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序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
81 combine JP2006289278 2006-10-24 JP5020596B2 2012-09-05 宗徳 宮本
82 combine JP2005516350 2004-12-17 JP4341971B2 2009-10-14 渉 中川; 満輝 大西; 智弘 小山
83 Working vehicle JP23956389 1989-09-14 JPH02128620A 1990-05-17 TAKAGI IZUMI; UEIN AARU HATSUCHISON
PURPOSE: To make a clearance between an engine output axis and the ground surface and the centroid of a vehicle proper by directly connecting an engine crank shaft and the input shaft of a working tool with a single belt device so as to realize vertical belt movement without interference with a transaxle. CONSTITUTION: In order to drive the working tool by a single V belt 74 connected to the engine crank shaft 76, an interval 80 is provided and the belt 74 passed from the shaft 76 to the input shaft of the working tool under a transaxle housing 82. In order to make the pulley 94 of the shaft 76 as close as possible to the housing 82, the shaft 76 is made as close as possible to a housing enter line 92, an engine 70 is connected to the transaxle as close as possible to the ground surface, and the centroid of the vehicle is lowered while maintaining a proper interval between the pulley 94 and the ground surface. COPYRIGHT: (C)1990,JPO
84 Controller for car JP19699686 1986-08-22 JPS6253286A 1987-03-07 UEIN ROBAATO HATSUCHISON
85 Operating device for mobile farm machine JP5686084 1984-03-23 JPS60200323A 1985-10-09 NAKA HIROKAZU
PURPOSE:To simplify the structure and also to improve considerably the operability of the titled device by using an operation lever to select a switch of a main clutch or a drive clutch in accordance with the situation. CONSTITUTION:An operation lever 4 performs operation of all processes between a make position (b) and a break position (d) of a drive clutch 3 and then between a make position (c) and a break position (a) of a main clutch 2, respectively. Thus the transmission of motive power can be supplied and cut off between a prime mover 1 and each part to be interlocked. In case only the clutch 3 is operated, the lever 4 is operated just in a range between positions (b) and (d). Thus it is possible to select the operation of just one or both of clutches 2 and 3 in accordance with the situation of each time.
86 JPS604687B2 - JP6055678 1978-05-19 JPS604687B2 1985-02-06 REIMONDO GEIRII FUINPU
87 Speed change gears for combine JP17425882 1982-10-04 JPS5963229A 1984-04-10 SUZUKI KOUJI
PURPOSE:To enable auxiliary speed shift and changeover between forward and reverse positions through a single lever, by changing gears to a reverse side through operation of a lever by providing a guide groove for changeover to the reverse position meeting at right angles with both ends of a guide groove for an auxiliary shift lever and a connecting component. CONSTITUTION:A high speed position H and a low speed position L can be changed over by an auxiliary shift lever 8 along a guide groove 14. A guide groove for changeover to a reverse position meeting at right angles with the guide groove 14 is provided on both positions, and when the lever is operated along the former groove, a shift arm 18 is turned centering around a shaft 19 through the shift lever 8. This turning movement is transmitted to a crank 22 through a rod 25. Auxiliary speed change gears are changed over to the reverse position as a rod 23 is pushed by the crank 22. With this construction, operability is improved and an operating device for a speed shift can be constituted compactly as a high and low and a forward and reverse positions can be changed over with a single lever.
88 Operation system for transmission clutch of crops harvester JP19419581 1981-12-01 JPS5894637A 1983-06-04 NOMORI MATAO; TANABE SUMIHISA
PURPOSE:To permit switching of a plurality of crops processing devices from the stopped condition into the driven condition thereof without providing an engine with a heavy load by a method wherein a plurality of clutches are operated to be engaged sequentially at proper time intervals. CONSTITUTION:Timers 25a-25d, setting the time from the operation of a switch 23 to the condition of respective clutches 21a-21d, are provided between the switch 23 and the solenoid clutches 21a-21d so that the clutches are operated to be engaged at a proper time intervals in the sequence of the fourth clutch 21d, the third clutch 21c, the second clutch 21b and the first clutch 21a. When the machine is under the condition of crops processing running, a straw carrying device 8, a field chain 2, a straw discharging chain 11 and a discharged straw cutter 12 are driven automatically, while the above-described devices 8, 2, 11, 12 are stopped automatically when the machine is not under the condition of the crops processing running.
