CN104533744B - fluid transfer method - Google Patents

fluid transfer method Download PDF

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Publication number
CN104533744B
CN104533744B CN201410650664.2A CN201410650664A CN104533744B CN 104533744 B CN104533744 B CN 104533744B CN 201410650664 A CN201410650664 A CN 201410650664A CN 104533744 B CN104533744 B CN 104533744B
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belt wheel
channel
gripper shoe
main body
containing cavities
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CN104533744A (en
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龚柱
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Yu Qichen
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Yu Qichen
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Priority to CN201410650664.2A priority Critical patent/CN104533744B/en
Publication of CN104533744A publication Critical patent/CN104533744A/en
Priority to IE20150332A priority patent/IE20150332A1/en
Priority to IE20150305A priority patent/IES86737B2/en
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Abstract

Present invention relates particularly to a kind of utilize the moving back and forth the method for fluid transfer of piston.Described fluid transfer method includes connecting the end of the end of the containing cavities of main body, the end of input channel and output channel with valve pocket;First passage connects all the time with containing cavities, and second channel realizes connecting with input channel or output channel in the way of selecting one with cooperation and the reset components of described trigger element by triggering end;Piston is reciprocating in containing cavities, and bent axle is linked by the 4th belt wheel of belt wheel with trigger element;Second belt wheel and the 3rd belt wheel are linked by belt, and the first belt wheel and the second belt wheel realize linkage by the first gear and the engagement of the second gear, and the first belt wheel is coupled with extraneous power source by belt;3rd belt wheel realizes synchronous axial system by key connecting and bent axle.This method can realize drawing water, pump up water according to the media type coupled, compressed gas, the function of extraction gas.

Description

Fluid transfer method
Technical field
The present invention relates to fluid transfer method, particular but not exclusively relate to a kind of utilizing the moving back and forth the method for fluid transfer of piston.
Background technology
The operation principle of internal combustion engine is substantially: piston and moves downward, and mixed combustible gas body enters cylinder;Piston upwards compressing inflammable gas;Spark ignitor fuel gas makes it explode, and the high temperature and high pressure gas after blast, to piston work done, makes piston down move, and piston passes through connecting rod, and the linear motion of piston is converted to the rotary motion of bent axle;Due to the effect of inertia, bent axle is rotated further, and the rotary motion of bent axle is converted to the linear motion of piston by bent axle by connecting rod, and piston upwards pushes waste gas so that it is discharge cylinder.In brief, air-breathing → compression → work done → aerofluxus.
Summary of the invention
Technical problem
Can transform on the architecture basics of existing internal combustion engine, remove " compression → work done " process, retain " air-breathing → aerofluxus " process, and then improved device is used in bleed or compressed air or the occasion drawing water or pump up water.
Technical scheme
It is an object of the invention to solve the problems referred to above, and provide a kind of and utilize the moving back and forth the method for fluid transfer of piston.
To this end, the present invention provides a kind of fluid transfer method, it includes connecting the end of the end of the containing cavities of main body, the end of input channel and output channel with valve pocket;
The fixing end of the swing arm of switch unit is detachably coupled with spool, makes the end that triggers of swing arm coordinate with the trigger wheel of trigger element;The spool of switch unit is arranged in valve pocket, make spool freedom and closed can rotate in valve pocket, the end of the first passage of spool is connected with chamber of confluxing with the end of second channel, all the time being connected with the containing cavities of main body by first passage, the second channel of spool connects selecting in the way of in the of one input channel or output channel with main body by triggering the cooperation of end and described trigger element and reset components realization;
The cylinder sleeve of piston unit wraps up the containing cavities of main body, and the rotation of bent axle drives piston reciprocating in containing cavities, and bent axle is linked by the 4th belt wheel of belt wheel with described trigger element;
At the middle part of the first gripper shoe, the first belt wheel is set, at the middle part of the end of the second gripper shoe, the second belt wheel is set, at the middle part of the head end of the second gripper shoe, the 3rd belt wheel is set, second belt wheel and the 3rd belt wheel are linked by belt, first belt wheel and the second belt wheel realize linkage by the first gear and the engagement of the second gear, and the first belt wheel is coupled with extraneous power source by belt;3rd belt wheel realizes synchronous axial system by key connecting and bent axle.By blade, the heat distributed of each parts is transferred.
Specifically, the end that triggers of the swing arm of described switch unit coordinates with the triggering block of trigger element, the axis that triggering block is provided around the 4th belt wheel rotates, triggering block is provided with the arc surface that the triggering end with switch unit coordinates, the wheel of the 4th band rotates and makes triggering block coordinate with the triggering end of switch unit, triggering block drives and triggers end motion, and then drives valve core rotation, and the passage making the end with second channel connect is switched to input channel by the output channel of described main body;The head end of reset components couples with swing arm, and the end of reset components couples with described main body, and reset components drives switch unit motion, and the passage making the end with second channel connect is switched to output channel by the input channel of main body.
