CN212055700U - Gearbox structure with planet row auxiliary box - Google Patents

Gearbox structure with planet row auxiliary box Download PDF

Info

Publication number
CN212055700U
CN212055700U CN201922466189.4U CN201922466189U CN212055700U CN 212055700 U CN212055700 U CN 212055700U CN 201922466189 U CN201922466189 U CN 201922466189U CN 212055700 U CN212055700 U CN 212055700U
Authority
CN
China
Prior art keywords
gear
output
shaft
sleeved
hollow
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN201922466189.4U
Other languages
Chinese (zh)
Inventor
李磊
杨富双
刘诗道
王康林
杨海华
单培顺
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Suzhou Lvkon Transmission S&T Co Ltd
Original Assignee
Suzhou Lvkon Transmission S&T Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Suzhou Lvkon Transmission S&T Co Ltd filed Critical Suzhou Lvkon Transmission S&T Co Ltd
Priority to CN201922466189.4U priority Critical patent/CN212055700U/en
Application granted granted Critical
Publication of CN212055700U publication Critical patent/CN212055700U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Structure Of Transmissions (AREA)

Abstract

The utility model provides a take gearbox structure of planet row's auxiliary tank for the connection of two power supplies and derailleur is convenient and reliable, ensures that power take off can not break off, and the power fender position of output increases, satisfies automobile-used demand. The double-input shaft comprises a second hollow input shaft and a first input shaft, the first input shaft penetrates through a hollow inner cavity of the second hollow input shaft and is coaxially arranged, the input end of the second hollow input shaft is connected with an external second power source, the input end of the first input shaft is connected with an external first power source, a second transmission gear is fixedly sleeved at the output end of the second hollow input shaft, the output end of the first input shaft is arranged behind the second transmission gear and is sequentially sleeved with a power switching synchronizer and an output A blocking tooth, the output A blocking tooth is a first transmission gear, and the output end of the first input shaft and the input end of the power output shaft are arranged at intervals.

