CN105156153A - Eccentric rod and isolation body fluid mechanism and device including same - Google Patents

Eccentric rod and isolation body fluid mechanism and device including same Download PDF

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Publication number
CN105156153A
CN105156153A CN201510341566.5A CN201510341566A CN105156153A CN 105156153 A CN105156153 A CN 105156153A CN 201510341566 A CN201510341566 A CN 201510341566A CN 105156153 A CN105156153 A CN 105156153A
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China
Prior art keywords
cylinder body
hydraulic mechanism
side spin
core construction
slider hydraulic
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CN201510341566.5A
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CN105156153B (en
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靳北彪
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Yuhuan Tongli Auto Parts Co., Ltd
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Molecule Power Beijing Technology Co Ltd
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Abstract

The invention discloses an eccentric rod and isolation body fluid mechanism and a device including the same. The eccentric rod and isolation body fluid mechanism comprises a cylinder body, an eccentric shaft, a hollow structural body and a sliding structural body. The eccentric rod and isolation body fluid mechanism is characterized in that the eccentric shaft is arranged in the cylinder body; the hollow structural body is arranged on the eccentric portion of the eccentric shaft in rotating and sleeving modes, and the outer side wall of the hollow structural body is matched with the inner side wall of the cylinder body; the cylinder body is provided with a rotating shaft, and the rotating shaft is provided with a rotating shaft sliding groove; the sliding structural body is fixedly connected with the hollow structural body in the chord line direction apart from the diameter of the hollow structural body, and the sliding structural body is in sliding fit with the rotating shaft sliding groove; the cylinder body and/or an end cover of the cylinder body are/is provided with fluid inlets, and the cylinder body and/or the end cover of the cylinder body are/is provided with fluid outlets. The eccentric rod and isolation body fluid mechanism provides more selectivity for spatial arrangement; in the series connection using process, efficiency can be improved, the size can be decreased and the weight can be lowered.

Description

Side spin slider hydraulic mechanism and comprise its device
Technical field
The present invention relates to heat energy and dynamic field, especially a kind of side spin slider hydraulic mechanism and comprise its device.
Background technique
Match with cylinder, eccentric rotary body and slider and produce the hydraulic mechanism of volume-variation, the application of Ji Bian circle hydraulic mechanism is very extensive, but this kind of hydraulic mechanism, particularly in series connection using process, take up room large, and formation crossfire, these all have a strong impact on the efficiency of this kind of mechanism, therefore need the device invented a kind of novel fluid mechanism and comprise it.
Summary of the invention
In order to solve the problem, the technological scheme that the present invention proposes is as follows:
Scheme 1: a kind of side spin slider hydraulic mechanism, comprise cylinder body, eccentric shaft, hollow-core construction body and sliding motion structure body, described eccentric shaft is arranged in described cylinder body, described hollow-core construction body rotating sleeve dress is arranged on the eccentric part of described eccentric shaft, the outer side wall of described hollow-core construction body matches with the madial wall of described cylinder body, described cylinder body establishes rotating shaft, described rotating shaft is established rotating shaft chute, described sliding motion structure body is connected by the string of a musical instrument direction beyond the diameter of described hollow-core construction body and described hollow-core construction body and arranges, described sliding motion structure body and described rotating shaft slide are equipped with, the end cap of described cylinder body and/or described cylinder body establishes fluid input, the end cap of described cylinder body and/or described cylinder body establishes fluid output.
Scheme 2: a kind of side spin slider hydraulic mechanism, comprise cylinder body, eccentric shaft, hollow-core construction body and sliding motion structure body, described eccentric shaft is arranged in described cylinder body, described hollow-core construction body rotating sleeve dress is arranged on the eccentric part of described eccentric shaft, the outer side wall of described hollow-core construction body matches with the madial wall of described cylinder body, described cylinder body establishes cylinder body chute by the string of a musical instrument direction beyond described diameter of cylinder, described sliding motion structure body and the hinged setting of described hollow-core construction body, described sliding motion structure body and described cylinder body slide are equipped with, the end cap of described cylinder body and/or described cylinder body establishes fluid input, the end cap of described cylinder body and/or described cylinder body establishes fluid output.
Scheme 3: a kind of side spin slider hydraulic mechanism, comprise cylinder body, eccentric shaft, hollow-core construction body and arc sliding structure, described eccentric shaft is arranged in described cylinder body, described hollow-core construction body rotating sleeve dress is arranged on the eccentric part of described eccentric shaft, the outer side wall of described hollow-core construction body matches with the madial wall of described cylinder body, described cylinder body establishes rotating shaft, described rotating shaft is established rotating shaft arc chute, described arc sliding structure and described hollow-core construction body are connected and arrange or described arc sliding structure is connected through straight section structure and described hollow-core construction body and arranges, described arc sliding structure and described rotating shaft arc chute are slidably matched and arrange, the end cap of described cylinder body and/or described cylinder body establishes fluid input, the end cap of described cylinder body and/or described cylinder body establishes fluid output.
Scheme 4: a kind of side spin slider hydraulic mechanism, comprise cylinder body, eccentric shaft, hollow-core construction body and arc sliding structure, described eccentric shaft is arranged in described cylinder body, described hollow-core construction body rotating sleeve dress is arranged on the eccentric part of described eccentric shaft, the outer side wall of described hollow-core construction body matches with the madial wall of described cylinder body, described cylinder body is established cylinder body arc chute, described arc sliding structure and the hinged setting of described hollow-core construction body or described arc sliding structure are through straight section structure and the hinged setting of described hollow-core construction body, described arc sliding structure and described cylinder body arc chute are slidably matched and arrange, the end cap of described cylinder body and/or described cylinder body establishes fluid input, the end cap of described cylinder body and/or described cylinder body establishes fluid output.
