mechanical loss to realize higher operation rate of machinery with the maximum, force after strengthening; On the other hand for make its output slewing rate reach required, be equipped with the master and slave speed regulation gear of engagement driving again, not only realized reinforcement, reach energy-saving effect, make output shaft have required rotating speed again, have easy to use, the advantage that applicability is wide.
Description of drawings
Fig. 1 is a structural representation of the present invention;
Fig. 2 is a side-looking structural representation of the present invention;
Fig. 3 is along the sectional structure schematic representation of A-A among Fig. 1;
Fig. 4 is along the sectional structure schematic representation of B-B among Fig. 1;
Fig. 5 is along the sectional structure schematic representation of C-C among Fig. 1;
Fig. 6 is along the sectional structure schematic representation of D-D among Fig. 1;
Fig. 7 is that several kinds of application combination of the present invention are arranged schematic representation;
Fig. 8 is applied to the principle schematic of electric motor car for the present invention;
Fig. 9 is the structural representation of another embodiment of the present invention;
Among the figure: 1-gearhousing, 2-sliding-groove, 3-input shaft, 3a-drive bar, 3b-rolling disc, 4-fulcrum shaft, 5-level tooth rotatingshaft, 6-output shaft, the afterburning lever of 7-, the unidirectional movable tooth link arm wheel of 8-, 9-speed governing driving wheel, 10-speed governing follower, 11-bearing, 12-link arm wheel bearing, 13-link arm, 14-spring, the movable tooth of 15-, 16-boosting lever Gear combination structure.
Embodiment
Below in conjunction with Figure of description the present invention is described further.
Like Fig. 1, shown in Figure 2; This boosting lever Gear combination structure; Comprise the input shaft 3, the output shaft 6 that are arranged at gearhousing 1, afterburning lever 7, level tooth rotatingshaft 5, speed governing driving wheel 9, the speed governing follower 10 of said input shaft 3 through setting gradually is with output shaft 6 interlocks; Said afterburning lever 7 is a duck shape lever; Be equipped with in gearhousing 1 through the fulcrum shaft on it 4, its stock one end is connected to input shaft 3 through sliding-groove 2, and quarter butt one end is connected to the unidirectional movable tooth link arm wheel 8 that is equipped with on grade tooth rotatingshaft 5 through the link arm 13 of hinged setting; Said level tooth rotatingshaft 5, output shaft 6 be connected respectively speed governing driving wheel 9, speed governing follower 10, above-mentioned speed governing driving wheel 9, speed governing follower 10 engagement driving.
Like Fig. 1, Fig. 2, shown in Figure 3; Under the effect of power, drive input shaft 3 rotations and swing up and down tortuous afterburning lever 7; Make an end top of tortuous afterburning lever 7 quarter butts drive link arm 13, rotate thereby promote unidirectional movable tooth link arm wheel 8, and make 5 rotations of grade tooth rotatingshaft.Because speed governing driving wheel 9, speed governing follower 10 that output terminal is provided with according to the needs of speed governing, through regulating the diameter of two gears, change rotating ratio, can make output shaft 6 have required rotating speed.
Like Fig. 1, Fig. 3, shown in Figure 5; Said input shaft 3 is installed on gearhousing 1 through bearing 11; One group of rolling disc 3b is connected on it; Connection is provided with and drives bar 3a between the two adjacent rotated dish 3b, and described one group of drive bar 3a scattering is distributed in input shaft 3, and stock one end of said afterburning lever 7 contacts through the corresponding drive bar of the sliding-groove on it 2 and its 3a and cooperates.
Like Fig. 2, shown in Figure 4; Unidirectional movable tooth link arm wheel 8 is socketed on a grade tooth rotatingshaft 5 through link arm wheel bearing 12; And above-mentioned unidirectional movable tooth link arm is taken turns in 8 and is equipped with a plurality of movable teeth 15 as required, and this activity tooth 15 is through the spring 14 of connection setting in the unidirectional movable tooth link arm wheel 8 and the level tooth interlock on the level tooth rotatingshaft 5.The afterburning lever 7 of described complications swings up and down under the effect that input shaft 3 drives; Drive link arm 13 and unidirectional movable tooth link arm wheel 8 simultaneously; Unidirectional movable tooth link arm is taken turns 8 utilization activity teeth, 15 an interlocks promotion level tooth rotatingshaft 5 and is rotated to a direction with speed governing master gear 9, and interlock simultaneously drives exports speed governing from gear 10, output shaft 6 rotations.
