INDUSTRIAL VEHICLE WITH A PENDULUM AXEL
20190161330 ยท 2019-05-30
Inventors
Cpc classification
B60G9/02
PERFORMING OPERATIONS; TRANSPORTING
B66F9/07586
PERFORMING OPERATIONS; TRANSPORTING
B60G2200/322
PERFORMING OPERATIONS; TRANSPORTING
International classification
B66F9/075
PERFORMING OPERATIONS; TRANSPORTING
B66F17/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
An industrial conveyor vehicle with four wheels (4, 5), a vehicle chassis (2) and a rear axle (1) in the form of a pendulum axle (1), which is mounted in a pivot mounting (3) supported on the vehicle chassis (2) and can undergo pivoting movements within the range of a pivot angle about a pivot axis (a) that extends in the longitudinal direction of the vehicle. Depending on the situation driving situation, a maximum pivot angle (.sub.1, .sub.2) can be set which limits the pivoting movements.
Claims
1-7. (canceled)
8. An industrial vehicle comprising: four wheels (4, 5, 12, 13), a vehicle chassis (2), and a rear axle (1) in a form of a pendulum axle (1), the pendulum axle being mounted in a pivot mounting (3) on the vehicle chassis (2) for undergoing pivoting movement about a pivot axis (a) that extends in a longitudinal direction (x) of the vehicle, and, depending upon a driving situation, a maximum pivot angle (.sub.1, .sub.2) that limits the pivoting movements being settable.
9. The industrial vehicle according to claim 8, wherein limiting elements (6, 7) are arranged on the vehicle chassis (2) within a swiveling or a pivoting range of the pendulum axle (1).
10. The industrial vehicle according to claim 9, wherein adjusting devices (8, 9) are associated with the limiting elements (6, 7).
11. The industrial vehicle according to claim 9, wherein the limiting elements are in a form of stops (6, 7).
12. The industrial vehicle according to claim 10, wherein the adjusting devices (8, 9) are in a form of either electric servomotors or hydraulic servomotors.
13. The industrial vehicle according to claim 8, wherein the maximum pivot angles (.sub.1, .sub.2) is set as a function of current operating parameters including one of a speed of the vehicle, a steering angle, a lifting height, a loading condition and a current pivot angle.
14. The industrial vehicle according to claim 13, wherein the current operating parameters are measurable by sensors and sent to a control unit.
15. An industrial vehicle comprising: four wheels, a vehicle chassis, and a rear pendulum axle, first and second wheels of the four wheels being rotatably mounted at opposite ends of the rear pendulum axle, the rear pendulum axle being mounted on the vehicle chassis by a pivot joint that is located between the first and the second wheels, the rear pendulum axle being pivotable about a pivot axis that extends through the pivot join in a longitudinal direction of the vehicle such that the rear pendulum axle is pivotable relative to the vehicle chassis between first and second maximum pivot angles, and the first and the second maximum pivot angles, which limit pivotal movement of the rear pendulum axle, being set based on current operating conditions of the vehicle.
16. The industrial vehicle according to claim 15, further comprising first and second adjusting devices that are fixed on laterally opposite sides of the vehicle chassis, the first and the second adjustment devices communicate with first and second pivot angle limiters, respectively, and, based on the current operating conditions of the vehicle, the first and the second adjustment devices adjust an orientation of the first and the second pivot angle limiters relative to the rear pendulum axle to set the first and the second maximum pivot angles and limit the pivotal movement of the rear pendulum axle.
17. The industrial vehicle according to claim 16, wherein the first and the second maximum pivot angles are set based on at least one of a speed of the vehicle, a steering angle, a lifting height, a loading condition and a current pivot angle.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0013] An example embodiment of the invention is illustrated in the drawings and will be described in greater detail below, so that further features and/or advantages can emerge from the description and/or the drawings. The drawings show:
[0014]
[0015]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0016]
[0017]
[0018] The smaller the maximum pivot angles .sub.1, .sub.2 are set, the more certain it is that the resultant force vector will be within one of the two stability triangles 14, 15, 16 or 15, 11, 10 so that the stability of the vehicle is ensured. The pivot angle limiters 6, 7 can preferably be set with the help of the adjusting devices 8, 9 in two ways: the setting can be done independently of the current driving situation, for example by the driver of the vehicle, In doing this, the flatness of the ground can be taken into account in order to, on the one hand, have a sufficiently large maximum pivot angle available, and on the other hand to ensure as great a standing stability as possible. On the other hand, the current driving situation can be detected by sensors (not shown), for example by measuring the driving speed of the vehicle, the steering angle, the lifting height, the loading condition and/or the current pivot angle of the pendulum axle 1. The measured values are sent as signals to a control unit (not shown), which sets the pivot angle limiters or stops 6, 7 optimally during driving. The maximum pivot angles .sub.1, .sub.2 can be set between zero and a maximum value that depends on the design of the axle. The adjusting devices are preferably in the form of electric servomotors or hydraulic cylinders.
[0019] 1 Pendulum axle/axle body
[0020] 2 Vehicle chassis
[0021] 3 Pivot joint
[0022] 4 Rear wheel
[0023] 5 Rear wheel
[0024] 6 Pivot angle limiter
[0025] 7 Pivot angle limiter
[0026] 8 Adjusting device
[0027] 9 Adjusting device
[0028] 10 Ground contact point
[0029] 11 Ground contact point
[0030] 12 Front wheel
[0031] 13 Front wheel
[0032] 14 Ground contact point
[0033] 15 Ground contact point
[0034] 16 Mid-point of pivot joint
[0035] 17 Point of application
[0036] 17 Point of application
[0037] 17 Point of application
[0038] a Pivot axis
[0039] x Longitudinal direction of the vehicle
[0040] .sub.1 Right-hand pivot angle
[0041] .sub.2 Left-hand pivot angle
[0042] B Ground
[0043] P1 Adjusting device
[0044] P2 Adjusting device