CN202707933U - Dual-shaft multilevel reducer - Google Patents
Dual-shaft multilevel reducer Download PDFInfo
- Publication number
- CN202707933U CN202707933U CN 201220380526 CN201220380526U CN202707933U CN 202707933 U CN202707933 U CN 202707933U CN 201220380526 CN201220380526 CN 201220380526 CN 201220380526 U CN201220380526 U CN 201220380526U CN 202707933 U CN202707933 U CN 202707933U
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- duplicate gear
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Abstract
The utility model discloses a dual-shaft multilevel reducer, comprising a box body, an input shaft and an output shaft, which are arranged on the box body in parallel; an input driving pinion is fixedly arranged on the input shaft, at least one input duplex gear is rotationally arranged on the input shaft; an output duplex gear is rotationally on the output shaft, and an output driven big gear is fixedly arranged on the output shaft; the number of the output duplex gears is equal to the number of the input duplex gears, the pinion of each output duplex gear is in transmission connection with the big gear of each input duplex gear in a meshed manner; the input driving pinion is in transmission connection with the big gear of each output duplex gear in a meshed manner, and the pinion of each input duplex gear is in transmission connection with the output driven big gear in a meshed manner. According to the dual-shaft multilevel reducer, the application range is very wide, the structure is compact, the size and weight are reduced, the technology is simple, so that a large amount of material, time, manpower and material resources are saved in the links of production and transportation, and further, the cost is reduced, and the effects of low carbon and energy conservation are realized.
Description
Technical field
The utility model belongs to a kind of mechanical transmission, relates in particular to a kind of twin shaft multi-stage speed-reducing machine.
Background technique
Speed reducer has various ways; Cycloidal planetary gear speed reducer, worm and worm gear speed reducer, planetary speed reducer, harmonic drive reduction, conical-cylindrical gear reducer, cylindrical gear reducer etc.Be to satisfy the transmission service condition of " power ", the user removes to select type according to purposes, certainly selects as far as possible small volume, the speed reducer that lightweight, the life-span is long, mechanical efficiency is high, more energy-conservation.
Common three grades of speed reducers on the design handbook are two-piece unit combinations, common three grades of speed reducers as depicted in figs. 1 and 2, comprise casing 1 and the case lid 3 that removably connects by bolt 2, junction plane between casing 1 and the casing 3 successively parallel rotation is provided with input shaft 4, the first jack shaft 5, the second jack shaft 6 and output shaft 7, input shaft 4 is provided with input driver pinion a, the first jack shaft 5 is provided with the first driven gearwheel b and the first driver pinion c, the second jack shaft 6 is provided with the second driven gearwheel d and the second driver pinion e, output shaft 7 is provided with the driven gearwheel f of output, input driver pinion a and the first driven gearwheel b are connected by meshing transmission, the first driver pinion c and the second driven gearwheel d are connected by meshing transmission, and the second driver pinion e and the driven gearwheel f of output are connected by meshing transmission.By three grades of transmissions, reach the purpose of gearing down.But described this structure has a lot of drawbacks; The stressed maximum of its afterbody transmission (engagement driving between the second driver pinion e and the driven gearwheel f of output), tangential force (arrow points among Fig. 1) acts on the bolt 2, and the bonding crack when overload operation between case lid 3 and the casing 1 tends to occur oil leakage phenomenon; The bearing (ball) cover 8 carrying helical teeth axial forces of casing 1 both sides (among Fig. 2 shown in the arrow); Casing 1 longer both sides intensity is more weak, and when the clockwise and anticlockwise alternative frequency was high, the bonding crack generation resiliently deformable between case lid 3 and the casing 1 caused leakage of oil.In order to prevent two-way alternation active force, the artificer is the quite abundant heaviness of casing 1 design, and both having wasted steel has increased cost, and is chain huge to a lot of equipment that speed reducer must be installed mounting base that also becomes again.
The model utility content
The utility model provides a kind of compact structure, little, the lightweight twin shaft multi-stage speed-reducing of volume machine in order to solve deficiency of the prior art.
