![]() pelletizer
专利摘要:
A pelletizer is designed as a field-managed stalk harvesting machine and has a tractor (1) with shredder (2) via a diesel engine (7) which drives a generator (13) and also a ring die press (9). The chopped straw comes into a drying room (5) and via a screw conveyor (8) into the ring die press (9). Their ring die (17) is mounted in ring bearings (18) on a base (19) on which a pair of pivoting levers (20) are articulated for a roller Koller (16). An electric motor (11) fed by the generator (13) drives the conveyor worm (8) via a regulator (12) and servomotors (23) which act on the pivoting levers (20) regulate the nip gap. The controller (12) is guided by the injection requirement of the diesel engine (7) or by the press pressure. 公开号:AT516796A1 申请号:T50099/2015 申请日:2015-02-11 公开日:2016-08-15 发明作者: 申请人:Josef Schaider Privatstiftung; IPC主号:
专利说明:
The invention relates to a pelletizing device, in particular for a field-guided mobile stalk harvesting machine with built-in internal combustion engine, e.g. with a diesel engine, a preheating of the crop fed by a shredder with the waste heat of the diesel engine, a screw conveyor for the stalk crop and a pellet press. Biomass is a renewable raw material and important as an energy carrier. However, there are economic problems for stalk-like biomass, for example crop residues such as straw, and for energy crops such as Miscanthus, Rumex, Sida or Riesenknöterich. Due to the low bulk density (straw bales up to a maximum of 130 kg / m3), the logistics, handling and manufacturing costs of recyclable compacts exceed the economic benefits, so that conventional energy sources are avoided. This is regrettable, because most energy crops grow on soils that are not suitable for food crops. The energy plants are mostly perennial and deep root, so the seed costs, e.g. within 15 years, only once incurred. Furthermore, these plants are extremely robust and require little fertilization or pesticide use. They store CO2 in the soil, especially as the roots reach depths of up to 4 m and thus contribute to soil improvement. Therefore, it is a goal, in the sense of a sustainable energy policy, to find a technical possibility that allows economic exploitation for energy conversion. According to US Pat. No. 5,622,037 A, it has been recognized that logistical savings can be achieved by processing into pellets, for example pellets as energy carriers, directly on site in the field in one single operation. However, a harvester to the extent disclosed in the US publication type has caused acquisition and operating costs, which were not consistent with the result from the press used there and the drives. The invention therefore aims to improve a pelletizer of the type described above in terms of energy balance. This is achieved by the fact that the diesel engine so probably drives a ring die of a ring die press with at least one roller roller, as well as a power generator, the drive and servo motors via switching devices, in particular a controller for the speed of the screw conveyor, fed. A ring milling press with roll roller used is thus driven directly by the diesel engine, while other components of the mobile harvester have controllable electric drives, whose power is supplied via the diesel-electric power supply. The diesel engine is provided in a specific embodiment exclusively for the processing of biomass. The unit is suitably pulled by a tractor, which has a front chopper. From this, the comminuted biomass is fed across the tractor by means of a blower of the pelletizer. The ring die press has servo motors which act via self-locking gear on parallel pivot levers, which engage around the roller roller and store laterally and are adjustable in the inclination to determine the nip with respect to the inner circumferential surface of the ring die. The design allows a shallow entry angle into the press area. This is advantageous for biomass, due to the low bulk density. The adjustment of the nip gap is made via a regulator in response to the press pressure, which is recorded by sensors (piezoelectric elements) on the pivot