Like Fig. 1, Fig. 2, Fig. 4, shown in Figure 6; Said afterburning lever 7, unidirectional movable tooth link arm wheel 8 have been equipped with one group; The position of fulcrum shaft 4 is set according to afterburning multiple on the said afterburning lever 7; One end of afterburning lever 7 quarter butts connects unidirectional movable tooth link arm wheel 8 through connecting link arm 13, and level tooth rotatingshaft 5 is arranged according to the required number of designing requirement unidirectional movable tooth link arm wheel 8 is installed., afterburning lever 7 drives one of them the unidirectional movable link arm wheel 8 that is arranged on grade tooth rotatingshaft 5 when swinging; Utilization activity tooth 15 interlocks promotion level tooth rotatingshaft 5 and speed governing master gear 9 are when a direction rotation; Movable tooth 15 in several in addition unidirectional movable tooth link arm wheels 8 is thrown off with the level tooth on the level tooth rotatingshaft 5; Make the interlock in turn that cooperatively interacts of the unidirectional movable tooth link arm wheel 8 of arrangement promote a level tooth rotatingshaft 5 and a speed regulation gear and an output shaft 6; Accomplish output shaft 6 motion of rotation continuously in the same direction as all the time, make it drive required machinery.
Among the present invention, stressedly when making input shaft (3) drive afterburning lever (7) evenly afterburning lever design is the afterburning lever of duck shape, more effective to guarantee power running.In addition, the size of an end sliding-groove 2 of tortuous afterburning lever 7 stocks will design according to the diameter that input shaft 3 rotates a circle, can swinging up and down continuously under the drive of input shaft 3 to guarantee afterburning lever 7.Input bent axle 3 rotates a circle and must satisfy the needs that unidirectional movable tooth link arm wheel 8 and movable tooth 15 promote level tooth rotatingshafts 5, can accomplish continuous rotation with bonding to movable tooth link arm wheel 8, a level tooth rotatingshaft 5.According to actual needs, said afterburning lever (7) and unidirectional interlock activity tooth link arm wheel (8) arrange that the road number need design 3 roads or more than 3 roads, to guarantee that mutually exchange in turn promotes a level tooth rotatingshaft (3) and rotates continuously to a direction.Among the embodiment, according to the needs of product, arranging the best road number of design is 5.
As shown in Figure 9, speed governing master gear of the present invention 9, speed governing also can be mounted on the medium position of total from gear 10, can keep the balance of entire product preferably, make it stable.
The present invention is through for many years design studies; Lever and gear transmission are courageously combined cleverly; Utilize one group of afterburning lever 7 that is arranged side by side, unidirectional movable tooth link arm wheel 8 exchange work in turn on the one hand, promote level tooth rotatingshaft 5 simultaneously, make each transmission all promote level tooth rotatingshaft 5 with the maximum, force after strengthening to a direction rotation; To realize higher operation rate of machinery, reduce mechanical loss; On the other hand for making its output slewing rate reach required; The speed governing master gear 9, speed governing that have been equipped with engagement driving are again accomplished the whole linkage structure of boosting lever gear from gear 10, have not only realized reinforcement; Reach energy-saving effect; Make output shaft 6 have required rotating speed again, have easy to use, the advantage that applicability is wide.
As shown in Figure 7, this boosting lever Gear combination structure can be provided with one group of combination and use, and according to space requirement, both can laterally make up use side by side, and also vertically the vertical setting of types combination is used.
As shown in Figure 8, boosting lever Gear combination structure of the present invention can be applicable to electric motor car; Not only can design between motor and wheel; The energy of generator loss is reduced, also can be oppositely and the wheel interlock, there is the situation realization of other power running to generate electricity at wheel; The energy saving of script loss is got off to the electric motor car utilization, to reach the purpose of energy saving.The present invention also can be widely used in transmissions such as all kinds of machineries, vehicle, steamer, aviation in addition, has economic benefit and social benefit widely.
Claims (8)
1. boosting lever Gear combination structure; Comprise the input shaft (3), the output shaft (6) that are arranged at gearhousing (1); It is characterized in that afterburning lever (7), level tooth rotatingshaft (5), speed governing driving wheel (9), the speed governing follower (10) of said input shaft (3) through setting gradually; Link with output shaft (6); Said afterburning lever (7) is equipped with in gearhousing (1) through the fulcrum shaft on it (4); Its stock one end is connected to input shaft (3) through sliding-groove (2); Quarter butt one end is connected to the unidirectional movable tooth link arm wheel (8) that is equipped with on grade tooth rotatingshaft (5) through the link arm (13) of hinged setting; Unidirectional movable tooth link arm wheel (8) is socketed on a grade tooth rotatingshaft (5) through link arm wheel bearing (12), and is provided with a plurality of movable teeth (15) in the unidirectional movable tooth link arm wheel (8), and this activity tooth (15) is through connecting grade tooth interlock on the spring (14) that is provided with and grade tooth rotatingshaft (5) in the unidirectional movable tooth link arm wheel (8); Said level tooth rotatingshaft (5), output shaft (6) be connected respectively speed governing driving wheel (9), speed governing follower (10), above-mentioned speed governing driving wheel (9), speed governing follower (10) engagement driving.