Scheme 5: the gas compression unit of side spin slider hydraulic mechanism described in either a program in a kind of Utilization plan 1 to 4, establishes control valve at the described fluid outlet of described side spin slider hydraulic mechanism.
Scheme 6: the gas expansion unit of side spin slider hydraulic mechanism described in either a program in a kind of Utilization plan 1 to 4, establishes control valve at the described fluid input place of described side spin slider hydraulic mechanism.
Scheme 7: the gas compression unit of side spin slider hydraulic mechanism described in either a program in a kind of Utilization plan 1 to 4, comprise the described side spin slider hydraulic mechanism that at least two discharge capacities are different, have that two described side spin slider hydraulic mechanism are back-to-back to be disposed adjacent and by discharge capacity descending order serial communication at least.
Scheme 8: the gas expansion unit of side spin slider hydraulic mechanism described in either a program in a kind of Utilization plan 1 to 4, comprise the described side spin slider hydraulic mechanism that at least two discharge capacities are different, have at least two described side spin slider hydraulic mechanism back-to-back be disposed adjacent and by discharge capacity from small to large sequential series be communicated with.
Scheme 9: the gas compression unit of side spin slider hydraulic mechanism described in either a program in a kind of Utilization plan 1 to 4, comprise the described side spin slider hydraulic mechanism that at least two discharge capacities are different, have that two described side spin slider hydraulic mechanism are positive and negative to be back-to-backly disposed adjacent and by discharge capacity descending order serial communication at least.
Scheme 10: the gas expansion unit of side spin slider hydraulic mechanism described in either a program in a kind of Utilization plan 1 to 4, comprise the described side spin slider hydraulic mechanism that at least two discharge capacities are different, have at least two described side spin slider hydraulic mechanism positive and negative back-to-back be disposed adjacent and by discharge capacity from small to large sequential series be communicated with.
Scheme 11: the gas compression unit of side spin slider hydraulic mechanism described in either a program in a kind of Utilization plan 1 to 4, comprises two described side spin slider hydraulic mechanism and a positive bar slider hydraulic mechanism, described positive bar slider hydraulic mechanism comprises cylinder body, eccentric shaft, hollow-core construction body and sliding motion structure body, described eccentric shaft is arranged in described cylinder body, described hollow-core construction body rotating sleeve dress is arranged on the eccentric part of described eccentric shaft, the outer side wall of described hollow-core construction body matches with the madial wall of described cylinder body, described cylinder body establishes rotating shaft, described rotating shaft is established rotating shaft chute, described sliding motion structure body is connected by the diametric(al) of described hollow-core construction body and described hollow-core construction body and arranges, described sliding motion structure body and described rotating shaft slide are equipped with, the end cap of described cylinder body and/or described cylinder body establishes fluid input, the end cap of described cylinder body and/or described cylinder body establishes fluid output, the described fluid output that back is provided with the described side spin slider hydraulic mechanism of described fluid output is provided with the described side spin slider hydraulic mechanism of described fluid input described fluid input through described positive bar slider hydraulic mechanism and back is communicated with, and three's discharge capacity reduces successively.
Scheme 12: the gas expansion unit of side spin slider hydraulic mechanism described in either a program in a kind of Utilization plan 1 to 4, comprises two described side spin slider hydraulic mechanism and a positive bar slider hydraulic mechanism, described positive bar slider hydraulic mechanism comprises cylinder body, eccentric shaft, hollow-core construction body and sliding motion structure body, described eccentric shaft is arranged in described cylinder body, described hollow-core construction body rotating sleeve dress is arranged on the eccentric part of described eccentric shaft, the outer side wall of described hollow-core construction body matches with the madial wall of described cylinder body, described cylinder body establishes rotating shaft, described rotating shaft is established rotating shaft chute, described sliding motion structure body is connected by the diametric(al) of described hollow-core construction body and described hollow-core construction body and arranges, described sliding motion structure body and described rotating shaft slide are equipped with, the end cap of described cylinder body and/or described cylinder body establishes fluid input, the end cap of described cylinder body and/or described cylinder body establishes fluid output, the described fluid output that back is provided with the described side spin slider hydraulic mechanism of described fluid output is provided with the described side spin slider hydraulic mechanism of described fluid input described fluid input through described positive bar slider hydraulic mechanism and back is communicated with, and three's discharge capacity increases successively.