levers, for example on the bearings. Furthermore, it is expedient if the pivot levers are mounted on a pedestal and this also carries the ring bearing of the ring die of the ring matrix press and absorbs their reaction forces. As a result, the design effort is reduced to a few components. The reaction forces can be measured and used as a reference variable for the control of the nip and the amount of biomass supplied. As already noted, the ring die press is driven directly by the diesel engine. The latter operates at a constant speed as a result of the current generator to be driven. To compensate for power fluctuations, the injection quantity is varied. As an alternative to regulation on the basis of the reaction forces in the press, it is expedient if the regulator is guided by the load-dependent variable injected fuel quantity of the constant-speed diesel engine and the electric motor of the screw conveyor for supplying the ring die press is operated inversely proportional to the injection quantity. An increase in the injection quantity causes the reduction of the speed of the screw conveyor. If less biomass is fed to the ring die press, the ring die press is relieved and the diesel drive can again operate with reduced injection quantity. It should be mentioned that the ring matrix press is doubly effective, since both the ring die and the roller roller have perforations and the compacts arise both outside of the lateral surface of the ring die and inside of the cylinder surface of the roller roller. A significant improvement in the overall efficiency results when the biomass already comes pre-compressed to the pellet press. Therefore, it is expedient if the screw conveyor for pre-compression of the biomass has funnel-shaped housing elements, in particular welded into the housing inside and distributed on the circumference rods that form the generatrices of a cone shroud. Depending on the type of biomass and the chopper used on the front of the tractor can still be preceded by a fine chopper preheating before feeding to the pellet mill. In a simple commercial screw conveyor with a screwing surface within a circular cylindrical shell surface, the volume of the gap to the housing of the screw can be reduced toward the exit by converging the rods circumferentially towards the exit. This results in a gradual reduction of the volume of biomass received in the circumferential gap in the conveying direction and an increase in the material density at the entrance of the pellet mill. The pelletizer according to the invention can be used directly on the fields as a harvester or else, e.g. work outside the harvest time without a tractor completely independently in stationary operation (stand alone). An embodiment is shown in the drawing. It shows schematically the structure of a pelletizer as a stalk harvester for use directly on the field. A tractor, here a tractor 1 is equipped with a front chopper 2. This cuts and shreds such as straw, sunflower straw, maize plants or maize straw or just for the purpose of producing biomass planted organic products ("energy plants") such as Riesenknöterich or Mis-canthus. The comminuted biomass passes through a blower 3 in an agricultural machine drawn by the tractor 1. This has - at least after a fine chopper - an input area as a drying chamber 5, which has a heat exchanger 6 in the form of at least a partial sheathing of the drying chamber 5 , The heat exchanger 6 is in communication with a diesel engine 7 whose waste heat is supplied to the heat exchanger 6. The temporarily stored in the drying chamber 5 chopped biomass is discharged from a screw conveyor 8 and compressed on the way to a Ringmatrizenpresse 9. For this purpose, either the housing 10 and or or the screw itself is conical. It may also be provided in the housing in the housing 10 in a circular cylindrical design thereof, which form the generatrices of a conical shell and converge towards the exit of the screw conveyor 8 out. The latter has an electric drive 11, which is fed via a regulator 12 by a generator 13. The drive of the generator 13 is carried out at a constant speed