2. a kind of boosting lever Gear combination structure as claimed in claim 1; It is characterized in that said input shaft (3) upward cooperates afterburning lever (7) to be provided with and drives bar (3a), stock one end of afterburning lever (7) cooperates drive bar (3a) to be provided with sliding-groove (2).
3. a kind of boosting lever Gear combination structure as claimed in claim 1; It is characterized in that said afterburning lever (7), unidirectional movable tooth link arm wheel (8) are equipped with one group; Said input shaft (3) the one group of rolling disc (3b) that is connected; Connect between the two adjacent rotated dishes (3b) to be provided with and drive bar (3a); The scattering of one group of drive bar (3a) is distributed in input shaft (3), and stock one end of one group of afterburning lever (7) contacts through the corresponding drive bar of the sliding-groove on it (2) and its (3a) and cooperates, and said one group of unidirectional movable tooth link arm wheel (8) engage sleeves is connected in grade one group of level teeth groove of tooth rotatingshaft (5) relative set.
4. a kind of boosting lever Gear combination structure as claimed in claim 1 is characterized in that said afterburning lever (7) is a duck shape lever.
5. a kind of boosting lever Gear combination structure as claimed in claim 1 is characterized in that this boosting lever Gear combination structure can be provided with one group of combination and use.
6. a kind of boosting lever Gear combination structure as claimed in claim 3 is characterized in that described one group of afterburning lever (7), unidirectional movable tooth link arm wheel (8) at least all are provided with three.
7. a kind of boosting lever Gear combination structure as claimed in claim 5 is characterized in that the laterally combination use side by side of this boosting lever Gear combination structure.
8. a kind of boosting lever Gear combination structure as claimed in claim 5 is characterized in that the vertical vertical setting of types combination of this boosting lever Gear combination structure use.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN2009101546163A CN101701621B (en) | 2009-11-19 | 2009-11-19 | Boosting lever and gear combination mechanism |
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Application Number | Priority Date | Filing Date | Title |
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CN2009101546163A CN101701621B (en) | 2009-11-19 | 2009-11-19 | Boosting lever and gear combination mechanism |
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CN101701621A CN101701621A (en) | 2010-05-05 |
CN101701621B true CN101701621B (en) | 2012-07-25 |
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CN2009101546163A Expired - Fee Related CN101701621B (en) | 2009-11-19 | 2009-11-19 | Boosting lever and gear combination mechanism |
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Families Citing this family (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102102750B (en) * | 2011-02-21 | 2014-02-19 | 陈周林 | Combined structure with increased lever driving force |
CN102966713A (en) * | 2012-08-07 | 2013-03-13 | 张伟 | Conversion device for changing one round into multiple rounds |
CN109802519B (en) * | 2019-03-13 | 2023-04-25 | 文定新 | Lever engine |
CN113404834A (en) * | 2021-07-23 | 2021-09-17 | 代绍华 | Force increasing machine |
Citations (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US4188831A (en) * | 1978-05-30 | 1980-02-19 | Ahmad Amjadi | Automatic transmission |
CN1975206A (en) * | 2006-12-14 | 2007-06-06 | 吴应昌 | Lever booster |
CN201297364Y (en) * | 2008-08-13 | 2009-08-26 | 陈效法 | Labor-saving transmission mechanism |
CN101539192A (en) * | 2008-12-05 | 2009-09-23 | 田雷 | Non-impact lever stepless speed change mechanism |
CN201561106U (en) * | 2009-11-19 | 2010-08-25 | 陈周林 | Reinforcement lever gear composite structure |
-
2009
- 2009-11-19 CN CN2009101546163A patent/CN101701621B/en not_active Expired - Fee Related
Patent Citations (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US4188831A (en) * | 1978-05-30 | 1980-02-19 | Ahmad Amjadi | Automatic transmission |
CN1975206A (en) * | 2006-12-14 | 2007-06-06 | 吴应昌 | Lever booster |
CN201297364Y (en) * | 2008-08-13 | 2009-08-26 | 陈效法 | Labor-saving transmission mechanism |
CN101539192A (en) * | 2008-12-05 | 2009-09-23 | 田雷 | Non-impact lever stepless speed change mechanism |
CN201561106U (en) * | 2009-11-19 | 2010-08-25 | 陈周林 | Reinforcement lever gear composite structure |
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CN101701621A (en) | 2010-05-05 |
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