Biomass granulator
10857513 ยท 2020-12-08
Assignee
Inventors
- Nianxi Liang (Guangde County, CN)
- Jingbo Ruan (Guangde County, CN)
- Kelong Xiao (Guangde County, CN)
- Lingli Lu (Guangde County, CN)
- Jingdong Wang (Guangde County, CN)
Cpc classification
Y02E50/10
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B01J2/20
PERFORMING OPERATIONS; TRANSPORTING
B27N5/00
PERFORMING OPERATIONS; TRANSPORTING
C10L2200/0469
CHEMISTRY; METALLURGY
Y02E50/30
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B01J2/22
PERFORMING OPERATIONS; TRANSPORTING
C10L2290/28
CHEMISTRY; METALLURGY
International classification
B01J2/22
PERFORMING OPERATIONS; TRANSPORTING
B27N5/00
PERFORMING OPERATIONS; TRANSPORTING
B01J2/20
PERFORMING OPERATIONS; TRANSPORTING
B01J2/10
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A biomass granulator is described herein. In some embodiments, in the biomass granulator, the primarily molded particles extruded from the ring-shaped die are subjected to an orderly, quantitative and uniform reformation via a rotating scraper provided, as well as timely delivery of the finally molded particles out of the biomass granulator.
Claims
1. A biomass granulator, comprising a granulation chamber which is provided with a feed inlet (5) and a discharge outlet (6), characterized in that the granulation chamber is divided into a primary molding chamber (8) and a secondary molding chamber (9) by a ring-shaped die (1), wherein the secondary molding chamber (9) is arranged surrounding an outside of the primary molding chamber (8) and the primary molding chamber (8) is provided inside with a pressing wheel mechanism comprising a wheel seat (2) on which at least two eccentric pressing rollers (3) that are symmetrical are provided; the eccentric pressing rollers (3) are disposed with a plurality of overlapping threads (17) are disposed on a surface of each eccentric pressing roller (3) at an angle with respect to an axis of the rotation of the eccentric pressing rollers (3); a guide groove (18) is provided between the adjacent threads (17) on the surface of each eccentric pressing roller (3), the guide groove (18) has a groove's center line obliquely arranged relative to an axis of rotation of the eccentric pressing rollers (3); the ring-shaped die (1) is provided outside with a plurality of scrapers (4) taking the axis of a main shaft (7) as the axis of rotation, and the contact point of the eccentric pressing roller (3) and the ring-shaped die (1) is always located between adjacent scrapers (4); wherein the biomass granulator further comprises a driving mechanism comprising a scraper's driving device; the scraper's driving device comprises a first motor (a1), a first reducer box (a2) for moving the eccentric pressing rollers (3) at different speeds, and a first drive gear (a3); wherein the first reducer box (a2) is connected with an output end of the first motor (a1) as well as the first drive gear (a3); wherein the discharge outlet (6) is provided in the sidewall of an outer shell (16), and the axial center line of the discharge outlet (6) is parallel to the plane of rotation of the scraper (4); the gap distance between the side edge of the scraper (4) and the inside wall of the secondary molding chamber (9) is 0 mm2 mm.
2. The biomass granulator as claimed in claim 1, characterized in that, further comprising a rotating tray (11) which is rotatably arranged relative to the ring-shaped die (1) with its axis of rotation coinciding with the axis of the ring-shaped die (1); a scraper (4) is connected with the rotating tray (11) below the rotating tray (11) as well as one output end of the driving mechanism connected with the rotating tray (11).
3. The biomass granulator as claimed in claim 1, characterized in that the gap distance between any adjacent eccentric pressing rollers (3) are equal, and all included angles formed by a straight line from the axis of rotation of the pressing roller (3) to the axis of rotation of the wheel seat (2) and a straight line from the axis of rotation of the pressing roller (3) to the outermost point on the leading edge or retreating edge of the adjacent eccentric pressing rollers (3) are equal.
4. The biomass granulator as claimed in claim 1, characterized in that the scraper (4) has an angular speed of rotation N times as fast as what the wheel seat (2) has, wherein N is equal to 1 or 2 or 3 or 4.
5. The biomass granulator as claimed in claim 4, characterized in that the eccentric pressing roller (3) has a linear speed of rotation faster than what the scraper (4) has.
6. The biomass granulator as claimed in claim 2, characterized in that the driving mechanism further comprises a wheel seat's driving device; and an outer edge of the rotating tray (11) is provided with teeth engaged with the first drive gear (a3) so that the rotating wheel tray and the first drive gear (a3) are engaged; the wheel seat's driving device comprises a second drive motor (b1), an active drive gear (b3) and a second drive gear (b4), wherein the active drive gear (b3) is connected with the second drive gear (b4) via a transmission gear (b5), the output end of the second drive motor (b1) is connected with the active drive gear (b3) and the second drive gear (b4) is connected at its axis of rotation with the main shaft (7).
