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公开(公告)号:DE1507172A1
公开(公告)日:1969-11-06
申请号:DEB0089634
申请日:1966-10-28
Applicant: BOSCH GMBH ROBERT
Inventor: KLEINSCHMIDT HEINZ , KRAEMER MANFRED , WEIGERT WILHELM
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公开(公告)号:DE1172960B
公开(公告)日:1964-06-25
申请号:DEB0051240
申请日:1958-11-28
Applicant: BOSCH GMBH ROBERT
Inventor: ELLWANGER DIPL-ING HANS , PREUN HUGO , WEIGERT WILHELM
IPC: F01C21/00
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公开(公告)号:DE1146318B
公开(公告)日:1963-03-28
申请号:DEB0050079
申请日:1958-08-23
Applicant: BOSCH GMBH ROBERT
Inventor: WEIGERT WILHELM , REICHERT RUDOLF
IPC: F16K15/18
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公开(公告)号:FR2527194A1
公开(公告)日:1983-11-25
申请号:FR8305682
申请日:1983-04-07
Applicant: BOSCH GMBH ROBERT
Inventor: WEIGERT WILHELM
Abstract: An energy-saving control arrangement (10) satisfying the most stringent sealing requirements is proposed. The directional control valve (12) of the control arrangement (10) is of seat-valve type of construction. A seat valve body (53) of this directional control valve (12), which seat valve body (53) has a fine-control bevel (66), controls in lifting position (44) the load pressure via a second control line (46) into a pressure space (32) of a control member (29) to enable a servomotor (15) to be controlled independently of load. In addition, the control member (29), assigned to the functions of a reversing valve and a pressure-compensation valve, is provided with an orifice (35) and part of a three-way flow-control valve (23) which supplies a second servomotor (16) with a constant flow. The simple control arrangement (10) of compact construction realises control of a first servomotor (15) independently of load at maximum tightness with the supply of constant flow to a second servomotor (16) with only one control member (21).
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公开(公告)号:DE1528952A1
公开(公告)日:1970-07-02
申请号:DEB0077532
申请日:1964-07-04
Applicant: BOSCH GMBH ROBERT
Inventor: HEINZ MUELLER DIPL-ING KARL , STEIMANN ROLAND , WEIGERT WILHELM
Abstract: 1,115,194. Gear pumps and motors. ROBERT BOSCH G.m.b.H. July 2, 1965 [July 4, 1964], No.28027/65. Heading F1F. In a pressure-loaded gear pump or motor, bearing members or bodies 17, 18, Fig.1, are pressed against the sides of a pair of externallymeshing gears 13, 14 by pressure communicated to a recess or zone 24 at the back of each member through an axially-orientated passage 25 on the high-pressure side of the meshing gear-teeth, the recess being sealed by an O-ring 23. Each bearing member also includes a pair of blind bores (37, 38), Figs. 2 and 3 (not shown), which are in register with gear-tooth spaces upstream from the passage 25 and effect noise-reduction by serving as chambers wherein pressure fluctuations are dissipated. In a modification, Figs. 4 and 5, pairs of axially-orientated bores 39, 41 and 40, 42 in each bearing member are connected by further bores 43, 44 to the passage 25, the recess 24 thereby rendering the same service as the bores (37, 38). In a further modification, Fig. 6 to 8 (not shown), to effect noise reduction a pair of inclined bores (47, 48) in each bearing member intersect the passage 25 and are connected to one another by a groove (49) situated in the face of the member adjacent the gears to minimize cavitation in the tooth-spaces approaching the high-pressure side. Each bearing member includes a pair of slots 28, 29 to render radially pressure-loaded portions 30, 31 resilient.