Description

Gearbox structure with planet row auxiliary box
Technical Field
The utility model relates to a technical field of gearbox structure specifically is a take gearbox structure of planet row auxiliary tank.
Background
The output end of the existing gearbox structure is the gear output of 1-N gears, then power control is performed according to power performance, and the existing gearbox structure generally has a structure with a single input end and a single output end, along with the development of the automobile industry, the arrangement form of double gearboxes is gradually generated at present, and then a structure of outputting after double-power coupling is performed, or the input end of a single gearbox is coupled with power through a complex coupling mechanism and then connected into a single gearbox, the structure is complex, the connection of a power source and the gearbox is complex, the power output cannot be interrupted, and along with the increase of power output requirements, the existing gearbox which only has the gear output of 1-N gears cannot meet the automobile requirements.
Disclosure of Invention
In order to the problem, the utility model provides a take gearbox structure of planet row auxiliary tank for the connection of two power supplies and derailleur is convenient and reliable, ensures that power take off can not break off, and the power fender position of output increases, satisfies automobile-used demand.
The utility model provides a take gearbox structure of auxiliary tank is arranged to planet which characterized in that: the double-input shaft comprises a second hollow input shaft and a first input shaft which are coaxially arranged, the first input shaft penetrates through a hollow inner cavity of the second hollow input shaft and is coaxially arranged, the input end of the second hollow input shaft is connected with an external second power source, the input end of the first input shaft is connected with an external first power source, the output end of the second hollow input shaft is fixedly sleeved with a second transmission gear, the output end of the first input shaft is arranged behind the second transmission gear and is sequentially sleeved with a power switching synchronizer and an output A blocking tooth, the output A blocking tooth is a first transmission gear, the output end of the first input shaft and the input end of the power output shaft are arranged at intervals, the input end of the power output shaft is provided with a first synchronizer, and one side of the first synchronizer, which is far away from the output A blocking tooth, is provided with an output B blocking tooth, the output B gear is sleeved at a corresponding position of the power output shaft, a plurality of groups of gear output structures are correspondingly sleeved on the power output shaft, each group of gear output structures comprises two gear output gears and corresponding synchronizer structures, each group of gear output structures selects the corresponding gear output gear to output power of the corresponding gear through the synchronizer structures, and the letters A, B are different natural numbers from 1 to N;
the transmission device also comprises a second intermediate shaft, wherein second intermediate shaft transmission teeth are arranged at the position of the second intermediate shaft corresponding to a second transmission gear, a first hollow intermediate shaft is further sleeved on the second intermediate shaft, first intermediate shaft transmission teeth are sleeved at the position of the first hollow intermediate shaft corresponding to the output A blocking teeth, corresponding intermediate transmission teeth are respectively fixedly sleeved at the position of the first hollow intermediate shaft corresponding to the corresponding gear output gear in the length direction, corresponding gear output gears are respectively sleeved at the positions of the second intermediate shaft corresponding to the gear output gear in the other length areas, which are positioned on the first hollow intermediate shaft, of the second intermediate shaft, corresponding gear output gears are respectively sleeved at the positions, one end of the output shaft, which is close to the output shell, is fixedly sleeved with a sun gear, a planet carrier is fixedly arranged in the gearbox, and planet gears are distributed on the outer shaft of the planet carrier corresponding to the sun gear, one end of the radial center of the planet carrier is provided with a side convex auxiliary box output shaft, the outer ring of the planet gear is provided with a gear ring, the gear ring is fixedly arranged at the axial inner end of the connecting sleeve, the axial outer end of the connecting sleeve is provided with a gear ring hollow output shaft which protrudes outwards, the auxiliary box output shaft penetrates through the gear ring hollow output shaft, an L/H gear synchronizer is sleeved on the outer ring surface of the hollow output shaft of the gear ring, an output H gear is fixedly sleeved on the output shaft of the auxiliary box, it also comprises an output L gear which is fixedly connected with the shell of the gear box through a connecting piece, the hollow output shaft of the gear ring penetrates through the corresponding hole of the connecting piece and is arranged, the L/H gear synchronizer is arranged at a position between the output L gear teeth and the output H gear teeth, and the L/H gear synchronizer switches the L gear and the H gear output according to power requirements.
It is further characterized in that:
each gear output gear is independently arranged on the output shaft, the output reverse gear teeth are meshed with the idler teeth, and the corresponding middle reverse gear teeth are meshed with the idler teeth and then connected with the output reverse gear teeth in a meshed mode;
