CN101900106A - Electrical control device for piston methane slag and methane liquid discharging pump - Google Patents
Electrical control device for piston methane slag and methane liquid discharging pump Download PDFInfo
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- CN101900106A CN101900106A CN 201010266730 CN201010266730A CN101900106A CN 101900106 A CN101900106 A CN 101900106A CN 201010266730 CN201010266730 CN 201010266730 CN 201010266730 A CN201010266730 A CN 201010266730A CN 101900106 A CN101900106 A CN 101900106A
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- hinged seat
- frame
- glide path
- methane
- sliding way
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Abstract
The invention discloses an electrical control device for a methane slag and methane liquid discharging pump and relates to a control device for a discharging pump, which aims to solve the problem of the blockage of the conventional discharging pump of a methane tank. A first hinged seat and a second hinged seat are arranged on a pressing handle along the direction from the front end to the rear end of the pressing handle in turn; a sleeve is sleeved on an output shaft of a motor; one end of a rocker arm is fixedly connected with the sleeve, while the other end is welded with the end face of a crank; a bearing is sleeved on the crank; a support plate is arranged one end of the space between an upper slideway frame and a lower slideway frame; an upper slideway on the upper slideway frame is opposite to a lower slideway on the lower slideway frame; at least two short steel channels are respectively buckled on the side of the frames and positioned on the side corresponding to the crank; the lower end face of the lower slideway frame is fixedly connected with the upper end face of the pressing handle; the bearing is arranged on the upper slideway and the lower slideway; the upper end of a strut is hinged with the first hinged seat, while the lower end is fixedly connected with a fixed mount; and the upper end of a reinforcing steel bar is hinged with the second hinged seat. The electrical control device is used on the methane slag and methane liquid discharging pump.
Description
Technical field
The present invention relates to a kind of control gear that is used on the discharging pump.
Background technique
At present, the biomass pool discharge device adopts the discharging of negative pressure centrifugal pump usually, easily stopped up in the discharging process by large particle natural pond slag or the higher slag liquid of concentration, cleaning is stopped up very difficult, in order to address the above problem, at the material feeding mouth place of discharging pump blade is installed, blade cut or not firmly soft, soft many of large particle natural pond slag in the biomass pool, blade is difficult to play a role, so the discharging pump blocking problem fundamentally solves.
Summary of the invention
The objective of the invention is provides a kind of electric controller that is used on the piston methane slag and methane liquid discharging pump for solving existing biomass pool discharging pump blocking problem.
The present invention includes motor; Sleeve; Rocking arm; Crank; Bearing; The sliding way frame; The glide path frame; Support plate; Pressure handle; First hinged seat; Second hinged seat; Reinforcing bar; Pole; Fixed mount; Motor cabinet; Locking nut and at least two short channel-section steels; Motor is packed on the motor cabinet; First hinged seat and second hinged seat direction along the front end of pressure handle to the rear end is installed on the pressure handle successively; Distance between first hinged seat and second hinged seat is 300mm~1000mm; Sleeve set is on the output shaft of motor; One end and the sleeve of rocking arm are affixed; The other end of rocking arm and the welding of the end face of crank; Crank is three sections multidiameters; Three sections multidiameters are followed successively by principal piece by an end to the outboard end near rocking arm; Bearing construction section and thread segment; Bearing holder (housing, cover) is contained on the bearing construction section; Locking nut is threaded with thread segment; Support plate is arranged on the end between sliding way frame and the glide path frame; The lower surface of sliding way frame is provided with sliding way; The upper surface of glide path frame is provided with the glide path corresponding with sliding way; At least two short channel-section steel difference spiral-locks are at frame facet; And at least two short channel-section steels all are positioned on side corresponding to crank; Leg and sliding way frame on each short channel-section steel are affixed; Another leg and glide path frame on each short channel-section steel are affixed; The glide path chord position is between the handle of second hinged seat and pressure handle rear end; The lower surface of glide path frame and the upper surface of pressure handle are affixed; Bearing is arranged in sliding way and the glide path; The upper end of pole and first hinged seat are hinged; The lower end of pole is fixedly connected with fixed mount, and the upper end of reinforcing bar and second hinged seat are hinged.
Advantage of the present invention is: one, the present invention utilizes motor output shaft to roll in slideway by rocking arm drive bearing, realize that pressure handle drives discharging pump work, because the feed inlet and outlet diameter on the discharging pump is between φ 50mm~φ 200mm, flux is big and need not to cut oarse-grained natural pond slag, solved the susceptible to plugging problem of discharging, discharging is convenient, laborsaving.Two, the present invention is simple in structure, fault is few, be suitable for the rural area uses.Three, the present invention joins an automanual discharge device of automatic type for every the domestic methane tank that proposes in Ministry of Agriculture's biogas development plan, desirable discharging supplementary equipment is provided, satisfy the standard of " pond three changes " of Ministry of Agriculture's design, helped promoting the sound development of biogas cause.
