CN109236491A - Based on the sociological thermomotor for having internal heater and its application method - Google Patents

Based on the sociological thermomotor for having internal heater and its application method Download PDF

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Publication number
CN109236491A
CN109236491A CN201811045559.0A CN201811045559A CN109236491A CN 109236491 A CN109236491 A CN 109236491A CN 201811045559 A CN201811045559 A CN 201811045559A CN 109236491 A CN109236491 A CN 109236491A
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CN
China
Prior art keywords
end wall
fixedly connected
left end
slot
wall
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CN201811045559.0A
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Chinese (zh)
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崔洁洁
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Individual
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Individual
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Priority to CN201811045559.0A priority Critical patent/CN109236491A/en
Publication of CN109236491A publication Critical patent/CN109236491A/en
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F02COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
    • F02GHOT GAS OR COMBUSTION-PRODUCT POSITIVE-DISPLACEMENT ENGINE PLANTS; USE OF WASTE HEAT OF COMBUSTION ENGINES; NOT OTHERWISE PROVIDED FOR
    • F02G1/00Hot gas positive-displacement engine plants
    • F02G1/04Hot gas positive-displacement engine plants of closed-cycle type
    • F02G1/043Hot gas positive-displacement engine plants of closed-cycle type the engine being operated by expansion and contraction of a mass of working gas which is heated and cooled in one of a plurality of constantly communicating expansible chambers, e.g. Stirling cycle type engines
    • F02G1/044Hot gas positive-displacement engine plants of closed-cycle type the engine being operated by expansion and contraction of a mass of working gas which is heated and cooled in one of a plurality of constantly communicating expansible chambers, e.g. Stirling cycle type engines having at least two working members, e.g. pistons, delivering power output
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F02COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
    • F02GHOT GAS OR COMBUSTION-PRODUCT POSITIVE-DISPLACEMENT ENGINE PLANTS; USE OF WASTE HEAT OF COMBUSTION ENGINES; NOT OTHERWISE PROVIDED FOR
    • F02G1/00Hot gas positive-displacement engine plants
    • F02G1/04Hot gas positive-displacement engine plants of closed-cycle type
    • F02G1/043Hot gas positive-displacement engine plants of closed-cycle type the engine being operated by expansion and contraction of a mass of working gas which is heated and cooled in one of a plurality of constantly communicating expansible chambers, e.g. Stirling cycle type engines
    • F02G1/053Component parts or details
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F02COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
    • F02GHOT GAS OR COMBUSTION-PRODUCT POSITIVE-DISPLACEMENT ENGINE PLANTS; USE OF WASTE HEAT OF COMBUSTION ENGINES; NOT OTHERWISE PROVIDED FOR
    • F02G1/00Hot gas positive-displacement engine plants
    • F02G1/04Hot gas positive-displacement engine plants of closed-cycle type
    • F02G1/043Hot gas positive-displacement engine plants of closed-cycle type the engine being operated by expansion and contraction of a mass of working gas which is heated and cooled in one of a plurality of constantly communicating expansible chambers, e.g. Stirling cycle type engines
    • F02G1/053Component parts or details
    • F02G1/055Heaters or coolers

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Package Closures (AREA)

Abstract

The invention discloses based on the sociological thermomotor for having internal heater and its application method, including work box, one, which is provided with, in the work box pushes away air cavity, described push away is provided with a linkage space in air cavity aft bulkhead, it is described to push away the expansion chamber for being provided with a right end wall in the wall of air cavity left end and pushing away air cavity and being connected, one, which is provided with, in the expansion chamber upper end wall changes sap cavity, described change is provided with the switching slot that an aft bulkhead is connected with space of linking in the wall of sap cavity left end, it is provided with a seal groove in the wall of the switching slot left end, is provided with a cooling chamber in the wall of the seal groove left end.This apparatus structure is simple, and it is convenient to operate, and the alternating speed of coolant liquid can be adjusted according to different heat production, and coolant liquid can make full use of the refrigerating function of coolant liquid, and saved a large amount of energy without circulating cooling always.

