LIFTING PLATFORM FOR LIFTING VEHICLES
20200115205 ยท 2020-04-16
Inventors
Cpc classification
B66F7/28
PERFORMING OPERATIONS; TRANSPORTING
B66F7/0641
PERFORMING OPERATIONS; TRANSPORTING
B66F7/08
PERFORMING OPERATIONS; TRANSPORTING
International classification
B66F7/06
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The invention relates to a lifting platform with two lifting devices (24, 70) arranged at a distance from one another, which are oriented to a common longitudinal center axis (16) of the lifting platform (11) and between which a working space (54) for lifting and lowering of vehicles (51) is provided, wherein each lifting device (24, 70) comprises a carrier (31), which is movable up and down and each carrier (31) receives at least two support arms (34), which are respectively mounted pivotably about a pivot axis (43, 44) on the carrier (31), so that these are orientable, in a starting position, parallel to the longitudinal center axis (16) and pivotable into the working space (54) in a use position, wherein each longitudinal axis (42) of the carrier (31) is oriented parallel to the longitudinal center axis (16) and a straight connecting line (45), which extends between the at least two pivot axes (43, 44), which are arranged at a distance to the carrier (31), are oriented in an acute angle a to the longitudinal axis (42) of the carrier (31) in such a manner, that two pivot axes (43) arranged to the longitudinal center axis (16) in a mirror-inverted manner have a greater distance to the longitudinal center axis (16) than the at least two further pivot axes (44) of the carriers (31). (
Claims
1. A lifting platform with two lifting devices arranged at a distance to one another, which are oriented towards a common longitudinal center axis of the lifting platform and between which a working space for lifting and lowering of vehicles is provided, wherein each lifting device comprises a carrier, which is movable up and down and each carrier receives at least two support arms, which are respectively mounted pivotably about a pivot axis on the carrier, so that these are orientable parallel to the longitudinal center axis in a starting position and are pivotable into the working space in a use position, wherein each longitudinal axis of the carrier is oriented parallel to the longitudinal center axis and a straight connecting line, which extends between the at least two pivot axes, which are arranged at a distance on the carrier, are oriented at an acute angle to the longitudinal axis of the carrier in such a manner that two pivot axes arranged to the longitudinal center axis in a mirror-inverted manner have a greater distance to the longitudinal center axis than the at least two further pivot axes of the carriers.
2. The lifting platform according to claim 1, wherein the longitudinal axis of the carrier extends between the two pivot axes arranged offset to one another.
3. The lifting platform according to claim 1, wherein the pivot axes opposite one another and oriented in a mirror-inverted manner to the longitudinal center axis have a greater distance than the further pivot axes, and the further pivot axes lie in the longitudinal axis of the carrier.
4. The lifting platform according to claim 1, wherein longer support arms are arranged on the pivot axes of the carriers, which are arranged at a greater distance to the longitudinal center axis of the lifting platform, than on the further pivot axes of the carriers.
5. The lifting platform according to claim 1, wherein the lifting platform, when lifting vehicles, comprises a stationary base assembly, which includes two base assembly halves, which are arranged to one another via a connecting point, with a middle part and with in each case one lifting device arranged on the base assembly half.
6. The lifting platform according to claim 5, wherein the lifting device is configured as parallelogram guiding device or as scissoring guide device.
7. The lifting platform according to claim 1, wherein the lifting device is configured as a single-column lifting device, which comprises a base plate fastenable on the base or a lowerable chassis and includes a lifting column arranged thereon, along which the carrier is arranged movable up and down.
8. The lifting platform according to claim 5, wherein two base assembly halves are arranged releasable via the connecting point with the middle part.
9. The lifting platform according to claim 5, wherein the lifting device includes a load arm and a guide arm, which are, with at least one drive arrange in a base assembly half, transferable from a starting position arranged on the base into a working position and respectively receive the carrier in an end region of the lifting device.
Description
[0014] The invention as well as further advantageous embodiments and further developments of the same are described and disclosed in detail in the following based on the examples illustrated in the drawings. The features to be taken from the description and the drawings can be applied, according to the invention individually or in a plurality, in any combination. Shown are in:
[0015]
[0016]
[0017]
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
[0024] Each base assembly half 14 includes a housing 21, inside which a schematically illustrated drive 22 is provided. Moreover, each base assembly half 14 receives a lifting device 24 which, in this lifting platform, is configured as a parallelogram guiding device 24. Alternatively, the lifting device 24 can also be configured as a scissoring guide device. The at least one drive 22 lifts and lowers the parallelogram guiding device 24. This parallelogram guiding device 24 includes a load arm 25, which is pivotable about a first pivot axis 26. Moreover, the parallelogram guiding device 24 includes a guide arm 27, which is pivotable about a second pivot axis 28, which axis is distanced to the first pivot axis 26. Both pivot axes 26, 28 are mounted on the housing 21.
[0025] The parallelogram guiding device 24 comprises a carrier 31 on an end region remote to the housing 21, which carrier remains oriented horizontally, by means of the parallelogram guiding device 24, during the lifting and lowering of the parallelogram guiding device 24. In
[0026] Each carrier 31 receives at least one support arm 34. Preferably, two support arms 34 are respectively provided on the carrier 31. These support arms 34 are pivotably mounted respectively about a bearing axis 43, 44. The support arms 34 can be configured of equal length. Alternatively, the rear support arm 34, facing towards the entry region 49, can be configured longer than the in particular front support arm 34 facing towards the middle part 15. The support arms 34 are preferably configured as telescoping support arms.
[0027] The lifting platform 11 is preferably configured as a movable lifting platform 11. Each base assembly half 14 preferably comprises a running roller 38 at an end distanced to the middle part 15, which roller is part of a carriage. Moreover, a drawbar 39 illustrated in
[0028] Alternatively to the lifting platform 11 illustrated in
[0029] To actuate the lifting platform 11 out of a non-use position into a working position 32, a controller 41 is provided which is arranged on one of the two base assembly halves 14, for example. This controller 41 can output a control signal to the respective drive(s) 22. The drive 22 can be a hydraulic cylinder which can be electrically actuated. A drive 22 is preferably provided in each housing 21 of the base assembly half 14. The controller 41 includes monitoring sensors for synchronization of the lifting and lowering movement of the respective lifting device 24. On the one hand, control lines can be guided from the controller 41 into the directly assigned base assembly half 14. On the other hand, control lines can be guided within the middle part 15 to the opposite base assembly half 14.
[0030] The carrier 31 comprises a longitudinal axis 42. This can be taken from the plan view in
[0031] An entry region 49 is provided opposite the middle part 15. The entry region 49 is defined by a surface between the pivot axes 43, 44 of the opposed carriers 31. Two of the pivot axes 43 of the carrier 31, oriented to the longitudinal center axis 16 and opposite one another, have a greater distance to one another than to the further two pivot axes 44 on the carrier 31. Thereby, an enlarged entry region 49 is formed.
[0032] Through the pivot axes 43, 44 arranged offset to the longitudinal axis 42 of the carrier 31, an obliquely extending end face 48 can be configured on the carrier 31. This end face 48 extends preferably parallel to the straight connecting line 45. An enlarged entry region 49 can thereby be formed in the carriers 31 oriented to the longitudinal center axis 16. This entry region 49 can be configured in a funnel-shaped manner, in a view from above onto the carrier 31. The working space 54 of the lifting platform 11 is defined by the pivot region of the support arm 31 and, insofar as these are telescopable, by the extended support arms 31.
[0033] The straight connecting line 45 of the respective carrier 31 opens in the direction of the entry region 49. The distance of the opposite pivot axes 44 on the respective carrier 31 is greater than the distance of the further opposite pivot axes 44 of the respective carrier 31. The pivot axes 43 oriented to the entry region are thereby further offset outwards with respect to the longitudinal center axis 16 of the lifting platform 11. The support arm 34, which is received by the pivot axes 43 further offset outwards can thereby be oriented, in a non-use position, as this is illustrated in
[0034] The support arms 34 can have a predefined length. Alternatively, one or both support arms 34 arranged on the carrier 31 can be configured telescopable.
[0035]
[0036] In
[0037]
[0038] A comparison of the positions of the support arms 34, on the one carrier 31, in the short vehicle 51 according to
[0039]
[0040]