CN109514808A - Pass through the cooling optical device ceramic mold convenient for taking-up product of layering ejection - Google Patents
Pass through the cooling optical device ceramic mold convenient for taking-up product of layering ejection Download PDFInfo
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- CN109514808A CN109514808A CN201811610601.9A CN201811610601A CN109514808A CN 109514808 A CN109514808 A CN 109514808A CN 201811610601 A CN201811610601 A CN 201811610601A CN 109514808 A CN109514808 A CN 109514808A
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- Prior art keywords
- plate
- frame
- optical device
- layering
- taking
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Classifications
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B29—WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
- B29C—SHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
- B29C45/00—Injection moulding, i.e. forcing the required volume of moulding material through a nozzle into a closed mould; Apparatus therefor
- B29C45/17—Component parts, details or accessories; Auxiliary operations
- B29C45/26—Moulds
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B29—WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
- B29C—SHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
- B29C45/00—Injection moulding, i.e. forcing the required volume of moulding material through a nozzle into a closed mould; Apparatus therefor
- B29C45/17—Component parts, details or accessories; Auxiliary operations
- B29C45/40—Removing or ejecting moulded articles
- B29C45/4005—Ejector constructions; Ejector operating mechanisms
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B29—WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
- B29C—SHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
- B29C45/00—Injection moulding, i.e. forcing the required volume of moulding material through a nozzle into a closed mould; Apparatus therefor
- B29C45/17—Component parts, details or accessories; Auxiliary operations
- B29C45/72—Heating or cooling
- B29C45/7207—Heating or cooling of the moulded articles
Abstract
The invention discloses the optical device ceramic molds of being convenient for take out product cooling by layering ejection, its structure includes: cooling tube, injecting hole, guide post, sliding seat, it is layered liftout attachment, so that internal T-bar under being limited by the activity of internal mounting base, cooperation frame and support plate are combined into the type chamber of mold, then the injection molding of resin is carried out by injecting hole, and after injection molding, after being applied by the power of the top pillar of lower section, the machinery frame of top operates, and the gas generated, which can speed up, to be flowed into curved pipe flow velocity is accelerated, simultaneously to cooperate the inside of frame to spray, resin for the intracavitary portion of type is rapidly performed by cooling work, so as to carry out the cooling work that cold air pours into work for finished product when taking out finished product, optical device is viscous glutinous when to prevent from taking out, caused by finished product damage the case where.
Description
Technical field
The present invention relates to ceramic mold fields, are convenient for taking-up product by layering ejection cooling particularly with regard to a kind of
Optical device ceramic mold.
Background technique
Optical device is generally by resin material by by injection molding machine, being infused resin in a manner of injection molding after high temperature melt
Enter inside equipment, and when carrying out point mould, it is in such a way that the mandril of lower section pushes that the inside tilting of finished product from mold is defeated
Out, but in this way:
When being taken out work, hold in the way of carrying out internal finished product ejection in a manner of pushing internal mandril
It is easier that the case where internal resin is also non-condensing, and the finished product occurred when pushing damages appearance, and the side by vertically pushing
When carrying out finished product ejection inside equipment, the internal body of rod is easy while ejection for smooth optical device formula
Scratch is ejected on surface, to influence the normal use of optical device.
Summary of the invention
In view of the deficiencies of the prior art, the present invention is to realize by the following technical solutions: passing through layering ejection cooling
Convenient for take out product optical device ceramic mold, structure include: cooling tube, injecting hole, guide post, sliding seat, layering top
Device out, the retractable seat is flexibly connected in the upside end face for being layered liftout attachment and with layering liftout attachment, described cold
But pipe is set to the front end face of sliding seat and penetrates through with sliding seat and connects, and the guide post and sliding seat are mutually perpendicular to and are embedded in work
The inside of dynamic seat, the injecting hole are set to the center of sliding seat upper surface and are integrated with sliding seat, the cooling
Pipe is the extraneous water flow pipes of the pipeline connection of water cooling.
