IP Library Granted Patent US 10,794,458
Granted Patent B2
US 10,794,458 · App. 16/355,911 · Granted Oct 6, 2020

Continuously variable power split transmission

Inventor: Rudolf Glassner (Steyr, AT)
Assignees: Rudolf Glassner; VDS—HOLDING GMBH
F16H37/084F16H3/62F16H47/04F16H2037/0873F16H2200/0043F16H2200/2007F16H2200/2041
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Quick Facts
Patent No.
US 10,794,458
App. No.
16/355,911
Granted
Oct 6, 2020
Kind
B2
Abstract

A continuously variable power split transmission for a combustion engine (VM), powering vehicles includes a variator (V) and a summing gear train (SG 1 ), the variator transmits a fraction of the power with a continuously variable speed to the summing gear train (SG 1 ) which includes four shafts, a first sun gear (S 1 ), a second sun gear (S 2 ), a ring gear (H 1 ) and a number of planetary gears (P 1, P 2 ) journaled on a planet carrier (St 1 ), wherein: The couplings (C 0, C 1; C 0, C 1, B 0, B 1 ) are incorporated in one common entry unit (E). The summing gear has first (P 1 ) and the second planetary gears (P 2 ) on a common planet carrier (St 1 ), meshing with each other; the first sun gear (S 1 ) or the first ring gear (H 1 ) are driven in turn to create ranges; and the planet carrier (St 1 ) of the summing gear train (SG 1 ) is drivingly connected with the output shaft (StW 1 ) of the transmission.

Claims (23)

1. Continuously variable power split transmission for powering vehicles and/or work machines by a combustion engine (VM), including a variator (V), a summing gear train and a number of couplings, the variator delivering a fraction of the power of the combustion engine with a speed that is continuously variably controlled between maximum speeds in both directions to the summing gear train, where it is added to the other fraction of the power, and where the transition between a plurality of ranges occurs in points of synchronism, the summing gear train being a planetary gear train with four shafts including a first sun gear (S 1 ), a second sun gear (S 2 ), a first ring gear (H 1 ) and a number of planetary gears (P 1 , P 2 ) journaled on a planet carrier (St 1 ), wherein:

a. the couplings (C 0 , C 1 ; C 0 , C 1 , B 0 , B 1 ) are incorporated in one common entry unit (E), which is arranged in the flux of power between the combustion engine (VM) and the summing gear train (SG 1 ),

b. the summing gear train (SG 1 ) includes first planetary gears (P 1 ) and second planetary gears (P 2 ) journaled on a common planet carrier (St 1 ), the first (P 1 ) and the second planetary gears (P 2 ) meshing with each other,

c. the first sun gear (S 1 ) or the first ring gear (H 1 ) are driven by the combustion engine (VM) and the second sun gear (S 2 ) is driven by the variator (V), the first sun gear (S 1 ) or the first ring gear (H 1 )—for the transition from one range to the next range in a point of synchronism (1,2,3)—being in turn drivingly connected with the combustion engine (VM)

d. The planet carrier (St 1 ) is drivingly connected with the output shaft (StW 1 ) of the transmission.

2. Continuously variable power split transmission according to claim 1 , wherein the planet carrier (St 1 ) includes or features an output gear (Z 1 ).

3. Continuously variable power split transmission according to claim 1 , wherein the first ring gear (H 1 ) of the summing gear train (SG 1 ) is disposed adjacent the entry unit (E) and the first planet carrier (St 1 ) is disposed on the other side of the summing gear train (SG 1 ), and wherein the first sun gear (S 1 ) is disposed adjacent the entry unit (E) and the second sun gear (S 2 ) is disposed on the other side of the summing gear train (SG 1 ), and wherein the planet carrier (St 1 ) is the power output element, rotating with the summed up continuously variable speed (n_StW 1 ).

4. Continuously variable power split transmission according to claim 1 , wherein the first sun gear (S 1 ) of the summing gear train (SG 1 ) meshes with the first planetary gears (P 1 ), the second sun gear (S 2 ) meshes with the second planetary gears (P 2 ), the second planetary gears (P 2 ) mesh with the first planetary gears (P 1 ), and the first planetary gears (P 1 ) mesh with the first ring gear (H 1 ).

5. Continuously variable power split transmission according to claim 1 , wherein the entry unit (E) is drivingly connected with the combustion engine (VM) via an input shaft (StW 0 ) and includes a first coupling (C 0 ) and a second coupling (C 1 ), wherein the first coupling (C 0 ) if closed establishes the connection between the input shaft (StW 0 ) and a sun gear shaft (SW 1 ) ending in the sun gear (S 1 ), and wherein the second coupling (C 1 ) if closed drivingly connects the input shaft (StW 0 ) with the first ring gear shaft (HW 1 ).

6. Continuously variable power split transmission according to claim 5 , wherein the entry unit (E) comprises a first brake (B 1 ) for immobilizing the first ring gear (H 1 ) in order to access a range where only the variator transmits power.

