CN218557846U - Speed multiplying line driving module die - Google Patents

Speed multiplying line driving module die Download PDF

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Publication number
CN218557846U
CN218557846U CN202223052995.5U CN202223052995U CN218557846U CN 218557846 U CN218557846 U CN 218557846U CN 202223052995 U CN202223052995 U CN 202223052995U CN 218557846 U CN218557846 U CN 218557846U
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fixed plate
die
plate
mould
cover half
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CN202223052995.5U
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刘艳
梁国先
邵保江
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Huizhou Hengtai Machinery Automation Co ltd
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Huizhou Hengtai Machinery Automation Co ltd
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Abstract

The utility model relates to a doubly fast line drive module mould, including last mould subassembly and lower mould subassembly, the surface of core fixed plate is equipped with the fixture block, the surface of die cavity fixed plate is equipped with the draw-in groove of pairing the installation with the fixture block, be equipped with the locking subassembly between movable mould fixed plate and the cover half fixed plate, adopt trapezoidal setting to increase the surface contact point of core fixed plate and die cavity fixed plate, it is inseparabler to make its laminating, be connected the slip that causes when reducing core fixed plate and die cavity fixed plate compound die through fixture block and draw-in groove, play the effect that reduces injection error, connect the screw hole through the lock piece and exert pressure to movable mould fixed plate and cover half fixed plate, play the effect of increase mode locking, the reduction leads to causing the influence to the mould process because of the mode locking power of movable mould fixed plate is not enough with the cover half fixed plate, the structure that adopts the rectangle to distribute makes the lock piece lock four azimuth points of movable mould fixed plate and cover half fixed plate, the reduction leads to the condition emergence that the compound die process caused the influence because of local mode locking power is not enough.