It is advanced optimized as of the invention, the layering liftout attachment is equipped with square iron, cooperation power rack, movable supporting
Frame, the upside end face that the movable supporting is set up in cooperation power rack are flexibly connected with cooperation power rack simultaneously, the square iron position
It is flexibly connected in both left and right ends of movable support frame, the square iron is rectangular metal blocks structure.
It is advanced optimized as of the invention, the cooperation power rack is equipped with mandril, curved pipe, mounting base, T-bar, matches
Frame, support plate, twisting seat are closed, the cooperation is set up in the flexible connection of both upside end faces of support plate, and the twisting seat is located at
The downside end face of support plate is fixedly connected with support plate simultaneously, and the mandril is set to both lower ends of twisting seat and is flexibly connected, institute
The end face outside that T-bar is stated set on support plate is cooperatively connected with support plate simultaneously, and the curved pipe is set to the lower end surface of cooperation frame
The two perforation connection, the T-bar are the T word structure of plate body type, and the curved pipe is down big up small through-hole type polymorphic structure.
Advanced optimized as of the invention, it is described cooperation be provided with type chamber, baffle, pore plate, through-hole frame, arc block,
Displacement frame, the end face outside that the displacement frame is set to pore plate are fixedly connected with pore plate simultaneously, and the baffle is located at pore plate
Front end face and be integrated with pore plate, both front end faces that the type chamber is located at baffle are fixedly connected, described logical
Both left end faces that aperture frame is fixedly mounted on pore plate are fixedly connected, and the arc block is located at both rear surfaces of through-hole frame
Perforation connection.
It being advanced optimized as of the invention, the displacement frame is equipped with limited block, electromagnetic block, sliding slot, idler wheel, movable block,
The movable block is located at the flexible connection of both upper surfaces of limited block, and the sliding slot is fixedly mounted on the inner side end two of limited block
Person is integrated, and both the inside of the idler wheel insertion sliding slot is gap-matched, above and below the electromagnetic block and movable block
It is fixedly connected in parallel and with sliding slot, the idler wheel is the rolling structure that centre is cylindrical body and both ends are equipped with baffle, the work
The downside end face of motion block is equipped with magnet block.
It is advanced optimized as of the invention, the movable supporting is provided with machinery frame, ventilating hole plate, top pillar, the top pillar
The inside for being embedded in ventilating hole plate is flexibly connected with ventilating hole plate simultaneously, and the machinery frame is set to the upside end face of ventilating hole plate and and through-hole
Plate is cooperatively connected, and the lower section of the ventilating hole plate is equipped with cylindrical type big opening.
It is advanced optimized as of the invention, the machinery frame is equipped with spring stack, displacement plate, hinge plate, air cushion, rubber
Ball, telescopic rod, the telescopic rod are located at the upside end face of hinge plate and are flexibly connected with hinge plate, and the twisting ball is located at hinge
Both left sides of plywood upper surface are fixedly connected, and it is integrated knot with hinge plate that the air cushion is parallel to each other with ball simultaneously
Structure, the displacement plate are set to both lower end surfaces of hinge plate and are flexibly connected, and the spring stack is fixedly mounted on the downside of hinge plate
Face.
It is advanced optimized as of the invention, the arc block is the three-legged structure that slanting inside is equipped with arc block, institute
Stating baffle is smooth arc block.
It is advanced optimized as of the invention, the hinge plate is the movable support that side is equipped with the twisting body of rod, the bullet
Spring column is equipped with the bascule of cylindrical body in the inside of spring.