89 JPS5812246Y2 - JP11086978 1978-08-11 JPS5812246Y2 1983-03-09
90 Belt driving device JP3239681 1981-03-06 JPS56141450A 1981-11-05 SHIDONII JIYOSEFU BOOSHIETSUKU; TORABISU BURAIAN ANTAAZUBAA
91 PELLETING DEVICE PCT/AT2016050027 2016-02-11 WO2016127196A3 2016-10-13 SCHAIDER LUDWIG; SCHAIDER JOSEF
The invention relates to a pelleting device which is designed as a field-guided stalk-crop harvesting machine and, when connected to a tractor (1) with a chopper (2), comprises a diesel engine (7) that drives a current generator (13) and also an annular die press (9). The chopped stalk material passes into a dry chamber (5) and via a screw conveyor (8) into the annular die press (9). The annular die (17) of the annular die press is mounted in ring bearings (18) on a base (19), on which a pair of pivot levers (20) for a pan grinder roller (16) is also hinged. An electric drive motor (11) fed by the current generator (13) drives the screw conveyor (8) by a controller (12), and servomotors (23), which engage on the pivot levers (20), regulate the roller gap. The controller (12) is governed as a function of the injection requirement of the diesel engine (7) and/or the pressure applied by the press.
92 TRACTOR ON TOP COTTON HARVESTER WITH SIGHTLINE TO PICKER UNIT BELOW THE TRACTOR PCT/US2013064709 2013-10-11 WO2014059379A1 2014-04-17 SRIVASTAVA SOURABH; SNYDER EARL R; AERTS CHAD D; SINGH BHUVANESWAR; BROWN THOMAS H JR; RICHMAN KEVIN S; YADAV NITIN DHANSINGH; HAGELE CARL
A tractor on top cotton harvester for supporting a tractor on a platform directly over a cotton harvester picker unit or units, providing steerable front wheels and a direct sightline through the platform for viewing the steerable wheel position and entry of cotton plants into the picker unit or units to avoid running over plants and possible boll damage or loss. The harvester carries a cotton receiving basket at a rear of the platform, and a tractor driven blower and ducts for directing a flow of airborne picked cotton from each picker unit into the basket.
93 WALK POWER MOWER HAVING FORWARD AND REVERSE TRACTION DRIVE US16055912 2018-08-06 US20180343796A1 2018-12-06 Todd A. Porter; Chadwick A. Shaffer; Chris A. Wadzinski; Jackie R. Gust
A walk power mower has a traction drive system that includes a front transmission powering a pair of front wheels and a rear transmission powering a pair of rear wheels. A first one of the transmissions provides forward motion of the mower when it is active and a second one of the transmissions provides rearward motion of the mower when it is active. A slidable handle grip on the handle having a cross bar long enough to be gripped by both hands of the user activates the first one of the transmission when it is slid downwardly on a handle out of a neutral position thereof. The slidable handle grip activates the second one of the transmissions when it is slid upwardly on the handle out of the neutral position.
94 SMALL AIR-COOLED ENGINE ASSEMBLY WITH DRY SUMP LUBRICATION SYSTEM US15775704 2016-10-26 US20180334934A1 2018-11-22 Adam J. Hellman; John Schneiker; Timothy Kwiatkowski; Casey Groh; Robert Price; Ryan Sullivan; Gary Johnson
An engine assembly includes a small air-cooled engine and a dry sump lubrication system including an external oil reservoir, wherein the dry sump lubrication system has an overall oil capacity that provides at least five hundred hours of engine oil life.
95 Zero-turn radius lawnmower with suspension system US15653167 2017-07-18 US10093179B2 2018-10-09 Mark J. Melone; James F. Marshall; Richard Smith; Mark Lynch; Travis Rasch; Erik Slegelis; Steven J. Weber; Denis Oswald
Some embodiments include a transaxle drive system for ride-on equipment with a plurality of transaxle assemblies supported by a suspended subframe, and a frame supported on a pair of front wheels at one end that is coupled to and pivotably suspends the subframe. Some embodiments include a power source with a drive pulley supported by the frame at an opposite end. Some embodiments include a belt coupling the drive pulley to a driven pulley of the transaxle assemblies. In some embodiments, the plurality of transaxle assemblies can be driven from the drive pulley by at least a portion of the belt. Further, in some embodiments, the plurality of transaxle assemblies include a first and second transaxle assembly each coupled to a separate rear wheel. The first and second transaxle assemblies are suspended from the subframe, and can be pivoted together about the frame, and the at least one drive pulley.