when the output reverse gear and the output one-gear are integrated in the same output one-reverse gear, a reverse gear shaft is further arranged on the outer side of the corresponding first hollow middle shaft or second middle shaft of the output one-reverse gear, the reverse gear shaft is provided with reverse gear teeth and idler gear teeth, a reverse gear synchronizer is arranged between the reverse gear teeth and the idler gear teeth, the reverse gear teeth are fixedly sleeved on the reverse gear shaft and meshed with a gear transmission gear with a lower gear number, the idler gear teeth are sleeved on the reverse gear shaft through a connecting sleeve and meshed with one of the middle gears, and one of the middle gears is meshed with the output one-reverse gear;
all gear output gears sleeved on the output shaft are sleeved on the output shaft through connecting sleeves;
preferably, the output end of the first input shaft is arranged at the rear of the second transmission gear, and is sequentially sleeved with a power switching synchronizer and an output four-gear tooth, the output end of the first input shaft and the input end of the power output shaft are arranged at intervals, the input end of the power output shaft is provided with an 2/4-gear synchronizer, one side of the 2/4-gear synchronizer far away from the output four-gear tooth is provided with an output two-gear tooth, the output two-gear tooth is sleeved at the corresponding position of the power output shaft, the power output shaft is further sequentially sleeved with an output three-gear tooth, an output one-gear tooth and an output reverse gear tooth, a 1/3-gear synchronizer is arranged between the output three-gear tooth and the output one-gear tooth, one side of the output reverse gear tooth is provided with a reverse gear synchronizer and further comprises a second intermediate shaft, and the position of the second intermediate shaft corresponding to the second transmission gear is provided with a second intermediate, the second intermediate shaft is further sleeved with a first hollow intermediate shaft, a position of the first hollow intermediate shaft, which corresponds to the output four-gear, is sleeved with a first intermediate shaft transmission gear, a position of the first hollow intermediate shaft, which corresponds to the output two-gear position of the output shaft, in the length direction is fixedly sleeved with a corresponding middle transmission gear, and positions, which protrude out of a length area of the first hollow intermediate shaft, which correspond to the output three-gear position and the output one-gear position, of the second intermediate shaft are respectively sleeved with corresponding middle transmission gears; the middle inverted tooth is connected with the output inverted tooth through an idler gear, and the middle inverted tooth is sleeved at the corresponding position of the second intermediate shaft.
All gear output gears sleeved on the output shaft are sleeved on the output shaft through connecting shaft sleeves, so that the coupling output of power during output is ensured;
all the middle transmission teeth are fixedly sleeved at corresponding positions of the second intermediate shaft or the first hollow intermediate shaft.
After the technical scheme is adopted, the second power source and the first power source carry out power input coaxially, a power switching synchronizer is arranged between the first transmission gear of the first input shaft and the second transmission gear of the second hollow input shaft, the power of the second power source and the power of the first power source are synchronously coupled and then output to the corresponding intermediate transmission gear and then transmitted to the output shaft under the synchronous meshing state of the first transmission gear and the second transmission gear by the power switching synchronizer, and the corresponding gear is selected for gear output; when the power switching synchronizer is in a disengaged state, the second power source is transmitted to the corresponding intermediate transmission gear through the second transmission gear, then transmitted to the output shaft, and gear output is performed by selecting the corresponding gear; the two power sources and the transmission are conveniently and reliably connected, and power coupling output can be selected or respectively output and then coupled and output on the output shaft, so that the power output is not interrupted, and unpowered interrupted gear shifting is realized; because the tail end of the output shaft is provided with a planetary reducer structure, finally, power is transmitted to an external axle through a sub-box output shaft, when an L/H gear synchronizer is meshed with and outputs L gear teeth, a gear ring and a shell are connected and fixed, so that corresponding gear output of the output shaft is transmitted to a sun gear and then meshed with a corresponding planet gear, the planet gear rotates along the fixed gear ring to drive the sub-box output shaft to output in L gear (low gear), when the L/H gear synchronizer is meshed with and outputs H gear teeth, the gear ring is connected with the sub-box output shaft, after the corresponding gear output of the output shaft is transmitted to the sun gear and then meshed with the corresponding planet gear, because the gear ring can rotate and the planet carrier is connected with the gear ring, at the moment, the rotating speed of the sun gear is the same as that of the planet carrier and the gear ring, namely direct gear, the sub-box output shaft is, the two power sources and the transmission are connected conveniently and reliably, power output is not interrupted, the number of output power gears is increased, and the vehicle requirements are met.
Drawings
FIG. 1 is a block diagram of a structural schematic of an embodiment of the present invention;
the names corresponding to the sequence numbers in the figure are as follows:
the power output shaft 1, the second hollow input shaft 2, the first input shaft 3, the second transmission gear 4, the power switching synchronizer 5, the second intermediate shaft 6, the second intermediate shaft transmission gear 7, the first hollow intermediate shaft 8, the first intermediate shaft transmission gear 9, the sun gear 10, the planet carrier 11, the planet gear 12, the gear ring 13, the connecting sleeve 14, the gear ring hollow output shaft 15, the idler gear 16, the middle reverse gear 17, the output four-gear 18, the 2/4 gear synchronizer 19, the output two-gear 20, the output three-gear 21, the output one-gear 22, the reverse gear synchronizer 23, the 1/3 gear synchronizer 24, the output reverse gear 25, the connecting shaft sleeve 26, the gearbox shell 27, the L/H gear synchronizer 28, the auxiliary box output shaft 29, the output H gear 30, the output L gear 31 and the connecting piece 32.
Detailed Description
A gearbox structure with a planet row auxiliary box is shown in figure 1: the double-input-shaft power output device comprises double input shafts and a power output shaft 1 which are coaxially arranged, wherein the double input shafts comprise a second hollow input shaft 2 and a first input shaft 3, the first input shaft 3 penetrates through a hollow inner cavity of the second hollow input shaft 2 and is coaxially arranged, the input end of the second hollow input shaft 2 is connected with an external second power source, the input end of the first input shaft 3 is connected with an external first power source, the output end of the second hollow input shaft 2 is fixedly sleeved with a second transmission gear 4, the output end of the first input shaft 3 is arranged behind the second transmission gear and is sequentially sleeved with a power switching synchronizer 5 and an output A blocking tooth, the output end of the first input shaft 3 and the input end of the power output shaft 1 are arranged at intervals, the input end of the power output shaft 1 is provided with a first synchronizer, one side, far away from the output A blocking tooth, of the first synchronizer is provided with an output B blocking tooth, and the output B blocking tooth is, a plurality of groups of gear output structures are correspondingly sleeved on the power output shaft 1, each group of gear output structures comprises two gear output gears and corresponding synchronizer structures, each group of gear output structures selects the corresponding gear output gear through the synchronizer structures to output power of the corresponding gear, and letters A, B are different natural numbers from 1 to N;
the gearbox also comprises a second intermediate shaft 6, second intermediate shaft transmission teeth 7 are arranged at the position of the second intermediate shaft 6 corresponding to the second transmission gear 4, a first hollow intermediate shaft 8 is sleeved on the second intermediate shaft 6, first intermediate shaft transmission teeth 9 are sleeved at the position of the first hollow intermediate shaft 8 corresponding to the output A blocking teeth, corresponding intermediate transmission teeth are respectively fixedly sleeved at the position of the first hollow intermediate shaft 8 corresponding to the corresponding gear output gear of the output shaft 1 in the length direction, corresponding gear output gears are respectively sleeved at the positions of the rest length areas of the second intermediate shaft 6 corresponding to the gear output gears, a sun gear 10 is fixedly sleeved at one end of the output shaft 1 close to an output shell, a planet carrier 11 is fixedly arranged in the gearbox, planet gears 12 are distributed on the planet carrier 11 corresponding to the outer ring of the sun gear 10, a side convex auxiliary box output shaft 29 is arranged at one end of the radial center of the planet carrier 11, the outer ring of the planet gear 12 is provided with a gear ring 13, the gear ring 13 is fixedly arranged at the axial inner end of a connecting sleeve 14, the axial outer end of the connecting sleeve 14 is provided with a convex gear ring hollow output shaft 15, an auxiliary box output shaft 29 penetrates through the gear ring hollow output shaft 15 to be arranged, an L/H gear synchronizer 28 is sleeved on the outer ring surface of the gear ring hollow output shaft 15, an output H gear 30 is fixedly sleeved on the auxiliary box output shaft 29, the output L gear 31 is further included, the output L gear 31 is fixedly connected to a gearbox shell 27 through a connecting piece 32, the gear ring hollow output shaft 15 penetrates through a corresponding hole of the connecting piece 32 to be arranged, the L/H gear synchronizer 28 is arranged at the position between the output L gear 31 and the output H gear 30, and the L/H gear synchronizer 28 switches L gear and H gear.
Each gear output gear is independently arranged on the output shaft 1, the output reverse gear teeth 25 are meshed with the idler teeth 16, and the corresponding middle reverse gear 17 is meshed with the idler teeth 16 and then is meshed with the output reverse gear teeth 25;
when the output reverse gear and the output one-gear are integrated in the same output one-reverse gear, a reverse gear shaft is further arranged on the outer side of the corresponding first hollow middle shaft or second middle shaft of the output one-reverse gear, the reverse gear shaft is provided with reverse gear teeth and idler gear teeth, a reverse gear synchronizer is arranged between the reverse gear teeth and the idler gear teeth, the reverse gear teeth are fixedly sleeved on the reverse gear shaft and meshed with a gear transmission gear with a lower gear number, the idler gear teeth are sleeved on the reverse gear shaft through a connecting sleeve and meshed with one of the middle gears, and one of the middle gears is meshed with the output one-reverse gear;
