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    • 1. 发明专利
    • PERFORATED PLATE ENDLESS CONVEYOR ASSEMBLY
    • PH12018000088B1
    • 2019-02-18
    • PH12018000088
    • 2018-03-27
    • FITZMAURICE ALAN LEWIS
    • FITZMAURICE ALAN LEWIS
    • A23N1/02B65G17/00
    • A maceration conveyor assembly 10 feeding into a first mill 11 of a milling tandem, the downstream mills in the tandem not being shown it being appreciated that output from the mill 11 is delivered onto another conveyor and carried to the next mill in the tandem. Low pol maceration liquid is returned to the conveyor via return lines 12, 13, 14 and 15 to respective distribution weirs 16 and 17. Weirs 16 and 17 include overflows 18 and 19 which extend across the conveyor. The conveyor assembly 10 includes an inlet end 20 and an outlet end 21 all supported on a supporting framework 22 so that the assembly is inclined from the inlet end 20 to the outlet end 22. The frame 22 supports respective side walls 23 of a conveyor trough 24 between which travels an endless plate conveyor 25. The endless plate conveyor 25 comprises interconnected perforated plates 26 adapted to pivot relative to each other in chain like fashion so that the endless plate conveyor 25 effectively functions as a belt conveyor having rigid plates interconnected in pivotal fashion. In order to drive the endless plate 15 conveyor 25 the plates 26 are carried by respective chains 27 and 28 forming a chain link arrangement connected at opposite ends 29 and 30 of the individual plates 26. Pairs of chainwheels 31 and 32 drive the conveyor with chain wheelset 32 being the driven set and chainwheel 31 being the idler set. Crushed or chopped cane is carried along the conveyor 25 in the trough 24 until it reaches outlet 33 where it is discharged 20 into the first mill 11 under the assistance of spiked wheel 34. Low pol juice is returned and in conjunction with the conveyor there is an improvement in overall efficiency.
    • 3. 发明专利
    • PERFORATED PLATE ENDLESS CONVEYOR ASSEMBLY
    • PH12018000088A1
    • 2019-02-18
    • PH12018000088
    • 2018-03-27
    • FITZMAURICE ALAN LEWIS
    • FITZMAURICE ALAN LEWIS
    • A23N1/02B65G17/00
    • A maceration conveyor assembly 10 feeding into a first mill11 of a milling tandem, the downstream mills in the tandem not being shown it being appreciated that output from the mill 11 is delivered onto another conveyor and carried to the next mill in the tandem. Low pol maceration liquid is returned to the conveyor via return lines 12, 13, 14 and 15 to respective distribution weirs 16 and 17. Weirs 16 and 17 include overflows 18 and 19 which extend across the conveyor. The conveyor assembly 10 includes an inlet end 20 and an outlet end 21 all supported on a supporting framework 22 so that the assembly is inclined from the inlet end 20 to the outlet end 22. The frame 22 supports respective side walls 23 of a conveyor trough 24 between which travels an endless plate conveyor 25. The endless plate conveyor 25 comprises interconnected perforated plates 26 adapted to pivot relative to each other in chain like fashion so that the endless plate conveyor 25 effectively functions as a belt conveyor having rigid plates interconnected in pivotal fashion. In order to drive the endless plate conveyor 25 the plates 26 are carried by respective chains 27 and 28 forming a chain link arrangement connected at opposite ends 29 and 30 of the individual plates 26. Pairs of chainwheels 31 and 32 drive the conveyor with chain wheelset 32 being the driven set and chainwheel 31 being the idler set. Crushed or chopped cane is carried along the conveyor 25 in the trough 24 until it reaches outlet 33 where it is discharged into the first mill11 under the assistance of spiked wheel 34. Low pol juice is returned and in conjunction with the conveyor there is an improvement in overall efficiency.