via the diesel engine 7, which drives the ring die press 9 via a gear 14. Increases the load of the diesel engine 7 due to an increased power requirement of the ring die press 9, then 7 more fuel is injected to maintain the constant speed of the diesel engine. This consumption forms the reference variable for the controller 12 as indicated by the arrow 15. With increasing injection quantity, the controller 12 reduces the speed of the screw conveyor 8, so that the ring die press 9 is charged with less biomass and there is relieved. The consumption of the diesel engine 7 goes back. The annular die press 9 operates in the embodiment with a Kollerwalze 16, which is also designed here as a circular cylindrical Hohlsiebwalze. The ring die 17 itself is peripherally mounted in a retaining ring 18 in the manner of a rolling bearing, which is held by a base 19. This base 19 also also receives the pivot bearings of a pair of parallel pivoting levers 20, which include the ring die 17 and the roller roller 16 bifurcated and the Kollerwalze 16 store (bearing 21). Spindles 22 are connected to electric motors 23 with the free ends of the two pivot levers 20, by way of which the nip gap between roller roller 16 and ring die 17 can be adjusted. If the pressing force is too high, the swivel lever 20 can be swiveled to the right in the exemplary embodiment via the controller 12 and the motors 23, and the collision gap can be increased. Other criteria for adjusting the nip gap are the nature of the resulting biomass (e.g., straw or wood shavings), its moisture and the mechanical quality of the pellets. The resulting from both the interior of the roller roller 16 and the outside of the ring die 17 in the region of the nip pellets are collected (cup 24) and conveyed by a blower or a conveyor belt in a silo 25 and get on call in an output 26. The advantage this arrangement is in the compact design of the ring die press 9 with the base 19 and mounted on this pivoting levers 20 for Kollerwalze 16 and in the use of the diesel engine 7 as a press drive but also as a generator drive for the variable drive and servo motors 11 and 23. If the harvester is not used on fields, then it can be operated stationary and independent of a tractor 1 and a shredder (2) as with wood waste from the forest or other waste. This is of great importance in the time when no field crops are available for pellet production. The parked harvester 4 is fully operational and can produce pellets from shredded wood or small shredded combustible waste. Vienna, 11.02.2015
权利要求:
Claims (5) [1] 14 / Ö 46395 SCM Produktions- und Vertriebs GmbH 3430 Staasdorf (AT) Claims: 1. Pelletizing device, in particular for a field-guided mobile stalk harvesting machine with built-in internal combustion engine, e.g. with a diesel engine, a preheating of a chopper supplied Halmgutes with the waste heat of the diesel engine, a screw conveyor for the stalk and a pellet mill, characterized in that the diesel engine (7) both a ring die (17) of a ring die press (9) with at least a Kollerwalze (16), as well as a power generator (13) drives, the drive and servo motors (11, 23) via switching devices, in particular a regulator (12) for the speed of the screw conveyor (8), fed. [2] 2. pelletizing device according to claim 1, characterized in that the servo motors (23) via self-locking gear on parallel pivot levers (20) engage, the Kollerwalze (16) engage around the side and store and in the inclination to determine the nip with respect to the inner surface the ring die (17) are adjustable. [3] 3. pelletizing device according to claim 2, characterized in that the pivoting lever (20) are mounted on a base (19) and this also carries the ring bearing (18) of the ring die (17) of the ring die press (9) and absorbs their reaction forces. [4] 4. Pelletizing device according to one of claims 1 to 3, characterized in that the controller (12) guided by the load-dependent variable injected fuel quantity of the constant-speed diesel engine (7) and the electric motor (11) of the screw conveyor (8) for feeding sung the ring die press (9) is reversed in proportion to the injection quantity. [5] 5. Pelletizing device according to one of claims 1 to 4, characterized in that the screw conveyor (8) for precompression of the biomass has funnel-shaped housing elements, in particular in the housing (10) welded in the interior and distributed on the circumference rods, which form the generatrices of a cone sheath , Vienna, 11.02.2015
