CN201526622U - High-power mechanical-electron hydraulic compound soft-start stepless speed regulator - Google Patents

High-power mechanical-electron hydraulic compound soft-start stepless speed regulator Download PDF

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Publication number
CN201526622U
CN201526622U CN2009202447620U CN200920244762U CN201526622U CN 201526622 U CN201526622 U CN 201526622U CN 2009202447620 U CN2009202447620 U CN 2009202447620U CN 200920244762 U CN200920244762 U CN 200920244762U CN 201526622 U CN201526622 U CN 201526622U
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speed
shaft
turbine stage
gear
planet carrier
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CN2009202447620U
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Chinese (zh)
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王伏林
龚晓和
李达
彭翼
阳芳南
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李本平
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Abstract

The utility model relates to a high-power mechanical-electron hydraulic compound soft-start stepless speed regulator. One end of an input shaft of the stepless speed regulator is connected with a rotating shaft of a motor, while the other end thereof is connected with outer teeth of a high-speed solar wheel axle to form tooth space floating; the high-speed solar wheel axle is connected with an output shaft of a high-speed planet carrier by being engaged with a high-speed planet wheel sheathed on a high-speed planet wheel axle, and the output shaft of the high-speed planet carrier is simultaneously taken as a low-speed planetary drive input shaft and fixed inside an inner hole of an output shaft of a low-speed planet carrier; the high-speed planet wheel is engaged with a high-speed internal gear that is simultaneously engaged with a first gear coupling; a first bevel gear is fixedly connected on the first gear coupling and simultaneously engaged with a first bevel gear shaft and a second bevel gear shaft; the first bevel gear shaft and the second bevel gear shaft are respectively connected with a hydraulic rotary functional element; and the tail end of the first bevel bear shaft is also connected with an input shaft of an auxiliary motor. The stepless speed regulator integrates the functions of soft start, stepless speed regulation and the like, and has high transmission efficiency, low noise, compact structure, reliable property and low cost.