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公开(公告)号:DE1807173A1
公开(公告)日:1970-06-18
申请号:DE1807173
申请日:1968-11-06
Applicant: BOSCH GMBH ROBERT
Inventor: FLASCHAR HEINZ , WEIGERT WILHELM , WERNER WALTER , KRAEMER MANFRED
IPC: F15B21/08 , F15B13/044
Abstract: 1291888 Controlling fluid flow electrically ROBERT BOSCH GmbH 6 Nov 1969 [6 Nov 1968] 54372/69 Heading G1N In an arrangement for controlling the flow of pressure medium from a constant output pump 11 to a load or loads by electro-hydraulically remotely controlled multiposition valves 13,14,15 in which the position of the valves is controlled by an error signal from electrical control device 17 in accordance with the position of levers 18,19,21 and the slides 31 of the valves 13,14,15 a pilot valve 12, controlled by device 17, is provided in a shunt path of the pump 11 to control the flow of pressure medium from the pump 11 to the valves 13,14,15 in accordance with the position of the levers 18,19,21. In the neutral position of the levers 18,19,21 solenoid operated changeover valve 68,69, connected in parallel with pressure holding valve 67 on common slide 69, is opened so that the pressure medium from the pump 11 flows into connected chambers 55,56 of pilot valve 12 from where it flows without pressure into return line 52 via change-over valve 68 and line 59. When any of the levers 18,19,21 are displaced an associated cam 25,26,27 operates common lever 28 to produce a corresponding signal from generator 29 which via control device 17 first closes change-over valve 68 whereby the pressure holding valve builds up the control pressure and opens solenoid valve 63, solenoid valve 64 remaining closed. The control pressure then acts upon slide 54 of pilot valve 12 to displace it from its initial position to the left until the signal from generator 66 on the slide 54 is equal to that from generator 29 when valve 63 is closed again and the slide 54 is hydraulically blocked. The flow of pressure medium to the valves 13, 14, 15 is thereby increased, increase in the displacement of the control lever resulting in an increase of pressure medium flow by further displacing slide 54. Simultaneously a signal from generators 22,23,or 24 dependent upon which lever 18,19,21 is displaced is compared in device 17 with the signal from generator 49 on the slide 31 of the respective multiposition valve and an error signal opens solenoid valve 47 to enable the control slide 31 to move to the right to connect the load chamber 32 to inlet chamber 34 and load chamber 33 to return chamber 36. When the signals from generators 49 and 22 balance solenoid valve 47 closes and the slide is locked. When the control lever is returned to the left into its neutral position solenoid valve 64 is opened and spring 53 urges slide 54 back into its original position and solenoid valve 45 is opened so that control slide 31 is also moved back to its original position. When the control lever reaches its neutral position control device 17 actuates the change-over valve 68 so that the pressure medium again flows through it and chambers 55,56 of pilot valve 12. The control levers may be moved in the opposite direction from the neutral position to move slide 31 to the left in a similar manner. All the solenoid valves open if the system fails. The pilot valve may be in the form of an adjustable flow regulating valve which is connected into the feed line 51, Fig.2 (not shown) and in the arrangement of Fig.3 (not shown) the change-over valve 68 and pressure holding valve 67 are omitted.
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公开(公告)号:DE1528946A1
公开(公告)日:1969-10-23
申请号:DE1528946
申请日:1963-06-21
Applicant: BOSCH GMBH ROBERT
Inventor: HAUPT ALBERT , SCHOENHERR ERICH , WEIGERT WILHELM
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公开(公告)号:DE1280056B
公开(公告)日:1968-10-10
申请号:DEB0072631
申请日:1963-07-11
Applicant: BOSCH GMBH ROBERT
Inventor: WEIGERT WILHELM , STEIMANN ROLAND
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公开(公告)号:DE1134289B
公开(公告)日:1962-08-02
申请号:DEB0048009
申请日:1958-02-28
Applicant: BOSCH GMBH ROBERT
Inventor: WEIGERT WILHELM
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公开(公告)号:DE1528959A1
公开(公告)日:1970-07-02
申请号:DE1528959
申请日:1965-02-12
Applicant: BOSCH GMBH ROBERT
Inventor: WEIGERT WILHELM
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