Scheme 13: the motor of side spin slider hydraulic mechanism described in either a program in a kind of Utilization plan 1 to scheme 4, three mechanism's compression units are communicated with three bloated organizational structure and staff unit through firing chamber;
Described three mechanism's compression units comprise two described side spin slider hydraulic mechanism and a positive bar slider hydraulic mechanism, described positive bar slider hydraulic mechanism comprises cylinder body, eccentric shaft, hollow-core construction body and sliding motion structure body, described eccentric shaft is arranged in described cylinder body, described hollow-core construction body rotating sleeve dress is arranged on the eccentric part of described eccentric shaft, the outer side wall of described hollow-core construction body matches with the madial wall of described cylinder body, described cylinder body establishes rotating shaft, described rotating shaft is established rotating shaft chute, described sliding motion structure body is connected by the diametric(al) of described hollow-core construction body and described hollow-core construction body and arranges, described sliding motion structure body and described rotating shaft slide are equipped with, the end cap of described cylinder body and/or described cylinder body establishes fluid input, the end cap of described cylinder body and/or described cylinder body establishes fluid output, the described fluid output that back is provided with the described side spin slider hydraulic mechanism of described fluid output is provided with the described side spin slider hydraulic mechanism of described fluid input described fluid input through described positive bar slider hydraulic mechanism and back is communicated with, and three's discharge capacity reduces successively,
Described three bloated organizational structure and staff unit comprise two described side spin slider hydraulic mechanism and a positive bar slider hydraulic mechanism, described positive bar slider hydraulic mechanism comprises cylinder body, eccentric shaft, hollow-core construction body and sliding motion structure body, described eccentric shaft is arranged in described cylinder body, described hollow-core construction body rotating sleeve dress is arranged on the eccentric part of described eccentric shaft, the outer side wall of described hollow-core construction body matches with the madial wall of described cylinder body, described cylinder body establishes rotating shaft, described rotating shaft is established rotating shaft chute, described sliding motion structure body is connected by the diametric(al) of described hollow-core construction body and described hollow-core construction body and arranges, described sliding motion structure body and described rotating shaft slide are equipped with, the end cap of described cylinder body and/or described cylinder body establishes fluid input, the end cap of described cylinder body and/or described cylinder body establishes fluid output, the described fluid output that back is provided with the described side spin slider hydraulic mechanism of described fluid output is provided with the described side spin slider hydraulic mechanism of described fluid input described fluid input through described positive bar slider hydraulic mechanism and back is communicated with, and three's discharge capacity increases successively.
Scheme 14: the motor of side spin slider hydraulic mechanism described in either a program in a kind of Utilization plan 1 to scheme 4, the described fluid output of described side spin slider hydraulic mechanism is through control valve and combustion chamber, and described firing chamber is communicated with through the described fluid input of control valve with described side spin slider hydraulic mechanism; Or the part of expansion cell that discharge capacity is formed by side spin slider hydraulic mechanism described in the two or more increasing mode serial communication successively, the described fluid output of described side spin slider hydraulic mechanism is through control valve and combustion chamber, and described firing chamber is communicated with the gas access of described expansion cell.
Scheme 15: the motor of side spin slider hydraulic mechanism described in either a program in a kind of Utilization plan 1 to scheme 4, a part for the compression unit that discharge capacity is formed by side spin slider hydraulic mechanism described in the two or more reducing mode serial communication successively, the gas outlet of described compression unit and combustion chamber, described firing chamber is communicated with through the described fluid input of gas control valve with described side spin slider hydraulic mechanism.
Scheme 16: the motor of side spin slider hydraulic mechanism described in either a program in a kind of Utilization plan 1 to scheme 4, a part for the compression unit that discharge capacity is formed by side spin slider hydraulic mechanism described in the two or more reducing mode serial communication successively, a part for the expansion cell that discharge capacity is formed by side spin slider hydraulic mechanism described in the two or more increasing mode serial communication successively, the gas outlet of described compression unit is communicated with through the gas access of firing chamber with described expansion cell.
Scheme 17: in scheme 13 to 16 either a program basis on, firing chamber when making described firing chamber be set to anon-normal further.
Scheme 18: in scheme 13 to 17 either a program basis on, make the working medium volume flowrate of the sender property outlet of described firing chamber be more than or equal to 1.2,1.3,1.4,1.5,1.6,1.7,1.8,1.9 times of the working medium volume flowrate of the working medium entrance of described firing chamber or be more than or equal to 2 times further.
In the present invention, so-called " string of a musical instrument direction beyond diameter " refers to that chord length is less than the direction of the string of diameter.
In the present invention, so-called " back-to-back " refers to that the principal moving parts of two described side spin slider hydraulic mechanism is disposed adjacent, and the principal moving parts of these two described side spin slider hydraulic mechanism is all at the set-up mode of the side of the line of centres of the described cylinder body of these two described side spin slider hydraulic mechanism, described reciprocating section is divided into sliding motion structure body or arc sliding structure.
In the present invention, so-called " standing upside down back-to-back " refers to that the principal moving parts of two described side spin slider hydraulic mechanism is disposed adjacent, the principal moving parts of a described side spin slider hydraulic mechanism is in the side of the line of centres of the described cylinder body of these two described side spin slider hydraulic mechanism, and the principal moving parts of side spin slider hydraulic mechanism described in another is at the set-up mode of the opposite side of the line of centres of the described cylinder body of these two described side spin slider hydraulic mechanism.
In the present invention, so-called " successively " refers to the mode described one by one by working medium flow path direction.
The present inventor thinks, celestial body mutually moves and certainly leads to gravitational interaction, gravitational interaction certainly leads to flow of matter and/or object deformation, because flow of matter and object deformation are irreversible process, namely the process producing heat is, therefore the flow of matter under gravity field effect and object deformation certainly lead to heat, the heat that this form produces must consume the kinetic energy of celestial body, As time goes on, through very long process, it cognition loses kinetic energy gradually, merging (or mutually engulfing) is mutually known from experience in final sky, final universe forms a particle, the temperature and pressure of this particle all can acutely rise, thus form violent blast (also can cause chemical reaction and nuclear reaction because temperature and pressure acutely rises), blast forms celestial bodies motion state again, even if celestial body has kinetic energy, mutual relative movement and interaction is again formed between celestial body, enter next circulation.Therefore can think that the existence in universe is a thermodynamic cyclic process with development in fact.The essence of this process can be summarised as simple, understandablely " you invite me, and I just necessarily engulfs you ", and as can be seen here, its final final result of main body that there is alternating action is exactly mutually engulf, mutually merge.