Description

Speed multiplying line driving module die
Technical Field
The utility model belongs to the technical field of speed drive technique and specifically relates to indicate a speed line drive module mould.
Background
The double-speed driving refers to a technology for optimizing the dynamic effect of the liquid crystal television by a motion estimation and frame interpolation compensation method, and the double speed is generally referred to as double speed, namely, the driving refresh frequency is increased from 50Hz to 100Hz. It is based on ME/MC technology. The term ME/MC refers to a motion prediction/motion compensation technique, and simply refers to a technique of inserting a transition frame into a preceding and following image by judging the difference between them.
The speed-multiplying line is also called a speed-multiplying chain conveying line, a speed-multiplying chain and a speed-multiplying chain assembly line, and can also be called a differential chain and a differential chain assembly line. The speed-multiplying chain conveying line is a self-flowing production conveying line widely applied to assembly line equipment.
The driving module is a unit testing term, and the driving module is a previous-level module used for simulating a tested module and is equivalent to a main program of the tested module. The existing drive module technology can be applied to the technical field of the speed-doubling chain conveying line, the drive module assists in transmitting data to a production instruction of the speed-doubling chain conveying line, a die is a tool for manufacturing a molded article, the tool is composed of various parts, and different dies are composed of different parts. The method realizes the processing of the shape of an article mainly through the change of the physical state of a formed material. The element has the name of 'industrial bus', and the embryonic form of the driving module can be formed through the die, so that the subsequent electroplating process of the driving module and the subsequent further improvement of the driving module are facilitated.
The existing Chinese patent with the reference publication number of CN215619621U discloses a die for producing and processing an upper cover of a driving module, which comprises a die plate, a die holder, a die cover, a sprue, a die carrier, a forming cavity, a reinforcing device and a connecting mechanism, wherein the reinforcing device is arranged in the die holder, after the pressing plate is connected with a clamping piece, a worker rotates a driving piece to enable a helical gear to rotate, the helical gear rotates when the helical gear rotates, the helical gear rotates to drive a screw rod to rotate, so that a threaded cylinder slides and adjusts along the surface of the screw rod, meanwhile, the threaded cylinder drives an adjusting plate to slide, the adjusting plate is provided with a pressing plate to slide and adjust, the pressing plate slides along the surface of a limiting rod, and when the pressing plate slides, the pressing plate drives the die cover to be tightly attached to the surface of the die holder, so that the beneficial effects of reinforcing the die cover and the die holder and avoiding a gap between the die cover and the die holder are achieved.
Although this patent possesses fashioned effect, it adopts rotates through the helical gear and drives the screw rod and rotate, make a screw thread section of thick bamboo slide along the screw rod surface and adjust, the screw thread section of thick bamboo drives the regulating plate simultaneously and slides, the regulating plate drives the clamp plate and slides and adjust, make the clamp plate slide along the gag lever post surface, when the clamp plate slides, the clamp plate drives the inseparable laminating in the die holder surface of die cover, the effect of consolidating to die cover and die holder has been reached, but following circumstances probably appear in this structure, when the gear of helical gear is impaired or when splitting, can directly influence the transmission performance of gear, thereby cause and can't make the inseparable laminating in the die holder surface of die cover, so when using, still need to carry out processing improvement again to its structure, the process has been increased and work efficiency has been reduced, for this reason, the inventor has provided a double speed line drive module mould, in order to solve above-mentioned technical problem.
SUMMERY OF THE UTILITY MODEL
Utility model is not enough to overcome the above condition, aims at providing a technical scheme that can solve above-mentioned problem.
The utility model provides a doubly fast line drive module mould, including last mould assembly and lower mould assembly, it includes roof and movable mould fixed plate to go up the mould assembly, lower mould assembly includes bottom plate and cover half fixed plate, the internally mounted of movable mould fixed plate has the die cavity fixed plate, the internally mounted of cover half fixed plate has the core fixed plate, the inside of die cavity fixed plate is equipped with the die cavity, the core of pairing the use with the die cavity is seted up to the inside of core fixed plate, the surface of core fixed plate is equipped with the fixture block, the surface of die cavity fixed plate is equipped with the draw-in groove of pairing the installation with the fixture block, be equipped with the locking subassembly between movable mould fixed plate and the cover half fixed plate, core fixed plate and die cavity fixed plate are trapezoidal, adopt trapezoidal setting to increase the surface contact point of core fixed plate and die cavity fixed plate, be convenient for carry out die sinking and compound die, be connected the slip that causes when reducing core fixed plate and die cavity fixed plate compound die through fixture block and draw-in the draw-in groove, play the effect that reduces injection error, reduce gliding probability.
Further, the locking subassembly includes locking piece and screw hole, locking piece rectangular distribution is between movable mould fixed plate and cover half fixed plate, two adjacent locking pieces set up for the equidistance, connect the screw hole through the locking piece and exert pressure to movable mould fixed plate and cover half fixed plate, play the effect of increasing the clamping force, the reduction leads to causing the influence to the moulding process because of the clamping force of movable mould fixed plate and cover half fixed plate is not enough, thereby influence the shaping of goods, the structure that adopts the rectangular distribution makes the locking piece carry out the lock payment to four square points of movable mould fixed plate and cover half fixed plate, the reduction leads to causing the condition of influence to the moulding process to take place because of local clamping force is not enough.
Furthermore, the one end of roof and the surperficial laminating of movable mould fixed plate, the surface mounting of roof has the mouth of moulding plastics that is used for connecting outside injection molding machine nozzle, and the mouth of moulding plastics runs through roof, movable mould fixed plate, die cavity fixed plate and die cavity in proper order, and extends to the surface of core, adopts outside injection molding machine injection to make the drive module shaping, and the metal layer can be electroplated on drive module's surface, is convenient for strengthen drive module's electric conductive property.
Further, be equipped with the cushion between bottom plate and the cover half fixed plate, the cushion structure is installed in the both ends of bottom plate symmetrically, be equipped with the spring fixed plate between two adjacent cushions, the surface mounting of spring fixed plate has a plurality of release links, the lateral surface of release link is connected with buffer spring, the cushion is used for reducing the harm that causes the bottom plate when cover half fixed plate produces pressure, buffer spring plays the effect of slow-down pressure, when demoulding force is less than buffer spring's elasticity, promote the one end of cover half fixed plate through buffer spring, thereby make the cover half fixed plate reset, accomplish the process that resets, the release link plays simultaneously and carries out spacing effect to buffer spring.
Further, the surface of the spring fixing plate is connected with a plurality of ejector rods, the buffer block is arranged inside the spring fixing plate, one end of the buffer block extends out of the surface of the spring fixing plate, the buffer block is composed of rubber, the ejector rods are used for ejecting out the driving module for forming the inside of the core, when the core fixing plate moves downwards, the buffer effect is achieved through the buffer block, the driving module for forming the inside of the core is ejected out of the core through the ejector rods, and the demolding process is completed.
Further, a plurality of connecting hole that is used for connecting the outside screw is seted up on the surface of roof, connect outside screw through the connecting hole and make roof and movable mould fixed plate carry out the butt, a plurality of mounting hole has been seted up on the surface of movable mould fixed plate, the internal connection of mounting hole has the guide pin bushing, the internal connection of guide pin bushing has the guide pillar, the one end and the cover half fixed plate butt of guide pillar, guide pin bushing and guide pillar are coaxial setting, make mould assembly and lower mould assembly accomplish the process of die sinking and compound die through guide pin bushing and guide pillar cooperation, reduce the influence that positioning error caused.
Further, the water inlet has been seted up to the inside of movable mould fixed plate, the delivery port of using with the water inlet pairing is seted up to the inside of cover half fixed plate, when the water inlet is connected external pipe and is carried out the water injection, flow in the inside of movable mould fixed plate through liquid, play and carry out refrigerated only to the inside of movable mould fixed plate, play the effect of cooling down to the die cavity fixed plate simultaneously, then the inside that liquid flowed in the cover half fixed plate plays the effect of cooling down to cover half fixed plate and core fixed plate, discharge the inside of cover half fixed plate with liquid through the delivery port, accomplish radiating process.
Compared with the prior art, the beneficial effects of the utility model are that: the trapezoidal arrangement is adopted, so that the surface contact points of the core fixing plate and the cavity fixing plate are increased, the core fixing plate and the cavity fixing plate are attached more tightly, the die opening and die assembly are facilitated, the sliding caused when the core fixing plate and the cavity fixing plate are assembled is reduced by connecting the clamping block and the clamping groove, the injection error is reduced, the sliding probability is reduced, and the locking blocks are distributed between the movable die fixing plate and the fixed die fixing plate in a rectangular manner;
