CN109707591A - A kind of probe - Google Patents

A kind of probe Download PDF

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Publication number
CN109707591A
CN109707591A CN201910085223.5A CN201910085223A CN109707591A CN 109707591 A CN109707591 A CN 109707591A CN 201910085223 A CN201910085223 A CN 201910085223A CN 109707591 A CN109707591 A CN 109707591A
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China
Prior art keywords
fluid tank
pressure fluid
energy
output shaft
energy output
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Pending
Application number
CN201910085223.5A
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Chinese (zh)
Inventor
封海涛
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Individual
Original Assignee
Individual
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Publication date
Application filed by Individual filed Critical Individual
Priority to CN201910085223.5A priority Critical patent/CN109707591A/en
Publication of CN109707591A publication Critical patent/CN109707591A/en
Pending legal-status Critical Current

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Abstract

The present invention relates to the output system of power, specially a kind of probe.Including high-pressure fluid tank, a piece slidable energy output shaft is installed in high-pressure fluid tank, energy output shaft top is stretched out outside high-pressure fluid tank, and external energy output system, energy output shaft bottom are arranged in high-pressure fluid tank, with high-pressure fluid tank junction using sealed connection, the high-pressure fluid tank is connected with an energy management tube, energy management tube one end is located in high-pressure fluid tank, nozzle face energy output shaft bottom, and the energy management tube other end connects high-pressure fluid tank.The energy management tube is provided with contraposition power mechanism, and after energy output shaft slides into terminal, the effect by aligning power mechanism returns to starting position.The previous dynamical system low efficiency of effective solution, obtains that the energy is difficult, heavy-polluted problem.