Beneficial effect
The present invention is applied to pass through the cooling optical device ceramic mold convenient for taking-up product of layering ejection, is taken out
When work, it is lower by the activity limit of internal mounting base in advance so that baffle inside internal T-bar, cooperation frame and
Support plate is combined into the type chamber of mold, and the injection molding of resin is then carried out by injecting hole, and after injection molding, passes through the top of lower section
After the power of column applies, the machinery frame of top is operated, and after being risen by internal displacement plate stress, hinge plate follows rising, is led to
It crosses hinge plate internal telescopic rod and ball are carried out to push extruding work there are also air cushion, while being generated by squeezing air cushion
The cold air of flowing, and the gas generated can speed up and flow into curved pipe flow velocity be accelerated, at the same with cooperate inside frame by
The guiding of arc block is sprayed along pore plate, and the resin for the intracavitary portion of type is rapidly performed by cooling work, so as to
The cooling work that cold air pours into work for finished product is carried out when taking-up finished product to make so that the viscous of optical device sticks when preventing from taking out
At finished product damage the case where, then when pushing, the T-bar and mandril stress of top rise the ball of lower section, and mandril
It after support plate is ejected, is influenced by telescopic rod so that the displacement of support plate stops, being then continuously after top pillar applies pressure,
Under the activity displacement of hinge plate, so that the device inside the oblique ejection of the T-bar of top, and inside is made by sliding slot at this time
Idler wheel roll, the movable block of top is taken out, the both sides of device are tiltedly fallen, so that the contact area of itself and air increases, then
With the face contact of T-bar, when the forced area of increase is come so that the device of inside is by ejection oblique by side, device can be prevented
On scratched, to complete the work of quick demoulding.
It is main by cooperating power rack and movable support frame to match in the present invention, pass through the activity of internal mounting base
So that internal T-bar, cooperation frame and support plate are combined into the type chamber of mold under limit, then passes through injecting hole and carry out resin
Injection molding, and after injection molding, after being applied by the power of the top pillar of lower section, the machinery frame of top is operated, and the gas of generation
It can speed up and flow into curved pipe flow velocity is accelerated, while to cooperate the inside of frame to spray, the resin for the intracavitary portion of type is quick
Carry out cooling work, pour into the cooling work that work is used for finished product so as to carry out cold air when taking out finished product, thus
Optical device is viscous glutinous when preventing from taking out, caused by finished product the case where damaging.
The present invention is matched by cooperation frame and displacement frame, upper by sliding slot of the internal movable block on the pore plate
It moves, then stops on limit plate, and fixed by the electromagnet of lower section, so that the installation site one being molded every time
Sample, and the structure that can separate prevents from carrying out damage caused by demoulding in a manner of pushing, while internal baffle
For the bending plate body of arc, it is capable of forming demoulding gradient, is come so that demoulding is more easy, gas is carried out by internal arc block
The guiding of stream, while being exported by the air-flow that the aperture of pore plate distributes formula, the contact by air-flow with baffle is quick to carry out
Cooling work.
The present invention is pushed power by lower section displacement plate by machinery frame, with internal hinge plate, in displacement, hinge plate with
So that mandril and T-bar push output apart from different under the limit of telescopic rod with displacement, while above, stop in mandril
After only ejecting, the ball that the movable support on internal twisting bar enables to continues to rise one section, is carried out in a manner of slanting
Internal finished product feeding work, can prevent from damaging finished product with what is pushed.
Detailed description of the invention
Upon reading the detailed description of non-limiting embodiments with reference to the following drawings, other feature of the invention,
Objects and advantages will become more apparent upon:
Fig. 1 is the three of the main body that the present invention passes through the cooling optical device ceramic mold convenient for taking-up product of layering ejection
Tie up structural schematic diagram.
Fig. 2 is that the present invention is cut by the cooling cleaning mill convenient for taking out the optical device ceramic mold of product of layering ejection
The section structural scheme of mechanism of device.
Fig. 3 is the cooperation power that the present invention passes through the cooling optical device ceramic mold convenient for taking-up product of layering ejection
The structural schematic diagram of frame.
Fig. 4 is the cooperation frame that the present invention passes through the cooling optical device ceramic mold convenient for taking-up product of layering ejection
Half section structure diagram.
