MULTI PLATE SCREW PRESS SLUDGE DEWATERING MACHINE
20180346362 ยท 2018-12-06
Assignee
Inventors
Cpc classification
B01D29/356
PERFORMING OPERATIONS; TRANSPORTING
C02F2303/14
CHEMISTRY; METALLURGY
B01D29/035
PERFORMING OPERATIONS; TRANSPORTING
C08L59/02
CHEMISTRY; METALLURGY
B01D36/02
PERFORMING OPERATIONS; TRANSPORTING
C08J5/005
CHEMISTRY; METALLURGY
C02F1/5281
CHEMISTRY; METALLURGY
C02F9/00
CHEMISTRY; METALLURGY
B01D29/68
PERFORMING OPERATIONS; TRANSPORTING
C08L27/18
CHEMISTRY; METALLURGY
B01D29/014
PERFORMING OPERATIONS; TRANSPORTING
B29C45/0001
PERFORMING OPERATIONS; TRANSPORTING
B29K2259/00
PERFORMING OPERATIONS; TRANSPORTING
B01D2201/282
PERFORMING OPERATIONS; TRANSPORTING
C08L27/18
CHEMISTRY; METALLURGY
B01D29/6476
PERFORMING OPERATIONS; TRANSPORTING
C08J2427/18
CHEMISTRY; METALLURGY
B29K2105/12
PERFORMING OPERATIONS; TRANSPORTING
C08L59/02
CHEMISTRY; METALLURGY
International classification
C02F9/00
CHEMISTRY; METALLURGY
B01D36/02
PERFORMING OPERATIONS; TRANSPORTING
C08J5/00
CHEMISTRY; METALLURGY
B01D29/68
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The present invention provides a multi plate screw press sludge dewatering machine and a helical shaft thereof. The multi plate screw press sludge dewatering machine includes fixed rings, movable rings, the helical shaft, a sludge inlet tank and a sludge discharging tank; the helical shaft adopts a variable diameter variable pitch helical shaft, a lead angle arrangement sequence of a helical blade of the whole helical shaft is gradual reduction from the sludge discharging tank to the sludge inlet tank, and the lead angle arrangement sequence is gradually reduced from 16-22 to 6-14; a pitch of the helical shaft is gradually increased along a direction from the sludge inlet tank to the sludge discharging tank; a diameter of a shaft body of the helical shaft is gradually increased along with a direction of the sludge discharging tank from a position of a shaft length; and blockage prevention plates are arranged on two sides of the bottom of the helical blade. The helical shaft in the present invention is specially designed, so that the pitch is more reasonable, a helical angle is gentler, frictional resistance when sludge passes through the helical shaft may be effectively reduced, and phenomena of shaft blockage and shaft sticking of the sludge may be reduced.
Claims
1. A helical shaft of multi plate screw press sludge dewatering machine, wherein the helical shaft adopts a variable diameter variable pitch helical shaft, a lead angle arrangement sequence of helical blades of the whole helical shaft is gradual reduction from a sludge discharging tank to a sludge inlet tank, and the lead angle arrangement sequence is gradually reduced from a range between 16 and 22 to a range between 6 and 14; a pitch of the helical shaft is gradually increased along a direction from the sludge inlet tank to the sludge discharging tank; and a diameter of a shaft body of the helical shaft is gradually increased in a direction from the sludge inlet tank to the sludge discharging tank from a position of a shaft length.
2. The helical shaft of the multi plate screw press sludge dewatering machine according to claim 1, wherein blockage prevention plates forming included angles in between 20 and 45 with a centerline of the shaft body are arranged on two sides of the bottom of the helical blade, and heights of the blockage prevention plates are greater than of a height of the helical blade.
3. The helical shaft of the multi plate screw press sludge dewatering machine according to claim 1, wherein an ultra abrasion-resistant hard alloy layer is overlaid on an outer edge of the helical blade of the helical shaft; a thickness of the ultra abrasion-resistant hard alloy layer is between 2 mm and 3 mm; and roughness of contact surfaces of the helical blade of the helical shaft and the movable rings reaches a range between 0.8 and 1.6 m.