Description

Based on the sociological thermomotor for having internal heater and its application method
Technical field
The present invention relates to device cooling fields, specially based on the sociological thermomotor for having internal heater and its user Method.
Background technique
Currently, with the development of science and technology the demand for the energy is higher and higher, in the cooling this respect of device, coolant liquid It makes full use of, is the key that energy saving, and the use of coolant liquid at this stage does not use the function of coolant liquid sufficiently, The energy needed in use is very big, can not be cooled down according to quantity of heat production.
Summary of the invention
The purpose of the present invention is to provide based on the sociological thermomotor for having internal heater and its application method, to solve The problems mentioned above in the background art.
To achieve the above object, the invention provides the following technical scheme: based on the sociological thermomotor for having internal heater And its application method, including work box are provided with one in the work box and push away air cavity, described push away in air cavity aft bulkhead is provided with one It links space, it is described to push away the expansion chamber for being provided with a right end wall in the wall of air cavity left end and pushing away air cavity and being connected, on the expansion chamber It is provided with one in end wall and changes sap cavity, described change is provided with the switching that an aft bulkhead is connected with space of linking in the wall of sap cavity left end Slot is provided with a seal groove in the wall of the switching slot left end, a cooling chamber, the cooling is provided in the wall of the seal groove left end Chamber left end wall is fixedly connected with a cooler, and the cooling chamber upper end wall is connected on the upside of the wall of seal groove left end by drain pipe It connects, a hydraulic pump is provided in the drain pipe, the cooling chamber lower end wall passes through perfusion tube phase with seal groove left end wall downside Connection, the switching slot right end wall are rotatably connected to a left end through switching slot left end wall and seal groove right end wall and are located at sealing Switching shaft in slot is fixedly connected with a change gear on the switching shaft in the switching slot, described to be located in seal groove Switching shaft on be fixedly connected with a rotating disk being slidably connected with seal groove, it is symmetrical centered on switching shaft in the rotating disk Be provided with the connectivity slot of one or so end face communication seals slot, it is described change in sap cavity be provided with a right end through change sap cavity right end wall with Push away air cavity upper end wall and with the swan-neck that pushes away air cavity and be connected, the swan-neck lower end is through changing sap cavity lower end wall and expansion chamber is left End wall and it is connected with expansion chamber, the expansion chamber lower end wall is fixedly connected with a heater, is slidably connected in the expansion chamber Have an expansion piston, it is described push away be provided in air cavity a lower end through push away air cavity lower end wall and linkage space upper end wall and with linkage The driving shaft of space lower end wall rotation connection, it is described to be fixedly connected with a rotating block on the driving shaft pushed away in air cavity, it is described It is fixedly connected with a support rod on rotating block, a upper end is rotatably connected on the support rod and the rotation of coupled piston front end face connects The follower lever connect is rotatably connected to support rod a left end on the upside of the follower lever through pushing away air cavity left end wall and and expansion piston Front end face rotation connection driving lever, it is described be located at linkage space in driving shaft on be fixedly connected with a cam, the linkage It is provided with the lifting groove in left end wall connection linkage space in the right end wall of space, slidably connects a sliding in the lifting groove Block, the sliding shoe left side are fixedly connected with a left end through lifting groove left end wall and are located at the elevating lever to link in space, The elevating lever upper surface is fixedly connected with the lifting spring that a upper end is fixedly connected with the space upper end wall that links, the elevating lever Left end is provided with an elastomer block, and the elastomer block is connect with elevating lever by torsion spring, setting on the left of the driving shaft There is one to be connected axis with what linkage space aft bulkhead was rotatablely connected, is fixedly connected with a convergence gear, the rank on the linking axis The drive bevel gear for being provided with one on front side of gear and being connected axis and being fixedly connected is connect, linkage space left end wall is fixedly connected with one Rotary shaft is fixedly connected with one and the belt pulley that is connected by meshing transmission by belt of change gear, the rotation in the rotary shaft Shaft right end is fixedly connected with the driven wheel of differential that a lower end and drive bevel gear left end are connected by meshing transmission, the linkage space It is provided with a front bulkhead in aft bulkhead and determines chamfered groove with what space of linking was connected, it is described determine there are six chamfered groove outer end face array is arranged It is described to determine chamfered groove aft bulkhead and be rotatably connected to a front end to run through calmly close to the stuck