US2020224657A1PendingUtilityA1

System for conveying a medium

Assignee: |TT Bornemann GmbHPriority: Nov 20, 2014Filed: Mar 16, 2020Published: Jul 16, 2020
Est. expiryNov 20, 2034(~8.3 yrs left)· nominal 20-yr term from priority
F04C 15/008F04C 2/16F04C 14/26F04C 2240/40F04C 11/001F01C 1/16
56
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Claims

Abstract

The application relates to a system for conveying a medium having not less than two working machines ( 2, 2 a, 2 b, 2 c ) that each have not less than one carrier shaft ( 25, 35 ) with transport elements ( 22, 32 ) for the medium to be conveyed arranged on them, and not less than one drive ( 3, 3 a, 3 b, 3 c ) that sets the respective carrier shaft ( 25, 35 ) in rotation, with multiple working machines ( 2, 2 a, 2 b, 2 c ) connected in series, so that the medium is conveyed to a working machine ( 2, 2 a, 2 b, 2 c ) arranged downstream, and so that a separate drive ( 3, 3 a, 3 b, 3 c ) is assigned to each of the working machines ( 2, 2 a, 2 b, 2 c ) and that the drives ( 3, 3 a, 3 b, 3 c ) are connected in parallel with each other and connected to a common power supply system ( 5 ).

Claims

exact text as granted — not AI-modified
1 - 14 . (canceled) 
     
     
         15 . A system for conveying a medium, the system comprising:
 a first working machine; and   a second working machine; wherein the first and second working machines each have at least one carrier shaft with transport elements for the medium to be conveyed upon arranged on the at least one carrier shaft, and at least one drive that sets each respective carrier shaft in rotation, wherein the first and second working machines are connected in series, the first working machine is arranged downstream of the medium to be conveyed, a first drive is assigned to the first working machine and a second drive is assigned to the second working machine, the first and second drives are connected in parallel with each other and connected to a common power supply system, and the first or second working machine has multiple carrier shafts that are coupled with each other in an angle-dependent and rigid manner.   
     
     
         16 . The system of  claim 15 , wherein the first working machine and second working machine are mechanically connected with each other to form a module. 
     
     
         17 . The system of  claim 16 , wherein the first working machine is connected with the second working machine by way of connecting elements, the connecting elements connect an outlet of the first working machine with an inlet of the second working machine, and the second working machine is downstream of the first working machine. 
     
     
         18 . The system of  claim 15 , wherein at least one working machine is designed as a positive displacement pump, in particular, as a screw spindle pump. 
     
     
         19 . The system of  claim 15 , wherein the first or second drive is designed as a hydraulic engine or an electric motor. 
     
     
         20 . The system of  claim 19 , wherein the hydraulic engine is designed as a gear motor or a screw spindle motor. 
     
     
         21 . The system of  claim 15 , wherein the number of driven shafts of the first or second drive corresponds to the number of carrier shafts of the first or second working machine respectively, or equals an integer multiple of them. 
     
     
         22 . The system of  claim 15 , wherein the first or second working machine has multiple carrier shafts and a respective first or second drive has multiple driven shafts, each of which is coupled with a carrier shaft. 
     
     
         23 . The system of  claim 15 , wherein the first or second drive and the respective first or second working machine are hydraulically decoupled from each other. 
     
     
         24 . The system of  claim 15 , wherein each working machine is assigned to a bypass line in order to be able to bypass a respective working machine in the connection in series. 
     
     
         25 . The system of  claim 15 , wherein a supply line for the first or second drives is integrated in a respective drive housing. 
     
     
         26 . A system for conveying a medium, the system comprising:
 a first working machine; and   a second working machine; wherein the first and second working machines each have at least one carrier shaft with transport elements for the medium to be conveyed upon arranged on the at least one carrier shaft, and at least one drive that sets each respective carrier shaft in rotation, wherein the first and second working machines are connected in series, the first working machine is arranged downstream of the medium to be conveyed, a first drive is assigned to the first working machine and a second drive is assigned to the second working machine, the first and second drives are connected in parallel with each other and connected to a common power supply system, the first or second working machine has multiple carrier shafts that are coupled with each other in an angle-dependent and rigid manner and the first working machine and the first assigned drive are installed in a common housing.   
     
     
         27 . The system of  claim 26 , wherein a driven shaft is part of the carrier shaft or coupled with it in a torsionally rigid manner. 
     
     
         28 . The system of  claim 26 , wherein the first working machine and the second working machine are mechanically connected with each other to form a module. 
     
     
         29 . The system of  claim 28 , wherein the first working machine is connected with the second working machine by way of connecting elements, the connecting elements connect an outlet of the first working machine with an inlet of the second working machine, and the second working machine is downstream of the first working machine. 
     
     
         30 . The system of  claim 26 , wherein at least one working machine is designed as a positive displacement pump, in particular, as a screw spindle pump. 
     
     
         31 . The system of  claim 26 , wherein the first or second drive is designed as a hydraulic engine or an electric motor. 
     
     
         32 . The system of  claim 31 , wherein the hydraulic engine is designed as a gear motor or a screw spindle motor. 
     
     
         33 . The system of  claim 26 , wherein the number of driven shafts of the first or second drive corresponds to the number of carrier shafts of the first or second working machine respectively or equals an integer multiple of them. 
     
     
         34 . A system for conveying a medium, the system comprising:
 a first working machine; and   a second working machine; wherein the first and second working machines each have at least one carrier shaft with transport elements for the medium to be conveyed upon arranged on the at least one carrier shaft, and at least one drive that sets each respective carrier shaft in rotation, wherein the first and second working machines are connected in series, the first working machine is arranged downstream of the medium to be conveyed, a first drive is assigned to the first working machine and a second drive is assigned to the second working machine, the first and second drives are connected in parallel with each other and connected to a common power supply system, the first or second working machine has multiple carrier shafts that are coupled with each other in an angle-dependent and rigid manner, the first working machine and the first assigned drive are installed in a common housing, and the first or second working machine has multiple carrier shafts and a respective first or second drive has multiple driven shafts, each of which is coupled with a carrier shaft.

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