类似技术:
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同族专利:
公开号 | 公开日 US10368493B2|2019-08-06| US20180027740A1|2018-02-01| CN107249869A|2017-10-13| EP3256311B1|2019-08-21| EA032548B1|2019-06-28| BR112017016704A2|2018-04-10| AT516796B1|2018-02-15| WO2016127196A3|2016-10-13| MX2017010260A|2018-02-26| WO2016127196A2|2016-08-18| CN107249869B|2019-09-27| EA201791784A1|2017-12-29| CA2976041A1|2016-08-18| EP3256311A2|2017-12-20|
引用文献:
公开号 | 申请日 | 公开日 | 申请人 | 专利标题 US3664097A|1970-12-17|1972-05-23|Richard A Pedigo|Grass-clippings pelletizer for lawnmowers| EP2289682A1|2009-08-28|2011-03-02|Reichardt Projectmanagement GmbH & Co. KG|Method and device for manufacturing blanks made of biomass|DE202017000789U1|2017-02-14|2017-06-27|Helmut Altepost|Device for producing pellets|US2848738A|1955-07-13|1958-08-26|Bonnafoux Paul|Pellet mill| US3045280A|1959-07-10|1962-07-24|Mahoney Thomas P|Pellet mill and feeder therefor| US3202113A|1963-02-04|1965-08-24|Deere & Co|Forage wafering machine| NL6412189A|1963-12-17|1965-06-18| AT346705B|1976-01-15|1978-11-27|Kuehtreiber Franz|PRESS FOR THE MANUFACTURING OF PRESS SLINGS FROM SCHUETTGUT| SU683684A1|1978-04-12|1979-09-05|Всесоюзный Научно-Исследовательский Конструкторско-Технологический Институт По Машинам Для Комплексной Механизации И Автоматизации Животноводческих Ферм|Feed granulator| SU825337A1|1979-09-19|1981-04-30|Kd Polt Inst|Device for pressing vegetable material| DK48080A|1980-02-05|1981-08-06|Soee Pedersen A|PILL PRESSURE AUTOMATIC CONTROL SYSTEM FOR PILL PRODUCTION| EP0040406B2|1980-05-19|1989-12-27|Bühler AG|A method of controlling a feed pelleting press installation and a feed pelleting press installation for carrying out this method| US4355573A|1980-12-01|1982-10-26|Gie Valpron|Continuous press for dehydrating pulps| US5156570A|1991-09-23|1992-10-20|Justice Iii James C|Combine-grain dryer| EP0638018B1|1992-04-29|1995-11-15|HAIMER, Franz|Device for pelletizing vegetable materials| DE10241118A1|2002-09-03|2004-03-18|Bühler AG|pellet mill| CN1817616A|2006-03-27|2006-08-16|王根乐|Method for controlling film thickness automatically and weighing device thereof| US8211341B2|2007-11-16|2012-07-03|Exxonmobil Research And Engineering Company|Fiber pellets method of making, and use in making fiber reinforced polypropylene composites| CN103753849B|2014-01-06|2015-08-19|湖北合加环境设备有限公司|Intelligent RDF environment former|AT519102B1|2016-12-09|2018-04-15|Josef Schaider Privatstiftung|Apparatus for producing pellets| DE102019004935A1|2019-07-12|2021-01-14|Wolfram Strothmann|Process for field collection of straw material and production of highly compacted straw material aggregates| CN111804240A|2020-07-24|2020-10-23|华润江中制药集团有限责任公司|Granulator for chinese-medicinal material processing| CN112219540B|2020-09-14|2021-12-28|淮阴工学院|Lawn harvesting, cleaning and recycling machine and using method thereof|
法律状态:
2020-10-15| MM01| Lapse because of not paying annual fees|Effective date: 20200211 |
优先权:
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申请号 | 申请日 | 专利标题 ATA50099/2015A|AT516796B1|2015-02-11|2015-02-11|pelletizer|ATA50099/2015A| AT516796B1|2015-02-11|2015-02-11|pelletizer| MX2017010260A| MX2017010260A|2015-02-11|2016-02-11|Pelleting device.| CA2976041A| CA2976041A1|2015-02-11|2016-02-11|Pelleting device| PCT/AT2016/050027| WO2016127196A2|2015-02-11|2016-02-11|Pelleting device| EA201791784A| EA032548B1|2015-02-11|2016-02-11|Pelleting device| BR112017016704-2A| BR112017016704A2|2015-02-11|2016-02-11|pelletizing device| EP16709680.9A| EP3256311B1|2015-02-11|2016-02-11|Pelleting device| US15/550,505| US10368493B2|2015-02-11|2016-02-11|Pelleting device| CN201680009829.5A| CN107249869B|2015-02-11|2016-02-11|Granulation device| 相关专利
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