slot for determine end wall of chamfered groove with determining chamfered groove and being connected Chamfered groove front bulkhead and be located in linkage space and determine angle axis, it is described be located at determine in chamfered groove determine a rotation is fixedly connected on the axis of angle Gear, the rotation gear determine protruding into for chamfered groove far from the end wall connection for determining angle axis far from being provided with one in the end face for determining angle axis Slot, the close end wall for determining angle axis of slot that protrudes into are fixedly connected with a stuck spring, and the stuck spring is separate to determine angle axis One end, which is fixedly connected with one, to be run through far from the one end for determine angle axis and protrudes into slot far from determine the end wall of angle axis and stuck slot is close determines angle axis End wall and be located at stuck slot in stuck piece, it is described be located at linkage space in determine be fixedly connected on the axis of angle one be connected tooth The driven gear being sequentially connected by belt friction is taken turns, array is provided with the six roots of sensation and determines the fixed company of angle axis on front side of the driven gear The joining rod connect;
The method comprises the following steps:
Start heater first, generate heat, so that when gases are heated, they expand in expansion chamber on the left of expansion piston, drives expansion Piston moves right, while coupled piston being driven to move downward, so that driving shaft be driven to rotate, driving shaft band moving cam is rotated, First elevating lever is pushed to rise in cam rotation process, elevating lever drives elastomer block to rise, and elastomer block rising bumps against joining rod, thus Drive determines angle axis and rotates up to disengaging, and then elevating lever declines, and elastomer block decline is driven, at this time in stuck slot and stuck piece of card Under dead, joining rod is not rotated, and under the action of torsion spring, elastomer block is flipped, until elastomer block is detached from and joining rod Contact, and move on the downside of joining rod, under the action of torsion spring, elastic block reset determine angle axis and rotary teeth is driven to rotate It is 60 degree dynamic, so that stuck piece is detached from the stuck slot of script and enters in next stuck slot, in the effect of gear train and belt Under, drive change gear to rotate 60 degree, so that switching shaft be driven to rotate 60 degree, switching shaft drives rotating disk rotation 60 Degree, the connection of cutting drain pipe and connection tube and perfusion tube and junction pipe, rotating block continue to rotate;
Then after rotating block three circle of rotation, drain pipe can be connected to again with connection tube and perfusion tube with junction pipe, at this point, starting Hydraulic pump is replaced the coolant liquid overheated in sap cavity is changed with the coolant liquid that can be worked normally in cooling chamber, and starts cooler pair The coolant liquid of overheat cools down.
Preferably, the lifting spring screen resilience is greater than torsion spring elastic force.
Preferably, having good airtightness between the rotating disk and drain pipe, connection tube and perfusion tube, junction pipe.
Preferably, the size specification of the driven gear and convergence gear, drive bevel gear and driven wheel of differential is big Small dimension and belt pulley and the size specification of change gear all need unanimously.
Compared with prior art, the beneficial effects of the present invention are: in present invention work, heater work generates heat, makes On the left of expansion piston in when gases are heated, they expand in expansion chamber, drive expansion piston to move right, while driving coupled piston It moves downward, so that driving shaft be driven to rotate, driving shaft band moving cam is rotated, and is first pushed on elevating lever in cam rotation process It rises, elevating lever drives elastomer block to rise, and elastomer block rising bumps against joining rod, rotates up to disengaging to drive and determine angle axis, then Elevating lever decline drives elastomer block decline, at this time stuck slot and stuck piece it is stuck under, joining rod does not rotate, and in torque Under the action of spring, elastomer block is flipped, until elastomer block is detached from the contact with joining rod, and moves on the downside of joining rod, Under the action of torsion spring, elastic block reset determines angle axis and rotary teeth wheel is driven to rotate 60 degree, so that stuck piece of disengaging is originally Stuck slot and enter next stuck slot in, under the action of gear train and belt, drive change gear rotate 60 degree, from And switching shaft is driven to rotate 60 degree, switching shaft drives rotating disk to rotate 60 degree, cuts off drain pipe and connection tube and perfusion tube With the connection of junction pipe, rotating block is continued to rotate, after rotating block three circle of rotation, drain pipe and connection tube and perfusion tube be coupled Pipe can be connected to again, at this point, starting hydraulic pump, will change the cooling overheated in sap cavity with the coolant liquid that can be worked normally in cooling chamber Liquid replacement, and start cooler and cool down to the coolant liquid of overheat, it repeats the above steps, this apparatus structure is simple, and operation is just Victory, can adjust the alternating speed of coolant liquid according to different heat production, and coolant liquid can make full use of without circulating cooling always The refrigerating function of coolant liquid, and saved a large amount of energy.
