FUNDING ORDER
Patent Information
- Application Number
- DE502022006794
- Authority / Receiving Office
- DE · DE
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2021-03-15
- Filing Date
- 2022-03-14
- Publication Date
- 2026-02-19
- Estimated Expiration
- 2042-03-14
AI Technical Summary
Conveying systems at parcel distribution centers face issues such as parcel damage from high speeds, chute jams, and limited access for maintenance due to continuous operation, particularly in inclined chutes with high acceleration.
A conveying arrangement that includes a belt conveyor with a controlled speed reduction mechanism and a sliding bed with a holding brake, allowing safe access for maintenance while preventing parcel damage by adjusting the speed to a safe range.
Ensures safe delivery of parcels without damage and enables maintenance access without disrupting the system's operation, reducing the risk of jams and ensuring personnel safety.
Description
[0001] The invention relates to a conveying arrangement.
[0002] At the terminals of a parcel distribution center, parcels are loaded into delivery vans assigned to specific destination regions. A sorter, such as a cross-belt sorter (e.g., WO 2019 / 002 048 A1), feeds the parcels to their respective terminals at high speed. To overcome differences in elevation, inclined chutes are used between the sorter and the terminal, allowing the parcels to slide down them due to gravity. The high speeds of the parcels can lead to damage. Furthermore, parcel jams frequently occur in the chutes and must be cleared manually.
[0003] EP 1 868 923 B1 discloses an end-of-line chute. This chute features at least two driven rollers running transversely to the conveying direction of the chute. The rollers are driven at different speeds. The speed of one roller is higher than the other the closer it is to the exit side of the end-of-line chute.
[0004] EP 0 706 960 B1 discloses a terminal station in front of which a timing belt is arranged, to which the conveyed items are dispensed in a timed manner. The items to be conveyed can thus be transported gently one after the other.
[0005] DE 10 2010 005 267 A1 discloses a conveying device for unit loads with a conveying head that has a receiving area for manually placing unit loads. The conveying head can be moved within the space.
[0006] EP 2 922 775 B1 discloses a brake roller based on magnetic eddy currents. This brake can slow down a conveyed material, but cannot hold it at a standstill.
[0007] A conveying arrangement according to the preamble of claim 1 is known from WO 03 / 043428A2.
[0008] The object of the present invention is to provide an improved conveying arrangement. This is achieved by a device and its use according to the main claims; embodiments are the subject of the dependent claims and the description.
[0009] The conveying arrangement is characterized by the fact that the conveyed goods arrive at the transfer point at a low speed, thus reducing the risk of damage. Nevertheless, safe access to the upper areas of the chute section is ensured for a person to repair any defects. Furthermore, an overhead sorter can continue to operate, as access is from the sides of the terminal.
[0010] The invention is particularly suited for conveying postal parcels and / or polybags. Polybags are goods packaged in film without a rigid outer contour.
[0011] A suitable conveying item, in particular a postal parcel, weighs 20 kg, although this does not preclude the use of lighter or heavier parcels. Specifically, the conveying system is designed to handle a conveying item, particularly a postal parcel, weighing 50 kg. It may also be possible to convey so-called polybags, i.e., goods packaged in a film, such as clothing.
[0012] The sliding bed is designed to support a point load of at least 100 kg.
[0013] The invention is explained in more detail below with reference to the figures; here, the following are shown: Figure 1 schematically shows the structure of a conveyor arrangement in side view; Figure 2 schematically shows a configuration of the conveyor arrangement in side view during operation; Figure 3 schematically shows the configuration of the conveyor arrangement according to Figure 2Figure 4 shows a side view in the maintenance operating state; Figure 4 shows a schematic representation of one embodiment of a band brake; Figure 5 shows a schematic representation of another embodiment of a band brake.
[0014] Figure 1 Figure 1 shows a conveying arrangement according to the invention. A conveyed item 9, for example a postal parcel, is transported by a sorter 7. From the sorter 7, the conveyed item reaches a receiving area A1, which is followed by a chute area A2. In the chute area, the conveyed item 9 slides downwards, at least in sections, to reach a transfer area A3 and then a final destination 4. At the final destination 4, the conveyed item is stored, at least temporarily, before being transferred from there into a delivery van 8, a roll container, or a wire mesh box.