Description

A kind of probe
Technical field
The present invention relates to the output system of power, specially a kind of probe.
Background technique
Existing energy system, acquisition energy efficiency is low, consumes mass energy, not energy-efficient, not environmentally.
Summary of the invention
In order to solve problems of energy consumption, a kind of probe is devised, the spy with high-efficient cleaning, environmental protection Point.
It is defeated to be equipped with a slidable energy in high-pressure fluid tank for a kind of probe, including high-pressure fluid tank Shaft, energy output shaft top is stretched out outside high-pressure fluid tank, and external energy output system, and energy output shaft bottom is arranged in height It presses in fluid tank, with high-pressure fluid tank junction using being tightly connected, the high-pressure fluid tank is connected with an energy management tube, Energy management tube one end is located in high-pressure fluid tank, nozzle face energy output shaft bottom, and the connection of the energy management tube other end is high Press fluid tank.Energy management tube is hollow pipe, is connected to high-pressure fluid tank inside.
Energy output shaft be it is hollow or solid, if hollow, one end must be closed, and become blind pipe.Energy output shaft Bottom is provided with the reversed forced section of protrusion, and reversed forced section outer rim is pressure combined area, corresponding energy management tube pipe The pressure combined area of protrusion is provided at mouthful.
The energy management tube is provided with contraposition power mechanism, dynamic by aligning after energy output shaft slides into terminal The effect of force mechanisms returns to starting position, can design in high-pressure fluid tank or outside high-pressure fluid tank.Align engine Structure is located in high-pressure fluid tank, and the L-type connecting rod one end for aligning power mechanism is connected on energy management tube by articulated manner, The intermediate position of L-type connecting rod, which is mounted on, to be fixed in the sliding slot on energy output shaft, the square position setting of L-type connecting rod First cambered surface, the first cambered surface cooperate with the first wedge type block being fixed in high-pressure fluid tank top, can slide along wedge face, L-type The second cambered surface is arranged in the other end of connecting rod, and high-pressure fluid pot bottom is fixed with the second wedge type block with the cooperation of the second cambered surface, can It is slided along wedge face.First cambered surface and the second cambered surface is smooth arc surface or idler wheel.
The energy output system be energy duplicator or engine or compression cylinder, generator or hydraulic press wherein A kind of dynamical system.
The energy management tube and energy output shaft contact jaw are rigid pipe, and the part outside high-pressure fluid tank is bendable Bent pipeline.
A kind of previous dynamical system low efficiency of probe effective solution, obtains the energy difficult, heavy-polluted Problem.
Detailed description of the invention
Fig. 1 is a kind of probe structural schematic diagram;
Fig. 2 is a kind of probe operating status schematic diagram;
Fig. 3 is contraposition power mechanism structural schematic diagram.
Specific embodiment
The invention will be further described with Figure of description combined with specific embodiments below.Specific reality described herein Example is applied only to explain the present invention, is not intended to limit the present invention.
Embodiment: as shown in Figure 1, a kind of probe, including high-pressure fluid tank 3, the interior installation of high-pressure fluid tank 3 There is a slidable energy output shaft 5,5 top of energy output shaft is stretched out outside high-pressure fluid tank 3, and external energy output system 6,5 bottom of energy output shaft is arranged in high-pressure fluid tank 3, with 3 junction 4 of high-pressure fluid tank using sealed connection, the height Pressure fluid tank 3 is connected with an energy management tube 1, and 1 one end of energy management tube is located in high-pressure fluid tank 3,11 face energy of nozzle 5 bottom of output shaft is measured, 1 other end of energy management tube connects high-pressure fluid tank 3.High-pressure fluid is filled in high-pressure fluid tank 3.Energy Control pipe 1 is hollow pipe, and is connected to inside high-pressure fluid tank 3.
Energy output shaft 5 be it is hollow or solid, if hollow, one end must be closed, and become blind pipe.Energy output shaft 5 bottoms are provided with the reversed forced section 51 of protrusion, and reversed 51 outer rim of forced section is pressure combined area, corresponding energy hole The pressure combined area of protrusion is provided at 1 nozzle 11 of pipe.
As shown in figure 3, the energy management tube 1 is provided with contraposition power mechanism 9, it is arranged in high-pressure fluid tank 3, contraposition 91 one end of L-type connecting rod of power mechanism 9 is fixed on energy management tube 1 by hinge member 92, the centre of L-type connecting rod 91 Position 93 is mounted in the sliding slot 94 being fixed on energy output shaft 5, and the first cambered surface is arranged in the square position of L-type connecting rod 91 95, the first cambered surface (95) cooperates with the first wedge type block (96) being fixed in high-pressure fluid tank top, can slide along wedge face, L The second cambered surface 98 is arranged in the other end of type connecting rod 91, and bottom is fixed with the second wedge type block 97, the second cambered surface in high-pressure fluid tank (98) cooperate with the first wedge type block (97) being fixed in high-pressure fluid tank top, can be slided along wedge face.First cambered surface, 95 He Second cambered surface 98 is replaced by smooth arc surface or using idler wheel.Power mechanism 9 is aligned after energy output shaft slides into terminal, Effect by aligning power mechanism returns to starting position, while driving 1 return of energy management tube.As shown in Figure 1, energy hole When pipe 1 is located at high-pressure fluid 3 bottom of tank, the second cambered surface 98 of contraposition power mechanism 9 is contacted with the second wedge type block 97, under inclined-plane Sliding, L-type connecting rod 91 pulls energy management tube 1 to decline, and the nozzle 11 of energy management tube 1 is separated with 5 bottom of energy output shaft, such as Shown in Fig. 2, when energy management tube 1 and energy output shaft 5 move to high-pressure fluid 3 top of tank, the first cambered surface 95 is carved with first Shape block 96 contacts, and slides along inclined-plane, and L-type connecting rod 91 pulls energy management tube 1 to rise, and nozzle reaches with energy output shaft bottom Closed state.
The energy output system 6 is its of energy duplicator or engine or compression cylinder, generator or hydraulic press A kind of middle dynamical system.
The energy management tube 1 is located at one end in high-pressure fluid tank 3, i.e., is rigid pipe with 5 contact jaw 12 of energy output shaft Road, the part outside high-pressure fluid tank 3 are flexible pipeline.
As shown in Figure 1, a kind of probe, 5 bottom of energy output shaft is to separate with the nozzle 11 of energy management tube 1 State, the one end of energy output shaft 5 in high-pressure fluid tank 3, which is under pressure, forms pressure difference with external, stretches out high-pressure spray by pushing Outside body tank 3, once done work by energy output system 6.Position shown in Fig. 2 is reached, in the effect of contraposition power mechanism 9 Under, 11 tight closure of nozzle of 5 bottom of energy output shaft and energy management tube 1, the reversed forced section 51 of energy output shaft 5 is being pressed Initial position is returned under the action of power difference, as shown in Figure 1.Repeat above-mentioned acting process.
It is preferred embodiments of the present invention in summary, all changes made according to technical solution of the present invention, function produced It is all belonged to the scope of protection of the present invention when can act on the range without departing from technical solution of the present invention.