Detailed description of the invention
Fig. 1 is that the present invention is based on the main view knots of the sociological thermomotor for having internal heater and its application method entirety complete section Structure schematic diagram;
Fig. 2 is the space complete section front view structure that links the present invention is based on the sociological thermomotor for having internal heater and its application method Schematic diagram;
Fig. 3 is that the present invention is based on the right view sectional structure of sap cavity is changed in the sociological thermomotor and its application method for having internal heater Schematic diagram;
Fig. 4 is that the present invention is based on gear main view section view knot is rotated in the sociological thermomotor for having internal heater and its application method Structure schematic diagram.
Specific embodiment
Following will be combined with the drawings in the embodiments of the present invention, and technical solution in the embodiment of the present invention carries out clear, complete Site preparation description, it is clear that described embodiments are only a part of the embodiments of the present invention, instead of all the embodiments.It is based on Embodiment in the present invention, it is obtained by those of ordinary skill in the art without making creative efforts every other Embodiment shall fall within the protection scope of the present invention.
Please refer to Fig. 1-4, a kind of embodiment provided by the invention: based on the sociological thermomotor for having internal heater and its Application method, including work box 10 are provided with one in the work box 10 and push away air cavity 22, described to push away setting in 22 aft bulkhead of air cavity There is a linkage space 35, it is described to push away the expansion chamber 28 for being provided with a right end wall in 22 left end wall of air cavity and pushing away air cavity 22 and being connected, It is provided with one in 28 upper end wall of expansion chamber and changes sap cavity 20, described change in 20 left end wall of sap cavity is provided with an aft bulkhead and linkage The switching slot 31 that space 35 is connected is provided with a seal groove 16,16 left end of seal groove in the 31 left end wall of switching slot A cooling chamber 12 is provided in wall, the 12 left end wall of cooling chamber is fixedly connected with a cooler 13,12 upper end of cooling chamber Wall is connected on the upside of 16 left end wall of seal groove by drain pipe 14, and a hydraulic pump 15 is provided in the drain pipe 14, described 12 lower end wall of cooling chamber is connected on the downside of 16 left end wall of seal groove by perfusion tube 11, and 31 right end wall of the switching slot rotation connects A left end is connected to through 31 left end wall of switching slot and 16 right end wall of seal groove and the switching shaft 34 in seal groove 16, institute's rheme In being fixedly connected with a change gear 32 on the switching shaft 34 in switching slot 31, on the switching shaft 34 positioned in seal groove 16 It is fixedly connected with a rotating disk 17 being slidably connected with seal groove 16, is symmetrically set centered on switching shaft 34 in the rotating disk 17 It is equipped with the connectivity slot 18 of one or so end face communication seals slot 16, it is described to change in sap cavity 20 that be provided with a right end right through sap cavity 20 is changed Swan-neck 21 of the end wall with 22 upper end wall of air cavity is pushed away and with pushing away air cavity 22 and being connected, 21 lower end of swan-neck is through changing sap cavity 20 Lower end wall and 28 left end wall of expansion chamber and it is connected with expansion chamber 28,28 lower end wall of expansion chamber is fixedly connected with a heater 30, slidably connect an expansion piston 29 in the expansion chamber 28, described push away is provided with a lower end through pushing away air cavity in air cavity 22 22 lower end walls and linkage 35 upper end wall of space and with linkage 35 lower end wall of space rotation connection driving shaft 26, it is described be located at push away gas It is fixedly connected with a rotating block 25 on driving shaft 26 in chamber 22, a support rod 58, institute are fixedly connected on the rotating block 25 State the follower lever 24 that a upper end and the rotation