Description

High-power mechanical-electrical liquid composite soft start stepless speed regulator
Technical field
The utility model relates to a kind of high-power mechanical-electrical liquid composite soft start stepless speed regulator.
Background technique
When motor starts in load, can produce the inrush current of 5~7 times of rated current intensity, concerning high power motor, great start-up current can produce very big impact to motor and electrical network; And when shutting down, make rotating speed prompt drop to zero control mode also can bring impact to equipment by momentary power failure, and reduce working life, so under a lot of operating modes, do not allow the instantaneous shutdown of high-power machinery equipment, need the shutdown of steadily slowing down; At work, need to consider the steady stepless speed regulation problem of the caused high-power machinery equipment of working conditions change equally.Solve the problems of the technologies described above, just need adopt soft start/stepless speed regulation technology, make it can realize controlled soft start, soft stop, stepless speed regulation, functions such as automatic overload protection and many driving powers balance powerful device.
In machinery, motor and multidisciplinary fields such as electronics, fluid power and hydraulic pressure soft start/stepless speed regulation technology has been carried out deeply and extensive studies both at home and abroad, developed diversified soft start/arrangements for speed regulation or equipment, can be summed up as substantially: fluid coupling soft start/speed governing, liquid viscosity soft start/speed governing, frequency control of motor speed soft start, DC speed regulation soft start, power transformation resistance speed governing, friction speed-regulating, Hydraulic Adjustable Speed etc.Though respectively there are characteristics in these soft start/speed-regulating actuators or system, the also shortcoming that all has some can't make the user accept fully.Variable speed fluid coupling can change output speed and torque by the degree of filling of regulating active chamber liquid, has certain soft start function and speed governing ability.But long-term theoretical research and application practice show, it can't satisfy actual requirement far away on the function of soft start/speed governing and performance.The sticky shearing active force that liquid viscosity soft start/arrangements for speed regulation utilization is present in oil film between the driving and driven friction plate comes transferring power.This device can be realized stepless speed regulation and the synchronous operation between the master and slave moving axis within the specific limits, can carry out overload protection to transmission system.But when soft start, motor is in the load starting state, and inrush current is big, and the rush of current time is long, is not real No Load Start, and transmission efficiency is lower, and power loss is big, and heating is serious, and the device more complicated, and manufacturing and maintenance cost are higher.Frequency control of motor speed soft start, DC speed regulation soft start, power transformation resistance speed governing, friction speed-regulating and Hydraulic Adjustable Speed etc. generally all adopt control main drive motor rotating speed or torque differences to reach two-way stepless speed regulation on electrical equipment control, guarantee that machine driven system seamlessly transits.But though RHVC has realized soft start, right powerful frequency-variable controller price is very expensive, and circuit wherein and electronic parts and components maintenance difficult, the maintenance cost height; The subject matter of DC continuous speed regulation/soft start is: high power direct-current motor is bulky, and costs an arm and a leg, and particularly the investment of electric substation is often very big, system complex.Under the environment of moist or many dirt, the commutator of direct current motor, brushgear and silicon controlled control section need often to safeguard that maintenance cost is also very high.At present, the price of the price of high power DC speed control system and big-power transducer is suitable.Though power transformation resistance speed governing also can realize soft start, power consumption is big, and the big more then user cost of power is high more, and control system is also complicated more, and it is also big more to take up room; Friction speed-regulating only is applicable to small-power, and when using when high-power, friction catch moment is big, and the frictional heating problem can't solve, and the friction speed-regulating mode is for big-and-middle-sized power master motor, and soft start also is far from being; Existing Hydraulic Adjustable Speed, though can realize soft start/stepless speed regulation, equipment easily leaks, noise is big, temperature is high, environment is had pollution, and efficient is low, fault is many, thereby integral working is not good.In addition, also have some soft initiator devices, be mainly used in the start-up course of motor, its output only changes voltage and does not change frequency, does not possess functions such as stepless speed regulation and power-balance, is mainly used in non-important middle low power transmission occasion.