Advantageously, the width of second channel less than the minimum edge between the end of output channel of described main body and the end of input channel away from.The width of the hunting range that the head end of first passage is formed with valve core rotation is less than the closing in width of the end of the containing cavities of described main body.
Specifically, the head end of input channel and the head end of output channel are extended to the outer surface of main body.The head end of the first passage of spool and the head end of second channel are arranged to the outer peripheral face extending radially into spool along spool.
Specifically, the first gear and the first belt wheel realize synchronous axial system by key connecting, and the second gear and the second belt wheel realize synchronous axial system by key connecting.
Specifically, the head end of the first support column is removably partially submerged into the first gripper shoe, the end of the first support column is removably partially submerged into main body, the end of the second gripper shoe is removably mounted in the first gripper shoe, and three is also fastened in main body by screw bolt passes the second gripper shoe, the first gripper shoe and the first support column;Dismountable connection the first gripper shoe and the second gripper shoe are distinguished in the two ends of the second support column, and the two ends of the second support column are all partially submerged into the gripper shoe of correspondence, the first gripper shoe, the second gripper shoe and the second support column are fastened by bolt.
The operation principle of described fluid transfer method is as follows:
Extraneous power source is rotated by belt drive the first belt wheel, first belt wheel drives the second belt wheel to rotate by the engagement of the first gear and the second gear, second belt wheel is rotated by belt drive the 3rd belt wheel, 3rd belt wheel drives crank rotation by key connecting, while bent axle drives reciprocating motion of the pistons by connecting rod, bent axle drives multicolored vaginal discharge wheel to rotate also by key connecting, 5th belt wheel is rotated by belt drive the 4th belt wheel, 4th belt wheel drives trigger wheel to rotate by key connecting, i.e. triggering block rotates around the axis of the 4th belt wheel.Triggering block is encountered the triggering end of swing arm and promotes triggering end to rotate, i.e. swing arm drives valve core rotation, during valve core rotation, second channel is switched to input channel from the output channel of main body, when the arc surface of triggering block is tangent with triggering end, trigger end to be no longer rotated, the second channel of spool is maintained at input channel, and first passage connects with containing cavities all the time.Piston does pull lift action makes fluid pass sequentially through input channel, second channel, chamber of confluxing, first passage, containing cavities.Triggering block is rotated further, when triggering block departs from the triggering end of swing arm, swing arm is under the effect of reset components, swing arm resets to initial position, band movable valve plug goes back to origin-location simultaneously, i.e. the second channel of spool switches back into output channel from the input channel of main body and is maintained at output channel, and first passage connects with containing cavities all the time, piston does pressing action and fluid extrudes containing cavities, and fluid passes sequentially through first passage, chamber of confluxing, second channel, output channel.
Beneficial effect
Lifting and the pressing action of piston are combined with the rotation of spool with the batch (-type) linkage triggering end by the present invention by triggering block, realize containing cavities and input channel or the suitching type independent communication of output channel, i.e. second channel connects with input channel or output channel in the way of selecting one, and containing cavities connects with first passage all the time.Therefore,
1., when input channel couples water source, due to the pull lift action of the piston in containing cavities, a negative pressuren zone can be formed in containing cavities, under atmospheric pressure, the water of input channel near ports can be pressed into containing cavities by second channel and first passage.Pressing action due to the piston in containing cavities, water in containing cavities can be extruded the port of output channel by first passage and second channel, approximate incompressibility because of liquid, the exportable current having equal pressure of the port of output channel, the device made according to this method can make suction pump or lift pump uses, even if in the case of also leaving air in the water pipe coupled with input channel.
2., when input channel couples air, due to the pull lift action of the piston in containing cavities, a negative pressuren zone can be formed in containing cavities, under atmospheric pressure, the air of input channel near ports can be pressed into containing cavities by second channel and first passage.Pressing action due to the piston in containing cavities, air in containing cavities can be extruded the port of output channel by first passage and second channel, compressibility because of gas, the air-flow of the exportable little pressure of port of output channel, if output channel is coupled air accumulator, then the device made according to this method can make air compressor and use.
3. couple a hermetic container when input channel, and during output channel connection air, pull lift action due to the piston in containing cavities, a negative pressuren zone can be formed in containing cavities, under the effect of the current gas pressure of hermetic container, can be by the gas in hermetic container by second channel and first passage press-in containing cavities.Due to the pressing action of the piston in containing cavities, the gas in containing cavities can be extruded by first passage and second channel the port of output channel, enter air, therefore, the device made according to this method can make air pump and use.