all gear output gears sleeved on the output shaft are sleeved on the output shaft through connecting sleeves;
in the specific embodiment, the output end of the first input shaft 3 is arranged behind the second transmission gear, and is sequentially sleeved with the power switching synchronizer 5 and the output four-gear 18, the output end of the first input shaft 3 and the input end of the power output shaft 1 are arranged at intervals, the input end of the power output shaft 1 is provided with the 2/4-gear synchronizer 19, one side of the 2/4-gear synchronizer 19, which is far away from the output four-gear 18, is provided with the output two-gear 20, the output two-gear 20 is sleeved at the corresponding position of the power output shaft 1, the power output shaft 1 is further sequentially sleeved with the output three-gear 21, the output one-gear 22 and the output reverse gear 25, the output three-gear 21 and the output one-gear 22 are provided with the 1/3-gear synchronizer 24, one side of the output reverse gear 25 is provided with the reverse gear synchronizer 23, the second intermediate shaft 6 is further included, the second intermediate shaft 6 is provided with the second intermediate shaft transmission gear 7 at the position corresponding to the second transmission, the second intermediate shaft 6 is also sleeved with a first hollow intermediate shaft 8, a position of the first hollow intermediate shaft 8 corresponding to the output four-blocking tooth 18 is sleeved with a first intermediate shaft transmission tooth 9, a position of the length direction of the first hollow intermediate shaft 8 corresponding to the output two-blocking tooth 20 is fixedly sleeved with a corresponding middle transmission tooth, and positions of a length region of the second intermediate shaft 6, which protrudes out of the first hollow intermediate shaft 8, corresponding to the output three-blocking tooth 21 and the output one-blocking tooth 22 are respectively sleeved with corresponding middle transmission teeth; the middle inverted tooth 17 is connected with an output inverted tooth 25 through an idler tooth 16, and the middle inverted tooth 17 is sleeved at the corresponding position of the second intermediate shaft 6.
All gear output gears sleeved on the output shaft 1 are sleeved on the output shaft 1 through a connecting shaft sleeve 26, so that the coupling output of power during output is ensured;
all the middle transmission teeth are fixedly sleeved at the corresponding positions of the second intermediate shaft 6 or the first hollow intermediate shaft 8.
In specific work, when the power switching synchronizer is closed leftwards, the second power source and the first power source are coupled together, so that the first power source can realize transmission of all gears; when the power switching synchronizer is opened, the power output of the second power source and the power output of the first power source are coupled at the output shaft, so that the transmission has no power interruption in the gear shifting process, for example, the first power source is connected to the second gear through the output four-gear, the 2/4-gear synchronizer is connected to the right, and the first power source transmits torque at the second gear; the second power source is shifted into a first gear to the right through a normally meshed gear, 1/3 gear synchronizer, the second power source runs in the first gear, and the two powers are coupled on an output shaft; during gear shifting, the first power source firstly disengages from the 2/4 gear synchronizer and is engaged into the fourth gear, the second power source always outputs power in the process, then the second power source disengages from the gear and is engaged into the third gear, and the first power source always outputs power in the process, so that unpowered interrupted gear shifting is realized; because the tail end of the output shaft is provided with a planetary reducer structure, finally, power is transmitted to an external axle through a sub-box output shaft, when an L/H gear synchronizer is meshed with and outputs L gear teeth, a gear ring and a shell are connected and fixed, so that corresponding gear output of the output shaft is transmitted to a sun gear and then meshed with a corresponding planet gear, the planet gear rotates along the fixed gear ring to drive the sub-box output shaft to output in L gear (low gear), when the L/H gear synchronizer is meshed with and outputs H gear teeth, the gear ring is connected with the sub-box output shaft, after the corresponding gear output of the output shaft is transmitted to the sun gear and then meshed with the corresponding planet gear, because the gear ring can rotate and the planet carrier is connected with the gear ring, at the moment, the rotating speed of the sun gear is the same as that of the planet carrier and the gear ring, namely direct gear, the sub-box output shaft is, the two power sources and the transmission are connected conveniently and reliably, power output is not interrupted, the number of output power gears is increased, and the vehicle requirements are met.
The gear arrangement of the specific embodiment is not limited to the specific implementation of the combination of the arrangement orders.
It is obvious to a person skilled in the art that the invention is not restricted to details of the above-described exemplary embodiments, but that it can be implemented in other specific forms without departing from the spirit or essential characteristics of the invention. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.
Furthermore, it should be understood that although the present description refers to embodiments, not every embodiment may contain only a single embodiment, and such description is for clarity only, and those skilled in the art should integrate the description, and the embodiments may be combined as appropriate to form other embodiments understood by those skilled in the art.

