CN209365342U - A kind of clamping mechanism for bottle-blowing machine intelligent lubricating mechanism - Google Patents
A kind of clamping mechanism for bottle-blowing machine intelligent lubricating mechanism Download PDFInfo
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- CN209365342U CN209365342U CN201822051635.0U CN201822051635U CN209365342U CN 209365342 U CN209365342 U CN 209365342U CN 201822051635 U CN201822051635 U CN 201822051635U CN 209365342 U CN209365342 U CN 209365342U
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Abstract
The utility model is related to a kind of clamping mechanism for bottle-blowing machine intelligent lubricating mechanism; including mould bases and mode locking case; jet stream lubricating system is separately set on mould bases; jet stream lubricating system includes bearing base, bolster stake, directive slide track, sliding block, grease-box, grease pump, jet stream mouth, voltage-stabiliser tube, pressure sensor, sensors in place and control circuit; jet stream mouth rear end face is connected to voltage-stabiliser tube; and voltage-stabiliser tube is interconnected by diversion pipe and grease pump, grease pump is interconnected by diversion pipe and grease-box.On the one hand the utility model can effectively meet the lubrication operation to bottle blowing machine mode locking case lock tube and locking bar link position, on the other hand effectively the structure of lubricating system can be adjusted flexibly, to effectively meet the needs to the bottle blowing machine mode locking case lock tube lubrication operation of different number, different structure and different distributions position.
Description
Technical field
The utility model relates to a kind of bottle blowing machine die carrier structures, belong to lubricating system technical field.
Background technique
At present in used bottle blowing machine when carrying out molding operation to mold, in order to improve mold positioning stability and
Reliability is required to that mold is positioned and locked by mode locking case, but finds in the operation of mode locking case, current mode locking case
Often device structure is complicated and narrow space, so as to cause lock tube and the locking bar contact surface at runtime of current mode locking case equipment
Frictional dissipation it is very big, in addition mode locking case run when daily at least open and close 30,000 subjobs, thus further increase lock tube and
Frictional dissipation between locking bar, therefore stability when the operation of current mode locking case equipment and reliability be by strong influence, together
When also result in mode locking case needs and frequently safeguarded and part replacement that the cost is relatively high for operation and maintenance, therefore is directed to
This status, there is an urgent need to develop a kind of novel dedicated lubricating systems of mode locking case, to meet the needs of actual use.
Utility model content
In view of the shortcomings of the prior art, the utility model provides a kind of clamping mechanism for bottle-blowing machine intelligent lubricating machine
Structure, the new structure compact layout run high degree of automation, and operation control precision is high, on the one hand can effectively meet to blowing
The lubrication operation of bottle machine mode locking case lock tube and locking bar link position, to effectively reduce friction when running between locking bar and lock tube
Loss, and smoothness when running between bottle blowing machine mode locking case lock tube and locking bar is greatly improved, it on the other hand can be effectively to profit
The structure of sliding system is adjusted flexibly, and blows bottle to different number, different structure and different distributions position to effectively meet
The needs of machine mode locking case lock tube lubrication operation, and greatly improve flexibility, reliability and the convenience of lubrication operation.
To achieve the goals above, the utility model is achieved through the following technical solutions:
A kind of clamping mechanism for bottle-blowing machine intelligent lubricating mechanism, including mould bases and mode locking case, mode locking case are several around mould bases
Axis is mounted on mould bases by turntable mechanism, and jet stream lubricating system is separately set on mould bases, and the jet stream lubricating system includes holding
It carries pedestal, bolster stake, directive slide track, sliding block, grease-box, grease pump, jet stream mouth, voltage-stabiliser tube, pressure sensor, pass in place
Sensor and control circuit, bearing base upper surface is vertical with bolster stake to be connect, and side surface and mould bases outer surface are connected with each other, and
Mast axis and mould bases axis parallelly distribute on are carried, bolster stake front end face sets the guiding of at least one with carrying mast axis parallelly distribute on
Sliding rail, and several sliding blocks are set on directive slide track, and each sliding block is connected with each other between at least one voltage-stabiliser tube, voltage-stabiliser tube axis
Be in 45 ° -90 ° angles with mould bases axis, and voltage-stabiliser tube rear end face is interconnected by diversion pipe and grease pump, front end face with
Jet stream mouth is interconnected, and is coaxially distributed between voltage-stabiliser tube and jet stream mouth, and jet stream mouth axis intersects with the axial ray of lock rod of mode locking case, and
Spacing is not more than 5 centimetres between jet stream mouth and mode locking case, and sensors in place quantity is consistent with sliding block quantity, is all provided on each sliding block
One sensors in place, sensors in place axis and voltage-stabiliser tube axis parallelly distribute on, the pressure sensor is several, and respectively
In each voltage-stabiliser tube, the grease pump is interconnected by diversion pipe and grease-box, and grease-box, grease pump
And control circuit is installed in bolster stake rear end face, control circuit is electric with grease pump, pressure sensor, sensors in place respectively
Gas connection.
Further, the voltage-stabiliser tube includes bearing substrate, baffle ring, bearing spring, block and end cap, wherein described
Bearing substrate is hollow tubular structures, and both ends are connected with each other with end cap respectively, and are set on end cap and be coaxially distributed with bearing substrate
Flow-guiding mouth, the flow-guiding mouth diameter be bearing substrate diameter 1/6-1/2, the baffle ring be with bearing substrate it is coaxial
The cyclic structure of distribution is coaxially distributed in bearing substrate and with bearing substrate, and the baffle ring internal diameter is in bearing substrate
50%-the 90% of diameter, and spacing is not more than the 1/3 of bearing substrate effective length between baffle ring and bearing substrate front end face, described holds
Load spring, block are respectively positioned on the bearing substrate between baffle ring and bearing substrate rear end face Nei and are coaxially distributed with bearing substrate,
Middle bearing spring rear end face offsets with baffle ring side surface, and front end face offsets with block, the block and bearing substrate inner sidewall
Between be slidably connected and offset with the end cap at bearing substrate rear end face position, set water conservancy diversion on the corresponding bearing substrate medial surface of block
Slot, the diversion trench rear end face offset with baffle ring, and spacing is not less than 1 millimeter between front end and bearing substrate rear end face
Further, the block front end face sets elastic sealing gasket, and side table sets at least one elastic sealing ring, and described
Elastic sealing ring be mutually slidably connected with bearing substrate medial surface.
Further, it is hinged between the voltage-stabiliser tube and sliding block by ratchet mechanism.
Further, it is core that the control circuit, which is based on any one in industrial single-chip microcontroller or programmable controller,
Circuit system.
The utility model topology layout is compact, runs high degree of automation, and operation control precision is high, on the one hand can effectively meet
To the lubrication operation of bottle blowing machine mode locking case lock tube and locking bar link position, to effectively reduce when being run between locking bar and lock tube
Frictional dissipation, and smoothness when running between bottle blowing machine mode locking case lock tube and locking bar is greatly improved, it on the other hand can be effective
The structure of lubricating system is adjusted flexibly, to effectively meet to different number, different structure and different distributions position
The needs of bottle blowing machine mode locking case lock tube lubrication operation, and greatly improve flexibility, reliability and the convenience of lubrication operation.
Detailed description of the invention
It is described in detail the utility model with reference to the accompanying drawings and detailed description.
FIG. 1 is a schematic structural view of the utility model;
Fig. 2 is voltage-stabiliser tube partial structural diagram.
Specific embodiment
To be easy to understand the technical means, creative features, achievement of purpose, and effectiveness of the utility model, below
In conjunction with specific embodiment, the utility model is further described.
A kind of clamping mechanism for bottle-blowing machine intelligent lubricating mechanism as described in Fig. 1 and 2, including mould bases 1 and mode locking case 14, mode locking
Case is several to be mounted on mould bases 1 around mould bases axis by turntable mechanism, and jet stream lubricating system is separately set on mould bases 1, described
Jet stream lubricating system includes bearing base 2, bolster stake 3, directive slide track 5, sliding block 6, grease-box 7, grease pump 8, jet stream mouth
9, voltage-stabiliser tube 4, pressure sensor 10, sensors in place 11 and control circuit 12,2 upper surface of bearing base are vertical with bolster stake 3
Connection, and side surface and 1 outer surface of mould bases are connected with each other, and 3 axis of bolster stake and 1 axis parallelly distribute on of mould bases, before bolster stake 3
End face sets the directive slide track 5 of at least one Yu 3 axis parallelly distribute on of bolster stake, and several sliding blocks 6 are set on directive slide track 5, and every
A sliding block 6 is connected with each other between at least one voltage-stabiliser tube 4, and 4 axis of voltage-stabiliser tube and mould bases axis are in 45 ° -90 ° angles, and steady
4 rear end face of pressure pipe is interconnected by diversion pipe 13 and grease pump 8, and front end face and jet stream mouth 9 are interconnected, and voltage-stabiliser tube 4
Coaxially be distributed between jet stream mouth 9,9 axis of jet stream mouth intersects with the axial ray of lock rod of mode locking case 14, and jet stream mouth 9 and mode locking case 14 it
Between spacing be not more than 5 centimetres, 11 quantity of sensors in place is consistent with 6 quantity of sliding block, is all provided with one on each sliding block 6 and senses in place
Device 11,11 axis of sensors in place and 4 axis parallelly distribute on of voltage-stabiliser tube, pressure sensor 10 is several, and is embedded in each pressure stabilizing respectively
In pipe 4, grease pump 8 is interconnected by diversion pipe 13 and grease-box 7, and grease-box 7, grease pump 8 and control electricity
Road 12 is installed in 3 rear end face of bolster stake, control circuit 12 respectively with grease pump 8, pressure sensor 10, sensors in place 11
Electrical connection.
In addition, the voltage-stabiliser tube 4 includes bearing substrate 41, baffle ring 42, bearing spring 43, block 44 and end cap 45,
Described in bearing substrate 41 be hollow tubular structures, both ends are connected with each other with end cap 45 respectively, and set and hold on end cap 45
The flow-guiding mouth 46 that matrix 41 is coaxially distributed is carried, 46 diameter of flow-guiding mouth is 1/6-the 1/2 of 41 diameter of bearing substrate, described
Baffle ring 42 be the cyclic structure being coaxially distributed with bearing substrate 41, in the bearing substrate 41 and with bearing substrate 41 is coaxial divides
Cloth, 42 internal diameter of baffle ring be 41 internal diameter of bearing substrate 50% -90%, and between 41 front end face of baffle ring 42 and bearing substrate between
Away from being not more than the 1/3 of 41 effective length of bearing substrate, the bearing spring 43, block 42 are respectively positioned on baffle ring 42 and bearing substrate
In bearing substrate 41 between 41 rear end faces and with the coaxial distribution of bearing substrate 41, wherein 43 rear end face of bearing spring and baffle ring 44
Side surface offsets, and front end face offsets with block 44, be slidably connected between 41 inner sidewall of the block 44 and bearing substrate and with hold
It carries the end cap 45 at 41 rear end face position of matrix to offset, sets diversion trench 47, institute on corresponding 41 medial surface of bearing substrate of block 44
47 rear end face of diversion trench and the baffle ring 42 stated offset, and spacing is not less than 1 millimeter between 41 rear end face of front end and bearing substrate
Wherein, 44 front end face of block sets elastic sealing gasket 15, and side table sets at least one elastic sealing ring 16, and institute
The elastic sealing ring 16 stated mutually is slidably connected with 41 medial surface of bearing substrate.
At the same time, it is hinged between the voltage-stabiliser tube 4 and sliding block 6 by ratchet mechanism.
In the present embodiment, the control circuit 12 is to be based on any one in industrial single-chip microcontroller or programmable controller
The circuit system of core.
The utility model in specific implementation, first according to the quantity of mold each on mould bases distribution and the mode locking case that is connect with mold
Quantity and distributing position, then by the bearing base of the utility model, bolster stake, directive slide track, sliding block, grease-box, lubricating oil
Pump, jet stream mouth, voltage-stabiliser tube, pressure sensor, sensors in place and control circuit are assembled, and with various countries' bearing base and mould
Frame be connected with each other, then adjust the position for the jet stream mouth that the voltage-stabiliser tube on each sliding block is connect with voltage-stabiliser tube, make jet stream mouth axis and
The axial ray of lock rod of mode locking case intersects, and spacing is not more than 5 centimetres between jet stream mouth and mode locking case, finally by control circuit and blows bottle
Electromechanical road system electrical connection.
When carrying out mode locking case lubrication operation, under in operating status while making the utility model first with bottle blowing machine, then
When mold ring is at the dynamic the utility model position of mould bases choosing transhipment, mould state and lock are molded by sensors in place and divided to mode locking case
Moulding box locking bar position carries out detection positioning, then will say grease pump pressurization and the lubricating oil after voltage-stabiliser tube pressure regulation by jet stream mouth
It is directly injected on mode locking case locking bar outer surface, completes lubrication operation.
In addition, keeping the pressure of lubricating oil big by grease pump first when lubricating oil is entered in jet stream mouth by voltage-stabiliser tube
In voltage-stabiliser tube bearing spring elastic force, to be moved back by lubricating oil driving sliding block, lubricating oil is flowed into the bearing substrate of voltage-stabiliser tube,
And spraying operation is carried out around jet stream mouth is transported to after sliding block by the diversion trench of bearing substrate, when grease pump makes lubricating oil
When pressure is less than voltage-stabiliser tube bearing spring elastic force, then sliding block is under bearing spring driving to the flow-guiding mouth of voltage-stabiliser tube rear end face end cap
Block, lubricating oil prevented in jet stream mouth to flow back, it is ensured that lubricating oil oil pressure is stablized in jet stream mouth, thus on the one hand and keep lubricating
Oil pressure it is constant while, it helps achieve grease pump batch operation and the need worked by turns to each jet stream mouth
It wants, so that the energy consumption of grease pump operation can be greatly reduced.
It, can be according to need of work, by the relationship that is slidably connected between directive slide track and sliding block, flexibly in the utility model operation is done
Each jet stream mouth, the operating position of voltage-stabiliser tube and quantity are adjusted, to meet the needs of different structure lubrication operation, while can also be led to
It crosses and directly each component of bearing base, bolster stake and a bolster stake connection is moved integrally, to meet distinct device and make
With the needs of occasion, to greatly improve the versatility and using flexible of the utility model.
The utility model topology layout is compact, runs high degree of automation, and operation control precision is high, on the one hand can effectively meet
To the lubrication operation of bottle blowing machine mode locking case lock tube and locking bar link position, to effectively reduce when being run between locking bar and lock tube
Frictional dissipation, and smoothness when running between bottle blowing machine mode locking case lock tube and locking bar is greatly improved, it on the other hand can be effective
The structure of lubricating system is adjusted flexibly, to effectively meet to different number, different structure and different distributions position
The needs of bottle blowing machine mode locking case lock tube lubrication operation, and greatly improve flexibility, reliability and the convenience of lubrication operation.
It should be understood by those skilled in the art that the present utility model is not limited to the above embodiments.Above-described embodiment and
Only illustrate the principles of the present invention described in specification.On the premise of not departing from the spirit and scope of the utility model,
The utility model also has various changes and improvements.These changes and improvements both fall within the scope of the claimed invention
It is interior.The protection scope of the present invention is defined by the appended claims and their equivalents.
Claims (5)
1. a kind of clamping mechanism for bottle-blowing machine intelligent lubricating mechanism, including mould bases and mode locking case, mode locking case is several around mould bases axis
Line is mounted on mould bases by turntable mechanism, it is characterised in that: jet stream lubricating system, the jet stream are separately set on the mould bases
Lubricating system includes bearing base, bolster stake, directive slide track, sliding block, grease-box, grease pump, jet stream mouth, voltage-stabiliser tube, pressure
Force snesor, sensors in place and control circuit, the bearing base upper surface is vertical with bolster stake to be connect, and side surface with
Mould bases outer surface is connected with each other, and the carrying mast axis and mould bases axis parallelly distribute on, the bolster stake front end face are set
At least one with the directive slide track of carrying mast axis parallelly distribute on, and several sliding blocks are set on the directive slide track, and each cunning
Block is connected with each other between at least one voltage-stabiliser tube, and the voltage-stabiliser tube axis and mould bases axis are in 45 ° -90 ° angles, and steady
Pressure pipe rear end face is interconnected by diversion pipe and grease pump, and front end face and jet stream mouth are interconnected, and voltage-stabiliser tube and jet stream
It is coaxially distributed between mouth, the jet stream mouth axis intersects with the axial ray of lock rod of mode locking case, and spacing is not between jet stream mouth and mode locking case
Greater than 5 centimetres, the sensors in place quantity is consistent with sliding block quantity, and a sensors in place is all provided on each sliding block, and
The sensors in place axis and voltage-stabiliser tube axis parallelly distribute on, the pressure sensor is several, and respectively embedded in each steady
In pressure pipe, the grease pump is interconnected by diversion pipe and grease-box, and grease-box, grease pump and control electricity
Road is installed in bolster stake rear end face, and the control circuit is electrical with grease pump, pressure sensor, sensors in place respectively
Connection.
2. a kind of clamping mechanism for bottle-blowing machine intelligent lubricating mechanism according to claim 1, it is characterised in that: the pressure stabilizing
Pipe includes bearing substrate, baffle ring, bearing spring, block and end cap, wherein the bearing substrate is hollow tubular structures, two
End is connected with each other with end cap respectively, and the flow-guiding mouth being coaxially distributed with bearing substrate is set on end cap, and the flow-guiding mouth diameter is
1/6-the 1/2 of bearing substrate diameter, the baffle ring are the cyclic structure being coaxially distributed with bearing substrate, are embedded in bearing substrate
Interior and be coaxially distributed with bearing substrate, the baffle ring internal diameter is 50%-the 90% of bearing substrate internal diameter, and baffle ring and carrying base
Spacing is not more than the 1/3 of bearing substrate effective length between body front end face, and the bearing spring, block are respectively positioned on baffle ring and carrying
It is coaxially distributed in bearing substrate between matrix rear end face and with bearing substrate, wherein bearing spring rear end face and baffle ring side surface
Offset, front end face offsets with block, be slidably connected between the block and bearing substrate inner sidewall and with bearing substrate rear end face
End cap at position offsets, and sets diversion trench, the diversion trench rear end face and baffle ring on the corresponding bearing substrate medial surface of block
It offsets, spacing is not less than 1 millimeter between front end and bearing substrate rear end face.
3. a kind of clamping mechanism for bottle-blowing machine intelligent lubricating mechanism according to claim 2, it is characterised in that: the block
Front end face sets elastic sealing gasket, and side table sets at least one elastic sealing ring, and on the inside of the elastic sealing ring and bearing substrate
Face is mutually slidably connected.
4. a kind of clamping mechanism for bottle-blowing machine intelligent lubricating mechanism according to claim 1, it is characterised in that: the pressure stabilizing
It is hinged between pipe and sliding block by ratchet mechanism.
5. a kind of clamping mechanism for bottle-blowing machine intelligent lubricating mechanism according to claim 1, it is characterised in that: the control
It is the circuit system of core that circuit, which is based on any one in industrial single-chip microcontroller or programmable controller,.
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CN201822051635.0U CN209365342U (en) | 2018-12-07 | 2018-12-07 | A kind of clamping mechanism for bottle-blowing machine intelligent lubricating mechanism |
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CN201822051635.0U CN209365342U (en) | 2018-12-07 | 2018-12-07 | A kind of clamping mechanism for bottle-blowing machine intelligent lubricating mechanism |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110732975A (en) * | 2019-11-13 | 2020-01-31 | 焦作大学 | intelligent lubricating and cooling device for efficient machining of camshaft and use method |
-
2018
- 2018-12-07 CN CN201822051635.0U patent/CN209365342U/en active Active
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110732975A (en) * | 2019-11-13 | 2020-01-31 | 焦作大学 | intelligent lubricating and cooling device for efficient machining of camshaft and use method |
CN110732975B (en) * | 2019-11-13 | 2021-06-08 | 焦作大学 | Intelligent lubricating and cooling device for efficient machining of camshaft and using method |
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