Accompanying drawing explanation
In explanation below in reference to the accompanying drawing embodiment to being given as non-limiting example, the present invention and superiority thereof will be better understood, accompanying drawing is as follows:
Fig. 1 is based on the axonometric chart (back angle) of the device that fluid transfer method disclosed by the invention makes;
Fig. 2 is the axonometric chart at the front visual angle of Fig. 1;
Fig. 3 is the exploded perspective view of the critical piece of the fluid handling device in Fig. 1;
Fig. 4 is that the fluid handling device in Fig. 1 retains main body, switch unit, trigger element and the axonometric chart of piston unit;
Fig. 5 is the perspective cut-away view of Fig. 4;
Fig. 6-Fig. 9 is the front view (piston is in diverse location) of Fig. 5;
Figure 10 is the axonometric chart of main body;
Figure 11 is the front view along the main body after the axis place plane cutting of four containing cavities;
Figure 12 is the exploded perspective view of switch unit;
Figure 13-Figure 14 is the perspective cut-away view of the different directions of spool;
Figure 15 is the axonometric chart of trigger wheel;
Figure 16 is the front view that the trigger wheel of Figure 15 removes a stator;
Figure 17 is the exploded perspective view of the trigger wheel of Figure 15;
Figure 18 is the exploded perspective view of gear unit;
Description of reference numerals
1. main body;101. containing cavities;102. valve pocket;103. input channel;104. output channel;105. air vent;2. switch unit;201. swing arm;201a. triggers end;The fixing end of 201b.;201c. beak thin bar;201d. beak;201e. bar;202. spool;202a. first passage;202b. second channel;202c. confluxes chamber;203. reset components;3. trigger element;301. triggering block;302. the 4th belt wheels;303. the 4th gripper shoes;304. the 5th belt wheels;305. trigger wheel;306. stator;4. piston unit;401. piston;402. connecting rod;403. bent axle;404. cylinder sleeve;5. gear unit;501. first gripper shoes;502. second gripper shoes;503. the 3rd gripper shoes;504. first gears;505. second gears;506. first belt wheels;507. second belt wheels;508. the 3rd belt wheels;509. first support columns;510. second support columns;511. blade;512. first rotating shafts;513. second rotating shafts;6. entrance;7. outlet.
Detailed description of the invention
In order to distinguish head end and the end of component, the application will be close to that end of spool 202 axis and is referred to as the end of this component, and that end away from spool 202 axis is referred to as head end.
Here, be fluid handling device disclosed by the invention referring to figs. 1 through 3, it includes main body 1, switch unit 2, trigger element 3, piston unit 4, gear unit 5.Power is passed through belt transmission to gear unit 5 by the motor being arranged on base, gear unit 5 passes through belt by power transmission to piston unit 4, piston unit 4 simultaneously the most also by power transmission to switch unit 2, realize fluid by the linkage of switch unit 2 with piston unit 4 to suck from the entrance 6 of transfer device, discharge from the outlet 7 of transfer device the most again.
In order to improve the transfer efficiency of device, described fluid handling device arranges four piston units 4, and four piston units 4 are with the axis of spool 202 for the axis uniform array of annular.Four input channels 103 in main body 1 and three input channels 103 in four output channels 104 and three output channels 104 are sealed with chock, transfer device only retains an input channel 103 and an output channel 104, couple the entrance 6 of the head end formation transfer device of input channel 103 with pipeline, couple the outlet 7 of the head end formation transfer device of output channel 104 with pipeline.
The blade 511 that the heat produced after transfer device work is arranged by front end transfers.
As shown in figure 18, gear unit 5 is provided with first gripper shoe 504, four the second gears of 503, first gear of 502, the 3rd gripper shoe of 501, four the second gripper shoes 505, first belt wheel, 508, eight the first support columns of 507, four the 3rd belt wheels of 506, four the second belt wheels, 509, four the second support columns, 511, five bars of belts of 510, blade, the sleeve of several adjustment height.
Four the second gripper shoes 502 are with the centrage of the first gripper shoe 501 for the axis uniform array of annular, two installing holes and the first gripper shoe 501 that first gripper shoe 501 end is arranged detachably couple, the middle part of the end of the second gripper shoe 502 is provided with the second belt wheel 507, the middle part of the head end of the second gripper shoe 502 is provided with the 3rd belt wheel 508, and the second belt wheel 507 and the 3rd belt wheel 508 carry out geometric ratio transmission by belt.Second belt wheel 507 is coaxially arranged with the second gear 505, and the second gear 505 and the second belt wheel 507 realize synchronous axial system by key connecting.