During large power overloading equipment work, also must solve a problem of output overloading being limit the square protection.Many main equipments (as high-power belt conveyor) are to be driven by multiple motors, and when real work, the loading condition that drives each motor in the transmission system may be different more.How to adopt the stepless speed regulation speed reduction gearing to guarantee many driving powers balance in the transmission system, thereby the support equipment smooth working also is a problem drive more.
Take a broad view of above-mentioned various soft start speed device, a kind of both can having accomplished keeping in the constant absence of main motor speed, realizes the two-way stepless speed regulation of output speed and seamlessly transits; Can make high-power machinery equipment master electric motor starting electric current realize soft start less than rated current again; Possess functions such as the square protection of output overloading limit and many driving powers balance simultaneously; And can also accomplish that simple in structure, reliable working performance, manufacturing and working service are with low cost.Be used for the powerful device in down-hole and explosive place for some, transmission device also must be realized explosion prevention function easily.
The model utility content
Technical problem to be solved in the utility model is, at the deficiencies in the prior art, a kind of simple in structure, reliable working performance, manufacturing and the lower-cost high-power mechanical-electrical liquid composite soft start stepless speed regulator of working service are provided, realize the mechanical soft start of high-power main motor with the small-power helper motor, the great start-up current when solving powerful device and starting produces the problem of impacting to electrical network; To the mechanical transmission continuous control, realize frequent two-way smooth stepless speed-regulating, soft stop, the square protection of output overloading limit and many driving powers balance in the powerful device work with the continuous controllable realization of fluid transmission.
For solving the problems of the technologies described above, the technological scheme that the utility model adopted is: a kind of high-power mechanical-electrical liquid composite soft start stepless speed regulator, comprise the input shaft and the slow speed turbine stage planet carrier output shaft that are fixed on the casing both sides by roller bearing, this input shaft one end stretches out casing and links to each other with the rotating shaft of main motor, it is characterized in that:
The end that A, described input shaft are located in the casing is offered endoporus, this endoporus is provided with the involute splines internal tooth, the external tooth of this involute splines internal tooth and high speed level sun wheel shaft connects and composes backlash and floats, this high speed level sun wheel shaft one end is realized axially locating by block and input shaft, the other end is realized axially locating by jacking block and the high speed level planet carrier output shaft that is fixed on by roller bearing in the casing simultaneously, this high speed level planet carrier output shaft also is a slow speed turbine stage Gear Planet Transmission input shaft simultaneously, and it is fixed in the endoporus of slow speed turbine stage planet carrier output shaft;
B, the outer sheathed high-speed carrier of described high speed level planet carrier output shaft, fixedly install the high-speed row star-wheel by the high-speed row spider gear shaft on this high-speed carrier, this high-speed row star-wheel and the engagement of described high speed level sun wheel shaft, this high-speed row star-wheel and the engagement of high speed internal gear, this high speed internal gear meshes with first toothed coupling simultaneously, constitute radially backlash and float, this first toothed coupling is set in the level planet carrier output shaft outside at a high speed;
Fixedly connected first bevel gear on C, described first toothed coupling, this first bevel gear is meshed with first conical tooth shaft that is fixed on by roller bearing on the casing, middle part socket first intermediate gear of this first conical tooth shaft, this first intermediate gear is connected with at least one hydraulic rotating functional element through at least one first connection gear, and the end of this first conical tooth shaft connects with the input shaft of the helper motor that is installed in the casing outside;
D, described first bevel gear are meshed with second conical tooth shaft that is fixed on by roller bearing on the casing simultaneously, the other end spline external tooth of second conical tooth shaft and an endoporus are that second intermediate gear of spline is connected, and this second intermediate gear second connects gear and is connected with at least one hydraulic rotating functional element through at least one;