[0015] Figure 2Figure 1 shows details of the chute section A2 with two separate chutes 11 and 12, arranged one behind the other in the conveying direction F. In chute section A2, significant height differences are overcome. Due to space optimization, chute section A2 is therefore very steep, resulting in high acceleration of the conveyed material 9. Furthermore, the conveyed material is supplied by the sorter 7 at a speed of up to 3 m / s. This could lead to damage to the conveyed material, especially upon impact at the end point 4. To prevent damage to the conveyed material 9 from the resulting high speed, a belt conveyor is arranged downstream of the first chute 11 in the conveying direction F.
[0016] The belt conveyor 20 has a conveyor belt 21 on which the conveyed material is transported, at least in sections, in the chute area A2. The belt conveyor 20 has a conveyor belt 21 on which the conveyed material 9 arrives at the system. The conveyor belt 21 is tensioned around two deflection pulleys 26. In a conveying operating state, the conveyor belt 21 is operated at a transport speed that is, in particular, less than 1.5 m / s and is, in particular, between approximately 0.2 and 0.5 m / s. A belt drive 22, for example a drum motor, is provided to drive the conveyor belt 21.
[0017] A conveyed item 9 entering conveyor belt 21 is slowed down by the conveyor belt 21 if it is traveling at too high a speed. At the same time, it is ensured that the conveyed item 9 continues to be transported at least at the transport speed. An alternative static braking device would always have the disadvantage of completely stopping the conveyed item. The belt conveyor thus ensures that the conveyed item 9 reaches the defined transport speed (including a tolerance margin) at the end of the belt conveyor.
[0018] Optionally, a second chute 12 can be connected to the belt conveyor 20, via which the conveyed material 9 is transported from the belt conveyor 20 to the final destination 4. The incline of the second chute 12 can be less than the incline of the first chute 11. It is possible for one or more additional belt conveyors to be connected to the second chute.
[0019] Figure 3 This shows that, due to space optimization, the width of slide area A2 (into the image plane) is limited. If a very large conveyed item 9 enters slide area A2, jams can occur that cannot resolve themselves. Jams frequently occur at transfer area A1. To resolve this jam, a person 5 climbs from the end point 4 towards transfer area A1. To prevent the jammed packages from falling on the person, this person can also perform the resolution from the adjacent slide.
[0020] Access from the other direction (from sorter 7) is generally not possible, as sorter 7 continues to operate even if individual terminals malfunction. To allow access to slide area A2, the following precautions are preferred:
[0021] The belt conveyor 20 has a sliding bed 24 for the conveyor belt 21. To ensure that the person can safely enter the slide area A2 from the end point 4 towards the transfer area A1, the sliding bed 24 has a load-bearing capacity of at least 100 kg.
[0022] The belt conveyor 20 has a holding brake 23. The holding brake 23 is designed to keep the conveyor belt 21 stationary during maintenance, even if a person steps onto the belt conveyor 20. Taking into account the person's weight and the incline, a minimum required holding force H can be determined. At an incline of 20° (not shown), the minimum holding force H for the conveyor belt 21, which must be provided by the belt conveyor 20, is approximately 300 N.
[0023] A control unit 31 is provided to control the belt conveyor 20 and, in particular, to issue control commands to the belt drive and the holding brake 23. An output device 32, for example a traffic light, is provided to indicate to the person that person 5 may enter the slide area A2.
[0024] Figure 4Figure 23 illustrates the operation of the holding brake 23 in one embodiment. A brake element 231 is provided, which can apply a braking force, at least indirectly, to the conveyor belt 21 via a frictional connection. An energy storage device 232, for example, a spring, provides the braking force for the brake element 231. A release actuator 233 is provided to counteract the energy storage device during conveyor operation, thus keeping the holding brake 23 inactive. To initiate the maintenance operating state, the release actuator 233 is de-energized (this can also occur unintentionally due to a power outage). The counterforce to the energy storage device 232 is then eliminated, and the holding brake 23 holds the conveyor belt in place. The brake element 231 can be located outside or inside the deflection roller 26.