Claims (8)

1. a kind of probe, which is characterized in that including high-pressure fluid tank (3), be equipped with one in high-pressure fluid tank (3) Slidable energy output shaft (5), high-pressure fluid tank (3) are stretched out outside in energy output shaft (5) top, and external energy output system (6), the setting of energy output shaft (5) bottom is connected with high-pressure fluid tank (3) junction (4) using sealing in high-pressure fluid tank (3) It connects, the high-pressure fluid tank (3) is connected with an energy management tube (1), and energy management tube (1) one end is located at high-pressure fluid tank (3) in, nozzle (11) face energy output shaft (5) bottom, energy management tube (1) other end connects high-pressure fluid tank (3), energy Control pipe (1) is hollow pipe, is connected to high-pressure fluid tank (3) inside.
2. a kind of probe according to claim 1, which is characterized in that energy output shaft (5) is hollow or real The heart, if hollow, one end must be closed, and become blind pipe.
3. a kind of probe according to claim 1, which is characterized in that energy output shaft (5) bottom is provided with The reversed forced section (51) of protrusion, reversed forced section (51) outer rim are pressure combined area, corresponding energy management tube (1) pipe The pressure combined area of protrusion is provided at mouth (11).
4. a kind of probe according to claim 1, which is characterized in that the energy management tube (1) is provided with It aligns power mechanism (9), it can be in high-pressure fluid tank (3) or in high-pressure fluid tank (3) outside.
5. according to claim 1 with a kind of probe described in 4, which is characterized in that contraposition power mechanism (9) be located at height It presses in fluid tank (3), L-type connecting rod (91) one end of contraposition power mechanism (9) is connected to energy management tube by articulated manner (1) on, the intermediate position (93) of L-type connecting rod (91) is mounted in the sliding slot (94) being fixed on energy output shaft (5), L-type The first cambered surface (95) are arranged in the square position of connecting rod (91), the first cambered surface (95) be fixed in high-pressure fluid tank top the One wedge type block (96) cooperation, can slide along wedge face, and the second cambered surface (98) are arranged in the other end of L-type connecting rod (91), high-pressure spray Body pot bottom is fixed with the second wedge type block (97) with the second cambered surface (98) cooperation, can slide along wedge face.
6. according to claim 1 with a kind of probe described in 4, which is characterized in that first cambered surface (95) and Second cambered surface (98) is smooth arc surface or idler wheel.
7. a kind of probe according to claim 1, which is characterized in that the energy output system (6) is energy Measure one of dynamical system of duplicator or engine or compression cylinder, generator or hydraulic press.
8. a kind of probe according to claim 1, which is characterized in that the energy management tube (1) and energy Output shaft (5) contact jaw (12) is rigid pipe, and being located at the part of high-pressure fluid tank (3) outside is flexible pipeline.
CN201910085223.5A 2019-01-29 2019-01-29 A kind of probe Pending CN109707591A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201910085223.5A CN109707591A (en) 2019-01-29 2019-01-29 A kind of probe

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201910085223.5A CN109707591A (en) 2019-01-29 2019-01-29 A kind of probe

Publications (1)

Publication Number Publication Date
CN109707591A true CN109707591A (en) 2019-05-03

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201910085223.5A Pending CN109707591A (en) 2019-01-29 2019-01-29 A kind of probe

Country Status (1)

Country Link
CN (1) CN109707591A (en)

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2006120764A1 (en) * 2005-05-09 2006-11-16 Falcom Inc. Pressurizing device
CN104074694A (en) * 2013-03-31 2014-10-01 邓其辉 Environment-friendly fluid pressure leakage energy exciting continuous transmission power generating technology capable of continuously utilizing resources
CN104145143A (en) * 2011-10-10 2014-11-12 Kmt水喷射系统公司 Gasketless high pressure connection
US9356489B1 (en) * 2015-01-20 2016-05-31 John A. Saavedra Device and method for generating power using buoyancy
CN108533326A (en) * 2018-04-13 2018-09-14 封海涛 High-pressure fluid and low-pressure fluid acting mixing arrangement

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2006120764A1 (en) * 2005-05-09 2006-11-16 Falcom Inc. Pressurizing device
CN104145143A (en) * 2011-10-10 2014-11-12 Kmt水喷射系统公司 Gasketless high pressure connection
CN104074694A (en) * 2013-03-31 2014-10-01 邓其辉 Environment-friendly fluid pressure leakage energy exciting continuous transmission power generating technology capable of continuously utilizing resources
US9356489B1 (en) * 2015-01-20 2016-05-31 John A. Saavedra Device and method for generating power using buoyancy
CN108533326A (en) * 2018-04-13 2018-09-14 封海涛 High-pressure fluid and low-pressure fluid acting mixing arrangement

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