connection of 23 front end face of coupled piston are rotatably connected on support rod 58, the follower lever 24 Upside and support rod 58 are rotatably connected to a left end through pushing away 22 left end wall of air cavity and be rotatablely connected with 29 front end face of expansion piston Driving lever 27, it is described be located at linkage space 35 in driving shaft 26 on be fixedly connected with a cam 48, the linkage space 35 It is provided with the lifting groove 46 in left end wall connection linkage space 35 in right end wall, slidably connects a sliding in the lifting groove 46 Block 47,47 left side of sliding shoe are fixedly connected with a left end through 46 left end wall of lifting groove and are located in linkage space 35 Elevating lever 44,44 upper surface of elevating lever are fixedly connected with the lifting bullet that a upper end is fixedly connected with 35 upper end wall of space that links Spring 45,44 left end of elevating lever are provided with an elastomer block 42, and the elastomer block 42 is connected with elevating lever 44 by torsion spring 43 It connects, one is provided on the left of the driving shaft 26 and is connected axis 51, the linking with what linkage 35 aft bulkhead of space was rotatablely connected It is fixedly connected with a convergence gear 49 on axis 51, one is provided on front side of the convergence gear 49 and the master that is connected axis 51 and is fixedly connected Dynamic bevel gear 50, the 35 left end wall of linkage space are fixedly connected with a rotary shaft 36, are fixedly connected in the rotary shaft 36 One belt pulley 37 being connected by meshing transmission with change gear 32 by belt, 36 right end of rotary shaft are fixedly connected with a lower end The driven wheel of differential 38 being connected by meshing transmission with 50 left end of drive bevel gear, before being provided with one in 35 aft bulkhead of linkage space End wall determines chamfered groove 57 with what linkage space 35 was connected, described determine the setting of 57 outer end face array of chamfered groove and determine chamfered groove 57 there are six close End wall and the stuck slot 52 determining chamfered groove 57 and be connected, it is described to determine 57 aft bulkhead of chamfered groove and be rotatably connected to a front end through determining chamfered groove 57 front bulkheads and be located in linkage space 35 and determine angle axis 41, it is described be located at determine to determine to be fixedly connected on angle axis 41 in chamfered groove 57 One rotation gear 56, the rotation gear 56 are connected to far from being provided with one in the end face for determining angle axis 41 far from the end wall for determining angle axis 41 That determines chamfered groove 57 protrudes into slot 55, and the close end wall for determining angle axis 41 of slot 55 that protrudes into is fixedly connected with a stuck spring 54, institute It states stuck spring 54 and is fixedly connected with one far from the one end for determine angle axis 41 and run through far from the one end for determining angle axis 41 that protrude into slot 55 separate Determine stuck piece 53 of the end wall and stuck slot 52 of angle axis 41 close to the end wall for determining angle axis 41 and in stuck slot 52, it is described to be located at Determine to be fixedly connected with a driven tooth being sequentially connected with convergence gear 49 by belt friction on angle axis 41 in linkage space 35 Wheel 40, the 40 front side array of driven gear are provided with the six roots of sensation and the joining rod 39 determining angle axis 41 and be fixedly connected;
The method comprises the following steps:
Start heater 30 first, generates heat, so that when gases are heated, they expand in expansion chamber 28 in 29 left side of expansion piston, band Dynamic expansion piston 29 moves right, while coupled piston 23 being driven to move downward, so that driving shaft 26 is driven to rotate, driving shaft 26 Band moving cam 48 rotates, and elevating lever 44 is first pushed to rise in 48 rotation process of cam, and elevating lever 44 drives elastomer block 42 to rise, bullet Property the rising of block 42 bump against joining rod 39, determine angle axis 41 to drive and rotate up to disengagings, the then decline of elevating lever 44, with dynamic elasticity Block 42 declines, at this time stuck slot 52 and stuck piece 53 it is