As everyone knows, in economics, all authorized the Nobel Prize to the research of information asymmetry and information symmetrical, visible both parties have Determines transaction success or failure, the fairness of transaction and the profit of transaction of information.The essence of transaction is information trading in fact.For the present inventor thinks, patent has information zero symmetry properties, and namely the true value of both parties to patent is all known little about it.Patent information zero symmetric properties, if do not cracked, operation is difficult to realize.Information zero symmetry properties of patent determines science and the complexity of patent operation.In general goods transaction, information asymmetry is conducive to promoting transaction, improves profit.And for patent, then completely different, patent needs technical solution problem, the value of patent is known very soon in patent exploitation, so patent must be out-and-out, information zero is symmetrical and information asymmetry is inevitable all can seriously hinder patent operation, solution patent information zero AXIALLY SYMMETRIC PROBLEMS, makes both parties' information symmetrical on high level be the basic work of patent operation enterprise.
The present inventor thinks according to thermodynamic (al) basic principle and on the observation of universe phenomenon: under the prerequisite affected not having external factor, and heat absolutely can not convert other any type of energy or material to.Only set forth in conventional heat second law under the prerequisite not having external factor to affect, heat can not absolutely be changed successfully, and this law is correct, but is unilateral.With popular language, heat can be defined as the minimum form of energy, or be the rubbish in universe referred to as this.By analysis, the present inventor also thinks: the growing process of any biology (animal, plant, microorganism, virus and bacterium) is all heat release.By analysis, the present inventor also thinks: any one process or any one circulation (are not limited to thermodynamic process, such as chemical reaction process, biochemical reaction process, photochemical reaction process, biological growth process, growing process are all included) its maximum acting ability conservation, the present inventor thinks does not have photosynthetic growing process can not improve its acting ability, that is, the acting ability of bean sprouts is the acting ability sum that impossible add its nutrient absorbed higher than the acting ability of bean or pea; Why the acting ability of one tree wood is greater than the acting ability of sapling, is because sunlight take part in by the growing process of sapling to trees with photosynthetic form.
The present inventor thinks: the basic logic of heat engine work restrain-be heated-is dispersed.So-called convergence is the increase process of the density of working medium, and such as condensation, compression all belong to convergence process, and under same pressure, the working medium degree of convergence that temperature is low is large; It is exactly the endothermic process of working medium that what is called is heated; What is called disperses the process referring to that the density of working medium reduces, such as, expand or spray.Any one disperses the reduction that process all can form acting ability, and such as, the acting ability of the air of gaseous state will well below the acting ability of liquid air; The heat that methanol plus water adds moderate temperature generates carbon monoxide and hydrogen, although the carbon monoxide generated and the ignition heat of hydrogen are greater than the ignition heat about 20% of methyl alcohol, but the ratio that its acting ability is greater than the acting ability of methyl alcohol is then very little, although its reason is that this process has inhaled the heat of about 20%, the degree of divergence of resultant carbon monoxide and hydrogen is far longer than methyl alcohol.Therefore, utilizing the not high physochlaina infudibularis of temperature to add chemical reaction is the acting ability having no idea effectively to improve resultant.
The present inventor thinks: it is the process that entropy increases that distance increases, and the distance between cold & heat source also affects efficiency, high apart from little efficiency, low apart from large efficiency.
In the present invention, according to the known technology of heat energy and dynamic field, necessary parts, unit or system etc. should be set in the place of necessity.
Beneficial effect of the present invention is as follows:
Side spin slider hydraulic mechanism disclosed in the present invention and use its device to arrange for space to provide more selectivity, particularly when connecting use, significantly can reduce the unhelpful volume between the two poles of the earth, significantly reduce crossfire, eliminate crossfire between two neighboring pole, and then raise the efficiency, reduce volume and weight.
Accompanying drawing explanation
Fig. 1: the structural representation of the embodiment of the present invention 1;
Fig. 2: the structural representation of the embodiment of the present invention 2;
Fig. 3: the structural representation of the embodiment of the present invention 3;
Fig. 4: the structural representation of the embodiment of the present invention 4;
Fig. 5: the structural representation of the embodiment of the present invention 11;
Fig. 6: the structural representation of the embodiment of the present invention 12;
Fig. 7: the structural representation of the embodiment of the present invention 13;
Fig. 8: the structural representation of the embodiment of the present invention 14;
Fig. 9: the structural representation of the embodiment of the present invention 15;
Figure 10: the structural representation of the embodiment of the present invention 16;
Figure 11: the structural representation of the embodiment of the present invention 17;
In figure: 1 cylinder body, 2 eccentric shafts, 3 hollow-core construction bodies, 4 sliding motion structure bodies, 5 rotating shafts, 6 rotating shaft chutes, 7 control valves, 8 firing chambers, 41 arc sliding structures, 61 rotating shaft arc chutes.
Embodiment
Embodiment 1
A kind of side spin slider hydraulic mechanism, as shown in Figure 1, comprise cylinder body 1, eccentric shaft 2, hollow-core construction body 3 and sliding motion structure body 4, described eccentric shaft 2 is arranged in described cylinder body 1, described hollow-core construction body 3 rotating sleeve dress is arranged on the eccentric part of described eccentric shaft 2, the outer side wall of described hollow-core construction body 3 matches with the madial wall of described cylinder body 1, described cylinder body 1 establishes rotating shaft 5, rotating shaft chute 6 is established in described rotating shaft 5, described sliding motion structure body 4 is connected by the string of a musical instrument direction beyond the diameter of described hollow-core construction body 3 and described hollow-core construction body 3 and arranges, described sliding motion structure body 4 is slidably matched with described rotating shaft chute 6 and arranges, the end cap of described cylinder body 1 and/or described cylinder body 1 establishes fluid input, the end cap of described cylinder body 1 and/or described cylinder body 1 establishes fluid output.