The middle part of the first gripper shoe 501 is provided with the first belt wheel 506, and the first belt wheel 506 is coaxially arranged with the first gear 504, and the first gear 504 and the first belt wheel 506 realize synchronous axial system by key connecting.
First belt wheel 506 and the second belt wheel 507 engage realization linkage by the first gear 504 with the second gear 505, and gear ratio is 2.First belt wheel 506 is coupled with extraneous power source by belt, and gear ratio is 2.3rd belt wheel 508 realizes geometric ratio by key connecting and bent axle 403 and rotates, by above-mentioned setting, final bent axle 403 is 4 with the rotating ratio of motor, by slowing down, make the exportable bigger moment of torsion of bent axle 403 to connecting rod 402, and then make piston 401 obtain bigger lifting power and downforce, more merit can be made by convection cell.The heat that gear and belt transmission process produce is transferred by the blade 511 rotated, and blade 511 is by key connecting and the first belt wheel 506 synchronous axial system.
The second rotating shaft 513 coupling the second belt wheel 507 and the second gear 505 runs through the second gripper shoe 502, the two ends of the second rotating shaft 513 respective partial insertion the first gripper shoe 501 and the 3rd gripper shoe 503 respectively, such plan of establishment can limit the axial freedom of the second rotating shaft 513, eliminate extra spacing part, such as back-up ring or screw or nut.
The two ends of the first rotating shaft 512 coupling the first belt wheel 506 and the first gear 504 couple with the first gripper shoe 501 and the 3rd gripper shoe 503 each via bearing respectively, bearing and the first gripper shoe 501 or the 3rd gripper shoe 503 interference fit, bearing and the first rotating shaft 512 interference fit.Blade 511 is arranged on the first rotating shaft 512 near the 3rd gripper shoe 503 side, and is fastened in the first rotating shaft 512 by blade 511 by screw.
First gripper shoe 501 and the 3rd gripper shoe 503 are detachably coupled by the second support column 510, the two ends of the second support column 510 respective partial insertion the first gripper shoe 501 and the 3rd gripper shoe 503 respectively, such design can lead to the advantage that 1. axial freedoms that can limit the second support column 510 and radial direction degree of freedom so that gear unit 5 avoids part displacement to cause device to shake in the course of the work.2. improve convenience during part assembling, the second support column 510 can be placed quickly and easily by the prefabricated counterbore in the first gripper shoe 501, then counterbore prefabricated in the 3rd gripper shoe 503 is easily and quickly inserted in the second support column 510.3. play the supporting role of the second support column 510 the most to greatest extent simultaneously, the part cylinder being inserted the first gripper shoe 501 or the 3rd gripper shoe 503 by the second support column 510 is supported each other, avoid trip bolt to be acted on by radial shear power so that screw is only by axial pulling force effect.
The space that first gripper shoe 501 and the 3rd gripper shoe 503 separate is used for arranging gear and belt wheel by the second support column 510, first gear 504 and the second coplanar setting of gear 505, first belt wheel 506 and the second belt wheel 507 and the 3rd coplanar setting of belt wheel 508, can adjust the height of gear or belt wheel to realize coplanar setting by sleeve.
First gripper shoe 501 is detachably coupled with described main body 1 by the first support column 509, and the two ends of the first support column 509 respective partial insertion the first gripper shoe 501 and described main body 1 respectively, the advantage that such design can be brought is described above.
As Figure 10 is to shown in 11, and described main body 1 is provided with 101, four input channels of four containing cavities, 104, valve pocket 102 of 103, four output channels.101, four input channels 103 of four containing cavities and four output channels 104 are all with the axis of valve pocket 102 for the axis uniform array of annular.One input channel 103 and output channel 104 mirror image are arranged at the zone line of two containing cavities 101.
The end of the end of containing cavities 101, the end of input channel 103 and output channel 104 is configured to connect with valve pocket 102, the head end of input channel 103 and the head end of output channel 104 are configured to extend to the outer surface of main body 1, the diameter of the head end of input channel 103 and the head end of output channel 104 is more than the diameter of its end, and head end is provided with for the extraneous screw thread coupled.The end of containing cavities 101 is provided with closing in, distance between end and the end of output channel 104 of input channel 103 is less than the distance between head end and the head end of output channel 104 of input channel 103, being provided through the air vent 105 of described main body 1 between input channel 103 or output channel 104 and containing cavities 101, heat can be transferred by the heat that main body 1 produces by the air-flow in air vent 105.