4. Multi plate screw press sludge dewatering machine adopting the helical shaft according to claim 1, comprising a multi plate screw press sludge dewatering part, wherein the multi plate screw press sludge dewatering part comprises a filtering body consisting of fixed rings, movable rings and the helical shaft, and further comprises a housing, a filtrate collection tank, a filtrate outlet, a sludge inlet tank and a sludge discharging tank; the plurality of fixed rings are sequentially arranged in the housing, one movable ring concentric with the fixed rings and capable of moving is arranged between every two adjacent fixed rings, and an internal diameter of the movable rings is smaller than an internal diameter of the fixed rings; the helical shaft penetrates through center holes of the fixed rings and the movable rings; the filtrate collection tank and the filtrate outlet opening are arranged at the bottom of the filtering body; the sludge inlet tank and the sludge discharging tank are arranged at two ends of the helical shaft respectively; and the helical shaft is connected with a power driving device mounted on one side of the sludge discharging tank.
5. The multi plate screw press sludge dewatering machine according to claim 4, wherein the power driving device is a hydraulic driving device or a variable frequency motor.
6. The multi plate screw press sludge dewatering machine according to claim 4, wherein an external diameter of the fixed rings is larger than an external diameter of the movable rings, regulation blocks are arranged at edges of outer ends larger than the external diameter of the movable rings between two adjacent fixed rings, each regulation block is fixedly connected with a connecting rod, and the two ends of the connecting rods are fixedly mounted on the sludge inlet tank and the sludge discharging tank respectively.
7. A lamination of multi plate screw press sludge dewatering machine, comprising fixed rings, wherein each fixed ring consists of an annular main body and a plurality of fixing lugs extending from the annular main body along a circumferential direction, and a small hole is formed in each fixing lug; and a triangular lug boss or circular lug boss protruding outwards perpendicularly to the circumferential direction is further arranged at each fixing lug, and a small hole corresponding to the small hole in each fixing lug is also formed in each triangular lug boss or the circular lug boss.
8. The lamination of the multi plate screw press sludge dewatering machine according to claim 7, comprising the fixed rings and movable rings, wherein the fixed rings and the movable rings are all made from a carbon fiber reinforced plastics (CFRP) composite material.
9. The lamination of the multi plate screw press sludge dewatering machine according to claim 8, wherein a mass proportion of various components in the CFPR composite material is as follows: TABLE-US-00007 Component Proportion/parts by mass Polyoxymethylene (POM) resin from 60 to 100 Carbon fiber from 20 to 30 Polytetrafluoroethylene (PTFE) from 5 to 20 Oily water repellent from 0.2 to 0.5 Coupling agent from 0.3 to 0.4 Color masterbatch from 0 to 0.4 wherein the POM resin is a homopolymer of POM; the carbon fiber is a polyacrylonitrile (PAN)-based carbon fiber or an asphalt-based carbon fiber; the coupling agent comprises four major categories including an organic chromium complex, silanes, titanates and an aluminate compound; and the oily water repellent is an oily waterproof material containing silicone oil and a silicon resin.
10. The lamination of the multi plate screw press sludge dewatering machine according to claim 9, wherein the CFRP composite material is prepared from the foregoing components taken as raw materials by proportioning, mixing and twin-screw extrusion and granulation; and the fixed rings and movable rings of the multi plate screw press sludge dewatering machine are obtained by performing injection molding or compression molding on the CFRP composite material.
11. The lamination of the multi plate screw press sludge dewatering machine according to claim 10, wherein operating conditions for an injection molding process are as follows: a material drying temperature is in a range between 85-90 C., material drying time is in a range between 4-5 hours, an injection molding temperature is in a range between 170-200 C., injection molding pressure is in a range between 90-100 pa, and a mold temperature is in a range between 85-90 C.
12. Multi plate screw press sludge dewatering machine adopting the lamination according to claim 7.
13. The multi plate screw press sludge dewatering machine according to claim 6, wherein the multi plate screw press sludge dewatering machine further comprises a rapid filtering part connected with a multi plate screw press sludge dewatering part; the rapid filtering part comprises a shell, a filter screen and a water distribution weir; a water inlet is formed in the upper part of the shell, and the water distribution weir is arranged at the water inlet; the inclined filter screen is arranged below the water distribution weir in the shell; a liquid outlet is formed below the filter screen at the bottom of the shell; a sludge storage tank is arranged at a tail end of the filter screen, and a sludge outlet is formed in the bottom of the sludge storage tank; the sludge outlet of the rapid filtering part is connected with a sludge inlet tank of the multi plate screw press sludge dewatering part; the rapid filtering part further comprises a cleaning system; the cleaning system is arranged below the filter screen in the shell; and the cleaning system comprises flushing sprinklers, a flushing water pipe and a fixing frame, the flushing water pipe is fixedly mounted on the fixing frame, and the plurality of flushing sprinklers are mounted on the flushing water pipe.