Embodiment 2
A kind of side spin slider hydraulic mechanism, as shown in Figure 2, comprise cylinder body 1, eccentric shaft 2, hollow-core construction body 3 and sliding motion structure body 4, described eccentric shaft 2 is arranged in described cylinder body 1, described hollow-core construction body 3 rotating sleeve dress is arranged on the eccentric part of described eccentric shaft 2, the outer side wall of described hollow-core construction body 3 matches with the madial wall of described cylinder body 1, described cylinder body 1 establishes cylinder body 1 chute by the string of a musical instrument direction beyond described cylinder body 1 diameter, described sliding motion structure body 4 and the hinged setting of described hollow-core construction body 3, described sliding motion structure body 4 is equipped with described cylinder body 1 slide, the end cap of described cylinder body 1 and/or described cylinder body 1 establishes fluid input, the end cap of described cylinder body 1 and/or described cylinder body 1 establishes fluid output.
Embodiment 3
A kind of side spin slider hydraulic mechanism, as shown in Figure 3, comprise cylinder body 1, eccentric shaft 2, hollow-core construction body 3 and arc sliding structure 41, described eccentric shaft 2 is arranged in described cylinder body 1, described hollow-core construction body 3 rotating sleeve dress is arranged on the eccentric part of described eccentric shaft 2, the outer side wall of described hollow-core construction body 3 matches with the madial wall of described cylinder body 1, described cylinder body 1 establishes rotating shaft 5, rotating shaft arc chute 61 is established in described rotating shaft 5, described arc sliding structure 41 and described hollow-core construction body 3 are connected and arrange or described arc sliding structure 41 is connected through straight section structure and described hollow-core construction body 3 and arranges, described arc sliding structure 41 is slidably matched with described rotating shaft arc chute 61 and arranges, the end cap of described cylinder body 1 and/or described cylinder body 1 establishes fluid input, the end cap of described cylinder body 1 and/or described cylinder body 1 establishes fluid output.
Embodiment 4
A kind of side spin slider hydraulic mechanism, as shown in Figure 4, comprise cylinder body 1, eccentric shaft 2, hollow-core construction body 3 and arc sliding structure 41, described eccentric shaft 2 is arranged in described cylinder body 1, described hollow-core construction body 3 rotating sleeve dress is arranged on the eccentric part of described eccentric shaft 2, the outer side wall of described hollow-core construction body 3 matches with the madial wall of described cylinder body 1, described cylinder body 1 is established cylinder body 1 arc chute, described arc sliding structure 41 and the hinged setting of described hollow-core construction body 3 or described arc sliding structure 41 are through straight section structure and the hinged setting of described hollow-core construction body 3, described arc sliding structure 41 is slidably matched with described cylinder body arc chute and arranges, the end cap of described cylinder body 1 and/or described cylinder body 1 establishes fluid input, the end cap of described cylinder body 1 and/or described cylinder body 1 establishes fluid output.
Embodiment 5
Utilize a gas compression unit for side spin slider hydraulic mechanism described in embodiment 1, establish control valve 7 at the described fluid outlet of described side spin slider hydraulic mechanism.
As disposable mode of execution, the side spin slider hydraulic mechanism described in embodiment 2 to embodiment 4 described in all alternative the present embodiment of side spin slider hydraulic mechanism.
Embodiment 6
Utilize a gas expansion unit for side spin slider hydraulic mechanism described in embodiment 1, establish control valve 7 at the described fluid input place of described side spin slider hydraulic mechanism.
As disposable mode of execution, the side spin slider hydraulic mechanism described in embodiment 2 to embodiment 4 described in all alternative the present embodiment of side spin slider hydraulic mechanism.
Embodiment 7
A kind of gas compression unit utilizing side spin slider hydraulic mechanism described in embodiment 1, comprise the described side spin slider hydraulic mechanism that at least two discharge capacities are different, have that two described side spin slider hydraulic mechanism are back-to-back to be disposed adjacent and by discharge capacity descending order serial communication at least.
As disposable mode of execution, the side spin slider hydraulic mechanism described in embodiment 2 to embodiment 4 described in all alternative the present embodiment of side spin slider hydraulic mechanism.
Embodiment 8
A kind of gas expansion unit utilizing side spin slider hydraulic mechanism described in embodiment 1, comprise the described side spin slider hydraulic mechanism that at least two discharge capacities are different, have at least two described side spin slider hydraulic mechanism back-to-back be disposed adjacent and by discharge capacity from small to large sequential series be communicated with.
As disposable mode of execution, the side spin slider hydraulic mechanism described in embodiment 2 to embodiment 4 described in all alternative the present embodiment of side spin slider hydraulic mechanism.
Embodiment 9
A kind of gas compression unit utilizing side spin slider hydraulic mechanism described in embodiment 1, comprise the described side spin slider hydraulic mechanism that at least two discharge capacities are different, have that two described side spin slider hydraulic mechanism are positive and negative to be back-to-backly disposed adjacent and by discharge capacity descending order serial communication at least.
As disposable mode of execution, the side spin slider hydraulic mechanism described in embodiment 2 to embodiment 4 described in all alternative the present embodiment of side spin slider hydraulic mechanism.
