Method for controlling a device for feeding flowable goods into

Dispensing – Automatic control – Of dispensers with fluid pressure discharge assistance

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Details

222637, 406 14, B67D 508

Patent

active

060859393

DESCRIPTION:

BRIEF SUMMARY
BACKGROUND OF THE INVENTION

The invention relates to a method for controlling a device for feeding dust-like or finely granular flowable material from at least one conveying container into a common transport line in which the conveying container(s) for removing the flowable material are simultaneously supplied with pressure and emptied whereby, after pressure relief, flowable material is again filled in.
Such pneumatic conveying devices are known in different embodiments. For a batch-wise filling of the conveying containers, when the flowable material is supplied non-uniformly, and for starting the conveying action as a function of the filling level of the conveying containers, idle time will result which lowers the transporting efficiency of the device. Therefore, an average transporting efficiency for the device will result which is considerably below the optimal transporting capacity of the system. Especially the filling level indicators which start the conveying action are prone to malfunction.
Pneumatic transporting devices for finely granular or dust-like flowable material without filling level indicators are known. In these devices, independent of the respective supply of flowable material, the conveying action is initiated in a predetermined sequence. This operating method is not economical because the device is not operated at its optimal operating point which results in very energy consumption.
It is therefore an object of the invention not only to eliminate the malfunction rate of pneumatic transport devices but also to lower the energy consumption.


SUMMARY OF THE INVENTION

Inventively, this object is solved in that the optimal amount of flowable material that can be transported by the device is determined for maximum possible filling level of the transport device, the amount of flowable material removed during emptying of the transporting device is determined, based on measured relevant transport parameters, i.e., at least pressure during the transporting cycle as well as transporting time, and is compared with the optimal amount of material to be transported, and when deviations of the optimal amount of material to be transported are detected, the interval between the transport cycles is changed by predetermined time periods.
In the inventive method for controlling a device for feeding dust-like or finely granular flowable material from pressure-loaded conveying devices into a transport line, the amount of flowable material of the last or previous transport cycles is detected based on the transport-technological data and is compared to the amount to be transported under optimal conditions in the device. When changing (shortening or extending) the interval, preferably by predetermined or calculated time periods, between sequentially performed transport cycles, it is ensured with the invention in a simple manner that the conveying containers are filled to the maximum level before starting a transport cycle, so that not only an operation of the device under optimal conditions is ensured, but also operational malfunctions of the device caused by mechanical elements which determine the start of the transport, for example, filling level indicators, are avoided.


BRIEF DESCRIPTION OF THE DRAWINGS

The inventive method will be explained in the following with the aid of an embodiment and the accompanying drawing, which shows a schematic cross-sectional view of a pneumatic transport device.


DESCRIPTION OF PREFERRED EMBODIMENTS

FIG. 1 shows a simplified representation of an example of a device for feeding dust-like or finely granular flowable material from three conveying containers 1 into a common pneumatic transport line 2.
The conveying containers 1 open directly into the transport line 2 which is connected by valve 3 to a compressed air source (not shown). An air supply line 4 is also connected to the compressed air source by valve 3 whereby branch lines 5 and 6 are branched off to the conveying containers 1.
Into each one of the conveying containers 1 a flowable material supply line 7 opens

REFERENCES:
patent: 4613259 (1986-09-01), Packer et al.
patent: 4775267 (1988-10-01), Yamamoto
patent: 4863316 (1989-09-01), Gianella et al.

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