the movable mould fixing plate and the fixed mould fixing plate are pressed through the locking block connecting screw hole, the effect of increasing the mould locking force is achieved, the influence on the mould locking process caused by insufficient mould locking force of the movable mould fixing plate and the fixed mould fixing plate is reduced, the forming of a product is influenced, the locking block is locked on four square points of the movable mould fixing plate and the fixed mould fixing plate through a rectangular distribution structure, and the influence on the mould locking process caused by insufficient local mould locking force is reduced.
Drawings
Fig. 1 is a perspective view of a double speed line drive module mold;
FIG. 2 is an axial view of a double speed wire drive module die;
FIG. 3 is an exploded view of a multiple speed line drive module die;
fig. 4 is a schematic view of the internal structure of a double-speed line driving module mold;
FIG. 5 is an exploded view of a portion of a double speed wire drive module die;
FIG. 6 is an exploded view of a portion of a double speed wire drive module mold from another angle;
in the figure: 1-top plate, 2-movable die fixing plate, 3-bottom plate, 4-fixed die fixing plate, 5-cavity fixing plate, 6-cavity, 7-core, 8-core fixing plate, 9-fixture block, 10-clamping groove, 11-locking block, 12-screw hole, 13-injection molding port, 14-cushion block, 15-spring fixing plate, 16-reset rod, 17-buffer spring, 18-ejector rod, 19-buffer block, 20-connecting hole, 21-mounting hole, 22-guide sleeve, 23-guide column, 24-water inlet and 25-water outlet.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings and specific embodiments.
In this embodiment, please refer to fig. 1 to 6, a multiple speed linear driving module mold specifically implemented includes an upper mold assembly and a lower mold assembly, the upper mold assembly includes a top plate 1 and a movable mold fixing plate 2, the lower mold assembly includes a bottom plate 3 and a fixed mold fixing plate 4, a cavity fixing plate 5 is installed inside the movable mold fixing plate 2, a core fixing plate 8 is installed inside the fixed mold fixing plate 4, a cavity 6 is installed inside the cavity fixing plate 5, a core 7 used in cooperation with the cavity 6 is installed inside the core fixing plate 8, a fixture block 9 is installed on the surface of the core fixing plate 8, a clamp groove 10 installed in cooperation with the fixture block 9 is installed on the surface of the cavity fixing plate 5, a locking assembly is installed between the movable mold fixing plate 2 and the cavity fixing plate 4, the core fixing plate 8 and the cavity fixing plate 5 are both trapezoidal, a surface contact point between the core fixing plate 8 and the cavity fixing plate 5 is increased by adopting trapezoidal setting, so as to facilitate mold opening and closing, the mold is reduced by connecting the fixture block 9 and the clamp groove 10, a sliding caused when the core fixing plate 8 and the cavity fixing plate 5 is reduced, thereby reducing an injection error and reducing a probability of sliding.
The locking subassembly includes locking piece 11 and screw hole 12, 11 rectangular distributions of locking piece are between movable mould fixed plate 2 and cover half fixed plate 4, two adjacent locking pieces 11 set up for the equidistance, connect screw hole 12 through locking piece 11 and exert pressure to movable mould fixed plate 2 and cover half fixed plate 4, play the effect of increasing the clamping force, the reduction leads to causing the influence to the moulding process because of the mode locking power of movable mould fixed plate 2 and cover half fixed plate 4 is not enough, thereby influence the shaping of goods, the structure that adopts the rectangular distribution makes locking piece 11 pay the lock to four square points of movable mould fixed plate 2 and cover half fixed plate 4, the reduction leads to causing the condition of influence to the moulding process because of local mode locking power is not enough takes place.
One end of the top plate 1 is attached to the surface of the movable mold fixing plate 2, the surface of the top plate 1 is provided with an injection molding port 13 used for being connected with a nozzle of an external injection molding machine, the injection molding port 13 sequentially penetrates through the top plate 1, the movable mold fixing plate 2, the cavity fixing plate 5 and the cavity 6 and extends to the surface of the mold core 7, the driving module is molded by injection of the external injection molding machine, and a metal plating layer can be formed on the surface of the driving module, so that the conductivity of the driving module can be enhanced.
Be equipped with cushion 14 between bottom plate 3 and the cover half fixed plate 4, cushion 14 structure is installed in the both ends of bottom plate 3 symmetrically, be equipped with spring fixed plate 15 between two adjacent cushion 14, spring fixed plate 15's surface mounting has a plurality of release links 16, the lateral surface of release link 16 is connected with buffer spring 17, cushion 14 is used for reducing the harm that causes to bottom plate 3 when cover half fixed plate 4 produces pressure, buffer spring 17 plays the effect of slow-down pressure, when demoulding power is less than buffer spring 17's elasticity, promote the one end of cover half fixed plate 4 through buffer spring 17, thereby make cover half fixed plate 4 reset, accomplish the process that resets, release link 16 plays simultaneously and carries out spacing effect to buffer spring 17.
The surface of the spring fixing plate 15 is connected with a plurality of ejector rods 18, a buffer block 19 is installed inside the spring fixing plate 15, one end of the buffer block 19 extends out of the surface of the spring fixing plate 15, the buffer block 19 is made of rubber, the ejector rods 18 are used for ejecting a driving module formed inside the core 7, when the core fixing plate 8 moves downwards, the buffer effect is achieved through the buffer block 19, the driving module formed inside the core 7 is ejected to the outside of the core 7 through the ejector rods 18, and the demolding process is completed.
The utility model discloses a mould opening and compound die, including roof 1, connecting hole 20, a plurality of mounting hole 21 has been seted up on the surface of roof 1, the internal connection of mounting hole 21 has guide pin bushing 22, the internal connection of guide pin bushing 22 has guide pillar 23, the one end and the 4 butt of cover half fixed plate of guide pillar 23, guide pin bushing 22 is coaxial setting with guide pillar 23, the process of die sinking and compound die is accomplished to mould assembly and lower mould assembly through guide pin bushing 22 and guide pillar 23 cooperation messenger through the guide pin bushing 22, reduce the influence that positioning error caused.
Water inlet 24 has been seted up to the inside of movable mould fixed plate 2, the delivery port 25 of using is paird with water inlet 24 has been seted up to the inside of cover half fixed plate 4, when water inlet 24 is connected the outside pipeline and is carried out the water injection, flow at movable mould fixed plate 2's inside through liquid, play and carry out refrigerated only to the inside of movable mould fixed plate 2, play the effect of cooling down to die cavity fixed plate 5 simultaneously, then the inside of liquid inflow cover half fixed plate 4 plays the effect of cooling down to cover half fixed plate 4 and core fixed plate 8, discharge liquid the inside of cover half fixed plate 4 through delivery port 25, accomplish radiating process.
The utility model discloses a design point lies in, adopt trapezoidal setting to have increased the surface contact point of core fixed plate 8 with die cavity fixed plate 5, be convenient for carry out die sinking and compound die, slide that causes when being connected reduction core fixed plate 8 and die cavity fixed plate 5 compound die through fixture block 9 and draw-in groove 10, play the effect that reduces the injection error, reduce gliding probability, 11 rectangular distribution of locking piece is between movable mould fixed plate 2 and cover half fixed plate 4, exert pressure to movable mould fixed plate 2 and cover half fixed plate 4 through 11 connecting screw holes 12 of locking piece, play the effect of increase clamping force, the reduction leads to causing the influence to the mould process because of the mode locking force of movable mould fixed plate 2 and cover half fixed plate 4 is not enough, thereby influence the shaping of goods, the structure that adopts rectangular distribution makes locking piece 11 pay lock to four square points of movable mould fixed plate 2 and cover half fixed plate 4, the reduction leads to taking place the circumstances that causes the influence to the mould process because of local mode locking force is not enough.
The utility model discloses an action process does: connect outside screw through connecting hole 20 and make roof 1 and movable mould fixed plate 2 carry out the butt, the internal connection of mounting hole 21 has guide pin bushing 22, guide pin bushing 22 is coaxial setting with guide pillar 23, make mould assembly and lower mould assembly accomplish the process of die sinking and compound die through guide pin bushing 22 and guide pillar 23 cooperation, reduce the influence that positioning error caused, during the mould compound die, roof 1, movable mould fixed plate 2 moves towards bottom plate 3's direction with cavity fixed plate 5, accomplish the process of compound die, roof 1 during the mould die sinking, movable mould fixed plate 2 breaks away from the surface of core fixed plate 8 with cavity fixed plate 5, accomplish the process of die sinking.
When the core fixing plate 8 is influenced by the demolding force and moves downwards, the buffering effect is achieved through the buffering block 19, the ejector rod 18 is used for enabling the driving module formed in the core 7 to be ejected out of the core 7, the demolding process is completed, and when the demolding force is smaller than the elasticity of the buffering spring 17, one end of the fixed die fixing plate 4 is pushed through the buffering spring 17, so that the fixed die fixing plate 4 is reset, and the resetting process is completed.
The foregoing is a further detailed description of the invention in connection with specific preferred embodiments and it is not intended to limit the invention to the specific embodiments disclosed herein. To the utility model belongs to the technical field of the ordinary technical personnel, do not deviate from the utility model discloses under the prerequisite of design, can also make a plurality of simple deductions or replacement, all should regard as the utility model discloses a protection scope.