Description of drawings
Fig. 1 is that overall structure plan view of the present invention is (when bearing 5 goes to minimum point with rocking arm 3, the key plan of pressure handle 9), Fig. 2 is the annexation schematic representation of decelerator 1, sleeve 2, rocking arm 3, crank 4, bearing 5 and locking nut 16, Fig. 3 is the A-A sectional view of Fig. 1, Fig. 4 is overall structure plan view of the present invention (when bearing 5 goes to peak with rocking arm 3, the key plan of pressure handle 9).
Embodiment
The specific embodiment one: present embodiment is described in conjunction with Fig. 1~Fig. 4; Present embodiment comprises motor 1; Sleeve 2; Rocking arm 3; Crank 4; Bearing 5; Sliding way frame 6; Glide path frame 7; Support plate 8; Pressure handle 9; First hinged seat 10; Second hinged seat 11; Reinforcing bar 12; Pole 13; Fixed mount 14; Motor cabinet 15; Locking nut 16 and at least two short channel-section steels 18; Motor 1 is packed on the motor cabinet 15; First hinged seat 10 and second hinged seat 11 direction along the front end of pressure handle 9 to the rear end is installed on the pressure handle 9 successively; Distance X 1 between first hinged seat 10 and second hinged seat 11 is 300mm~1000mm; Sleeve 2 is sleeved on the output shaft of motor 1; And adopt Connection Element that sleeve 2 and motor 1 are linked together; One end and the sleeve 2 of rocking arm 3 are affixed; The end face welding of the other end of rocking arm 3 and crank 4; Crank 4 is three sections multidiameters; Three sections multidiameters are followed successively by principal piece 4-1 by an end to the outboard end near rocking arm 3; Bearing construction section 4-2 and thread segment 4-3; Bearing 5 is sleeved on the bearing construction section 4-2; Locking nut 16 is threaded with thread segment 4-3; Locking nut 16 is with bearing 5 lockings; Support plate 8 is arranged on the end between sliding way frame 6 and the glide path frame 7; The lower surface of sliding way frame 6 is provided with sliding way 6-1; The upper surface of glide path frame 7 is provided with the glide path 7-1 corresponding with sliding way 6-1; At least two short channel-section steel 18 difference spiral-locks are at frame facet; And at least two short channel-section steels 18 all are positioned on the side of crank 4 correspondences; Leg and sliding way frame 6 on each short channel-section steel 18 are affixed; Another leg and glide path frame 7 on each short channel-section steel 18 are affixed; Glide path frame 7 is between the handle of second hinged seat 11 and pressure handle 9 rear ends; The upper surface of the lower surface of glide path frame 7 and pressure handle 9 is affixed; Bearing 5 is arranged among sliding way 6-1 and the glide path 7-1; The upper end of pole 13 and first hinged seat 10 are hinged; The lower end of pole 13 is fixedly connected with fixed mount 14; The upper end of reinforcing bar 12 and second hinged seat 11 are hinged; The lower end of reinforcing bar 12 is connected with piston rod in the discharging pump 17; Steel cylinder on the discharging pump 17 is fixedly connected with fixed mount 14; The junction of the steel cylinder on the discharging pump 17 and fixed mount 14 is X2 apart from the distance of the junction of pole 13 and fixed mount 14, and X2 equates with X1. When bearing 5 during along left semicircle Zhou Yundong, the defeating of bearing 5 at glide path 7-1, when bearing 5 during along right semi-circle Zhou Yundong, the power of bearing 5 withstands on sliding way 6-1, at this moment, and sliding way frame 6 easy deformation, short channel-section steel 18 can prevent 6 distortion of sliding way frame.Adopt electronic discharging when electricity is arranged, when not having electricity, the armrest dynamic pressure is 9 dischargings.
Embodiment two: in conjunction with Fig. 3 present embodiment is described, present embodiment and embodiment one are different is that it also increases pad 19 is arranged, and pad 19 is arranged among the glide path 7-1.When the surface finishment height of pad 19, bearing 5 rolled on smooth pad 19, surface friction drag was little.Other composition and annexation are identical with embodiment one.
Embodiment three: in conjunction with Fig. 3 present embodiment is described, present embodiment and embodiment one are different is that it also increases polyethylene 20 is arranged, and polyethylene 20 is arranged among the glide path 7-1, and between pad 19 and glide path 7-1 bottom surface.Polyethylene 20 plays the effect of noise reduction.Other composition and annexation are identical with embodiment two.
Working principle of the present invention: sleeve 2 rotates under the driving of motor 1, sleeve 2 drives rocking arm 3 and carries out circular movement around the output axle center of motor 1, crank 4 and bearing 5 movement therewith, when bearing 5 goes to peak, piston motion in the discharging pump is to peak, when bearing 5 goes to minimum point, piston motion in the discharging pump is to minimum point, bearing 5 changes 360 ° around the output axle center of motor 1, bearing 5 to-and-fro motion in slideway is simultaneously finished a to-and-fro motion thereby drive piston by pressure handle 9.