stuck under, joining rod 39 does not rotate, and in the effect of torsion spring 43 Under, elastomer block 42 is flipped, up to the disengaging of elastomer block 42 and the contact of joining rod 39, and 39 downside of joining rod is moved to, Under the action of torsion spring 43, elastomer block 42 resets, and determines angle axis 41 and rotation gear 56 is driven to rotate 60 degree, so that stuck piece 53 It is detached from the stuck slot 52 of script and enters in next stuck slot 52, under the action of gear train and belt, drive change gear 32 60 degree of rotations, so that switching shaft 34 be driven to rotate 60 degree, switching shaft 34 drives rotating disk 17 to rotate 60 degree, cutting row The connection of liquid pipe 14 and connection tube 19 and perfusion tube 11 and junction pipe 33, rotating block 25 continue to rotate;
Then after three circle of rotation of rotating block 25, drain pipe 14 and connection tube 19 and perfusion tube 11 can be connected again with junction pipe 33 It is logical, at this point, starting hydraulic pump 15, is replaced with the coolant liquid that can be worked normally in cooling chamber 12 by the coolant liquid overheated in sap cavity 20 is changed It changes, and the coolant liquid for starting 13 pairs of cooler overheats cools down.
Valuably, 45 screen resilience of lifting spring is greater than 43 elastic force of torsion spring, and effect is to guarantee elevating lever 44 39 downside of joining rod can sequentially be dropped to.
Valuably, have between the rotating disk 17 and drain pipe 14, connection tube 19 and perfusion tube 11, junction pipe 33 good Airtightness, effect are so that preventing coolant liquid from flowing into seal groove 16.
Valuably, the size specification of the driven gear 40 and convergence gear 49, drive bevel gear 50 and driven wheel of differential 38 size specification and belt pulley 37 and the size specification of change gear 32 all needs unanimously, and effect is to guarantee that rotating disk 17 is turning Motion block 25 can turn 60 degree after turning around.
Specifically used mode: in present invention work, heater 30 works, and generates heat, so that in 29 left side of expansion piston When gases are heated, they expand in expansion chamber 28, drives expansion piston 29 to move right, while coupled piston 23 being driven to move downward, from And driving shaft 26 is driven to rotate, and driving shaft 26 is rotated with moving cam 48, and first push elevating lever 44 to rise in 48 rotation process of cam, Elevating lever 44 drive elastomer block 42 rise, elastomer block 42 rising bumps against joining rod 39, thus drive determine angle axis 41 rotate up to it is de- From, then elevating lever 44 declines, drive elastomer block 42 to decline, at this time stuck slot 52 and stuck piece 53 it is stuck under, joining rod 39 do not rotate, and under the action of torsion spring 43, elastomer block 42 is flipped, until elastomer block 42 is detached from and joining rod 39 Contact, and 39 downside of joining rod is moved to, under the action of torsion spring 43, elastomer block 42 resets, and determines angle axis 41 and drives rotation Gear 56 rotates 60 degree, so that being detached from the stuck slot 52 of script for stuck piece 53 and entering in next stuck slot 52, in gear Under the action of system and belt, change gear 32 is driven to rotate 60 degree, so that switching shaft 34 is driven to rotate 60 degree, switching shaft 34 Rotating disk 17 is driven to rotate 60 degree, the connection of cutting drain pipe 14 and connection tube 19 and perfusion tube 11 and junction pipe 33 rotates Block 25 continues to rotate, after three circle of rotation of rotating block 25, drain pipe 14 and connection tube 19 and the meeting again of perfusion tube 11 and junction pipe 33 It is connected to, at this point, starting hydraulic pump 15, will change the cooling overheated in sap cavity 20 with the coolant liquid that can be worked normally in cooling chamber 12 Liquid replacement, and the coolant liquid for starting 13 pairs of cooler overheats cools down, and repeats the above steps, this apparatus structure is simple, operation It is convenient, the alternating speed of coolant liquid can be adjusted according to different heat production, coolant liquid, can be sufficiently sharp without circulating cooling always With the refrigerating function of coolant liquid, and a large amount of energy is saved.