The end that E, described slow speed turbine stage planet carrier output shaft are positioned at casing fixedly installs the slow speed turbine stage planet wheel by the slow speed turbine stage planet wheel shaft, also be arranged with the slow speed turbine stage sun gear in the endoporus of this slow speed turbine stage planet carrier output shaft, this slow speed turbine stage sun gear and the engagement of slow speed turbine stage planet wheel, this slow speed turbine stage planet wheel and the engagement of slow speed turbine stage internal gear, this slow speed turbine stage internal gear meshes with second toothed coupling simultaneously, radially backlash is unsteady to constitute slow speed turbine stage planet carrier output shaft, and this second toothed coupling is set in the slow speed turbine stage planet carrier output shaft outside and is fixed on the casing simultaneously.
Described hydraulic rotating functional element is oil pump or oil hydraulic motor.
Described hydraulic rotating functional element is fixed on the casing.
When the utility model is installed and used, the workpiece of large power overloading machinery should be connected with the slow speed turbine stage planet carrier output shaft of the utility model device, and hydraulic rotating functional element (oil pump or oil hydraulic motor) outlet pressure signal outputed in the external control circuit of main motor, just can carry out work then.
Concrete working principle of the present utility model is described below:
(1) realization of soft start: during work, at first start the microrunning of small-power helper motor, drive the high-speed row star-wheel that meshes with the high speed internal gear through first conical tooth shaft, first bevel gear, first toothed coupling and rotate.In theory, high speed internal gear and the engagement of high-speed row star-wheel can drive level planet carrier output shaft and sun wheel shaft rotation at a high speed, and this moment, the utility model transmission device became the differential gearing train of single input (input of high speed internal gear), a dual output (sun wheel shaft and high speed level planet carrier output shaft).But it is because very big with the load that high speed level planet carrier output shaft links to each other by slow speed turbine stage planet carrier output shaft, the input power of small-power helper motor can't drive at a high speed, and level planet carrier output shaft rotates, in fact the differential gearing train of this single input dual output becomes a high speed level planet carrier output shaft and fixes, the input of high speed internal gear, the fixed shaft gear train of level sun wheel shaft output at a high speed.Like this, the small-power helper motor is by high speed internal gear, high-speed row star-wheel and level sun wheel shaft at a high speed, drives the stall square inertia that high-power main rotor overcomes when starting through input shaft again and rotates.When the small-power helper motor accelerates to control during rotating speed gradually, main motor also thereupon zero load accelerate to rated speed.When main motor reaches rated speed, automatically connect main motor power, and cut-out helper motor power supply, main motor need not the rotor of main motor is quickened, so the inrush current of high-power main motor will be very little, main motor will start under real idle condition, also just finish the unloaded soft start of high-power main motor.
(2) realization of two-way stepless speed regulation: the power supply of small-power helper motor is cut off when main motor is connected power supply.Main motor remains in operation turning under the constant situation, the former road of power is returned, drive level sun wheel shaft rotation at a high speed through input shaft, input power, formed a kind of single input, the dynamic branch state of dual output: a part of power drives hydraulic rotating functional element (oil pump or the oil hydraulic motor) work that connects through first and second conical tooth shaft through high speed internal gear to the first bevel gear of differential planetary drive train, the auxiliary output of meaning; Part power is exported through slow speed turbine stage Gear Planet Transmission train to slow speed turbine stage planet carrier output shaft through the high speed level planet carrier output shaft of differential gearing train, drives the large power overloading equipment workpiece, the main output of meaning.According to speed discrepancy balance shunting rule, increase the outlet pressure of auxiliary output terminal hydraulic rotating functional element, the rotational resistance torque of first and second conical tooth shaft is increased gradually, then the rotating speed of auxiliary output will reduce gradually, the power that is applied on the main workpiece of exporting will increase gradually, realize that workpiece is seamlessly transitted by zero speedup to rated speed.When workpiece reaches rated speed and needs to slow down later on, reduce the outlet pressure of auxiliary output terminal hydraulic rotating functional element, the rotational resistance torque of first and second conical tooth shaft is diminished, then the rotating speed of auxiliary output will increase gradually, the power that then is applied on the main workpiece of exporting will reduce, and realize that workpiece is seamlessly transitted to zero deceleration by rated speed.So just, realized main output by zero to rated speed and by rated speed to the zero two-way stepless speed regulation of acceleration, deceleration.