[0025] Figure 5Figure 23 illustrates the operation of the holding brake 23 in one embodiment. The belt drive 22 comprises a drive motor 221, which is connected to the deflection pulley 26 via a self-locking gearbox 222. The self-locking gearbox 222 can be a worm gear. The belt drive 22 also serves as the holding brake 23. The self-locking gearbox 222 prevents a reversal of the drive direction. Reference symbol list
[0026] 1 Conveyor arrangement 4 Terminal 5 Person 7 Sorter, feeder 8 Delivery van 9 Goods to be conveyed (postal parcel) 11 First slide 12 Second slide 20 Belt conveyor 21 Conveyor belt 22 Belt drive 221 Drive motor 222 Gearbox 23 Holding brake 231 Brake element 232 Energy storage 233 Release actuator 24 Sliding bed 26 Deflection roller 31 Electronic control 32 Dispensing device A1 Receiving area A2 Slide area A3 Transfer area F Conveying direction H Holding force v Conveying speed
Claims
1. A conveying device (1), comprising a belt conveyor (20) with a conveyor belt (21), wherein the conveying device has a slide area - for receiving a conveyed material (9), in particular a postal parcel (9) at an acceptance area (A1), in particular from an upstream feeding device (7), - for handing over the conveyed material (9) at a handover area (A3), in particular at a terminal station (4); - for transferring the conveyed material (9) in the slide area (A2) from the acceptance area (A1) to the handover area (A3), wherein the slide area (A2) comprises at least one slide (11, 12) downwardly inclined in the conveying direction (F), on which the conveyed material (9) is smoothly transported by gravity, that the slide area (A2) comprises the belt conveyor (20) with the conveyor belt (21), characterized in that the belt conveyor has a brake (23) and that the brake is a holding brake (23), which is set up to hold the conveyor belt (21) in a resting position.
2. The conveying device (1) according to one of the preceding claims, characterized in that the belt conveyor (20) is set up to brake the conveyed material (9).
3. The conveying device (1) according to one of the preceding claims, characterized in that the belt conveyor (20) is arranged behind the slide (11) or behind one of the slides (11, 12) in the conveying direction (F).
4. The conveying device (1) according to one of the preceding claims, characterized in that the belt conveyor (20) is set up - to drive the conveyor belt (21) with a defined conveying velocity (v) in a conveyor operation mode; - to keep the conveyor belt (21) in a resting position in a maintenance operation mode.
5. The conveying device (1) according to one of the preceding claims, characterized in that the holding brake (23) is automatically activated when power to the belt conveyor (20) is deenergized, in particular that the belt conveyor (20) is automatically switched to the maintenance operation mode.
6. The conveying device (1) according to one of the preceding claims, characterized by an output device (32) set up to show a person (5) a mode of the holding brake (23), in particular whether the holding brake (23) is activated and / or whether the conveying device is in the maintenance operation mode.
7. The conveying device (1) according to one of the preceding claims, further comprising a feeding device (7) and / or a terminal station (4).
8. The conveying device (1) according to the preceding claim, wherein the feeding device (7) is a sorter, wherein the sorter (7) is set up to convey a plurality of conveyed materials along the acceptance area (A1), wherein the sorter (7) is set up to convey individual conveyed materials (9) past the entrance area (A1), without being applied to the entrance area (A1), and wherein the sorter (7) is set up to convey individual conveyed materials (9) along the entrance area (A1), and in the process selectively apply them to the entrance area (A1).
9. Use of a conveying device (1), the conveying device (1) comprises a slide area - for receiving a conveyed material (9), in particular a postal parcel (9), at an acceptance area (A1), in particular from an upstream feeding device (7), - for handing over the conveyed material (9) at a handover area (A3), in particular at a terminal station (4); - for transferring the conveyed material (9) in the slide area (A2) from the acceptance area (A1) to the handover area (A3), wherein the slide area (A2) comprises at least one slide (11, 12) downwardly inclined in the conveying direction (F), on which the conveyed material (9) is smoothly transported by gravity, wherein the slide area (A2) comprises a belt conveyor (20) with a conveyor belt (21), and a holding brake (23) for holding the conveyor belt (21) in a resting position, wherein - in order to eliminate a defect in or before the slide area (A2), the conveying device (1) is switched to a maintenance operation mode in which the holding brake (23) is activated, - a person (5) then makes their way to the location of the defect to manually eliminate the defect via the belt conveyor (20), - the holding brake (23) is released after the defect has been eliminated, wherein the mode of the holding brake (23) is shown to the person (5) by an output device (32).
10. Use of a conveying device (1) according to the preceding claim, characterized in that the mode of the holding brake is actuated by an electronic controller (31).
11. Use of a conveying device (1) according to one of claims 9 or 10, wherein a feeding device (7), in particular a sorter (7), arranged above the slide area (A2) in the conveying direction (F) is further operated, while - the defect is being eliminated and / or - if the conveying device (1) is in the maintenance operation mode and / or - if the holding brake (23) is activated.