It is obvious to a person skilled in the art that invention is not limited to the details of the above exemplary embodiments, Er Qie In the case where without departing substantially from spirit or essential attributes of the invention, the present invention can be realized in other specific forms.Therefore, no matter From the point of view of which point, the present embodiments are to be considered as illustrative and not restrictive, and the scope of the present invention is by appended power Benefit requires rather than above description limits, it is intended that all by what is fallen within the meaning and scope of the equivalent elements of the claims Variation is included within the present invention.Any reference signs in the claims should not be construed as limiting the involved claims.

Claims (4)

1. based on the sociological thermomotor for having internal heater and its application method, including work box, it is characterised in that: the work Make to be provided with one in case and push away air cavity, described push away is provided with a linkage space in air cavity aft bulkhead, described push away sets in the wall of air cavity left end The expansion chamber for being equipped with a right end wall and pushing away air cavity and being connected is provided with one in the expansion chamber upper end wall and changes sap cavity, described to change liquid The switching slot that an aft bulkhead is connected with space of linking is provided in the wall of chamber left end, it is close to be provided with one in the wall of the switching slot left end Sealing groove is provided with a cooling chamber in the wall of the seal groove left end, and cooling chamber left end wall is fixedly connected with a cooler, described Cooling chamber upper end wall is connected on the upside of the wall of seal groove left end by drain pipe, and a hydraulic pump, institute are provided in the drain pipe It states cooling chamber lower end wall to be connected on the downside of the wall of seal groove left end by perfusion tube, the switching slot right end wall is rotatably connected to one Left end is through switching slot left end wall and seal groove right end wall and the switching shaft in seal groove, the cutting in switching slot It changes on axis and is fixedly connected with a change gear, one is fixedly connected on the switching shaft positioned in seal groove and is slided with seal groove The rotating disk of connection, the interior connection that one or so end face communication seals slot is symmetrically arranged with centered on switching shaft of the rotating disk Slot, it is described change in sap cavity be provided with a right end through change sap cavity right end wall with push away air cavity upper end wall and with push away air cavity be connected it is curved Curved tube, the swan-neck lower end is through changing sap cavity lower end wall and expansion chamber left end wall and be connected with expansion chamber, the expansion chamber Lower end wall is fixedly connected with a heater, and an expansion piston is slidably connected in the expansion chamber, and described push away in air cavity is provided with One lower end, which is run through, pushes away air cavity lower end wall and link space upper end wall and the driving shaft with linkage space lower end wall rotation connection, described It is fixedly connected with a rotating block on the driving shaft pushed away in air cavity, a support rod is fixedly connected on the rotating block, it is described The follower lever of a upper end and the rotation connection of coupled piston front end face, the follower lever upside and support are rotatably connected on support rod Bar is rotatably connected to a left end and runs through the driving lever for pushing away air cavity left end wall and being rotatablely connected with expansion piston front end face, described to be located at It is fixedly connected with a cam on driving shaft in linkage space, left end wall connection connection is provided in the right end wall of the linkage space The lifting groove in space is moved, a sliding shoe is slidably connected in the lifting groove, the sliding shoe left side is fixedly connected with a left side End through lifting groove left end wall and be located at linkage space in elevating lever, the elevating lever upper surface be fixedly connected with a upper end with The lifting spring that linkage space upper end wall is fixedly connected, the elevating lever left end are provided with an elastomer block, the elastomer block and liter It drops bar to connect by torsion spring, one is provided on the left of the driving shaft and is connected with what linkage space aft bulkhead was rotatablely connected Axis is fixedly connected with a convergence gear on the linking axis, is provided with one on front side of the convergence gear and is fixedly connected with axis is connected Drive bevel gear, linkage space left end wall is fixedly connected with a rotary shaft, be fixedly connected in the rotary shaft one with The belt pulley that change gear is connected by meshing transmission by belt, the rotary shaft right end are fixedly connected with a lower end and active conical tooth The driven wheel of differential that left end is connected by meshing transmission is taken turns, a front bulkhead and linkage