Claims (7)

1. The utility model provides a take gearbox structure of auxiliary tank is arranged to planet which characterized in that: the double-input shaft comprises a second hollow input shaft and a first input shaft which are coaxially arranged, the first input shaft penetrates through a hollow inner cavity of the second hollow input shaft and is coaxially arranged, the input end of the second hollow input shaft is connected with an external second power source, the input end of the first input shaft is connected with an external first power source, the output end of the second hollow input shaft is fixedly sleeved with a second transmission gear, the output end of the first input shaft is arranged behind the second transmission gear and is sequentially sleeved with a power switching synchronizer and an output A blocking tooth, the output A blocking tooth is a first transmission gear, the output end of the first input shaft and the input end of the power output shaft are arranged at intervals, the input end of the power output shaft is provided with a first synchronizer, and one side of the first synchronizer, which is far away from the output A blocking tooth, is provided with an output B blocking tooth, the output B gear is sleeved at a corresponding position of the power output shaft, a plurality of groups of gear output structures are correspondingly sleeved on the power output shaft, each group of gear output structures comprises two gear output gears and corresponding synchronizer structures, each group of gear output structures selects the corresponding gear output gear to output power of the corresponding gear through the synchronizer structures, and the letters A, B are different natural numbers from 1 to N;
the gearbox also comprises a second intermediate shaft, wherein second intermediate shaft transmission teeth are arranged at the position of the second intermediate shaft corresponding to a second transmission gear, a first hollow intermediate shaft is further sleeved on the second intermediate shaft, first intermediate shaft transmission teeth are sleeved at the position of the first hollow intermediate shaft corresponding to the output A blocking teeth, corresponding intermediate transmission teeth are respectively fixedly sleeved at the positions of the first hollow intermediate shaft corresponding to the corresponding gear output gears in the length direction, corresponding gear output gears are respectively sleeved at the positions of the second intermediate shaft corresponding to the gear output gears in the other length areas of the first hollow intermediate shaft, corresponding gear output gears, a sun gear is fixedly sleeved at one end of the output shaft close to an output shell, a planet carrier is fixedly arranged in the gearbox, planet gears are distributed on an outer shaft ring of the planet carrier corresponding to the sun gear, and a side-convex auxiliary box output shaft is arranged at one end of the radial center of the planet carrier, the outer ring of the planet gear is provided with a gear ring which is fixedly arranged at the axial inner end of the connecting sleeve, the axial outer end of the connecting sleeve is provided with a convex gear ring hollow output shaft, an auxiliary box output shaft penetrates through the gear ring hollow output shaft, an L/H gear synchronizer is sleeved on the outer ring surface of the gear ring hollow output shaft, an output H gear is fixedly sleeved on the auxiliary box output shaft, the L/H gear synchronizer further comprises an output L gear, the output L gear is fixedly connected to a gearbox shell through a connecting piece, the gear ring hollow output shaft penetrates through a corresponding hole of the connecting piece and is arranged, the L/H gear synchronizer is arranged at a position between the output L gear and the output H gear, and the L/H gear synchronizer switches L gear and H gear output according to power requirements.
2. A transmission construction with a planetary gearset according to claim 1, characterised in that: each gear output gear is independently arranged on the output shaft, the output reverse gear teeth are meshed with the idler teeth, and the corresponding middle reverse gears are meshed with the idler teeth and then connected with the output reverse gear teeth in a meshed mode.
3. A transmission construction with a planetary gearset according to claim 1, characterised in that: when the output reverse gear and the output one-gear are integrated on the same output one-gear, a reverse gear shaft is further arranged on the outer side of the corresponding first hollow intermediate shaft or second intermediate shaft of the output one-gear, the reverse gear shaft is provided with reverse gear teeth and idler gear teeth, a reverse gear synchronizer is arranged between the reverse gear teeth and the idler gear teeth, the reverse gear teeth are fixedly sleeved on the reverse gear shaft and meshed with a gear transmission gear with a lower gear number, the idler gear teeth are sleeved on the reverse gear shaft through a connecting sleeve and meshed with one of the middle gears, and the middle gear is meshed with the output one-gear.
4. A transmission construction with a planetary gearset according to claim 1, characterised in that: all gear output gears sleeved on the output shaft are sleeved on the output shaft through connecting sleeves.
5. A transmission construction with a planetary gearset according to claim 1, characterised in that: the output end of the first input shaft is arranged behind the second transmission gear, and is sequentially sleeved with a power switching synchronizer and an output four-gear tooth, the input end of the power output shaft is provided with an 2/4-gear synchronizer, one side of the 2/4-gear synchronizer, which is far away from the output four-gear tooth, is provided with an output two-gear tooth, the output two-gear tooth is sleeved at the corresponding position of the power output shaft, the power output shaft is further sequentially sleeved with an output three-gear tooth, an output one-gear tooth and an output reverse gear tooth, 1/3-gear synchronizers are arranged between the output three-gear tooth and the output one-gear tooth, one side of the output reverse gear tooth is provided with a reverse gear synchronizer, the position of the first hollow intermediate shaft, which corresponds to the output four-gear tooth, is sleeved with a first intermediate shaft transmission tooth, the length direction of the first hollow intermediate shaft is fixedly sleeved at the position, which corresponds to the output two-gear, the positions, protruding out of the length area of the first hollow intermediate shaft, of the second intermediate shaft, corresponding to the three output gear teeth and the one output gear tooth are respectively sleeved with corresponding middle transmission teeth; the middle inverted tooth is connected with the output inverted tooth through an idler gear, and the middle inverted tooth is sleeved at the corresponding position of the second intermediate shaft.
6. A gearbox construction with a planetary gearset as claimed in claim 5, characterised in that: all gear output gears sleeved on the output shaft are sleeved on the output shaft through connecting shaft sleeves.
7. A gearbox construction with a planetary gearset as claimed in claim 5, characterised in that: all the middle transmission teeth are fixedly sleeved at corresponding positions of the second intermediate shaft or the first hollow intermediate shaft.
CN201922466189.4U 2019-12-31 2019-12-31 Gearbox structure with planet row auxiliary box Active CN212055700U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922466189.4U CN212055700U (en) 2019-12-31 2019-12-31 Gearbox structure with planet row auxiliary box