    • 4. 发明专利
    • PRE-PROCESSING OF SUGAR CANE
    • PH12020050509A1
    • 2021-10-18
    • PH12020050509
    • 2020-12-04
    • FITZMAURICE ALAN LEWIS
    • FITZMAURICE ALAN LEWIS
    • A01D41/14A01D45/10A01F12/44
    • A system 10 for infield collection of substantially whole cane and delivering that cane to a mill via a trash separator and a washer. A harvester 11 collects whole cane and throws billeted cane along with trash into an infield transporter 12 which then transports this to a centralised trash separator 13. The trash separator may service any number of infield transporters and may be located at a mill or at another centralised location so that output from the trash separator may pass on to a conveyor 14. Billets 15 are then fed to a washer 16. The washing liquid from downstream process may be used in the washer. This liquid enters the washer at 17. Mud and dirt is removed from the billets in return liquid at 18 which then passes to a mud removal unit 19 of conventional form. This juice is returned to the downstream process along line 20. It will be appreciated that since whole cane is being transported to a dedicated trash separator at 13 that there is very little loss in terms of juice carrying cane. The billets are moved on to the mill at 21. They will move to the first stage mill usually via a conveyor. Wash liquid may also be collected via an outlet conveyor from the washer. A modular harvester, a trash separator and a washer are also described.
    • 5. 发明专利
    • Clarifier
    • AU2012213922B2
    • 2013-09-19
    • AU2012213922
    • 2012-08-14
    • FITZMAURICE ALAN LEWIS
    • FITZMAURICE ALAN LEWIS
    • C13B20/16B01D21/02B01D21/04B01D21/06B01D21/08B01D21/24C13B20/00
    • A clarifier 10 where flocculated relatively unclarified juice enters the clarifier at 11 and clarified juice is drawn off through an outlet pipe 12. The juice flow is controlled by having an intake edge a depth so there is a annular downward plug flow before cross flow commences. A rotary shaft 13 is located in the centre of the clarifier and drives a bottom scraper assembly 14 for removal of mud sediment from the clarifier and a scraper 15 used to remove floating particles which accumulate at the sides of the clarifier shaft 13 rotates at approximately 3 revolutions per hour. Relatively clarified juice passes through a perforated take off cone or cylinder 25 and the distance between an intake edge 26 and the perforated take off 25 is so chosen so that the mud is removed by sedimentation and the floating particles removed by flotation, mud is depicted by the closely spaced lines at 34. The velocity in region 36 is about 5mm/sec and the highest velocity is about 10mm/ sec in the region 37. Velocity in the region 30 is down to zero. Velocities are shown across the drawing.
    • 7. 发明专利
    • Pre-processing of sugar cane
    • AU2020281060A1
    • 2021-06-24
    • AU2020281060
    • 2020-12-02
    • FITZMAURICE ALAN LEWIS
    • FITZMAURICE ALAN LEWIS
    • A01D45/10C13B5/02C13B10/02
    • Abstract (Figure 1) A system 10 for infield collection of substantially whole cane and delivering that cane to a mill via a trash separator and a washer. A harvester 11 collects whole cane and throws billeted cane along with trash into an infield transporter 12 which then transports this to a centralised trash separator 13. The trash separator may service any number of infield transporters and may be located at a mill or at another centralised location so that output from the trash separator may pass on to a conveyor 14. Billets 15 are then fed to a washer 16. The washing liquid from downstream process may be used in the washer. This liquid enters the washer at 17. Mud and dirt is removed from the billets in return liquid at 18 which then passes to a mud removal unit 19 of conventional form. This juice is returned to the downstream process along line 20. It will be appreciated that since whole cane is being transported to a dedicated trash separator at 13 that there is very little loss in terms of juice carrying cane. The billets are moved on to the mill at 21. They will move to the first stage mill usually via a conveyor. Wash liquid may also be collected via an outlet conveyor from the washer. A modular harvester, a trash separator and a washer are also described. 0