For solving the problems of the technologies described above, the utility model adopts following technological scheme: twin shaft multi-stage speed-reducing machine, comprise casing, parallel rotation is located at input shaft and the output shaft on the casing, be fixed with input driver pinion and rotation on the described input shaft and be provided with at least one input duplicate gear, rotate on the output shaft and be provided with the output duplicate gear and be fixed with the driven gearwheel of output, the output duplicate gear equates with input duplicate gear number and the small gear of exporting duplicate gear is connected by meshing transmission with the gearwheel of inputting duplicate gear, the input driver pinion is connected by meshing transmission with the gearwheel of output duplicate gear, and the small gear of input duplicate gear is connected by meshing transmission with the driven gearwheel of output.
Described casing is made of vertically disposed two side box boards of intermediate frame and intermediate frame both sides, and input shaft and output shaft are automatically connected on two side box boards by bearing rotary, and described two side box boards outside is provided with bearing (ball) cover.
Described input shaft and the gear shaft structure that the input driver pinion is integrated are exported driven gearwheel key and are connected on the output shaft.
Adopt technique scheme, the input duplicate gear be connected duplicate gear and be connected with output shaft rotation with input shaft respectively by built-in bearing, realize the transmission of multistage different rotating speeds, input duplicate gear and output duplicate gear arrange respectively one, can realize three grades of decelerations; Arrange respectively two, can realize the Pyatyi deceleration; Arrange respectively three, can realize seven grades of decelerations; By parity of reasoning, and the increase along with input duplicate gear and output duplicate gear number can realize more multistage deceleration, makes speed ratio can reach 1:1000, or larger.
The utlity model has following characteristics and using value: 1. can be applicable to narrow space, need heavy duty, and be on the equipment that can't install of common speed reducer.2. can be applicable in the fields such as Aero-Space navigation and be starved of on the equipment of weight reduction.3. alternative super sized type speed reducer solves overweight can't the transportation, large-scale crane, the drawback that can't arrive, can't lift, for example be applied to large hydraulic engineering equipment, also less than planetary speed reducer volume, cost is also low, solves the hang-up of puzzling and hang for many years and do not separate in some field.4. alternative large speed ratio high pulling torque worm-gear speed reducer, (if worm reduction gear is the rotation high speed long time running that slides, worm screw can generate heat and grind burning), the utility model can not shut down long time running in 24 hours at a high speed and do not generated heat.5. if be inverted input shaft and output shaft, namely from the output shaft input power, the input shaft speedup can be applied on the wind-driven generator, and is higher than the mechanical efficiency of ordinary gear booster engine, the life-span is long, can increase generated energy.
The utility model application area is boundless, owing to compact structure, volume weight reduce, technique is simple and direct, can save lot of materials, time, human and material resources in a series of links such as production, transportation, makes it cost cutting, reaches the effect of low-carbon energy-saving.
Description of drawings
Fig. 1 is the structural representation of common three grades of speed reducers in the prior art;
Fig. 2 is A-A sectional view in the middle of Fig. 1;
Fig. 3 is structural representation of the present utility model;
Fig. 4 is B-B sectional view in the middle of Fig. 3.
Embodiment
As shown in Figure 3 and Figure 4, twin shaft multi-stage speed-reducing machine of the present utility model, comprise casing, parallel rotation is located at input shaft 4 and the output shaft 7 on the casing, be fixed with input driver pinion a and rotation on the input shaft 4 and be provided with at least one input duplicate gear 9, the present embodiment is an input duplicate gear 9, rotate on the output shaft 7 and be provided with output duplicate gear 10 and be fixed with the driven gearwheel f of output, output duplicate gear 10 equates with input duplicate gear 9 numbers and the small gear c that exports duplicate gear 10 is connected by meshing transmission with the gearwheel d that inputs duplicate gear 9, input driver pinion a and the gearwheel b of output duplicate gear 10 are connected by meshing transmission, and the small gear e of input duplicate gear 9 and the driven gearwheel f of output are connected by meshing transmission.Input duplicate gear 9 and output duplicate gear 10 are rotationally connected with input shaft 4 and output shaft 7 respectively by built-in bearing 15.Input shaft 4 and the gear shaft structure that input driver pinion a is integrated are exported driven gearwheel f key and are connected on the output shaft 7, and this structure is convenient to make and install.