Claims (3)
1. electric controller that is used on the piston methane slag and methane liquid discharging pump; Described device comprises motor (1); Pressure handle (9); First hinged seat (10); Second hinged seat (11) and motor cabinet (15); Motor (1) is packed on the motor cabinet (15); First hinged seat (10) and second hinged seat (11) direction along the front end of pressure handle (9) to the rear end is installed on the pressure handle (9) successively; Distance (X1) between first hinged seat (10) and second hinged seat (11) is 300mm~1000mm; It is characterized in that: described device also comprises sleeve (2); Rocking arm (3); Crank (4); Bearing (5); Sliding way frame (6); Glide path frame (7); Support plate (8); Reinforcing bar (12); Pole (13); Fixed mount (14); Locking nut (16) and at least two short channel-section steels (18); Sleeve (2) is sleeved on the output shaft of motor (1); One end of rocking arm (3) and sleeve (2) are affixed; The end face welding of the other end of rocking arm (3) and crank (4); Crank (4) is three sections multidiameters; Three sections multidiameters are followed successively by principal piece (4-1) by an end to the outboard end near rocking arm (3); Bearing construction section (4-2) and thread segment (4-3); Bearing (5) is sleeved on the bearing construction section (4-2); Locking nut (16) is threaded with thread segment (4-3); Support plate (8) is arranged on the end between sliding way frame (6) and the glide path frame (7); The lower surface of sliding way frame (6) is provided with sliding way (6-1); The upper surface of glide path frame (7) is provided with the glide path (7-1) corresponding with sliding way (6-1); At least two short channel-section steels (18) difference spiral-lock is at frame facet; And at least two short channel-section steels (18) all are positioned on side corresponding to crank (4); Leg and sliding way frame (6) on each short channel-section steel (18) are affixed; Another leg and glide path frame (7) on each short channel-section steel (18) are affixed; Glide path frame (7) is positioned between the handle of second hinged seat (11) and pressure handle (9) rear end; The upper surface of the lower surface of glide path frame (7) and pressure handle (9) is affixed; Bearing (5) is arranged in sliding way (6-1) and the glide path (7-1); The upper end of pole (13) and first hinged seat (10) are hinged; The lower end of pole (13) is fixedly connected with fixed mount (14), and the upper end of reinforcing bar (12) and second hinged seat (11) are hinged.
2. according to the described electric controller that is used on the piston methane slag and methane liquid discharging pump of claim 1, it is characterized in that: described device also comprises pad (19), and pad (19) is arranged in the glide path (7-1).
3. according to the described electric controller that is used on the piston methane slag and methane liquid discharging pump of claim 2, it is characterized in that: described device also comprises polyethylene (20), polyethylene (20) is arranged in the glide path (7-1), and is positioned between pad (19) and glide path (7-1) bottom surface.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN 201010266730 CN101900106B (en) | 2010-08-30 | 2010-08-30 | Electrical control device for piston methane slag and methane liquid discharging pump |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN 201010266730 CN101900106B (en) | 2010-08-30 | 2010-08-30 | Electrical control device for piston methane slag and methane liquid discharging pump |
Publications (2)
Publication Number | Publication Date |
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CN101900106A true CN101900106A (en) | 2010-12-01 |
CN101900106B CN101900106B (en) | 2012-12-26 |
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Application Number | Title | Priority Date | Filing Date |
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CN 201010266730 Expired - Fee Related CN101900106B (en) | 2010-08-30 | 2010-08-30 | Electrical control device for piston methane slag and methane liquid discharging pump |
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CN (1) | CN101900106B (en) |
Citations (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN2873787Y (en) * | 2006-03-01 | 2007-02-28 | 付开国 | Multifunction marsh gas pool |
EP2055933A2 (en) * | 2007-10-31 | 2009-05-06 | GM Global Technology Operations, Inc. | High pressure piston pump actuating system using automotive starter system |
CN201330685Y (en) * | 2009-02-06 | 2009-10-21 | 高德广 | Difunctional manual biogas residue and biogas liquid discharging pump |
CN201730813U (en) * | 2010-08-30 | 2011-02-02 | 哈尔滨德广新能源有限责任公司 | Electric control device for piston-type biogas residue and slurry discharging pump |
-
2010
- 2010-08-30 CN CN 201010266730 patent/CN101900106B/en not_active Expired - Fee Related
Patent Citations (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN2873787Y (en) * | 2006-03-01 | 2007-02-28 | 付开国 | Multifunction marsh gas pool |
EP2055933A2 (en) * | 2007-10-31 | 2009-05-06 | GM Global Technology Operations, Inc. | High pressure piston pump actuating system using automotive starter system |
CN201330685Y (en) * | 2009-02-06 | 2009-10-21 | 高德广 | Difunctional manual biogas residue and biogas liquid discharging pump |
CN201730813U (en) * | 2010-08-30 | 2011-02-02 | 哈尔滨德广新能源有限责任公司 | Electric control device for piston-type biogas residue and slurry discharging pump |
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Publication number | Publication date |
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CN101900106B (en) | 2012-12-26 |
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