(3) realization of output overloading automatic protection functions: the allowable pressure of setting the hydraulic rotating functional element according to the allowable load (output power torque) of equipment work mechanism; when the external load of system former thereby when surpassing allowable value because of some; main output torque increases; the corresponding increase of auxiliary output torque; hydraulic rotating functional element outlet pressure is because of surpassing pilot pressure overflow allowable; drive first; two conical tooth shafts produce differential slippage rotation; main output reduction of speed formula is stopped; prevent the damage of main motor and machine driven system overload; after outer load problems of too solved, normal operation can recover again in system.
(4) realizations that drive the main motor current balances: the hydraulic rotating functional element outlet pressure controlling value of the soft start stepless speed regulator of each drive point is set in the power torque that should bear according to each drive point of equipment more, when the load inequality occurring, the drive point power torque that bearing load is bigger increases, make the corresponding increase of this drive point hydraulic rotating functional element outlet pressure, when hydraulic rotating functional element outlet pressure surpasses pilot pressure allowable, by hydraulic rotating functional element earial drainage, make first, two conical tooth shafts produce differential slippage rotation, thereby make main output reduction of speed, receive certain load and till keeping balance automatically up to other low-load drive point.
(5) realization of soft braking: when the needs soft stop; need not to turn-off main motor power; according to the rule of main motor power to main output and auxiliary output steering; according to predetermined decompression rule; gradually reduce the outlet pressure of auxiliary output terminal hydraulic rotating functional element; increase its power output, make the rotating speed of output shaft reduce to zero gradually, thereby realize the soft braking of machinery according to predetermined reduction of speed law curve.Identical with the working principle of soft start, the period of braking of soft braking also is adjustable.
(6) power saving function: if the utility model is applied to running environment and has certain haul distance gradient, and the high-power machinery equipment (as mine hoist and inclined shaft Belt Conveyors etc.) of frequent uplink and downlink, under the condition that safety and reliability are protected, can consider that the potential energy that utilizes himself and load deadweight to produce serves as descending operating mode power, energy saving.Be that descending operating mode does not start main motor (this moment, main motor was shut down braking); weight utilization deadweight is transferred; be equivalent to former main output and become the power reverse input; the rotation of drive working equipment; be equivalent to power reverse input low speed planetary differential train and high speed planet differential gear train; through first and second conical tooth shaft, drive the hydraulic rotating functional element running of auxiliary output terminal, the unique output loading of power for this reason of hydraulic rotating functional element this moment again.Control hydraulic rotating functional element outlet pressure is equivalent to increase load, i.e. the speed that may command weight deadweight is transferred makes that device security is controlled reliably transfers.
Compared with prior art, the beneficial effects of the utility model are:
The utility model is melted into a whole soft start, stepless speed regulation, the square protection of output overloading limit and many power drive equilibrium function etc., is a kind of soft start stepless speed regulating device of multifunctional machine electrohydraulic integration; 2. adopt two-way controlled stepless speed regulation, large power overloading equipment can be operated on the speed of any setting; 3. realize the soft start of high-power main motor with the small-power helper motor, not only can alleviate the startup impact that transmission system itself is subjected to significantly, prolong the working life of key components and parts, simultaneously can also realize that main empty load of motor inrush current is less than rated current, to the impact of electrical network, reduce the equipment investment of power supply facilities when avoiding powerful device to start; 4. the utility model device has been realized the output overloading limiting protecting, has guaranteed safe operation.5. the utility model device can be realized the main motor current balances that drive more, and the security of operation of uniting driving arrangement for the many motors of need provides safeguard.6. there is certain haul distance gradient in the utility model device as being applied to running environment, and on the high-power machinery equipment of frequent uplink and downlink, downward storke can need not power, transfers according to deadweight safety, saves electric energy.7. this device power source can be diversified, can not limited by power source, and except that electric power, other power sources can be realized the same function of machine.Method be will control hydraulic-pressure pump outlet pressure hydrovalve change the mechanical type relief valve into and get final product.8. this speed regulator is easy to realize explosion prevention function if be disposed at the powerful device in down-hole and other explosive place.