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922466189.4U CN212055700U (en) 2019-12-31 2019-12-31 Gearbox structure with planet row auxiliary box

Publications (1)

Publication Number Publication Date
CN212055700U true CN212055700U (en) 2020-12-01

Family

ID=73536492

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201922466189.4U Active CN212055700U (en) 2019-12-31 2019-12-31 Gearbox structure with planet row auxiliary box

Country Status (1)

Country Link
CN (1) CN212055700U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110925368A (en) * 2019-12-31 2020-03-27 苏州绿控传动科技股份有限公司 Gearbox structure with planet row auxiliary box

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110925368A (en) * 2019-12-31 2020-03-27 苏州绿控传动科技股份有限公司 Gearbox structure with planet row auxiliary box

Similar Documents

Publication Publication Date Title
GB2412147A (en) A dual clutch transmission with planetary gearing
CN218777398U (en) Three-gear electric drive bridge structure
CN111059228A (en) Gearbox structure with auxiliary box
CN111043254A (en) Coaxial dual-input gearbox structure
CN110966364A (en) Eight-gear gearbox structure with coaxial double inputs
CN108162741B (en) Speed change structure of hybrid power vehicle
CN211820588U (en) Coaxial dual-input gearbox arrangement structure
CN212055700U (en) Gearbox structure with planet row auxiliary box
CN108162743B (en) Speed variator for hybrid power vehicle
CN110925368A (en) Gearbox structure with planet row auxiliary box
CN213270898U (en) Gearbox structure with auxiliary box
CN108150617B (en) 8+8 shift articulated tractor gearbox
CN218287415U (en) Transmission structure of double-motor coaxial 4-gear gearbox
CN212055695U (en) Coaxial dual-input gearbox arrangement structure
CN214146439U (en) Coaxial dual-input four-gear transmission case structure
CN213981864U (en) Coaxial double-input double-intermediate-shaft gearbox structure
CN217227285U (en) Unpowered interrupt type multi-gear power split hybrid power driving system
CN215826462U (en) Transmission structure of double-motor coaxial drive gearbox
CN218718540U (en) Eight-gear double-input gearbox
CN110925394A (en) Coaxial dual-input gearbox structure
WO2022257188A1 (en) Tractor transmission
CN212055696U (en) Coaxial dual-input gearbox structure
CN211501578U (en) Coaxial double-input nine-gear gearbox structure
CN211501580U (en) Coaxial dual-input gearbox structure
CN211474786U (en) Eight-gear gearbox structure with coaxial double inputs

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant