CN209228561U - Engine type oil pressure pump - Google Patents

Engine type oil pressure pump Download PDF

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Publication number
CN209228561U
CN209228561U CN201822101708.2U CN201822101708U CN209228561U CN 209228561 U CN209228561 U CN 209228561U CN 201822101708 U CN201822101708 U CN 201822101708U CN 209228561 U CN209228561 U CN 209228561U
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CN
China
Prior art keywords
hand
operated
distal portion
oil
shell
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn - After Issue
Application number
CN201822101708.2U
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Chinese (zh)
Inventor
权亮
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First Forever Co Ltd
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First Forever Co Ltd
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Application filed by First Forever Co Ltd filed Critical First Forever Co Ltd
Priority to CN201822101708.2U priority Critical patent/CN209228561U/en
Application granted granted Critical
Publication of CN209228561U publication Critical patent/CN209228561U/en
Withdrawn - After Issue legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model provides a kind of engine type oil pressure pump, it includes have an engine, one pump ontology, one part flow arrangement, one manual control unit and a remote control portion, engine is connected with pump ontology, part flow arrangement is set on pump ontology, and it will selectively pump intrinsic hydraulic oil importing and manually control portion or remote control portion, the utility model is by being provided with engine, it can be independently-powered, without being dependent on operating for external power supply, in addition the solenoid valve in remote control portion can allow user in the inlet and outlet of fuel channel of switching oil gear at a distance, operate the utility model someone need not on side at any time when in use, therefore the manpower in the utility model use can further be saved.

Description

Engine type oil pressure pump
Technical field
The utility model relates to a kind of pump ontology, espespecially a kind of pump ontology to drive Hydraulic scissors equal power device.
Background technique
Oil press reciprocating device (such as the Hydraulic scissors or connector presser) substance more firm commonly used to Material Processing;Wherein, It is used to that the driving device of such oil gear is driven to contain a motor and a control valve in the prior art, after motor is powered, It can be used to the hydraulic oil in drive control valve, be sent to complex device or extracted out from complex device, complex device passes through Hydraulic oil drives the piston inside complex device mobile, and then reach shearing or pressing inside it by the disengaging of different location Purpose.
For example, when complex device is a Hydraulic scissors, upon power-up, user, will by manual operation for motor The valve opening of control valve makes the oil circuit inside Hydraulic scissors be connected with the external world, and the driving energy of motor just can be by liquid as a result, Pressure oil is sent into Hydraulic scissors, and drives the piston inside Hydraulic scissors mobile, and is cut cable by oil pressure and waited machining object, oil The structure of the devices such as compression shear is the prior art, therefore is repeated no more in this.
However such oil pressure disconnecting device of the prior art, there is following two points disadvantage.
First, it can be used since motor needs to be powered, workable field domain will be greatly limited, citing For, in mountain area or seashore etc., equipment are less complete or can not provide the place of appropriate electric power, and the oil pressure of the prior art cuts off dress Setting will not be available.
Second, although motor just can be used to drive the operations of Hydraulic scissors after being powered, complex device each time on It rises and decline requires the pipeline by switching running of hydraulic power oil to reach, therefore user must stand at any time and cut off in oil pressure By device, switch the pipeline that hydraulic oil is passed through according to different needs;On the other hand, most devices for utilizing oil pressure actuated, example Such as Hydraulic scissors, the devices such as the object such as cable cut, usual thickness is thicker, causes complex device that can not disposably complete it Task, therefore it is also required to be dependent on the manpower switch of operation control valve at the scene for a long time, to enable hydraulic oil successfully in oil It is recycled back and forth between compression shear and control valve, causes the inefficiency on manpower.
Utility model content
In view of the shortcomings that the prior art and deficiency, the utility model provide a kind of engine type oil pressure pump, by by horse Up to be changed to can be independently-powered engine, overcome the utility model using the limitation on field domain.
For up to above-mentioned creation purpose, technological means used by the utility model is a kind of engine type oil pressure pump, packet Contain:
One engine;
One pump ontology, is electrically connected, which includes with the engine:
One fuel tank is provided with an oil inlet passage and an oil discharge passage in the fuel tank;
One oil rig is set in the fuel tank, and the oil rig is to extract the hydraulic oil of the fuel tank internal To the oil discharge passage;
One part flow arrangement, is connected with the oil discharge passage and inside is connected to, and includes an isocon, which has An interconnected entrance, a manual part head piece and a distal portions head piece;The entrance connects and is connected to the oil discharge passage, should Part flow arrangement selectively closes off the hand-operated diffluence pass, which selectively closes off the distal portions head piece;
One manual control unit is separately connected the hand-operated diffluence pass and the oil inlet passage, and the portion of manually controlling includes Have:
One hand-operated shell is formed with two hand-operated connectors on the hand-operated shell, which has One hand-operated channel, the hand-operated channel are connected with the hand-operated diffluence pass and the two hand-operateds connector respectively;
One hand oil-way adjuster is set in the hand-operated channel, and the hand oil-way adjuster can make this manually Part head piece is connected with any hand-operated connector;
One remote control portion is separately connected the distal portions head piece and the oil inlet passage, and the remote control portion includes Have:
One distal portion shell is formed with two distal portion connectors on the distal portion shell, which has One distal portion channel, the distal portion channel are connected with the distal portions head piece and the two distal portions connector respectively;
One solenoid valve, the inside of the solenoid valve is connected with the distal portion channel, and the solenoid valve can make the distal portions Head piece is connected with any distal portion connector;
One power supply unit is electrically connected with the solenoid valve;
One operating device is connect with the solenoid signal.
The utility model has the advantage of by engine as power device, therefore the utility model can pass through burning Petroleum fuel is powered, and without being dependent on external power supply, thus the oil pressure pump of the utility model compared with the prior art must It need be powered just and can be carried out operating, can more be suitable for electric power and be not easy the area obtained;On the other hand, the utility model is further Be installed with one can controlled by solenoid valve remote control portion, user only needs that liquid just can be manipulated by far-end remote control solenoid valve Disengaging of the pressure oil inside the utility model, therefore just do not need to stay at any time beside oil gear when using oil gear Operation, therefore manpower when the utility model can be saved using oil gear.
Furthermore, engine type oil pressure pump above-mentioned, wherein the isocon of the part flow arrangement is set to the hand-operated In shell, and one end of the isocon wears and extends in the distal portion shell, which forms in the hand-operated In shell, which is formed in the distal portion shell.
Furthermore, engine type oil pressure pump above-mentioned, wherein the part flow arrangement further includes two flow dividers, this two Flow divider is respectively arranged on the hand-operated shell and on the distal portion shell, and adjacent to the hand-operated diffluence pass and is somebody's turn to do respectively Distal portions head piece, respectively the flow divider selectively turns on or closes the corresponding hand-operated diffluence pass or the distal portion shunts Mouthful.
Furthermore, engine type oil pressure pump above-mentioned, wherein the flow divider is a manual part stream valve, and this is manually Portion's flow divider is set on the hand-operated shell, the hand-operated flow divider further include a shunting handle, a mobile column and One shunting plug, the shunting handle are rotatablely arranged on the hand-operated shell, and are through in the hand-operated shell, the movement Column is set in the hand-operated channel, and is connected with the shunting handle, which is set in the hand-operated channel, and with The mobile column is connected, which can drive the mobile column to move in the hand-operated channel, and selects the shunting plug Close the hand-operated diffluence pass to property.
Furthermore, engine type oil pressure pump above-mentioned, wherein the flow divider is a distal portion flow divider, the distal portion Flow divider is set on the distal portion shell, which further includes a shunting handle, a mobile column and one Shunting plug, the shunting handle are rotatablely arranged on the distal portion shell, and are through in the distal portion shell, the mobile column Be set in the distal portion channel, and be connected with the shunting handle, which is set in the distal portion channel, and with this Mobile column is connected, which can drive the mobile column to move in the distal portion channel, and keeps the shunting plug selective Close the distal portions head piece in ground.
Furthermore, engine type oil pressure pump above-mentioned is wherein further formed in the solenoid valve: entrance connection Mouthful, it is connected with the distal portion channel;One outlet mouth, is connected with the oil inlet passage;Two oil gear communication ports, It is connected with the two distal portions connector respectively;Wherein, which can make the entrance communication port and any oil gear Communication port is connected, and the outlet mouth is made to be connected with remaining another oil gear communication port simultaneously.
Furthermore, engine type oil pressure pump above-mentioned, wherein this, which is manually controlled, is further provided with two hand-operated pressures in portion Force regulating valve, the two hand-operateds pressure-regulating valve are connected with the two hand-operateds connector respectively;The remote control portion enterprising one Step is equipped with two distal portion pressure-regulating valves, which is connected with the two distal portions connector respectively.
Furthermore, engine type oil pressure pump above-mentioned further includes a movable stand and multiple idler wheels, the rolling Wheel is respectively arranged on the movable stand, and the movable stand can be mobile by the idler wheel, and the engine, the pump ontology, the shunting Device, this manually controls portion and the remote control portion is all set on the movable stand.
Furthermore, engine type oil pressure pump above-mentioned, wherein the power supply unit is an electromagnetic coil.
Furthermore, engine type oil pressure pump above-mentioned, wherein passes through wireless communication between the operating device and the solenoid valve Number connection.
Detailed description of the invention
Fig. 1 is the stereo appearance figure of the utility model.
Fig. 2 is the utility model members enlarged drawing.
Fig. 3 is the exploded view of the utility model members.
Fig. 4 is the stereoscopic schematic diagram of the utility model pump ontology.
Fig. 5 is the cut-away section front view of the utility model.
Fig. 6 is the first cross sectional plan view that the utility model manually controls portion.
Fig. 7 is another part cross-section front view of the utility model.
Fig. 8 is the second cross sectional plan view that the utility model manually controls portion.
Fig. 9 is the third cross sectional plan view that the utility model manually controls portion.
Figure 10 is first cross sectional plan view in the utility model remote control portion.
Figure 11 is second cross sectional plan view in the utility model remote control portion.
Figure 12 is the third cross sectional plan view in the utility model remote control portion.
Figure 13 is the 4th cross sectional plan view in the utility model remote control portion.
Figure 14 is the another cut-away section front view of the utility model.
Figure 15 is the cross sectional side view in the utility model remote control portion.
Figure 16 is the internal perspective view in the utility model remote control portion.
Figure 17 is the internal perspective view that the utility model manually controls portion.
Specific embodiment
The preferred embodiment for cooperating attached drawing and the utility model below, it is predetermined to reach that the utility model is further described The technological means that creation purpose is taken.
It please refers to shown in Fig. 1, Fig. 3 and Fig. 6, the engine type oil pressure pump of the utility model includes that an engine 10, one pumps ontology 20, a part flow arrangement 30, a manual control unit 40, a remote control portion 50 and a support device, 20 electricity of engine 10 and pump ontology Connection, and the electric energy that needs when can be supplied to its operating of pump ontology 20, and part flow arrangement 30 is connected with pump ontology 20, and can be by Hydraulic oil (not shown) in pump ontology 20 selectively flows into the portion that manually controls 40 or remote control portion 50, and institute above-mentioned There is component to be all set in support device.
It please refers to shown in Fig. 2, Fig. 3 and Fig. 4, furthermore, pumps ontology 20 other than being electrically connected with engine 10, further Include a fuel tank 21, an oil rig 22 and an oil pressure gauge 23, it is fuel-displaced that an oil inlet passage 211 and one is provided in fuel tank 21 Channel 212, oil inlet passage 211 and oil discharge passage 212 can make hydraulic oil enter or leave fuel tank 21 respectively;Oil rig 22 is set It is placed in fuel tank 21, and oil rig 22 is extracting the hydraulic oil in fuel tank 21 to oil discharge passage 212;Oil pressure gauge 23 with Oil discharge passage 212 is connected and inside is connected, and in the present embodiment, oil pressure gauge 23 is set to the top of fuel tank 21, oil pressure gauge 23 Can by detect the hydraulic oil of oil pressure gauge 23 flowed through by oil discharge passage 212 come judge hydraulic oil oil pressure reading why.
It please referring to shown in Fig. 5, Fig. 6 and Figure 11, part flow arrangement 30 is connected with oil discharge passage 212 and inside is connected, and It include an isocon 31 and two flow dividers, and in the present embodiment, which is respectively a manual part stream valve 32 and one Distal portion flow divider 33, the hand-operated flow divider 32 and the distal portion flow divider 33 are respectively arranged at the portion of manually controlling 40 and distal end On control unit 50, isocon 31 has interconnected an entrance 311, a manual part head piece 312 and a distal portions head piece 313, the connection of entrance 311 and connection oil discharge passage 212, the hand-operated flow divider 32 and the distal portion flow divider 33 respectively adjacent to The hand-operated diffluence pass 312 and distal portions head piece 313, and selectively turn on or close the hand-operated diffluence pass 312 and be somebody's turn to do Distal portions head piece 313.
It please refers to shown in Fig. 3, in the present embodiment, manually controls portion 40 and remote control portion 50 (hand stacked atop one anotherly Dynamic control unit 40 under, remote control portion 50 is upper) be set to the top of fuel tank 21, but its mode configured up and down is not with this It is limited.
It please refers to shown in Fig. 5 and Figure 11, in addition, isocon 31 is set in the portion of manually controlling 40, and one in the present embodiment End extends through in remote control portion 50, and the hand-operated diffluence pass 312 forms in the portion of manually controlling 40, and distal portions Head piece 313 then forms in remote control portion 50, and the hand-operated flow divider 32 and the distal portion flow divider 33 are respectively arranged at This is manually controlled in portion 40 and in the remote control portion 50, but isocon 31 setting and shaping position be not limited with above-mentioned, In other embodiments, isocon 31 also can be formed in independently outside the portion of manually controlling 40 and remote control portion 50.
On the other hand, part flow arrangement 30 can also pass through the mode other than hand-operated flow divider 32 and the distal portion flow divider 33 The shunting operation of hydraulic oil is executed, such as isocon is a Y-shaped channel, and one valve is set in the central confluce of Y-shaped To determine that the entrance of isocon can be connected with hand-operated diffluence pass or distal portions head piece.
It please refers to shown in Fig. 6 and Fig. 7, in the present embodiment, manually controls portion 40 and be set on fuel tank 21, and be separately connected Hand-operated diffluence pass 312 and oil inlet passage 211, and hand-operated diffluence pass 312, manually control portion 40 and oil inlet passage 211 formation Into after manually controlling portion 40, it is logical can to flow through oil inlet from hand-operated diffluence pass 312 for one oil circulation, more precisely, hydraulic oil Road 211 returns in fuel tank 21.
It please refers to shown in Fig. 7, Fig. 8 and Fig. 9, furthermore, manually controlling portion 40 includes a hand-operated shell 41, two Hand-operated connector 42, a hand-operated channel 43, a hand oil-way adjuster 44 and two hand-operated pressure-regulating valves 45, two hand Dynamic portion's connector 42 is formed separately on hand-operated shell 41, and hand-operated channel 43 forms in hand-operated shell 41, and respectively It is connected with the two hand-operateds connector 42, while hand-operated channel 43 is also connected with hand-operated diffluence pass 312.
Further referring to shown in Fig. 6, more precisely, in part flow arrangement 30 above-mentioned, isocon 31 is set to manually In portion's shell 41, and hand-operated diffluence pass 312 then forms in hand-operated shell 41, and is set to being somebody's turn to do in the portion of manually controlling 40 Hand-operated flow divider 32 is set on hand-operated shell 41, and the hand-operated flow divider 32 further includes a shunting handle 321, a mobile column 322 and a shunting plug 323 shunt handle 321 and are rotatablely arranged on hand-operated shell 41, and penetrate through extremely Hand-operated channel 43 in hand-operated shell 41, mobile column 322 are set in hand-operated channel 43, and with shunt 321 phase of handle Connection, shunting plug 323 is set in hand-operated channel 43, and is connected with mobile column 322, and user can shunt handle by rotation Hand 321, and then drive mobile column 322 to move in hand-operated channel 43, and shunting plug 323 is made to selectively close off hand-operated Diffluence pass 312, in other words, when shunting plug 323 closes hand-operated diffluence pass 312, hydraulic oil just can not be led to by part flow arrangement 30 Hand-operated channel 43 is crossed to flow through to the two hand-operateds connector 42.
It please referring to shown in Fig. 6 and Figure 17, hand oil-way adjuster 44 is set in hand-operated channel 43, more precisely, It is set in the hand-operated channel 43 after hand-operated diffluence pass 312, in other words, when hand-operated flow divider 32 is by hand-operated After diffluence pass 312 is closed, hand oil-way adjuster 44 just will not touch the hydraulic oil come in by part flow arrangement 30.
It please refers to shown in Fig. 6 to Fig. 9, in the present embodiment, hand oil-way adjuster 44 includes that a pull rod 441 and one is adjusted Bar 442, pull rod 441 are provided projectingly on outside hand-operated shell 41, and adjusting rod 442 is set in hand-operated channel 43, and pull rod 441 It is connected with adjusting rod 442, user can move adjusting rod 442 by pulling pull rod 441 manually;It is opened in shunting plug 323 In the state of, mobile can change hydraulic oil of the adjusting rod 442 in hand-operated channel 43 flows into manually from hand-operated diffluence pass 312 Last terminal behind portion channel 43.
More precisely, pull rod 441 is the body of rod of a three-stage, when pull rod 441 is pushed into hand-operated shell 41 by user When interior bosom, can and then adjusting rod 442 be pushed into 41 bosom of hand-operated shell, then hydraulic oil is from hand-operated diffluence pass After 312 flow into hand-operated channel 43, it can be flowed out by any hand-operated connector 42;And if pull rod 441 is pulled to it by user Far from 41 farthest of hand-operated shell, and after pulling adjusting rod 442 together, hydraulic oil flows into hand from hand-operated diffluence pass 312 Behind dynamic portion channel 43, it can be flowed out by another hand-operated connector 42;And when pull rod 441 is pulled to the first two position by user When intermediate, after hydraulic oil flows into hand-operated channel 43 from hand-operated diffluence pass 312, fuel tank directly can be returned to by oil inlet passage 211 In 21, do not enter any hand-operated connector 42 the case where, the switching of the hand oil-way adjuster 44 of the utility model are formed Mode is the prior art, therefore repeats no more in this.
The two hand-operateds pressure-regulating valve 45 is respectively arranged on hand-operated shell 41, and is connect respectively with two hand-operated Mouth 42 is connected, and when the oil pressure for flowing through the respectively hydraulic oil of the hand-operated pressure-regulating valve 45 is excessive, will push corresponding The hand-operated pressure-regulating valve 45 inside adjustment spring 451, and then enter in hand-operated pressure-regulating valve 45, finally follow In loopback fuel tank 21, and then make to maintain certain oil pressure into the oil circuit manually controlled in portion 40.
In the present invention, " manual " for manually controlling portion refers to that oil circuit is flowed through in switching and connects in two hand-operated The mode of mouth 42 is to be manually operated by the utility model by user to reach;And in the present embodiment, refer to by making User pulls pull rod 441 to reach manually.
It please refers to shown in Fig. 3, Figure 11 and Figure 14, in the present embodiment, remote control portion 50 is set to the portion of manually controlling 40 Top, and be separately connected the distal portions head piece 313 and oil inlet passage 211 of part flow arrangement 30, and it is distal portions head piece 313, remote Control unit 50 and oil inlet passage 211 is held to form an oil circulation, more precisely, hydraulic oil enters from distal portions head piece 313 Behind remote control portion 50, oil inlet passage 211 can be flowed through and returned in fuel tank 21, in the present embodiment, remote control portion 50 is manually controlled Portion 40 is connected with oil inlet passage 211 jointly, in other words, since remote control portion 50 is set to the top in the portion of manually controlling 40, Therefore when hydraulic oil backs downward into fuel tank 21 by remote control portion 50, after first flowing through the portion of manually controlling 40, further downwards In the oil return box 21 that flows back, but its oil circuit trend is not limited.
It please refers to shown in Fig. 2, Fig. 3, Figure 11 and Figure 12, furthermore, remote control portion 50 includes a distal portion shell Body 51, two distal portion connectors 52, a distal portion channel 53, a solenoid valve 54, a power supply unit 55, an operating device 56 and two Distal portion pressure-regulating valve 57 (as shown in figure 13), the two distal portions connector 52 are formed separately on distal portion shell 51, far End run 53 forms in distal portion shell 51, and is connected respectively with the two distal portions connector 52, while distal portion is logical Road 53 is also connected with distal portions head piece 313.
It please refers to shown in Figure 10 and Figure 11, more precisely, in part flow arrangement 30 above-mentioned, isocon 31 is by hand-operated shell Body 31 extends upwardly in distal portion shell 51, and distal portions head piece 313 forms in isocon 31 in distal portion shell 51 End, in addition, identical as hand-operated flow divider 32 in 33 structure of distal portion flow divider being set on distal portion shell 50, It also includes a shunting handle 331, a mobile column 332 and a shunting plug 333, shunts handle 331 and is rotatablely arranged at far It on end shell 51, and penetrates through to the distal portion channel 53 in distal portion shell 51, mobile column 332 is set to distal portion channel 53 It is interior, and be connected with handle 331 is shunted, shunting plug 333 is set in distal portion channel 53, and is connected with mobile column 332, User can shunt handle 331 by rotation, and then drive mobile column 332 to move in distal portion channel 53, and make shunting plug 333 selectively close off distal portions head piece 313, in other words, when 333 closed distal end part head piece 313 of shunting plug, hydraulic oil Just it can not be flowed through by distal portion channel 53 to the two distal portions connector 52 by part flow arrangement 30.
It please refers to shown in Fig. 3, Figure 10 and Figure 16, solenoid valve 54 is set on distal portion shell 51, and is penetrated through to distal portion In channel 53, more precisely, in the present embodiment, hole formed therethrough has an entrance communication port 541, one outlet to connect on solenoid valve 54 Port 542 and two oil gear communication ports 543, distal portion channel 53 pass through entrance communication port 541 in distal portion shell 51 It is connected to inside solenoid valve 54, and the two distal portions connector 52 is connected to electricity by the two oil gears communication port 543 respectively In magnet valve 54, and thus it is connected with distal portion channel 53;Outlet mouth 542 is then connected with oil inlet passage 211.
Please refer to Figure 11 and Figure 14, in the present embodiment, hydraulic oil is entered from the distal portions head piece 313 of part flow arrangement 30 After in the distal portion channel 53 of distal portion shell 51, in the state that distal portion flow divider 33 is opened, hydraulic oil can then pass through Entrance communication port 541 enters inside solenoid valve 54, has a moveable adjustable column (not shown), function in solenoid valve 54 It can be similar to the structure of hand oil-way adjuster 44, pass through relative movement of the adjustable column in solenoid valve 54, switchable hydraulic oil Outlet into after solenoid valve 54, on the other hand, solenoid valve 54 also have three-stage knot as hand oil-way adjuster 44 Structure can manipulate the hydraulic oil into solenoid valve 54, make when the adjustable column in solenoid valve 54 is when mobile relative to solenoid valve 54 It is selectively flowed out by the outlet mouth 542 or any oil gear communication port 543, such as Figure 12, Figure 13 and Figure 14 It is shown, and then achieve the purpose that the oil circuit for switching hydraulic oil, more precisely, the function of solenoid valve 54 makes entrance communication port 541 It is connected with any oil gear communication port 543, and makes to export communication port 542 and remaining another oil gear communication port simultaneously 543 are connected.
It please refers to shown in Fig. 3, in the present embodiment, power supply unit 55 is an electromagnetic coil, and it is set to engine 10 and pump Between ontology 20, the rotation generated by the driving of engine 10 drives power supply unit 55 to generate electricity, and be in turn supplied to its electric energy Solenoid valve 54 uses, but the power supply mode of solenoid valve 54 is not limited, in other words, in other embodiments, power supply unit 55 It can be the structure other than electromagnetic coil.
In the present embodiment, operating device 56 is a remote controler with wireless signal linkage function, and believes with solenoid valve 54 Number connection, can adjustable column in far-end remote control solenoid valve 54, thus achieve the purpose that remote control solenoid valve 54 switches oil circuit, But operating device 56 can also be reached not with the remote controler with wireless signal linkage function by the structures such as electric wire and solenoid valve 54 It is connected to signal, only wants that user can be allowed in the place operation solenoid valve 54 far from the utility model.
It please refers to shown in Figure 10, Figure 13 and Figure 15, which is respectively arranged at distal portion shell On 51, and it is connected respectively with the two distal portions connector 52, when flowing through each hydraulic oil of the distal portion pressure-regulating valve 57 When oil pressure is excessive, the adjustment spring 571 inside the corresponding distal portion pressure-regulating valve 57 will be pushed, and then enter It is final to recycle in oil return box 21 in distal portion pressure-regulating valve 57, and then maintain the oil circuit entered in remote control portion 50 Certain oil pressure.
Refering to Figure 1, support device includes a movable stand 61 and multiple idler wheels 62, the idler wheel 62 is respectively set In on movable stand 61, and movable stand 61 can be mobile by the idler wheel 62, and engine 10, pump ontology 20, part flow arrangement 30, hand Dynamic control unit 40 and remote control portion 50 are all set on movable stand 61.
The following are the usage mode of the utility model and advantages.
When the utility model is used, the oil gear (not shown) that can arrange in pairs or groups, such as Hydraulic scissors or oil pressure engagement dress Set use, set on the oil gear there are two interconnecting piece, can with the utility model manually control portion 40 this two manually Portion's connector 42 or the two distal portions connector 52 in remote control portion 50 are connected, therefore user can select according to its demand By oil gear and the utility model manually control portion 40 or remote control portion 50 is connected to carry out subsequent operation.
It please refers to shown in Fig. 5, Fig. 6 and Figure 10, after the completion of connection, user adjusts the hand-operated flow divider 32 and should The position of the switch of distal portion flow divider 33 changes into out hand-operated flow divider 32 if user uses the portion of manually controlling 40 State is opened, and distal portion flow divider 33 is changed into closed state, thus when hydraulic oil flows into part flow arrangement 30 out of pump ontology 20 Afterwards, uniline will be followed into portion 40 is manually controlled, vice versa.
The advantages of the utility model, is as follows:
First, by being installed with engine 10, the utility model just formed one can be independently-powered board, in other words, just In electric power compared with the region for being difficult to obtain, such as remote mountains or seashore, the utility model still be can be used, and it is practical thus to improve this Novel ease of use.
Second, by being provided with remote control portion 50, as long as oil gear is connected to remote control portion 50 by user, just not It must stay at any time beside board to carry out the switching of oil circuit when the utility model operates, but may exit off the utility model And go to execute other work, when the oil circuit of hydraulic oil needs to switch, user will only use 56 far-end remote control electromagnetism of operating device Valve 54 is just able to carry out the switching of oil circuit, reaches the advantages of saving manpower when using.
Third, and manually control the setting in portion 40 then may insure when remote control portion 50 failure and nothing for any reason When method operates, user can still transfer oil gear in the portion of manually controlling 40, be continued in the way of manual operation Use the utility model.
The above is only the preferred embodiment of the utility model, not does in any form to the utility model Limitation, although the utility model has been disclosed with preferred embodiment as above, is not intended to limit the utility model, any ability Field technique personnel make in the range of not departing from technical solutions of the utility model when using the technology contents of the disclosure above It is a little to change or modify the equivalent embodiment as equivalent variations, but all contents without departing from technical solutions of the utility model, According to the technical essence of the utility model any simple modification, equivalent change and modification made to the above embodiment, still belong to In the range of technical solutions of the utility model.

Claims (10)

1. a kind of engine type oil pressure pump, characterized by comprising:
One engine;
One pump ontology, is electrically connected, which includes with the engine:
One fuel tank is provided with an oil inlet passage and an oil discharge passage in the fuel tank;
One oil rig is set in the fuel tank, and the oil rig is extracting the hydraulic oil of the fuel tank internal to this In oil discharge passage;
One part flow arrangement, is connected with the oil discharge passage and inside is connected to, and includes an isocon, which has mutual An entrance, a manual part head piece and a distal portions head piece for connection;The entrance connects and is connected to the oil discharge passage, the shunting Device selectively closes off the hand-operated diffluence pass, which selectively closes off the distal portions head piece;
One manual control unit is separately connected the hand-operated diffluence pass and the oil inlet passage, and the portion of manually controlling includes:
One hand-operated shell is formed with two hand-operated connectors on the hand-operated shell, which has on the other hand Dynamic portion channel, which is connected with the hand-operated diffluence pass and the two hand-operateds connector respectively;
One hand oil-way adjuster is set in the hand-operated channel, and the hand oil-way adjuster can make the hand-operated Diffluence pass is connected with any hand-operated connector;
One remote control portion is separately connected the distal portions head piece and the oil inlet passage, and the remote control portion includes:
One distal portion shell is formed with two distal portion connectors on the distal portion shell, which has one remote End run, the distal portion channel are connected with the distal portions head piece and the two distal portions connector respectively;
One solenoid valve, the inside of the solenoid valve are connected with the distal portion channel, and the solenoid valve can be such that the distal portion shunts Mouth is connected with any distal portion connector;
One power supply unit is electrically connected with the solenoid valve;
One operating device is connect with the solenoid signal.