96 SMALL AIR-COOLED ENGINE ASSEMBLY WITH DRY SUMP LUBRICATION SYSTEM US15870589 2018-01-12 US20180135477A1 2018-05-17 Adam J. Hellman; John Schneiker; Tim Kwiatkowski; Casey Groh; Robert Price; Ryan Sullivan; Gary Johnson
An engine assembly includes an air-cooled engine and an external oil reservoir. The engine includes a vertically-oriented crankshaft a crankcase cover having a front portion and a rear portion, wherein the front portion of the crankcase cover and the cylinder head are located forward of a vertical plane that includes the crankshaft axis, a return pump housing formed in the exterior of the crankcase cover, a return pump positioned in the return pump housing, and a return pump inlet formed through the crankcase cover, wherein the return pump inlet is located in the front portion of the crankcase cover and the return pump inlet is located closer to the camshaft than to the crankshaft. The external oil reservoir includes an oil tank and an oil filter assembly.
97 Three-section concave and adjustment mechanism for an agricultural harvesting combine US14967691 2015-12-14 US09820442B2 2017-11-21 Robert A. Matousek; Bryan S. Claerhout
A rotor and cage assembly includes a skeleton of curved spaced-apart side members affixed to laterally extending upper and lower spaced-apart members therebetween and surrounding the rotor. One of the curved spaced-apartside members is terminated with curved fingers. Three concave inserts insert laterally into the skeleton spanning 270° around the rotor. One of the concave inserts carries straight fingers that interlace between the skeleton side member curved fingers. A control assembly of plates having arcuate slots placed at 3 of the pivots of the skeleton assembly, control bars connected to the skeleton pivots, and an actuator connect to the control bars at one end effect arcuate rotation of the control bars resulting in the synchronized rotation of the arcuate slotted plates so that the interlaced straight fingers move closer together or farther apart with the fixed skeleton assembly curved fingers for different types of grain.
98 Combine US15520220 2015-09-25 US20170311544A1 2017-11-02 Hiroshi Ikeda; Hirotsugu Inoue; Tadashi Hamanishi
There are provided an engine controlling section for controlling a rotational speed of an engine, a horizontal posture controlling section for rendering a vehicle body frame to a horizontal posture by controlling a posture changing mechanism configured to change a posture of the vehicle body frame by an operation of an actuator utilizing power from the engine, a yield measuring section for measuring a yield of grains stored in a grain tank based on measurement result of a load cell configured to measure a weight of the grain tank, an activation operational tool for outputting an activation signal for activating yield measurement by the yield measuring section, and a yield controlling section configured to provide the engine controlling section with a high speed rotation instruction for driving the engine at a rated rotational speed in response to the activation signal and also to provide the horizontal posture controlling section with a horizontal posture instruction for rendering the vehicle body frame to the horizontal posture.
99 SMALL AIR-COOLED ENGINE ASSEMBLY WITH DRY SUMP LUBRICATION SYSTEM US15295294 2016-10-17 US20170138232A1 2017-05-18 Adam J. Hellman; John Schneiker; Tim Kwiatkowski; Casey Groh; Robert Price; Ryan Sullivan; Gary Johnson
An engine assembly includes an engine, an external oil reservoir, a supply pump, and a return pump. The engine includes an oil gallery configured to distribute oil and a crankcase chamber. The external oil reservoir includes an oil tank defining an oil chamber and an oil filter assembly including a housing at least partially defining a filter chamber, and a filter positioned within the filter chamber. The supply pump is in fluid communication with the oil chamber and the oil gallery and the supply pump is configured to draw oil from the oil chamber and provide pressurized oil to the oil gallery. The return pump in fluid communication with the crankcase chamber and the filter chamber and the return pump is configured to draw oil from the crankcase chamber and provide pressurized oil to the filter chamber.
100 Drive system for a self-propelled harvesting machine US14729503 2015-06-03 US09635812B2 2017-05-02 Stefan Schiewer; Andreas Krauss; Jan Furmaniak
A drive system for a self-propelled harvesting machine includes a drive engine, designed as an internal combustion engine, a transfer gearbox driven by the drive engine that includes a first driven pulley which is disposed on a drive shaft for driving at least one drive pulley of a working mechanism using a first belt, and at least one hydraulic pump for driving a further working mechanism. A second output pulley is assigned to the transfer gearbox and drives the at least one hydraulic pump using a second belt.
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