Claims (7)

1. The utility model provides a doubly fast line drive module mould, includes mould assembly and lower mould assembly, its characterized in that: go up the die assembly and include roof and movable mould fixed plate, the lower die assembly includes bottom plate and cover half fixed plate, the internally mounted of movable mould fixed plate has the die cavity fixed plate, the internally mounted of cover half fixed plate has the core fixed plate, the inside of die cavity fixed plate is equipped with the die cavity, the core that pairs the use with the die cavity is seted up to the inside of core fixed plate, the surface of core fixed plate is equipped with the fixture block, the surface of die cavity fixed plate is equipped with pairs the draw-in groove of installation with the fixture block, be equipped with the locking subassembly between movable mould fixed plate and the cover half fixed plate.
2. The die for the double-speed wire driving module according to claim 1, wherein: the locking assembly comprises locking blocks and screw holes, the locking blocks are distributed between the movable die fixing plate and the fixed die fixing plate in a rectangular mode, and the two adjacent locking blocks are arranged at equal intervals.
3. The die for the double-speed wire driving module according to claim 2, wherein: one end of the top plate is attached to the surface of the movable mold fixing plate, the surface of the top plate is provided with an injection molding opening used for being connected with a nozzle of an external injection molding machine, and the injection molding opening sequentially penetrates through the top plate, the movable mold fixing plate, the cavity fixing plate and the cavity and extends to the surface of the mold core.
4. A multiple speed wire drive module die according to any one of claims 1-3, wherein: be equipped with the cushion between bottom plate and the cover half fixed plate, install in the both ends of bottom plate cushion structure symmetry, be equipped with the spring fixed plate between two adjacent cushions, the surface mounting of spring fixed plate has a plurality of release links, and the lateral surface of release link is connected with buffer spring.
5. The die for a multiple speed wire drive module of claim 4, wherein: the surface of the spring fixing plate is connected with a plurality of ejector rods, a buffer block is arranged inside the spring fixing plate, and one end of the buffer block extends out of the surface of the spring fixing plate.
6. A multiple speed wire drive module die according to any one of claims 1-3, wherein: the surface of roof is seted up a plurality of and is used for connecting the connecting hole of outside screw, and a plurality of mounting hole has been seted up on the surface of movable mould fixed plate, and the internal connection of mounting hole has the guide pin bushing, and the internal connection of guide pin bushing has the guide pillar, the one end and the cover half fixed plate butt of guide pillar.
7. A double speed line driving module mold according to any one of claims 1 to 3, wherein: a water inlet is formed in the movable die fixing plate, and a water outlet matched with the water inlet in use is formed in the fixed die fixing plate.
CN202223052995.5U 2022-11-17 2022-11-17 Speed multiplying line driving module die Active CN218557846U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223052995.5U CN218557846U (en) 2022-11-17 2022-11-17 Speed multiplying line driving module die

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223052995.5U CN218557846U (en) 2022-11-17 2022-11-17 Speed multiplying line driving module die

Publications (1)

Publication Number Publication Date
CN218557846U true CN218557846U (en) 2023-03-03

Family

ID=85325017

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202223052995.5U Active CN218557846U (en) 2022-11-17 2022-11-17 Speed multiplying line driving module die

Country Status (1)

Country Link
CN (1) CN218557846U (en)

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