Fig. 5 is the displacement frame that the present invention passes through the cooling optical device ceramic mold convenient for taking-up product of layering ejection
Structural schematic diagram.
Fig. 6 is the movable supporting that the present invention passes through the cooling optical device ceramic mold convenient for taking-up product of layering ejection
The structural schematic diagram of frame.
Fig. 7 is the machinery frame that the present invention passes through the cooling optical device ceramic mold convenient for taking-up product of layering ejection
Structural schematic diagram.
In figure: cooling tube -1, injecting hole -2, guide post -3, sliding seat -4, layering liftout attachment -5, square iron -51, cooperation are dynamic
Power frame -52, movable support frame -53, mandril -521, curved pipe -522, mounting base -523, T-bar -524, cooperation frame -525, branch
Fagging -526, twisting seat -527, type chamber -5251, baffle -5252, pore plate -5253, through-hole frame -5254, arc block -5255,
Displacement frame -5256, limited block-a, electromagnetic block-s, sliding slot-d, idler wheel-f, movable block-g, machinery frame -531, ventilating hole plate -532, top
Column -533, spring stack -5311, displacement plate -5312, hinge plate -5313, air cushion -5314, ball -5315, telescopic rod -5316.
Specific embodiment
To be easy to understand the technical means, the creative features, the aims and the efficiencies achieved by the present invention, below with reference to
Specific embodiment and Detailed description of the invention, the preferred embodiment that the present invention is further explained.
Embodiment
Referring to Fig. 1, the optical device ceramic mold convenient for taking-up product cooling the present invention provides through layering ejection,
Its structure includes: cooling tube 1, injecting hole 2, guide post 3, sliding seat 4, layering liftout attachment 5, and the sliding seat 4 is located at layering top
Out the upside end face of device 5 and with layering liftout attachment 5 is flexibly connected, the cooling tube 1 set on sliding seat 4 front end face simultaneously
And penetrate through and connect with sliding seat 4, the guide post 3 is mutually perpendicular to and is embedded in the inside of sliding seat 4, the injection molding with sliding seat 4
Hole 2 is set to the center of 4 upper surface of sliding seat and is integrated with sliding seat 4, and the cooling tube 1 is that the pipeline of water cooling connects
Extraneous water flow pipes are connect, the cooling work for passing through the finished product inside the progress of cooling water stream by the water flow pipes of connection.
Referring to Fig. 2, the optical device ceramic mold convenient for taking-up product cooling the present invention provides through layering ejection,
Its structure includes: that the layering liftout attachment 5 is equipped with square iron 51, cooperation power rack 52, movable support frame 53, the movable supporting
The upside end face that frame 53 is set to cooperation power rack 52 is flexibly connected with cooperation power rack 52 simultaneously, and the square iron 51 is located at activity branch
Both left and right ends of support 53 are flexibly connected, and the square iron 51 is rectangular metal blocks structure, pass through rectangular gold
Belong to the separation and barrier of the equipment room inside block structure progress.
Referring to Fig. 3, the optical device ceramic mold convenient for taking-up product cooling the present invention provides through layering ejection,
Its structure includes: that the cooperation power rack 52 is equipped with mandril 521, curved pipe 522, mounting base 523, T-bar 524, cooperation frame
525, support plate 526, twisting seat 527, the cooperation frame 525 is set to both upside end faces of support plate 526 and is flexibly connected, described
Twisting seat 527 is located at the downside end face of support plate 526 while being fixedly connected with support plate 526, and the mandril 521 is set to twisting seat
Both 527 lower ends are flexibly connected, and the end face outside that the T-bar 524 is set to support plate 526 cooperates with support plate 526 simultaneously
Connection, the curved pipe 522 are set to the perforation connection of both lower end surfaces of cooperation frame 525, and the T-bar 524 is the T word of plate body type
Structure can intersect with support plate 526 preventing the displacement of equipment, the curved pipe 522 above by T word structure
For down big up small through-hole type polymorphic structure, the flow velocity of pipeline internal gas flow is realized by through-hole polymorphic structure from large to small
Accelerate.