Description of drawings
Fig. 1 is the forward sectional view of a kind of concrete structure of the utility model.
Embodiment
Referring to Fig. 1, the utility model comprises that casing 6 and is fixed on input shaft 2 on the casing 6 by roller bearing, and these input shaft 2 one ends stretch out casing 6 and link to each other with the rotating shaft of main motor by flat key 1, and the other end is offered endoporus 4.Be provided with the involute splines internal tooth in the endoporus 4 of this input shaft 2, the external tooth of this involute splines internal tooth and high speed level sun wheel shaft 35 connects and composes backlash and floats.Level sun wheel shaft 35 1 ends are realized axially locating by block 3 and input shaft 2 at a high speed simultaneously, and the other end is realized axially locating by jacking block 34 and the high speed level planet carrier output shaft 33 that is fixed on by roller bearing in the casing 6.This high speed level planet carrier output shaft 33 also is a slow speed turbine stage Gear Planet Transmission input shaft simultaneously, and it is fixed in the endoporus of slow speed turbine stage planet carrier output shaft 14 by roller bearing, and realizes axially locating by a jacking block and slow speed turbine stage planet carrier output shaft 14.This slow speed turbine stage planet carrier output shaft 14 is fixed on the opposite side of casing 6 by roller bearing 13, and these slow speed turbine stage planet carrier output shaft 14 1 ends stretch out outside the casing 6.
Socket high-speed carrier 30 on this high speed level planet carrier output shaft 33 fixedly installs high-speed row star-wheel 29 by high-speed row spider gear shaft 32 on this high-speed carrier 30.This is level sun wheel shaft 35 and 29 engagements of high-speed row star-wheel at a high speed, this high-speed row star-wheel 29 meshes with high speed internal gear 28 simultaneously, this high speed internal gear 28 meshes with first toothed coupling 5 simultaneously, constitute radially backlash and float, and this first toothed coupling 5 is set in level planet carrier output shaft 33 outsides at a high speed by roller bearing.
This first toothed coupling 5 connects first bevel gear 21 by flat key 22 and bolt, and this first bevel gear 21 is meshed with first conical tooth shaft 12 that is fixed on by roller bearing on the casing 6.Middle part socket first intermediate gear 11 of this first conical tooth shaft 12, this first intermediate gear 11 first connects gear 7 be connected with at least one hydraulic rotating functional element 8 (being two first connection gears 7 and two hydraulic rotating functional element 8 in the present embodiment) through at least one.This hydraulic rotating functional element 8 can be oil pump or oil hydraulic motor.The end of this first conical tooth shaft 12 connects through the input shaft of motor shaft coupling 10 with the helper motor 9 that is installed in casing 6 outsides.
This first bevel gear 21 simultaneously be fixed on casing 6 on second conical tooth shaft 20 be meshed.The other end spline external tooth of second conical tooth shaft 20 and an endoporus are that second intermediate gear 23 of spline is connected, and this second intermediate gear 23 second connects gear 24 be connected with at least one hydraulic rotating functional element 8 (being two first connection gears 7 and two hydraulic rotating functional element 8 in the present embodiment) through at least one.This hydraulic rotating functional element 8 can be oil pump or oil hydraulic motor.
The end that this slow speed turbine stage planet carrier output shaft 14 is positioned at casing 6 fixedly installs slow speed turbine stage planet wheel 16 by slow speed turbine stage planet wheel shaft 17.The end outside of the close slow speed turbine stage planet carrier output shaft 14 of level planet carrier output shaft 33 is arranged with slow speed turbine stage sun gear 15 at a high speed, this slow speed turbine stage sun gear 15 and 16 engagements of slow speed turbine stage planet wheel, those slow speed turbine stage planet wheels 16 and 18 engagements of slow speed turbine stage internal gear, this slow speed turbine stage internal gear 18 meshes with second toothed coupling 19 simultaneously, constitute slow speed turbine stage planet carrier output shaft radially backlash float, and this second toothed coupling 19 also is set at a high speed level planet carrier output shaft 33 outsides and is fixed on simultaneously on the casing 6.