7. Continuously variable power split transmission according to claim 5 , wherein the entry unit (E) comprises a step-up planetary gear train (PG 0 ), activated by actuating the entry-side brake (B 0 ).

8. Continuously variable power split transmission according to claim 7 , wherein the step-up gear train (PG 0 ) includes: an entry unit planet carrier (St 0 ) drivingly connected with the input shaft (StW 0 ) with entry unit planetary gears (P 0 ) , an entry unit sun gear (S 0 ) fixed on the sun gear shaft (SW 0 , SW 1 ) between the couplings (C 0 , C 1 ), and an entry unit ring gear (H 0 ) which can be immobilized by actuating the entry side brake (B 0 ).

9. Continuously variable power split transmission for powering vehicles and/or work machines by a combustion engine (VM), including a variator (V), a summing gear train and a number of couplings, the variator delivering a fraction of the power of the combustion engine with a speed that is continuously variably controlled between maximum speeds in both directions to the summing gear train, where it is added to the other fraction of the power, and where the transition between a plurality of ranges occurs in points of synchronism, the summing gear train being a planetary gear train with four shafts including a first sun gear (S 1 ), a second ring gear (H 2 ), a first ring gear (H 1 ) and a number of planetary gears (P 1 , P 2 ) journaled on a planet carrier (St 1 ), wherein:

a. the couplings (C 0 , C 1 ; C 0 , C 1 , B 0 , B 1 ) are incorporated in one common entry unit (E), which is arranged in the flux of power between the combustion engine (VM) and the summing gear train (SG 2 ),

b. the summing gear train (SG 2 ) includes first planetary gears (P 1 ) and second planetary gears (P 2 ) journaled on a common planet carrier (St 1 ), the first (P 1 ) and the second planetary gears (P 2 ) meshing with each other,

c. the first sun gear (S 1 ) or the first ring gear (H 1 ) are driven by the combustion engine (VM) and the second ring gear (H 2 ) is driven by the variator (V), the first sun gear (S 1 ) or the first ring gear (H 1 )—for the transition from one range to the next range in a point of synchronism (1,2,3)—being in turn drivingly connected with the combustion engine (VM)

d. the planet carrier (St 1 ) is drivingly connected with the output shaft (StW 1 ) of the transmission.

10. Continuously variable power split transmission according to claim 9 , wherein the first ring gear (H 1 ) is disposed adjacent the entry unit (E) and the planet carrier (St 1 ) is disposed on the other side of the summing gear train (SG 2 ), and wherein the first sun gear (S 1 ) is disposed adjacent the entry unit (E) and the second ring gear (H 2 ) is disposed on the other side of the summing gear train (SG 2 ), and wherein the planet carrier (St 1 ) is the power output element, rotating with the summed up continuously variable speed (n_StW 1 ).

11. Continuously variable power split transmission according to claim 9 , wherein the first sun gear (S 1 ) meshes with the first planetary gears (P 1 ), the first ring gear (H 1 ) meshes with the first planetary gears (P 1 ), the first planetary gears (P 1 ) mesh with the second planetary gears (P 2 ) and the second planetary gear (P 2 ) meshes with the second ring gear (H 2 ).

12. Continuously variable power split transmission according to claim 9 , wherein the entry unit (E) is drivingly connected with the combustion engine (VM) via an input shaft (StW 0 ) and includes a first coupling (C 0 ) and a second coupling (C 1 ) , wherein the first coupling (C 0 ) if closed establishes the connection between the input shaft (StW 0 ) and a sun gear shaft (SW 1 ) ending in the sun gear (S 1 ), and wherein the second coupling (C 1 ) if closed drivingly connects the input shaft (StW 0 ) with the first ring gear shaft (HW 1 ).

13. Continuously variable power split transmission according to claim 12 , wherein the entry unit (E) comprises a first brake (B 1 ) for immobilizing the first ring gear (H 1 ) in order to access a range where only the variator transmits power.

14. Continuously variable power split transmission according to claim 12 , wherein the entry unit (E) comprises a step-up planetary gear train (PG 0 ), activated by actuating the entry-side brake (B 0 ).

15. Continuously variable power split transmission according to claim 14 , wherein the step-up gear train (PG 0 ) includes: an entry unit planet carrier (St 0 ) drivingly connected with the input shaft (StW 0 ) with entry unit planetary gears (P 0 ) , an entry unit sun gear (S 0 ) fixed on the sun gear shaft (SW 0 , SW 1 ) between the couplings (C 0 , C 1 ), and an entry unit ring gear (H 0 ) which can be immobilized by actuating the entry side brake (B 0 ).

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 7, 2019
From: GLASSNER, RUDOLF
To: GLASSNER, RUDOLF; VDS - HOLDING GMBH
Reel/Frame 049095/0745 →
Priority Claims (1)
EP 18000267 · Mar 19, 2018 · regional
Continuity (1)
Related Publication 20190285154A1 · Sep 19, 2019