MANUALLY MOVABLE TROLLEY
20210070341 ยท 2021-03-11
Inventors
Cpc classification
B62B3/14
PERFORMING OPERATIONS; TRANSPORTING
B62B3/1476
PERFORMING OPERATIONS; TRANSPORTING
B62B5/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
B62B3/14
PERFORMING OPERATIONS; TRANSPORTING
B62B5/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The invention relates to a manually movable and stackable trolley having a supporting device, wherein, when two trolleys are stacked, a rear region which is only taken up by the rear trolley and a front region which is only taken up by the trolley in front are produced, wherein the supporting device is assigned an electronic weighing device which is equipped with a first and a second weighing cell. The two weighing cells are arranged such that, in the stacked state, the first weighing cell of the rear, inserted trolley is within the rear region, and the second weighing cell of the inserted trolley is outside the front region, and, conversely, the first weighing cell of the trolley in front is outside the rear region, and the second weighing cell of the trolley in front is within the front region, wherein the first weighing cell is directed downwards from the at least one supporting device and the second weighing cell is directed upwards.
Claims
1. Manually movable transport trolley, which can be stacked with an identical transport trolley in the horizontal direction in a space-saving manner and which is equipped with a chassis, with a pushing device and with at least one deposit device intended for depositing or carrying objects, wherein, in the stacked state, a smallest possible distance is produced between two transport trolleys, which allows a rear region and a front region to be produced in the stacking connection of the two transport trolleys, wherein the rear region is only occupied by the rear inserted trolley and the front region is only occupied by the preceding trolley, wherein the at least one deposit device is assigned an electronic weighing device which is equipped with at least one first and with at least one second weighing cell, is operatively connected to the at least one deposit device and is intended for determining the weight of the objects carried by the at least one deposit device, wherein at least the at least one first and the at least one second load cell are arranged on the at least one deposit device in such a way that, when two identical transport trolleys are in the stacked state, the at least one first load cell of the rear pushed-in trolley is located inside the rear region and the at least one second load cell of the pushed-in trolley is located outside the front region, and that conversely the at least one first load cell of the preceding trolley is located outside the rear region and the at least one second load cell of the preceding trolley is located inside the front region, wherein the at least one first load cell is directed downwards from the at least one deposit device and the at least one second load cell is directed upwards from the at least one deposit device.
2. Transport trolley according to claim 1, wherein, viewed in plan view, the first and the second load cells are arranged in geometrically regular form on the at least one deposit device.
3. Transport trolley according to claim 1, wherein the greatest horizontal extent of the at least one first load cell and/or the at least one second load cell is greater than the stacking distance between two transport trolleys and that the direction of the greatest horizontal extent of the load cells is at an angle to the pushing direction of the transport trolley.
4. Transport trolley according to claim 1, wherein the transport trolley is equipped at the rear and/or front with swivel castors and that the rear region and the front region in the pushing direction of the transport trolley are each shorter than the interference circle of the swivel castors and/or shorter than one and a half times the diameter of the circles described by the running surfaces of the swivel castors.
5. Transport trolley according to claim 1, wherein the at least one first load cell is arranged at a distance from the rear end of the at least one deposit device and the at least one second load cell is arranged at a distance from the front end of the at least one deposit device.
6. Transport trolley according to claim 1, wherein in the case of a storage device designed as a container, either its base or the entire storage device can be swivelled about a horizontal axis within a defined swivel range.
7. Transport trolley according to claim 1, wherein the components required for supplying energy to the electronic weighing device, for example a battery array and/or at least one receiver coil intended for inductive energy transmission, are arranged in the rear region.
8. Transport trolley according to claim 1, wherein the components required for supplying power to the electric weighing device are arranged on the loading platform and extend downwards.
Description
[0010] The invention is explained in more detail by means of schematically drawn exemplary embodiments. It shows
[0011]
[0012]
[0013]
[0014]
[0015]
[0016]
[0017] This range includes compression, tension, planar beam or single point load cells, which can be used optionally for the purposes of this invention. The load cells 13, 14, also known as weight sensors, belong to at least one electronic weighing device 17 which, connected to the at least one deposit device 6, is in operative connection with the deposit device 6 and which is intended to determine the weight of the objects carried by the deposit device 6. Each deposit device 6 is assigned its own weighing device 17.
[0018]
[0019] In addition to the load cells 13, 14, other components belonging to the weighing device 17 can also be attached to the transport carriage in such a way that they are also located in the rear and/or front area 15, 16 when two transport carriages 1, 1 are stacked.
[0020] Transport trolleys 1 are usually equipped with swivel castors at the rear and/or front. Transport devices 1 are known to have only one swivel castor at the front, for example as a luggage trolley, and transport devices 1 are known to have two castors at the front. According to an advantageous design, transport trolley 1 is equipped with swivel castors at the rear and/or front and the rear area 15 and the front area 16 in the pushing direction of transport trolley 1 are each shorter than the diameter of the interference circle of the swivel castors and/or shorter than one and a half times the diameter of the circles described by the running surfaces of the swivel castors. The diameter of the interference circle is equal to twice the swivel radius of a swivel roller. If the load cells 13, 14 are arranged in such short rear areas 15 and front areas 16, the equipment of a transport device 1 with a weighing device 17 does not adversely affect the size of known optimised stack spacings.
[0021]
[0022] According to an advantageous design, the greatest horizontal extent of the at least one first load cell 13 and/or the at least one second load cell 14 is greater than the stacking distance between two transport trolleys and the direction of the maximum horizontal extension of the load cells 13, 14 is at an angle to the pushing direction of the transport trolley. In the illustration in
[0023]
[0024] In addition to the load cells 13, 14, other components belonging to the weighing device 17 or enabling or supporting the function of the weighing device 17 can also be attached to the transport trolley 1 in such a way that they are at least in the rear area 15 when two transport trolleys 1, 1 are stacked.
[0025]
[0026] The invention leaves the skilled person free to design the deposit device 6.
[0027] For example, a frame unit or carrying unit may be mounted so as to pivot about a horizontal axis 9 located at the rear 3 of the chassis 2. The load cells 13, 14 are attached to the frame unit and the load platform 10 is attached to the load cells, which in turn serve as a storage device 6. It is also possible to design a deposit device 6 in such a way that it can be used, for example, for hanging, i.e. for carrying bags intended for receiving objects. It is generally recommended to use the described transport trolleys 1 in self-service stores. Since a large number of transport trolleys 1 must be available to customers in such markets and since this large number of transport or shopping trolleys must also be provided in a space-saving manner, the transport trolleys 1 proposed here are ideally suited to meet this requirement.