space phase are provided in the aft bulkhead of the linkage space Chamfered groove is determined in connection, described determine the setting of chamfered groove outer end face array there are six the close end walls for determining chamfered groove and the card determining chamfered groove and be connected Dead slot, it is described determine chamfered groove aft bulkhead be rotatably connected to a front end run through determine chamfered groove front bulkhead and be located at link space in determine angle Axis, it is described be located at determine to determine to be fixedly connected with a rotation gear on the axis of angle in chamfered groove, the separate end for determining angle axis of rotation gear A slot that protrudes into that chamfered groove is determined far from the end wall connection for determining angle axis is provided in face, the slot that protrudes into is consolidated close to the end wall for determining angle axis Surely it is connected with a stuck spring, the stuck spring is fixedly connected with one far from the one end for determining angle axis and passes through far from the one end for determining angle axis Stretch through stuck piece far from the end wall and stuck slot for determine angle axis close to the end wall for determining angle axis and in the stuck slot of slot, institute's rheme One and the driven gear that is sequentially connected by belt friction of convergence gear, institute are fixedly connected on the axis of angle in determining in linkage space State the joining rod that array on front side of driven gear is provided with the six roots of sensation with determines angle axis and be fixedly connected;
The method comprises the following steps:
Start heater first, generate heat, so that when gases are heated, they expand in expansion chamber on the left of expansion piston, drives expansion Piston moves right, while coupled piston being driven to move downward, so that driving shaft be driven to rotate, driving shaft band moving cam is rotated, First elevating lever is pushed to rise in cam rotation process, elevating lever drives elastomer block to rise, and elastomer block rising bumps against joining rod, thus Drive determines angle axis and rotates up to disengaging, and then elevating lever declines, and elastomer block decline is driven, at this time in stuck slot and stuck piece of card Under dead, joining rod is not rotated, and under the action of torsion spring, elastomer block is flipped, until elastomer block is detached from and joining rod Contact, and move on the downside of joining rod, under the action of torsion spring, elastic block reset determine angle axis and rotary teeth is driven to rotate It is 60 degree dynamic, so that stuck piece is detached from the stuck slot of script and enters in next stuck slot, in the effect of gear train and belt Under, drive change gear to rotate 60 degree, so that switching shaft be driven to rotate 60 degree, switching shaft drives rotating disk rotation 60 Degree, the connection of cutting drain pipe and connection tube and perfusion tube and junction pipe, rotating block continue to rotate;
Then after rotating block three circle of rotation, drain pipe can be connected to again with connection tube and perfusion tube with junction pipe, at this point, starting Hydraulic pump is replaced the coolant liquid overheated in sap cavity is changed with the coolant liquid that can be worked normally in cooling chamber, and starts cooler pair The coolant liquid of overheat cools down.
2. according to claim 1 existed based on the sociological thermomotor for having internal heater and its application method, feature In: the lifting spring screen resilience is greater than torsion spring elastic force.
3. according to claim 1 existed based on the sociological thermomotor for having internal heater and its application method, feature In: there is good airtightness between the rotating disk and drain pipe, connection tube and perfusion tube, junction pipe.
4. according to claim 1 existed based on the sociological thermomotor for having internal heater and its application method, feature In: the size specification and belt pulley of the size specification of the driven gear and convergence gear, drive bevel gear and driven wheel of differential It is all needed unanimously with the size specification of change gear.
CN201811045559.0A 2018-09-07 2018-09-07 Based on the sociological thermomotor for having internal heater and its application method Withdrawn CN109236491A (en)

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CN201811045559.0A CN109236491A (en) 2018-09-07 2018-09-07 Based on the sociological thermomotor for having internal heater and its application method

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201811045559.0A CN109236491A (en) 2018-09-07 2018-09-07 Based on the sociological thermomotor for having internal heater and its application method

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113794019A (en) * 2021-08-17 2021-12-14 阳萍 Explosion-proof type lithium ion battery with electrolyte discharge capacity

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113794019A (en) * 2021-08-17 2021-12-14 阳萍 Explosion-proof type lithium ion battery with electrolyte discharge capacity

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Application publication date: 20190118