Referring to Fig. 4, the optical device ceramic mold convenient for taking-up product cooling the present invention provides through layering ejection,
Its structure includes: that the cooperation frame 525 is equipped with type chamber 5251, baffle 5252, pore plate 5253, through-hole frame 5254, arc block
5255, displacement frame 5256, the end face outside that the displacement frame 5256 is set to pore plate 5253 is fixed with pore plate 5253 simultaneously to be connected
It connects, the baffle 5252 is located at the front end face of pore plate 5253 and is integrated with pore plate 5253, the type chamber
5251 both the front end faces for being located at baffle 5252 are fixedly connected, and the through-hole frame 5254 is fixedly mounted on the left side of pore plate 5253
Both end faces are fixedly connected, and the arc block 5255 is located at the perforation connection of both rear surfaces of through-hole frame 5254, the arc
Block 5255 is the three-legged structure that slanting inside is equipped with arc block, makes internal air-flow along arc by internal arc block
Block carry out activity output, the baffle 5252 are smooth arc block, and the bent angle of an arc can be formed in demoulding, can
To prevent the generation of bubble, and can make demoulding when, is more simple.
Referring to Fig. 5, the optical device ceramic mold convenient for taking-up product cooling the present invention provides through layering ejection,
Its structure includes: that the displacement frame 5256 is equipped with limited block a, electromagnetic block s, sliding slot d, idler wheel f, movable block g, the movable block g
Both upper surfaces positioned at limited block a are flexibly connected, and it is one that the sliding slot d, which is fixedly mounted on both inner side ends of limited block a,
Both the inside of body structure, the idler wheel f insertion sliding slot d is gap-matched, and the electromagnetic block a and movable block g or more are put down
It goes and is fixedly connected with sliding slot d, the idler wheel f is the rolling structure that centre is cylindrical body and both ends are equipped with baffle, passes through gear
The rolling structure of template, which carries out limit, can prevent displacement of the equipment when being exported, and the downside end face of the movable block g is set
There is magnet block.
Referring to Fig. 6, the optical device ceramic mold convenient for taking-up product cooling the present invention provides through layering ejection,
Its structure includes: that the movable support frame 53 is equipped with machinery frame 531, ventilating hole plate 532, top pillar 533, and the insertion of top pillar 533 is logical
The inside of orifice plate 532 is flexibly connected with ventilating hole plate 532 simultaneously, the machinery frame 531 set on ventilating hole plate 532 upside end face and
It is cooperatively connected with ventilating hole plate 532, the lower section of the ventilating hole plate 532 is equipped with cylindrical type big opening.
Referring to Fig. 7, the optical device ceramic mold convenient for taking-up product cooling the present invention provides through layering ejection,
Its structure includes: that the machinery frame 531 is equipped with spring stack 5311, displacement plate 5312, hinge plate 5313, air cushion 5314, ball
5315, telescopic rod 5316, the telescopic rod 5316 are located at the upside end face of hinge plate 5313 and connect with 5313 activity of hinge plate
It connects, both left sides that the twisting ball 5315 is located at 5313 upper surface of hinge plate are fixedly connected, the air cushion 5314 and ball
5315 are parallel to each other while being integrated with hinge plate 5313, and the displacement plate 5312 is set to the lower end surface of hinge plate 5313
The two is flexibly connected, and the spring stack 5311 is fixedly mounted on the downside of hinge plate 5313, and the hinge plate 5313 is side
Movable support equipped with the twisting body of rod, with movable support when pushing inside the curved displacement of bracket realize the distance of displacement
Difference, the spring stack 5311 are equipped with the bascule of cylindrical body in the inside of spring, for fixed and limit spring position.