As shown in Figure 12 to 14 and Fig. 4, described switch unit 2 includes having the swing arm 201 triggering end 201a with fixing end 201b, there is first passage 202a, second channel 202b and the spool 202 of the chamber 202c that confluxes, making the reset components 203 that switch unit 2 resets, elastic component here is as a example by stretching spring 203.The fixing end 201b of swing arm 201 is detachably coupled by four groups of screws with spool 202, and the triggering end 201a of swing arm 201 coordinates with trigger element 3.Described switch unit 2 is configured to freedom and closed to rotate in valve pocket 102, the back-up ring arranged by the two ends of spool 202 by spool 202 axial limiting in valve pocket 102.
With reference to Figure 12, the fixing end 201b of swing arm 201 and triggering end 201a be arranged in parallel, trigger end 201a and fixing end 201b to be connected by armstand, armstand vertically fixing end 201b, the middle part triggering end 201a is provided with a through hole coordinated with stretching spring 203, is positioned at triggering end 201a and arranges beak thin bar 201c away from armstand side, and the angle of the beak 201d and bar 201e of beak thin bar 201c is obtuse angle, the end of beak 201d uses round-corner transition, the junction of beak 201d and bar 201e all to use round-corner transition.
With reference to Figure 13, spool 202 has the profile of valve pocket 102 correspondence with described main body 1, the middle part of spool 202 is provided with the chamber 202c that confluxes, eight cylindrical channel are had along spool 202 radial equipartition, using four cylindrical channel therein as first passage 202a, remaining four cylindrical channel are consistent with the diameter of second channel 202b as second channel 202b, first passage 202a, and first passage 202a and second channel 202b is alternately arranged.The end of first passage 202a is configured to the end of second channel 202b connect with the chamber 202c that confluxes, the head end of first passage 202a and the head end of second channel 202b are configured to the outer peripheral face extending radially into spool 202 along spool 202, and the chamber 202c that confluxes in the middle part of spool 202 can only be in communication with the outside by first passage 202a and second channel 202b.Spool 202 is additionally provided with four screwed holes, and described screwed hole is for fastening the fixing end 201b of swing arm 201.Spool 202 is additionally provided with the air vent 105 running through spool 202, and described air vent 105 is between first passage 202a and second channel 202b, and described air vent 105 does not communicates with first passage 202a or second channel 202b.
As it is shown on figure 3, described trigger element 3 includes trigger wheel the 305, the 4th belt wheel the 302, the 4th gripper shoe the 303, the 5th belt wheel 304.
Trigger wheel 305 is coordinated by axle key and the 4th belt wheel 302 realizes synchronous axial system, and the 4th belt wheel 302 realizes transmission by belt and the 5th belt wheel 304, and gear ratio is 2, and the 5th belt wheel 304 realizes synchronous axial system by key connecting and bent axle 403.The power transmission shaft of trigger wheel 305 and the 4th belt wheel 302 runs through the 4th gripper shoe 303, and can be freely rotatable in the corresponding aperture of the 4th gripper shoe 303, and the 4th gripper shoe 303 is removably mounted in the second gripper shoe 502 by two groups of screws.
If Figure 15 is to shown in 17, trigger wheel 305 includes the triggering block 301 of two discoid 306, two arc-shapeds of stator and four rivets.Two triggering blocks 301 are along the radial equipartition of stator 306 and are symmetrical arranged, and arc shaped opening is oppositely arranged.Two triggering blocks 301 are clamped by two stators 306, and the head and the tail two ends of each triggering block 301 are fastened by rivet and two stators 306.The center of each stator 306 is provided with the through hole coordinated with rotating shaft and key.
The turned position of switch unit 2 when showing that piston 401 is positioned at diverse location such as Fig. 4 to 9, and trigger the mated condition of end 201a and trigger wheel 305, it is also shown for the connection situation of containing cavities 101, first passage 202a, second channel 202b, input channel 103 and output channel 104 simultaneously.
Described piston unit 4 includes the cylinder sleeve 404 being provided with the piston 401 of piston ring, connecting rod 402, bent axle 403 and bottomless uncovered, cylinder sleeve 404 wraps up the containing cavities 101 of described main body 1, the rotation of bent axle 403 drives piston 401 reciprocating in containing cavities 101, and bent axle 403 is linked by the 4th belt wheel 302 of belt wheel with described trigger element 3.
With reference to Fig. 4, piston 401 is positioned at the extreme position of lifting, i.e. top dead center position.Trigger the through hole spring 203 that is stretched that the middle part of end 201a arranges to couple, the other end of stretching spring 203 couples with the first support column 509 arranged on the body 1, owing to stretching the elastic force effect of spring 203, make to trigger end 201a to rotate counterclockwise, until beak thin bar 201c triggering end 201a encounters first support column 509 in left side, now, the end of the beak 201d triggering end 201a is positioned at the middle part of two triggering blocks 301 of trigger wheel 305, and has a certain distance with triggering block 301.The second channel 202b of spool 202 connects with the output channel 104 of main body 1, and the first passage 202a of spool 202 connects with the containing cavities 101 of main body 1.