14. The multi plate screw press sludge dewatering machine according to claim 13, wherein the filter screen is a cambered filter screen surface or planar filter screen surface manufactured by adopting a stainless steel wedge-shaped wire welded slot screen plate.
15. The multi plate screw press sludge dewatering machine according to claim 13, wherein the multi plate screw press sludge dewatering machine further comprises a flocculation mixing part connected with the rapid filtering part; the flocculation mixing part comprises a mixing tank body and mixing equipment, a sludge inlet is formed in the middle part of one side of the tank body, an overflow opening is further formed at the sludge inlet, a chemical addition opening is formed in the upper part of the tank body, a sludge outlet is formed in the upper part of the other side of the tank body, and an emptying opening is formed in the bottom of the tank body; the sludge outlet of a mixing tank is connected with the water inlet of the shell of the rapid filtering part; and the flocculation mixing part adopts mechanical stirring and mixing or a pipeline mixer.
16. The multi plate screw press sludge dewatering machine according to claim 15, wherein a gap between every two adjacent fixed rings is set to be between 2.0 mm and 4.0 mm, and a gap between every two adjacent fixed ring and movable ring is set to be between 0.1 mm and 1 mm.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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[0062] In the drawings: 1: multi plate screw press sludge dewatering part; 2: rapid filtering part; 3: flocculation mixing part; 4: power driving device; 5: sludge discharging tank; 6: helical shaft; 3A: dewatering section; 3B: concentration section; 7: fixed ring; 71: fixing lug; 72: circular lug boss: 73: small fixing hole; 75: triangular lug boss; 8: movable ring; 9: regulation block (small gasket); 10: connecting rod (fixing bolt); 11: sludge inlet tank; 12: housing; 13: filtrate collection tank; 14: filtrate outlet; 15: shaft body; 16: helical blade; 17: blockage prevention plate; 18: shell; 19: filter screen; 20: water distribution weir; 21: cleaning system; 22: flushing sprinkler; 23: flushing water pipe; 24: fixing frame; 25: water inlet; 26: liquid outlet; 27: sludge outlet; 28: mixing tank body; 29: driving motor; 30: stirring paddle; 31: sludge inlet; 32: sludge outlet; 33: overflow opening; 34: emptying opening; and 36: sludge storage tank.
DESCRIPTION OF THE EMBODIMENTS
[0063] The present invention will now be further described below in combination with the accompanying drawings and embodiments.
Embodiment 1
[0064] As shown in
[0065] As shown in
[0066] As shown in
[0067] As shown in
[0068] As shown in
[0069] As shown in
[0070] As shown in
[0071] A lamination of a multi plate screw press sludge dewatering machine of the present embodiment includes fixed rings 7 and movable rings 8 which are all made from a CFRP composite material.
[0072] A mass proportion of various components in the CFPR composite material is as follows:
TABLE-US-00002 Component Proportion/parts by mass POM resin (homopolymerized) 100 Carbon fiber 30 PTFE 15 Oily water repellent 0.5 Coupling agent 0.4 Color masterbatch 0.3
[0073] The CFRP composite material is prepared from the foregoing components taken as raw materials by proportioning, mixing and twin-screw extrusion and granulation; and the lamination (the fixed rings 7 and the movable rings 8) of the multi plate screw press sludge dewatering machine is obtained by performing injection molding on the CFRP composite material.
[0074] Operating conditions for the injection molding process are as follows: a material drying temperature is 85 C., material drying time is 5 hours, an injection molding temperature is 200 C., injection molding pressure is 100 pa, and a mold temperature is 90 C.