When being taken out work, so that internal T-type under the prior activity limit by internal mounting base 523
Baffle 5252 and support plate 526 inside bar 524, cooperation frame 525 are combined into the type chamber 5251 of mold, then pass through injecting hole 2
The injection molding of resin is carried out, and after injection molding, after applying by the power of the top pillar 533 of lower section, the machinery frame 531 of top is transported
Make, after being risen by internal 5312 stress of displacement plate, hinge plate 5313 follows rising, by hinge plate 5313 for inside
Telescopic rod 5316 and ball 5315 carry out pushing extruding work there are also air cushion 5314, while being produced by squeezing air cushion 5314
The cold air of flowing, and the gas generated can speed up and flow into curved pipe 522 flow velocity be accelerated, while to cooperate in frame 525
Portion is sprayed by the guiding of arc block 5255 along pore plate 5253, and the resin for the intracavitary portion of type is rapidly performed by cooling work
Make, so as to carry out the cooling work that cold air pours into work for finished product when taking out finished product, thus optics when preventing from taking out
Device it is viscous glutinous, caused by finished product the case where damaging, when then the ball 5315 of lower section pushes, the T-bar 524 of top and top
521 stress of bar rises, and mandril 521 will be influenced by telescopic rod 5316 so that support plate 526 after support plate 526 ejects
Displacement stops, after being then continuously the application pressure of top pillar 533, under the activity displacement of hinge plate 5313, so that the T-bar of top
Device inside 524 oblique ejections, and by sliding slot d internal idler wheel f is rolled at this time, the movable block g of top is taken
Out, tiltedly fall the both sides of device so that the contact area of itself and air increases, then with the face contact of T-bar 524, increase by
It when power area is come so that the device of inside is by ejection oblique by side, can prevent from being scratched on device, to complete quick
Demoulding work.
Problems solved by the invention carries out inside when being taken out work, through internal mandril in a manner of pushing
The case where mode of finished product ejection is easy so that internal resin is also non-condensing, the finished product damage occurred when pushing appearance, and
By way of vertically pushing carry out equipment inside finished product ejection when, the internal body of rod be easy ejection while for
Scratch is ejected on the surface of smooth optical device, so that the normal use of optical device is influenced, mainly passing through in the present invention
Cooperation power rack 52 and movable support frame 53 match, it is lower by the activity limit of internal mounting base so that internal T-bar,
Cooperation frame and support plate are combined into the type chamber of mold, and the injection molding of resin is then carried out by injecting hole, and after injection molding, pass through
After the power of the top pillar of lower section applies, the gas that the machinery frame of top is operated, and generated, which can speed up, to be flowed into curved pipe and makes
Flow velocity is accelerated, while to cooperate the inside of frame to spray, the resin for the intracavitary portion of type is rapidly performed by cooling work, so as to
Enough cooling work for carrying out cold air when taking out finished product and pouring into work for finished product, so that optical device glues when preventing from taking out
It is glutinous, caused by finished product the case where damaging, be displaced on the sliding slot on pore plate by internal movable block, then on limit plate
Stop, and fixed by the electromagnet of lower section, so that the installation site being molded every time is the same, and by that can divide
From structure prevent from carrying out damage caused by demoulding in a manner of pushing, while internal baffle is the bending plate body of arc,
It is capable of forming demoulding gradient, to carry out the guiding of air-flow by internal arc block, pass through simultaneously so that demoulding is more easy
The aperture of pore plate distributes the air-flow output of formula, and contact by air-flow with baffle is come the work that is rapidly cooled, with inside
Hinge plate pushed power by lower section displacement plate, displacement when, hinge plate follows displacement, while the limit of telescopic rod above
It is lower so that mandril and T-bar push output apart from different, after mandril stops ejection, on internal twisting bar activity branch
The ball that frame enables to continues to rise one section, and internal finished product feeding work is carried out in a manner of slanting, can be prevented to push up
Dynamic damages finished product.
The basic principles, main features and advantages of the present invention have been shown and described above, the technology of the industry
Personnel are it should be appreciated that the present invention is not limited to the above embodiments, and the above embodiments and description only describe this
The principle of invention can not only be realized in other specific forms under the premise of not departing from spirit of that invention or essential characteristic
The present invention will also have various changes and improvements, these changes and improvements both fall within scope of the claimed invention, therefore this hair
Bright claimed range is defined by appended claims and its equivalent, rather than above description limits.
In addition, it should be understood that although this specification is described in terms of embodiments, but not each embodiment is only wrapped
Containing an independent technical solution, this description of the specification is merely for the sake of clarity, and those skilled in the art should
It considers the specification as a whole, the technical solutions in the various embodiments may also be suitably combined, forms those skilled in the art
The other embodiments being understood that.
Claims (9)
1. by layering ejection it is cooling convenient for taking out the optical device ceramic mold of product, structure include: cooling tube (1),
Injecting hole (2), guide post (3), sliding seat (4), layering liftout attachment (5), the sliding seat (4) are located at layering liftout attachment (5)
Upside end face and with layering liftout attachment (5) is flexibly connected, the cooling tube (1) set on sliding seat (4) front end face simultaneously
And it penetrates through and connects with sliding seat (4), it is characterised in that:
The guide post (3) and sliding seat (4) are mutually perpendicular to and are embedded in the inside of sliding seat (4), and the injecting hole (2), which is set to, to be lived
It moves the center of seat (4) upper surface and is integrated with sliding seat (4).
2. the optical device ceramic mold convenient for taking-up product cooling by layering ejection according to claim 1,
Be characterized in that: the layering liftout attachment (5) is equipped with square iron (51), cooperation power rack (52), movable support frame (53), the work
The upside end face that dynamic support frame (53) are set to cooperation power rack (52) is flexibly connected with cooperation power rack (52) simultaneously, the square iron
(51) it is flexibly connected positioned at both left and right ends of movable support frame (53).
3. the optical device ceramic mold convenient for taking-up product cooling by layering ejection according to claim 2,
Be characterized in that: the cooperation power rack (52) be equipped with mandril (521), curved pipe (522), mounting base (523), T-bar (524),
Cooperate frame (525), support plate (526), twisting seat (527), cooperation frame (525) is set to the upside end face of support plate (526)
The two is flexibly connected, and the downside end face that the twisting seat (527) is located at support plate (526) is fixed with support plate (526) simultaneously to be connected
It connects, the mandril (521) is set to both lower ends of twisting seat (527) and is flexibly connected, and the T-bar (524) is set to support plate
(526) end face outside is cooperatively connected with support plate (526) simultaneously, and the curved pipe (522) is set to the lower end of cooperation frame (525)
The perforation connection of both faces.
4. the optical device ceramic mold convenient for taking-up product cooling by layering ejection according to claim 3,
Be characterized in that: the cooperation frame (525) be equipped with type chamber (5251), baffle (5252), pore plate (5253), through-hole frame (5254),
Arc block (5255), displacement frame (5256), the displacement frame (5256) be set to pore plate (5253) end face outside simultaneously with it is thin
Orifice plate (5253) is fixedly connected, and the baffle (5252), which is located at the front end face of pore plate (5253) and with pore plate (5253), is
Integral structure, both front end faces that the type chamber (5251) is located at baffle (5252) are fixedly connected, the through-hole frame (5254)
Both the left end faces for being fixedly mounted on pore plate (5253) are fixedly connected, and the arc block (5255) is located at through-hole frame (5254)
The perforation connection of both rear surfaces.