7. The biomass granulator as claimed in claim 2, characterized in that a support platform (12) is provided above the ring-shaped die (1), with a surface of the support platform (12) in a plane where it is located perpendicular to an inside of the scraper (4), and support rollers (13) are provided below the rotating tray (11) and contact the supporting plane of the support platform (12).
8. The biomass granulator as claimed in claim 1, characterized in that the biomass granulator further comprises a material chamber's shell (14) which is provided above the ring-shaped die (1), and an inner space of the material chamber's shell (14) forms a raw material chamber (15) which connects the feed inlet (5) and the primary molding chamber (8).
9. The biomass granulator as claimed in claim 8, characterized in that the raw material chamber (15) is provided with a pressing-material tray (19) which is fixedly connected with the scraper (4) via a connecting rod, wherein the surface of the pressing-material tray (19) is disposed with a leaking-material groove (19-1) spirally surrounding the axis of rotation, and the pressing-material tray (19) is gradually recessed from the axis of rotation toward the direction of the side edge.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
(7)
(8) In the figures, 1ring-shaped die; 2wheel seat; 3eccentric pressing roller; 4scraper; 5feed inlet; 6discharge outlet; 7main shaft; 8primary molding chamber; 9secondary molding chamber; 10insulated chamber; 11rotating tray; 12support platform; 13support roller; 14material chamber's shell; 15raw material chamber; 16material chamber's shell; 17threads; 18guide groove; 19pressing-material tray; 19-1leaking-material groove; a1first motor; a2first reducer box; a3first drive gear; b1second drive motor; b3active drive gear; b4second drive gear; b5transmission gear.
DETAILED DESCRIPTION OF THE INVENTION
(9) The present invention is further detailed in combination with the drawings as follows.
(10) As shown in
(11) As shown in
(12) The gap distance between the side edge of the scraper 4 and the inside wall of the secondary molding chamber 9 is 0 mm2 mm; since the length of ordinary biomass particles is not more than 10 mm, the maximum gap distance set to 2 mm or less can effectively prevent particles from entering into the adjacent insulated chamber 10 through the gap, and also prevent them being blocked in these gaps and damaged by the rotation; in case the size is set to more than 2 mm, when the length of particles is 6 mm or less, the ratio of these gaps relative to the length of particles is or more, which is easy to make the particles blocked in these gaps on the side edges of their end faces; in case the size is set to zero, the scraper 4 will be in too sufficient contact with the secondary molding chamber 9 which results in the blocking of rotation of the scraper 4 which is likely to become blunt and cannot rotate at a constant speed actually, thus destroying the intended effect of this embodiment.
(13) As shown in
(14) As shown in
(15) As shown in
(16) The angular speed of rotation of the scraper 4 in this embodiment of the present invention is N times as high as that of the wheel seat 2, wherein N is equal to 1 or 2 or 3 or 4; in this embodiment, the angular speeds of rotation of the scraper 4 and the wheel seat 2 must remain at an integer ratio, so as to ensure that the primarily molded particles extruded out of the ring-shaped die 1 can be scraped off at a fixed frequency by the scraper 4 and formed into the finally molded particles of equal physical sizes, with the multiple of N not exceeding 5; in case N exceeds 5 in an actual test, the speed of rotation of the scraper 4 relative to the wheel seat 2 will be too high to crush the particles, and it shall be noted that N is equal to 1 upon the reverse rotation of the scraper 4 relative to the wheel seat 2, that is, the angular speed of rotation of the scraper 4 is equal to that of the wheel seat 2, and the angle of rotation of the eccentric pressing roller 3 is adjusted according to the specific length of the finally molded particles required, so that it will not have a direct relationship with the angular speeds of rotation of the scraper 4 and the wheel seat 2. The linear speed of rotation of the eccentric pressing roller 3 is higher than that of the scraper 4; since the water content of the biomass particles is strictly controlled, the biomass particles are normally maintained in a dry state to facilitate combustion; however, the dry biomass particles are easy to be crushed by the scraper 4 in the molding process: when the speed of the scraper 4 is too high, the scraper 4 will have too large kinetic energy, so it is necessary to ensure that the particles will not be crushed by the scraper 4 at a too high speed of rotation in the molding process via the display of such a linear speed.
(17) As shown in
(18) The foregoing are only preferable embodiments used for describing the present invention, but not intended to limit the concept and scope of the present invention. Various modifications or amendments on the technical solution of the invention made by those skilled in the field without deviating from the design concept of the present invention shall all be covered by the protection scope of the invention, and the technical contents claimed for protection have all been recorded in the Claims.