2. engine type oil pressure pump according to claim 1, which is characterized in that the isocon of the part flow arrangement is set to this In hand-operated shell, and one end of the isocon wears and extends in the distal portion shell, which forms in this In hand-operated shell, which is formed in the distal portion shell.
3. engine type oil pressure pump according to claim 1 or 2, which is characterized in that the part flow arrangement further includes two Flow divider, two flow divider are respectively arranged on the hand-operated shell and on the distal portion shell, and manual adjacent to this respectively Part head piece and the distal portions head piece, respectively the flow divider selectively turn on or close the corresponding hand-operated diffluence pass or The distal portions head piece.
4. engine type oil pressure pump according to claim 3, which is characterized in that the flow divider is a manual part stream valve, And the hand-operated flow divider is set on the hand-operated shell, which further includes a shunting handle, one Mobile column and a shunting plug, the shunting handle are rotatablely arranged on the hand-operated shell, and are through to the hand-operated shell Interior, which is set in the hand-operated channel, and is connected with the shunting handle, and it is logical which is set to the hand-operated In road, and it is connected with the mobile column, which is able to drive the mobile column and moves in the hand-operated channel, and makes this Shunting plug selectively closes off the hand-operated diffluence pass.
5. engine type oil pressure pump according to claim 3, which is characterized in that the flow divider is a distal portion flow divider, And the distal portion flow divider is set on the distal portion shell, which further includes a shunting handle, one Mobile column and a shunting plug, the shunting handle are rotatablely arranged on the distal portion shell, and are through to the distal portion shell Interior, which is set in the distal portion channel, and is connected with the shunting handle, and it is logical which is set to the distal portion In road, and it is connected with the mobile column, which is able to drive the mobile column and moves in the distal portion channel, and makes this Shunting plug selectively closes off the distal portions head piece.
6. engine type oil pressure pump according to claim 1 or 2, which is characterized in that be further formed in the solenoid valve:
One entrance communication port is connected with the distal portion channel;
One outlet mouth, is connected with the oil inlet passage;
Two oil gear communication ports are connected with the two distal portions connector respectively;
Wherein, which can make the entrance communication port be connected with any oil gear communication port, and simultaneously go out this Mouth communication port is connected with remaining another oil gear communication port.
7. engine type oil pressure pump according to claim 1 or 2, which is characterized in that
This, which is manually controlled, is further provided with two hand-operated pressure-regulating valves in portion, the two hand-operateds pressure-regulating valve respectively with this two Hand-operated connector is connected;
Two distal portion pressure-regulating valves are further provided in the remote control portion, the two distal portions pressure-regulating valve respectively with this two Distal portion connector is connected.
8. engine type oil pressure pump according to claim 1 or 2, which is characterized in that further include a movable stand and more A idler wheel, the idler wheel are respectively arranged on the movable stand, and the movable stand can be mobile by the idler wheel, and the engine, The pump ontology, the part flow arrangement, this manually controls portion and the remote control portion is all set on the movable stand.
9. engine type oil pressure pump according to claim 1 or 2, which is characterized in that the power supply unit is an electromagnetic coil.
10. engine type oil pressure pump according to claim 1 or 2, which is characterized in that between the operating device and the solenoid valve It is connected by wireless signal.
CN201822101708.2U 2018-12-14 2018-12-14 Engine type oil pressure pump Withdrawn - After Issue CN209228561U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201822101708.2U CN209228561U (en) 2018-12-14 2018-12-14 Engine type oil pressure pump

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201822101708.2U CN209228561U (en) 2018-12-14 2018-12-14 Engine type oil pressure pump

Publications (1)

Publication Number Publication Date
CN209228561U true CN209228561U (en) 2019-08-09

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201822101708.2U Withdrawn - After Issue CN209228561U (en) 2018-12-14 2018-12-14 Engine type oil pressure pump

Country Status (1)

Country Link
CN (1) CN209228561U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111322218A (en) * 2018-12-14 2020-06-23 科颉工业股份有限公司 Engine type oil pressure pump

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111322218A (en) * 2018-12-14 2020-06-23 科颉工业股份有限公司 Engine type oil pressure pump
CN111322218B (en) * 2018-12-14 2021-11-05 科颉工业股份有限公司 Engine type oil pressure pump

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