Embodiment 10
A kind of gas expansion unit utilizing side spin slider hydraulic mechanism described in embodiment 1, comprise the described side spin slider hydraulic mechanism that at least two discharge capacities are different, have at least two described side spin slider hydraulic mechanism positive and negative back-to-back be disposed adjacent and by discharge capacity from small to large sequential series be communicated with.
As disposable mode of execution, the side spin slider hydraulic mechanism described in embodiment 2 to embodiment 4 described in all alternative the present embodiment of side spin slider hydraulic mechanism.
Embodiment 11
Utilize a gas compression unit for side spin slider hydraulic mechanism described in embodiment 1, as shown in Figure 5, comprise two described side spin slider hydraulic mechanism and a positive bar slider hydraulic mechanism, described positive bar slider hydraulic mechanism comprises cylinder body 1, eccentric shaft 2, hollow-core construction body 3 and sliding motion structure body 4, described eccentric shaft 2 is arranged in described cylinder body 1, described hollow-core construction body 3 rotating sleeve dress is arranged on the eccentric part of described eccentric shaft 2, the outer side wall of described hollow-core construction body 3 matches with the madial wall of described cylinder body 1, described cylinder body 1 establishes rotating shaft 5, rotating shaft chute 6 is established in described rotating shaft 5, described sliding motion structure body 4 is connected by the diametric(al) of described hollow-core construction body 3 and described hollow-core construction body 3 and arranges, described sliding motion structure body 4 is slidably matched with described rotating shaft chute 6 and arranges, the end cap of described cylinder body 1 and/or described cylinder body 1 establishes fluid input, the end cap of described cylinder body 1 and/or described cylinder body 1 establishes fluid output, the described fluid output that back is provided with the described side spin slider hydraulic mechanism of described fluid output is provided with the described side spin slider hydraulic mechanism of described fluid input described fluid input through described positive bar slider hydraulic mechanism and back is communicated with, and three's discharge capacity reduces successively.
As disposable mode of execution, the side spin slider hydraulic mechanism described in embodiment 2 to embodiment 4 described in all alternative the present embodiment of side spin slider hydraulic mechanism.
Embodiment 12
Utilize a gas expansion unit for side spin slider hydraulic mechanism described in embodiment 1, as shown in Figure 6, comprise two described side spin slider hydraulic mechanism and a positive bar slider hydraulic mechanism, described positive bar slider hydraulic mechanism comprises cylinder body 1, eccentric shaft 2, hollow-core construction body 3 and sliding motion structure body 4, described eccentric shaft 2 is arranged in described cylinder body 1, described hollow-core construction body 3 rotating sleeve dress is arranged on the eccentric part of described eccentric shaft 2, the outer side wall of described hollow-core construction body 3 matches with the madial wall of described cylinder body 1, described cylinder body 1 establishes rotating shaft 5, rotating shaft chute 6 is established in described rotating shaft 5, described sliding motion structure body 4 is connected by the diametric(al) of described hollow-core construction body 3 and described hollow-core construction body 3 and arranges, described sliding motion structure body 4 is slidably matched with described rotating shaft chute 6 and arranges, the end cap of described cylinder body 1 and/or described cylinder body 1 establishes fluid input, the end cap of described cylinder body 1 and/or described cylinder body 1 establishes fluid output, the described fluid output that back is provided with the described side spin slider hydraulic mechanism of described fluid output is provided with the described side spin slider hydraulic mechanism of described fluid input described fluid input through described positive bar slider hydraulic mechanism and back is communicated with, and three's discharge capacity increases successively.
As disposable mode of execution, the side spin slider hydraulic mechanism described in embodiment 2 to embodiment 4 described in all alternative the present embodiment of side spin slider hydraulic mechanism.
Embodiment 13
Utilize a motor for side spin slider hydraulic mechanism described in embodiment 1, as shown in Figure 7, three mechanism's compression units are communicated with three bloated organizational structure and staff unit through firing chamber 8;
Described three mechanism's compression units comprise two described side spin slider hydraulic mechanism and a positive bar slider hydraulic mechanism, described positive bar slider hydraulic mechanism comprises cylinder body 1, eccentric shaft 2, hollow-core construction body 3 and sliding motion structure body 4, described eccentric shaft 2 is arranged in described cylinder body 1, described hollow-core construction body 3 rotating sleeve dress is arranged on the eccentric part of described eccentric shaft 2, the outer side wall of described hollow-core construction body 3 matches with the madial wall of described cylinder body 1, described cylinder body 1 establishes rotating shaft 5, rotating shaft chute 6 is established in described rotating shaft 5, described sliding motion structure body 4 is connected by the diametric(al) of described hollow-core construction body 3 and described hollow-core construction body 3 and arranges, described sliding motion structure body 4 is slidably matched with described rotating shaft chute 6 and arranges, the end cap of described cylinder body 1 and/or described cylinder body 1 establishes fluid input, the end cap of described cylinder body 1 and/or described cylinder body 1 establishes fluid output, the described fluid output that back is provided with the described side spin slider hydraulic mechanism of described fluid output is provided with the described side spin slider hydraulic mechanism of described fluid input described fluid input through described positive bar slider hydraulic mechanism and back is communicated with, and three's discharge capacity reduces successively,
Described three bloated organizational structure and staff unit comprise two described side spin slider hydraulic mechanism and a positive bar slider hydraulic mechanism, described positive bar slider hydraulic mechanism comprises cylinder body 1, eccentric shaft 2, hollow-core construction body 3 and sliding motion structure body 4, described eccentric shaft 2 is arranged in described cylinder body 1, described hollow-core construction body 3 rotating sleeve dress is arranged on the eccentric part of described eccentric shaft 2, the outer side wall of described hollow-core construction body 3 matches with the madial wall of described cylinder body 1, described cylinder body 1 establishes rotating shaft 5, rotating shaft chute 6 is established in described rotating shaft 5, described sliding motion structure body 4 is connected by the diametric(al) of described hollow-core construction body 3 and described hollow-core construction body 3 and arranges, described sliding motion structure body 4 is slidably matched with described rotating shaft chute 6 and arranges, the end cap of described cylinder body 1 and/or described cylinder body 1 establishes fluid input, the end cap of described cylinder body 1 and/or described cylinder body 1 establishes fluid output, the described fluid output that back is provided with the described side spin slider hydraulic mechanism of described fluid output is provided with the described side spin slider hydraulic mechanism of described fluid input described fluid input through described positive bar slider hydraulic mechanism and back is communicated with, and three's discharge capacity increases successively.