With reference to Fig. 7, during 401 times pressures of piston, trigger wheel 305 rotates clockwise, after trigger wheel 305 turns an angle, piston 401 is close at the closing in of containing cavities 101, triggering block 301 encounters the end of the beak 201d triggering end 201a, afterwards, piston 401 is pressed under continuing, and triggering block 301 pushes and triggers end 201a rotation simultaneously, spool 202 is also with rotation, second channel 202b staggers gradually with output channel 104, until piston 401 is depressed into extreme position, i.e. and bottom dead center position, second channel 202b does not connects with output channel 104, as shown in Figure 8.
Piston 401 under the drive of bent axle 403 while lower dead center moves toward top dead centre, trigger wheel 305 continues to rotate clockwise, triggering block 301 also continues to band movable valve plug 202 and rotates, second channel 202b cuts input channel 103 gradually, until second channel 202b connects completely with input channel 103, now, piston 401 is positioned at the dotted line position in Fig. 9, and triggering block 301 is positioned at the dotted line position in Fig. 9.
Piston 401 continues lifting, trigger wheel 305 continues to rotate clockwise, owing to the arc surface of triggering block 301 is tangent with the end of the beak 201d triggering end 201a, so, the arc surface of the triggering block 301 in rotation will not continue to push the end of the beak 201d triggering end 201a and rotates, i.e. spool 202 stops operating, and keeps the connected state of second channel 202b and input channel 103.
With reference to Fig. 9, piston 401 continues lifting, trigger wheel 305 continues to rotate clockwise, when piston 401 lifting is to top dead center position, the triggering block 301 of trigger wheel 305 departs from triggering end 201a, owing to stretching the effect of spring 203, spool 202 is made to turn round clockwise, until beak thin bar 201c triggering end 201a encounters first support column 509 in left side, i.e. second channel 202b is switched to output channel 104 by input channel 103, and is maintained at output channel 104.So far, a period of motion completes.
In one period of motion, second channel 202b is switched to input channel 103 by output channel 104, being switched to output channel 104 by input channel 103 again, the second channel 202b of spool 202 is by triggering the cooperation of end 201a and described trigger element 3 and stretching spring 203 and realize connecting selecting in the way of in the of one input channel 103 or output channel 104 with main body 1.In the rotation process of spool 202, first passage 202a connects with containing cavities 101 all the time.Such effect can be realized by following embodiment: the width of second channel 202b less than the minimum edge between the end of output channel 104 of described main body 1 and the end of input channel 103 away from.The head end of first passage 202a rotates the width closing in width less than the end of the containing cavities 101 of described main body 1 of the hunting range formed with spool 202.
The operation principle of fluid handling device disclosed by the invention is as follows:
Extraneous power source is rotated by belt drive the first belt wheel 506, first belt wheel 506 drives the second belt wheel 507 to rotate by the first gear 504 with engaging of the second gear 505, second belt wheel 507 is rotated by belt drive the 3rd belt wheel 508, 3rd belt wheel 508 is rotated by key connecting band dynamic crankshaft 403, while bent axle 403 drives piston 401 to move back and forth by connecting rod 402, bent axle 403 drives the 5th belt wheel 304 to rotate also by key connecting, 5th belt wheel 304 is rotated by belt drive the 4th belt wheel 302, 4th belt wheel 302 drives triggering block 301 to rotate around the axis of the 4th belt wheel 302 by key connecting;Triggering block 301 is met the triggering end 201a of swing arm 201 and pushes triggering end 201a rotation, i.e. swing arm 201 band movable valve plug 202 rotates, second channel 202b is switched to input channel 103 from the output channel 104 of main body 1 by spool 202 rotation process and is maintained at input channel 103, and first passage 202a connects with containing cavities 101 all the time, piston 401 does pull lift action makes fluid pass sequentially through input channel 103, second channel 202b, the chamber 202c that confluxes, first passage 202a, containing cavities 101.Triggering block 301 is rotated further, when triggering block 301 departs from the triggering end 201a of swing arm 201, swing arm 201 is under the effect of stretching spring 203, swing arm 201 resets to initial position, band movable valve plug 202 goes back to origin-location simultaneously, the i.e. second channel 202b of spool 202 switches back into output channel 104 from the input channel 103 of main body 1 and is maintained at output channel 104, and first passage 202a connects with containing cavities 101 all the time, piston 401 does pressing action and fluid extrudes containing cavities 101, fluid passes sequentially through first passage 202a, conflux chamber 202c, second channel 202b, output channel 104.