[0075] In the present embodiment, a low-speed high-torque hydraulic motor is adopted as driving power for the helical shaft of the multi plate screw press sludge dewatering part 1 (that is, the power driving device 4 is the low-speed high-torque hydraulic motor), which is different from the conventional multi plate screw press dewatering machine. The low-speed high-torque hydraulic motor has the following advantages: it is high in starting torque (mechanical efficiency during starting is higher than or euqal to 0.9), low in failure rate and good in low-speed stability, and may operate in balance at a very low speed; a relatively high power-mass ratio and a relatively small size and weight are achieved, so that it has the characteristic of low noise and the advantages of high mechanical and volumetric efficiency, rotating direction reversibility, bearability of an output shaft for radial and axial external forces, small rotational inertia and the like, and is more suitable for a service condition of the multi plate screw press dewatering machine; and compared with another type of speed reducer with the same output torque, it has a weight which is only a half of the original weight and a size reduced by , so that it may be maintained on the spot more simply and easily.
[0076] As shown in
[0077] As shown in
[0078] A process flow of the multi plate screw press sludge dewatering machine of the present embodiment is as follows: the raw water, i.e., the sewage (water content of the sludge is 99.5% or more) enters the flocculation mixing part 3 from the sludge inlet 31 of the mixing tank body 28 and, after the flocculating agent is added for flocculation mixing and stirring to coagulate the colloidal particles, enters the rapid filtering part 2, part of water is rapidly filtered through the filter screen 19 to control the water content of the sludge to 95%-98%, then the sludge enters the multi plate screw press sludge dewatering part 1, the water content of the sludge may be equal to or lower than 80% after further dewatering, and the sludge may be further utilized subsequently.
[0079] In the present embodiment, the flocculation mixing part 3 and the rapid filtering part 2 are additionally arranged in front of the multi plate screw press sludge dewatering machine, particularly the rapid filtering part 2 is additionally arranged, part of water is rapidly filtered through the filter screen 19, so as to control the water content of the sludge entering the multi plate screw press sludge dewatering machine to 95%-98%, so that a treatment range of the multi plate screw press sludge dewatering machine may be broadened, and original solid content of 20,000 mg/L of treatable raw water (i.e., water content of 98% of the sludge) may be increased to solid content of 5,000 mg/L or more of the treatable raw water (i.e., water content of 99.5% or more of the sludge). Therefore, on one hand, working efficiency of the dewatering equipment may be improved; and on the other hand, a secondary sedimentation tank and concentration tank in a conventional sewage treatment process may be eliminated, and an occupied area may be greatly reduced.
Embodiment 2
[0080] Multi plate screw press sludge dewatering machine of the present invention in the present embodiment is basically the same as that in embodiment 1, and the difference is as follows.
[0081] As shown in
[0082] A lamination of the multi plate screw press sludge dewatering machine of the present embodiment includes the fixed rings 7 and the movable rings 8, which are all made from a CFRP composite material; and a mass proportion of various components in the CFPR composite material is as follows:
TABLE-US-00003 Component Proportion/parts by mass POM resin (homopolymerized) 80 Carbon fiber 25 PTFE 10 Oily water repellent 0.4 Coupling agent 0.35 Color masterbatch 0.4
[0083] The CFRP composite material is prepared from the foregoing components taken as raw materials by proportioning, mixing and twin-screw extrusion and granulation; and the lamination of the multi plate screw press sludge dewatering machine is obtained by performing injection molding on the CFRP composite material.
[0084] Operating conditions for the injection molding process are as follows: a material drying temperature is 90 C., material drying time is 4 hours, an injection molding temperature is 170 C., injection molding pressure is 90 pa, and a mold temperature is 85 C.
Embodiment 3
[0085] Multi plate screw press sludge dewatering machine of the present invention in the present embodiment is basically the same as that in embodiment 1, and the difference is as follows.
[0086] As shown in
[0087] A lamination of the multi plate screw press sludge dewatering machine of the present embodiment includes fixed rings 7 and movable rings 8, which are all made from a CFRP composite material; and a mass proportion of various components in the CFPR composite material is as follows:
TABLE-US-00004 Component Proportion/parts by mass POM resin (homopolymerized) 60 Carbon fiber 20 PTFE 20 Oily water repellent 0.2 Coupling agent 0.3 Color masterbatch 0.2
[0088] The CFRP composite material is prepared from the foregoing components taken as raw materials by proportioning, mixing and twin-screw extrusion and granulation; and the lamination of the multi plate screw press sludge dewatering machine is obtained by performing injection molding on the CFRP composite material.