Claims (4)

1. a high-power mechanical-electrical liquid composite soft start stepless speed regulator comprises the input shaft and the slow speed turbine stage planet carrier output shaft that are fixed on the casing both sides by roller bearing, and this input shaft one end stretches out casing and links to each other with the rotating shaft of main motor, it is characterized in that:
The end that A, described input shaft are located in the casing is offered endoporus, this endoporus is provided with the involute splines internal tooth, the external tooth of this involute splines internal tooth and high speed level sun wheel shaft connects and composes backlash and floats, this high speed level sun wheel shaft one end is realized axially locating by block and input shaft, the other end is realized axially locating by jacking block and the high speed level planet carrier output shaft that is fixed on by roller bearing in the casing simultaneously, this high speed level planet carrier output shaft also is a slow speed turbine stage Gear Planet Transmission input shaft simultaneously, and it is fixed in the endoporus of slow speed turbine stage planet carrier output shaft;
B, the outer sheathed high-speed carrier of described high speed level planet carrier output shaft, fixedly install the high-speed row star-wheel by the high-speed row spider gear shaft on this high-speed carrier, this high-speed row star-wheel and the engagement of described high speed level sun wheel shaft, this high-speed row star-wheel and the engagement of high speed internal gear, this high speed internal gear meshes with first toothed coupling simultaneously, constitute radially backlash and float, this first toothed coupling is set in the level planet carrier output shaft outside at a high speed;
Fixedly connected first bevel gear on C, described first toothed coupling, this first bevel gear is meshed with first conical tooth shaft that is fixed on by roller bearing on the casing, middle part socket first intermediate gear of this first conical tooth shaft, this first intermediate gear is connected with at least one hydraulic rotating functional element through at least one first connection gear, and the end of this first conical tooth shaft connects with the input shaft of the helper motor that is installed in the casing outside;
D, described first bevel gear are meshed with second conical tooth shaft that is fixed on by roller bearing on the casing simultaneously, the other end spline external tooth of second conical tooth shaft and an endoporus are that second intermediate gear of spline is connected, and this second intermediate gear second connects gear and is connected with at least one hydraulic rotating functional element through at least one;
The end that E, described slow speed turbine stage planet carrier output shaft are positioned at casing fixedly installs the slow speed turbine stage planet wheel by the slow speed turbine stage planet wheel shaft, also be arranged with the slow speed turbine stage sun gear in the endoporus of this slow speed turbine stage planet carrier output shaft, this slow speed turbine stage sun gear and the engagement of slow speed turbine stage planet wheel, this slow speed turbine stage planet wheel and the engagement of slow speed turbine stage internal gear, this slow speed turbine stage internal gear meshes with second toothed coupling simultaneously, radially backlash is unsteady to constitute slow speed turbine stage planet carrier output shaft, and this second toothed coupling is set in the slow speed turbine stage planet carrier output shaft outside and is fixed on the casing simultaneously.
2. high-power mechanical-electrical liquid composite soft start stepless speed regulator according to claim 1 is characterized in that, described hydraulic rotating functional element is an oil pump.
3. high-power mechanical-electrical liquid composite soft start stepless speed regulator according to claim 1 is characterized in that, described hydraulic rotating functional element is an oil hydraulic motor.
4. high-power mechanical-electrical liquid composite soft start stepless speed regulator according to claim 1 is characterized in that, described hydraulic rotating functional element is fixed on the casing.
CN2009202447620U 2009-10-16 2009-10-16 High-power mechanical-electron hydraulic compound soft-start stepless speed regulator Expired - Lifetime CN201526622U (en)

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Application Number Priority Date Filing Date Title
CN2009202447620U CN201526622U (en) 2009-10-16 2009-10-16 High-power mechanical-electron hydraulic compound soft-start stepless speed regulator

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Application Number Priority Date Filing Date Title
CN2009202447620U CN201526622U (en) 2009-10-16 2009-10-16 High-power mechanical-electron hydraulic compound soft-start stepless speed regulator

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101694976B (en) * 2009-10-16 2012-05-23 李本平 High-power mechanical-electrical liquid composite soft start stepless speed regulator
CN102616532A (en) * 2012-04-10 2012-08-01 安徽攀登重工股份有限公司 Double-speed hydraulic soft starting device for belt conveyor

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101694976B (en) * 2009-10-16 2012-05-23 李本平 High-power mechanical-electrical liquid composite soft start stepless speed regulator
CN102616532A (en) * 2012-04-10 2012-08-01 安徽攀登重工股份有限公司 Double-speed hydraulic soft starting device for belt conveyor
CN102616532B (en) * 2012-04-10 2013-11-13 安徽攀登重工股份有限公司 Double-speed hydraulic soft starting device for belt conveyor

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Granted publication date: 20100714

Effective date of abandoning: 20091016