The concrete application of fluid handling device disclosed by the invention introduced below.
1. by water pipe, the entrance 6 of this device being coupled well, outlet 7 couples water storage tower by water pipe.Pull lift action due to the piston 401 in containing cavities 101, a negative pressuren zone can be formed in containing cavities 101, under atmospheric pressure, air in the water pipe that can will couple with entrance 6 enters second channel 202b by input channel 103, entering first passage 202a through the chamber 202c that confluxes again, final air is pressed into containing cavities 101.Due to the pressing action of the piston 401 in containing cavities 101, the air in containing cavities 101 can be pressed into, by first passage 202a, the chamber 202c that confluxes, then enter output channel 104 by second channel 202b, and then enter water storage tower along the water pipe exporting 7.
After air in the water pipe coupled with entrance 6 is moved away completely, pull lift action due to the piston 401 in containing cavities 101, a negative pressuren zone can be formed in containing cavities 101, under atmospheric pressure, the water in well can be pressed into containing cavities 101 by second channel 202b and first passage 202a.Pressing action due to the piston 401 in containing cavities 101, water in containing cavities 101 can be extruded the port of output channel 104 by first passage 202a and second channel 202b, approximate incompressibility because of liquid, the exportable current having equal pressure of the port of output channel 104, are therefore exported the current at 7 and can be climbed by water pipe by pressure and enter water storage tower after certain altitude.So the water in the well of certain depth can be transferred in the water storage tower of certain altitude by this device.Even if in the case of also leaving air in the water pipe coupled with entrance 6, this device also can realize extraction and the extrusion of water.
2. the entrance 6 of this device couples air, and outlet 7 couples air accumulator by pipeline.Due to the pull lift action of the piston 401 in containing cavities 101, a negative pressuren zone can be formed in containing cavities 101, under atmospheric pressure, the air near entrance 6 can be pressed into containing cavities 101 by second channel 202b and first passage 202a.Pressing action due to the piston 401 in containing cavities 101, air in containing cavities 101 can be extruded the port of output channel 104 by first passage 202a and second channel 202b, compressibility because of gas, the air-flow of the exportable little pressure of port of output channel 104, after the air-flow of these little pressure is collected by air accumulator, an air mass having certain pressure, i.e. this device can be formed and can work as air compressor use.
3. the entrance 6 of this device is coupled a hermetic container, and export 7 connection air.Due to the pull lift action of the piston 401 in containing cavities 101, a negative pressuren zone can be formed in containing cavities 101, under the effect of the current gas pressure of hermetic container, the gas in hermetic container can be pressed into containing cavities 101 by second channel 202b and first passage 202a.Pressing action due to the piston 401 in containing cavities 101, gas in containing cavities 101 can be extruded the port of output channel 104 by first passage 202a and second channel 202b, enter air, the most then the gas in hermetic container can be extracted out by this device, makes the air pressure in hermetic container reduce.Use so this device can work as air pump.

Claims (7)

1. a fluid transfer method, it is characterised in that
The end of the end of containing cavities (101) of main body (1), the end of input channel (103) and output channel (104) is connected with valve pocket (102);
nullThe fixing end (201b) of the swing arm (201) of switch unit (2) is detachably coupled with spool (202),The triggering end (201a) of swing arm (201) is made to coordinate with the trigger wheel (305) of trigger element (3),The spool (202) of switch unit (2) is arranged in valve pocket (102),Make spool (202) freedom and closed can rotate in valve pocket (102),The end of the first passage (202a) of spool (202) is connected with chamber of confluxing (202c) with the end of second channel (202b),First passage (202a) is connected all the time with the containing cavities (101) of main body (1),The second channel (202b) of spool (202) connects selecting in the way of in the of one input channel (103) or output channel (104) with main body (1) by triggering end (201a) and the cooperation of described trigger element (3) and reset components (203) realization;
The containing cavities (101) of main body (1) is wrapped up with the cylinder sleeve (404) of piston unit (4), the rotation of bent axle (403) drives piston (401) reciprocating in containing cavities (101), and bent axle (403) is linked by the 4th belt wheel (302) of belt wheel with described trigger element (3);
At the middle part of first gripper shoe (501) of gear unit (5), the first belt wheel (506) is set, at the middle part of the end of the second gripper shoe (502), the second belt wheel (507) is set, at the middle part of the head end of the second gripper shoe (502), the 3rd belt wheel (508) is set, second belt wheel (507) and the 3rd belt wheel (508) are linked by belt, first belt wheel (506) and the second belt wheel (507) engage realization linkage by the first gear (504) with the second gear (505), and the first belt wheel (506) is coupled with extraneous power source by belt;3rd belt wheel (508) realizes synchronous axial system by key connecting and bent axle (403).