[0089] Operating conditions for the injection molding process are as follows: a material drying temperature is 88 C., material drying time is 4.5 hours, an injection molding temperature is 185 C., injection molding pressure is 95 pa, and a mold temperature is 88 C.
Embodiment 4
[0090] Multi plate screw press sludge dewatering machine of the present invention in the present embodiment is basically the same as that in embodiment 3, and the difference is as follows.
[0091] A helical shaft of a multi plate screw press sludge dewatering part 1 adopts a variable frequency motor as driving power. A flocculation mixing part 3 is provided with no stirring paddle, and a pipeline mixer is adopted to mix a chemical and sewage.
[0092] A lamination of the multi plate screw press sludge dewatering machine of the present embodiment includes fixed rings 7 and movable rings 8, which are all made from a CFRP composite material; and a mass proportion of various components in the CFPR composite material is as follows:
TABLE-US-00005 Component Proportion/parts by mass POM resin (homopolymerized) 90 Carbon fiber 30 PTFE 5 Oily water repellent 0.35 Coupling agent 0.35
[0093] The CFRP composite material is prepared from the foregoing components taken as raw materials by proportioning, mixing and twin-screw extrusion and granulation; and the lamination of the multi plate screw press sludge dewatering machine is obtained by performing compression molding on the CFRP composite material.
Embodiment 5
[0094] Multi plate screw press sludge dewatering machine of the present invention in the present embodiment only includes a multi plate screw press sludge dewatering part 1 and includes no flocculation mixing part 3 and rapid filtering part 2.
[0095] The multi plate screw press sludge dewatering part 1 is completely the same as that in embodiment 3.
Embodiment 6
[0096] Multi plate screw press sludge dewatering machine of the present invention in the present embodiment only includes a multi plate screw press sludge dewatering part 1 and a rapid filtering part 2 and includes no flocculation mixing part 3.
[0097] The multi plate screw press sludge dewatering part 1 and the rapid filtering part 2 are completely the same as those in embodiment 4.
Performance Test Example
[0098] Material performance test data of the CFRP composite material in embodiments 1-6 of the present invention is shown in the following table.
TABLE-US-00006 Test condition Test Embodiments Embodiments Performance item [state] method Embodiment 1 Embodiment 2 3 and 5 4 and 6 Basic Water 24-hour ASTM 0.27% 0.27% 0.27% 0.27% performance absorption impregnation D-570 Physical Mold 3.2 mm 1.9-2.2% 1.9-2.2% 1.9-2.2% 1.9-2.2% performance shrinkage Specific ASTM 1.59 1.59 1.59 1.59 gravity D-792 Mechanical Tensile 23 C. ASTM 167 168 180 180 performance strength D-638 Bending 23 C. ASTM 13,500 MPa 13,600 Pa 18,000 18,000 modulus D-790 Bending 23 C. ASTM 193 MPa 193 MPa 200 205 strength D-790 Impact Nick side ASTM 82 J/m.sup.2 70 J/m.sup.2 53 J/m.sup.2 53 J/m.sup.2 strength D-256 Non-nick side ASTM 580 J/m.sup.2 520 J/m.sup.2 380 J/m.sup.2 380 J/m.sup.2 D-256 Friction VS.Metal-Dynamic ASTM 0.2 0.2 0.2 0.2 coefficient D-1894 VS.Metal-Static ASTM 0.3 0.3 0.3 D-1894 Electrical Dielectric 50% RH, 23 C., ASTM 0.006 0.006 0.006 0.006 performance factor 10.sup.6 Hz D-150 Thermal Pyrophorisity UL 94 HB HB HB HB performance Thermal 1.8 MPa ASTM 163 C. 163 C. 163 C. 163 C. distortion D-648 temperature
[0099] From the foregoing table, it can be seen that the CFRP composite material used in embodiments 1-6 of the present invention has the properties of high strength, high modulus, low density, low friction coefficient, abrasion resistance, corrosion resistance, fatigue resistance, creep resistance, low thermal expansion coefficient, high water resistance and the like. According to the multi plate screw press sludge dewatering machine in embodiments 1-6 of the present invention, the CFRP composite material is adopted to manufacture the fixed rings 7 and the movable rings 8, and the service life of the movable rings and the fixed rings may be prolonged to 5 to 8 years.