As disposable mode of execution, the side spin slider hydraulic mechanism described in embodiment 2 to embodiment 4 described in all alternative the present embodiment of side spin slider hydraulic mechanism.
Embodiment 14
A kind of motor utilizing side spin slider hydraulic mechanism described in embodiment 1, as shown in Figure 8, the described fluid output of described side spin slider hydraulic mechanism is communicated with firing chamber 8 through control valve 7, and described firing chamber 8 is communicated with through the described fluid input of control valve 7 with described side spin slider hydraulic mechanism.
Embodiment 15
A kind of motor utilizing side spin slider hydraulic mechanism described in embodiment 1, as shown in Figure 9, a part for the expansion cell that discharge capacity is formed by side spin slider hydraulic mechanism described in the two or more increasing mode serial communication successively, the described fluid output of described side spin slider hydraulic mechanism is communicated with firing chamber 8 through control valve 7, and described firing chamber 8 is communicated with the gas access of described expansion cell.
As disposable mode of execution, the side spin slider hydraulic mechanism described in embodiment 2 to embodiment 4 described in all alternative the present embodiment of side spin slider hydraulic mechanism.
Embodiment 16
A kind of motor utilizing side spin slider hydraulic mechanism described in embodiment 1, as shown in Figure 10, a part for the compression unit that discharge capacity is formed by side spin slider hydraulic mechanism described in the two or more reducing mode serial communication successively, the gas outlet of described compression unit is communicated with firing chamber 8, and described firing chamber 8 is communicated with through the described fluid input of gas control valve 7 with described side spin slider hydraulic mechanism.
As disposable mode of execution, the side spin slider hydraulic mechanism described in embodiment 2 to embodiment 4 described in all alternative the present embodiment of side spin slider hydraulic mechanism.
Embodiment 17
A kind of motor utilizing side spin slider hydraulic mechanism described in embodiment 1, as shown in figure 11, a part for the compression unit that discharge capacity is formed by side spin slider hydraulic mechanism described in the two or more reducing mode serial communication successively, a part for the expansion cell that discharge capacity is formed by side spin slider hydraulic mechanism described in the two or more increasing mode serial communication successively, the gas outlet of described compression unit is communicated with through the gas access of firing chamber 8 with described expansion cell.
As disposable mode of execution, the side spin slider hydraulic mechanism described in embodiment 2 to embodiment 4 described in all alternative the present embodiment of side spin slider hydraulic mechanism.
As disposable mode of execution, firing chamber when all motors with firing chamber 8 of the present invention all can make described firing chamber 8 be set to anon-normal further.
As transformable mode of execution, all motors with firing chamber 8 of the present invention all can optionally make the working medium volume flowrate of the sender property outlet of described firing chamber 8 be more than or equal to 1.2,1.3,1.4,1.5,1.6,1.7,1.8,1.9 times of the working medium volume flowrate of the working medium entrance of described firing chamber 8 or be more than or equal to 2 times further.
Obviously, the invention is not restricted to above embodiment, according to known technology and the technological scheme disclosed in this invention of related domain, can to derive or association goes out many flexible programs, all these flexible programs, also should think protection scope of the present invention.

Claims (10)

1. a side spin slider hydraulic mechanism, comprise cylinder body (1), eccentric shaft (2), hollow-core construction body (3) and sliding motion structure body (4), it is characterized in that: described eccentric shaft (2) is arranged in described cylinder body (1), described hollow-core construction body (3) rotating sleeve dress is arranged on the eccentric part of described eccentric shaft (2), the outer side wall of described hollow-core construction body (3) matches with the madial wall of described cylinder body (1), described cylinder body (1) is established rotating shaft (5), described rotating shaft (5) is established rotating shaft chute (6), described sliding motion structure body (4) is connected by the string of a musical instrument direction beyond the diameter of described hollow-core construction body (3) and described hollow-core construction body (3) and arranges, described sliding motion structure body (4) and described rotating shaft chute (6) are slidably matched and arrange, the end cap of described cylinder body (1) and/or described cylinder body (1) establishes fluid input, the end cap of described cylinder body (1) and/or described cylinder body (1) establishes fluid output.