nullA kind of fluid transfer method the most according to claim 1,It is characterized in that arranging triggering block (301) on trigger wheel (305),The triggering end (201a) of the swing arm (201) of described switch unit (2) coordinates with triggering block (301),The axis that triggering block (301) is provided around the 4th belt wheel (302) rotates,Triggering block (301) is provided with the arc surface that the triggering end (201a) with switch unit (2) coordinates,4th belt wheel (302) rotates and makes triggering block (301) coordinate with the triggering end (201a) of switch unit (2),Triggering block (301) drives and triggers end (201a) motion,And then band movable valve plug (202) rotates,The passage connected with the end of second channel (202b) is made to be switched to input channel (103) by the output channel (104) of described main body (1);
The head end of reset components (203) couples with swing arm (201), the end of reset components (203) couples with described main body (1), reset components (203) drives switch unit (2) motion, makes the passage connected with the end of second channel (202b) be switched to output channel (104) by the input channel (103) of main body (1);
The width of second channel (202b) less than the minimum edge between the end of output channel (104) of described main body (1) and the end of input channel (103) away from.
A kind of fluid transfer method the most according to claim 1, it is characterised in that the width of the hunting range that with spool (202), the head end of described first passage (202a) is rotated formation is set smaller than the closing in width of the end of the containing cavities (101) of described main body (1).
4. according to a kind of fluid transfer method according to any one of claim 1-2, it is characterised in that the head end of described input channel (103) and the head end of output channel (104) to be configured to extend to the outer surface of main body (1).
5. according to a kind of fluid transfer method according to any one of claim 1-2, it is characterised in that described spool (202) is arranged to following structure: the head end of first passage (202a) and the head end of second channel (202b) are configured to the outer peripheral face extending radially into spool (202) along spool (202).
A kind of fluid transfer method the most according to claim 1, it is characterised in that by key connecting by described the first gear (504) and the first belt wheel (506) synchronous axial system, by key connecting by the second gear (505) and the second belt wheel (507) synchronous axial system.
A kind of fluid transfer method the most according to claim 1, it is characterized in that described gear unit (5) is arranged to following structure: the head end of the first support column (509) is removably partially submerged into the first gripper shoe (501), the end of the first support column (509) is removably partially submerged into main body (1), the end of the second gripper shoe (502) is removably mounted in the first gripper shoe (501), and three is also fastened in main body (1) by screw bolt passes the second gripper shoe (502), the first gripper shoe (501) and the first support column (509);The two ends of the second support column (510) dismountable connection the first gripper shoe (501) and the second gripper shoe (502) respectively, and second the two ends of support column (510) be all partially submerged into the gripper shoe of correspondence, by bolt, the first gripper shoe (501), the second gripper shoe (502) and the second support column (510) are fastened.
CN201410650664.2A 2014-11-15 2014-11-15 fluid transfer method Active CN104533744B (en)

Priority Applications (3)

Application Number Priority Date Filing Date Title
CN201410650664.2A CN104533744B (en) 2014-11-15 2014-11-15 fluid transfer method
IE20150332A IE20150332A1 (en) 2014-11-15 2015-09-10 Method of production of a fluid transfer device
IE20150305A IES86737B2 (en) 2014-11-15 2015-09-10 Method of production of a fluid transfer device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201410650664.2A CN104533744B (en) 2014-11-15 2014-11-15 fluid transfer method

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Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH1122638A (en) * 1997-07-02 1999-01-26 Tochigi Fuji Ind Co Ltd Radial piston pump and coupling provided with the same
DE112005002521T5 (en) * 2004-10-28 2007-09-20 Nordson Corp., Westlake rotary pump
CN202300894U (en) * 2011-11-07 2012-07-04 重庆气体压缩机厂有限责任公司 Fan-shaped high pressure compressor
CN202811258U (en) * 2012-08-09 2013-03-20 重庆气体压缩机厂有限责任公司 W-type five-level reciprocating piston type natural gas compressor
DE102013219843A1 (en) * 2013-02-26 2014-08-28 Continental Teves Ag & Co. Ohg Hydraulic working machine has mechanical device for driving piston, which performs piston stroke with lift curve that is chosen such that angular position which is sum of all positive angular position rise function values is constant

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IE20150332A1 (en) 2016-05-18
IES86737B2 (en) 2016-11-16
CN104533744A (en) 2015-04-22

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