Casing is made of vertically disposed two side box boards 12 of intermediate frame 11 and intermediate frame 11 both sides, and input shaft 4 and output shaft 7 are rotatably connected on two side box boards 12 by bearing 13, and two side box board 12 outsides are provided with the bearing (ball) cover 14 for shutoff bearing 13.
Casing of the present utility model is by the structural type of two side box boards 12 with intermediate frame 11 combinations, has following effect: 1. be convenient to install; 2. two side box boards 12 have absorbed the tangential force of gear, and side box board 12 is not subjected to axial force, can not cause the situation of box deformation leakage of oil; 3. gear does not have axial force, and it is so thick and heavy that casing just need not design.
Core part in the utility model---gear, under power, moment of torsion the same terms, if adopt spur gear or helical gear, also can realize the twin shaft multi-stage speed-reducing by combining form about common 1 grade of box body of speed reducer, volume energy narrows down to 1/2 of common speed reducer, and weight is 1/2 of common speed reducer; If adopt arc helix cylindrical gear (patent that the claimant of this patent has declared, the patent No. are ZL200920088714.7), volume is about 1/5 of common speed reducer, and weight is about 1/10 of common speed reducer, makes stock utilization reach ultimate attainment.
Because volume of the present utility model significantly reduces, therefore can not be by the standard mark model of common cylinder gear reduction unit,, fang bolt hole position high according to input power, speed ratio, centre distance, center, and the input output diameter of axle, specially made the series standard of twin shaft multi-stage speed-reducing machine: Wanyan Xueming's standard.Tens kilograms of little micro-reducers to related domain minimum, large to narrowing down to 180 tons heavy speed reducer about 18 tons, not only solve the hang-up of transportation and lifting, and saved a large amount of alloy steel products.
Claims (3)
1. twin shaft multi-stage speed-reducing machine, comprise casing, parallel rotation is located at input shaft and the output shaft on the casing, it is characterized in that: be fixed with input driver pinion and rotation on the described input shaft and be provided with at least one input duplicate gear, rotate on the output shaft and be provided with the output duplicate gear and be fixed with the driven gearwheel of output, the output duplicate gear equates with input duplicate gear number and the small gear of exporting duplicate gear is connected by meshing transmission with the gearwheel of inputting duplicate gear, the input driver pinion is connected by meshing transmission with the gearwheel of output duplicate gear, and the small gear of input duplicate gear is connected by meshing transmission with the driven gearwheel of output.
2. twin shaft multi-stage speed-reducing machine according to claim 1, it is characterized in that: described casing is made of vertically disposed two side box boards of intermediate frame and intermediate frame both sides, input shaft and output shaft are automatically connected on two side box boards by bearing rotary, and described two side box boards outside is provided with bearing (ball) cover.
3. twin shaft multi-stage speed-reducing machine according to claim 1 and 2 is characterized in that: described input shaft and the gear shaft structure that the input driver pinion is integrated, and export driven gearwheel key and be connected on the output shaft.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN 201220380526 CN202707933U (en) | 2012-08-02 | 2012-08-02 | Dual-shaft multilevel reducer |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN 201220380526 CN202707933U (en) | 2012-08-02 | 2012-08-02 | Dual-shaft multilevel reducer |
Publications (1)
Publication Number | Publication Date |
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CN202707933U true CN202707933U (en) | 2013-01-30 |
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Family Applications (1)
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CN 201220380526 Expired - Fee Related CN202707933U (en) | 2012-08-02 | 2012-08-02 | Dual-shaft multilevel reducer |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102797795A (en) * | 2012-08-02 | 2012-11-28 | 完颜学明 | Dual-shaft multistage speed reducer |
CN105113977A (en) * | 2015-07-09 | 2015-12-02 | 吴小杰 | External-motored external meshing four-shunt reduction unit for pile machinery |
-
2012
- 2012-08-02 CN CN 201220380526 patent/CN202707933U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102797795A (en) * | 2012-08-02 | 2012-11-28 | 完颜学明 | Dual-shaft multistage speed reducer |
CN105113977A (en) * | 2015-07-09 | 2015-12-02 | 吴小杰 | External-motored external meshing four-shunt reduction unit for pile machinery |
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Legal Events
Date | Code | Title | Description |
---|---|---|---|
C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20130130 Termination date: 20150802 |
|
EXPY | Termination of patent right or utility model |