5. the optical device ceramic mold convenient for taking-up product cooling by layering ejection according to claim 4,
Be characterized in that: the displacement frame (5256) is equipped with limited block (a), electromagnetic block (s), sliding slot (d), idler wheel (f), movable block (g), institute
It states movable block (g) and is located at the flexible connection of both upper surfaces of limited block (a), the sliding slot (d) is fixedly mounted on limited block (a)
Both inner side ends are integrated, and both the inside of idler wheel (f) insertion sliding slot (d) is gap-matched, the electricity
Magnetic patch (a) is parallel up and down with movable block (g) and is fixedly connected with sliding slot (d).
6. the optical device ceramic mold convenient for taking-up product cooling by layering ejection according to claim 2,
Be characterized in that: the movable support frame (53) is equipped with machinery frame (531), ventilating hole plate (532), top pillar (533), the top pillar
(533) inside for being embedded in ventilating hole plate (532) is flexibly connected with ventilating hole plate (532) simultaneously, and the machinery frame (531) is set to ventilating hole plate
(532) it upside end face and is cooperatively connected with ventilating hole plate (532).
7. the optical device ceramic mold convenient for taking-up product cooling by layering ejection according to claim 6,
Be characterized in that: the machinery frame (531) is equipped with spring stack (5311), displacement plate (5312), hinge plate (5313), air cushion
(5314), ball (5315), telescopic rod (5316), the telescopic rod (5316) are located at the upside end face of hinge plate (5313) simultaneously
And be flexibly connected with hinge plate (5313), it is fixed that the twisting ball (5315) is located at both left sides of hinge plate (5313) upper surface
Connection, the air cushion (5314) is parallel to each other with ball (5315) while being integrated with hinge plate (5313), described
Displacement plate (5312) is set to both lower end surfaces of hinge plate (5313) and is flexibly connected, and the spring stack (5311) is fixedly mounted on hinge
The downside of plywood (5313).
8. the optical device ceramic mold convenient for taking-up product cooling by layering ejection according to claim 4,
Be characterized in that: the arc block (5255) is the three-legged structure that slanting inside is equipped with arc block, and the baffle (5252) is light
Sliding arc block.
9. the optical device ceramic mold convenient for taking-up product cooling by layering ejection according to claim 7,
Be characterized in that: the hinge plate (5313) is the movable support that side is equipped with the twisting body of rod, and the spring stack (5311) is in spring
Inside the bascule of cylindrical body is installed.
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CN201811610601.9A CN109514808B (en) | 2018-12-27 | 2018-12-27 | Optical device ceramic mold capable of being ejected and cooled by layering and convenient for taking out product |
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Citations (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103158232A (en) * | 2013-03-29 | 2013-06-19 | 深圳市豪恩安全科技有限公司 | Module suitable for producing inner side back-off products |
CN106003608A (en) * | 2016-05-19 | 2016-10-12 | 宁波方正汽车模具有限公司 | Mold ejection device for products with multiple ribs inside |
CN107914362A (en) * | 2017-11-15 | 2018-04-17 | 狄乃青 | A kind of plastic mould of efficiently cooled |
CN109016382A (en) * | 2018-10-10 | 2018-12-18 | 安溪坤祁德机械科技有限公司 | Pass through the spring reset mould for plastics of bracket group stress and deformation synthlipsis de- material |
-
2018
- 2018-12-27 CN CN201811610601.9A patent/CN109514808B/en active Active
Patent Citations (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103158232A (en) * | 2013-03-29 | 2013-06-19 | 深圳市豪恩安全科技有限公司 | Module suitable for producing inner side back-off products |
CN106003608A (en) * | 2016-05-19 | 2016-10-12 | 宁波方正汽车模具有限公司 | Mold ejection device for products with multiple ribs inside |
CN107914362A (en) * | 2017-11-15 | 2018-04-17 | 狄乃青 | A kind of plastic mould of efficiently cooled |
CN109016382A (en) * | 2018-10-10 | 2018-12-18 | 安溪坤祁德机械科技有限公司 | Pass through the spring reset mould for plastics of bracket group stress and deformation synthlipsis de- material |
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