2. a side spin slider hydraulic mechanism, comprise cylinder body (1), eccentric shaft (2), hollow-core construction body (3) and sliding motion structure body (4), it is characterized in that: described eccentric shaft (2) is arranged in described cylinder body (1), described hollow-core construction body (3) rotating sleeve dress is arranged on the eccentric part of described eccentric shaft (2), the outer side wall of described hollow-core construction body (3) matches with the madial wall of described cylinder body (1), above cylinder body (1) chute is established by the string of a musical instrument direction beyond described cylinder body (1) diameter at described cylinder body (1), described sliding motion structure body (4) and the hinged setting of described hollow-core construction body (3), described sliding motion structure body (4) and described cylinder body (1) slide are equipped with, the end cap of described cylinder body (1) and/or described cylinder body (1) establishes fluid input, the end cap of described cylinder body (1) and/or described cylinder body (1) establishes fluid output.
3. a side spin slider hydraulic mechanism, comprise cylinder body (1), eccentric shaft (2), hollow-core construction body (3) and arc sliding structure (41), it is characterized in that: described eccentric shaft (2) is arranged in described cylinder body (1), described hollow-core construction body (3) rotating sleeve dress is arranged on the eccentric part of described eccentric shaft (2), the outer side wall of described hollow-core construction body (3) matches with the madial wall of described cylinder body (1), described cylinder body (1) is established rotating shaft (5), described rotating shaft (5) is established rotating shaft arc chute (61), described arc sliding structure (41) and described hollow-core construction body (3) are connected and arrange or described arc sliding structure (41) is connected through straight section structure and described hollow-core construction body (3) and arranges, described arc sliding structure (41) and described rotating shaft arc chute (61) are slidably matched and arrange, the end cap of described cylinder body (1) and/or described cylinder body (1) establishes fluid input, the end cap of described cylinder body (1) and/or described cylinder body (1) establishes fluid output.
4. a side spin slider hydraulic mechanism, comprise cylinder body (1), eccentric shaft (2), hollow-core construction body (3) and arc sliding structure (41), it is characterized in that: described eccentric shaft (2) is arranged in described cylinder body (1), described hollow-core construction body (3) rotating sleeve dress is arranged on the eccentric part of described eccentric shaft (2), the outer side wall of described hollow-core construction body (3) matches with the madial wall of described cylinder body (1), described cylinder body (1) establishes cylinder body arc chute, described arc sliding structure (41) and the hinged setting of described hollow-core construction body (3) or described arc sliding structure (41) are through straight section structure and described hollow-core construction body (3) hinged setting, described arc sliding structure (41) and described cylinder body (1) arc chute are slidably matched and arrange, the end cap of described cylinder body (1) and/or described cylinder body (1) establishes fluid input, the end cap of described cylinder body (1) and/or described cylinder body (1) establishes fluid output.
5. utilize a gas compression unit for side spin slider hydraulic mechanism according to any one of Claims 1-4, it is characterized in that: establish control valve (7) at the described fluid outlet of described side spin slider hydraulic mechanism.
6. utilize a gas expansion unit for side spin slider hydraulic mechanism according to any one of Claims 1-4, it is characterized in that: establish control valve (7) at the described fluid input place of described side spin slider hydraulic mechanism.
7. one kind utilizes the gas compression unit of side spin slider hydraulic mechanism according to any one of Claims 1-4, it is characterized in that: comprise the described side spin slider hydraulic mechanism that at least two discharge capacities are different having that two described side spin slider hydraulic mechanism are back-to-back to be disposed adjacent and by discharge capacity descending order serial communication at least.
8. one kind utilizes the gas expansion unit of side spin slider hydraulic mechanism according to any one of Claims 1-4, it is characterized in that: comprise the described side spin slider hydraulic mechanism that at least two discharge capacities are different, have at least two described side spin slider hydraulic mechanism back-to-back be disposed adjacent and by discharge capacity from small to large sequential series be communicated with.
9. one kind utilizes the gas compression unit of side spin slider hydraulic mechanism according to any one of Claims 1-4, it is characterized in that: comprise the described side spin slider hydraulic mechanism that at least two discharge capacities are different having that two described side spin slider hydraulic mechanism are positive and negative to be back-to-backly disposed adjacent and by discharge capacity descending order serial communication at least.
10. one kind utilizes the gas expansion unit of side spin slider hydraulic mechanism according to any one of Claims 1-4, it is characterized in that: comprise the described side spin slider hydraulic mechanism that at least two discharge capacities are different, have at least two described side spin slider hydraulic mechanism positive and negative back-to-back be disposed adjacent and by discharge capacity from small to large sequential series be communicated with.
CN201510341566.5A 2014-07-09 2015-06-18 Side spin slider hydraulic mechanism and device including it Active CN105156153B (en)

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Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2047313U (en) * 1989-03-10 1989-11-08 邱鲁健 Hinged piston type compressor
CN1109692A (en) * 1993-05-11 1995-10-04 大金工业株式会社 Rotary compressor
DE69320289D1 (en) * 1992-04-28 1998-09-17 Daikin Ind Ltd ROTATIONAL COMPRESSOR PISTON WITH INTEGRATED CELLS
CN1262392A (en) * 1999-01-26 2000-08-09 付云树 Compressor with hinged arc blades and rolling rotor

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2047313U (en) * 1989-03-10 1989-11-08 邱鲁健 Hinged piston type compressor
DE69320289D1 (en) * 1992-04-28 1998-09-17 Daikin Ind Ltd ROTATIONAL COMPRESSOR PISTON WITH INTEGRATED CELLS
CN1109692A (en) * 1993-05-11 1995-10-04 大金工业株式会社 Rotary compressor
CN1262392A (en) * 1999-01-26 2000-08-09 付云树 Compressor with hinged arc blades and rolling rotor

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