CN208006283U - Temple process equipment - Google Patents

Temple process equipment Download PDF

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Publication number
CN208006283U
CN208006283U CN201721882491.2U CN201721882491U CN208006283U CN 208006283 U CN208006283 U CN 208006283U CN 201721882491 U CN201721882491 U CN 201721882491U CN 208006283 U CN208006283 U CN 208006283U
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China
Prior art keywords
temple
template
station
heating
feeding
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CN201721882491.2U
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Chinese (zh)
Inventor
何道囝
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Shenzhen Public Creation Technology Co Ltd
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Shenzhen Public Creation Technology Co Ltd
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Priority to CN201721882491.2U priority Critical patent/CN208006283U/en
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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29DPRODUCING PARTICULAR ARTICLES FROM PLASTICS OR FROM SUBSTANCES IN A PLASTIC STATE
    • B29D12/00Producing frames
    • B29D12/02Spectacle frames

Abstract

The utility model is suitable for glasses production equipment field, disclose temple process equipment, it includes fixed bracket assembly, feeding device, heating device, blot lock, blanking device for temple to be delivered to heating device from feeding device and for the temple after heated softening to be delivered to the feed device of blot lock from heating device and is removed from blot lock for the temple after lock pin will to be completed, feeding device, heating device, blot lock, feed device and blanking device are all installed on fixed bracket assembly, fixed bracket assembly is equipped with feeding station, heating station, lock pin station and feeding station, feeding station, heating station, lock pin station and feeding station are spaced apart successively along straight line.The utility model realizes the action of the continuous and automatic in temple process, reduces the human cost in temple production process, improves the production efficiency and production qualification rate of temple, and the overall structure of temple process equipment is compact.

Description

Temple process equipment
Technical field
The present invention relates to glasses production equipment field more particularly to temple process equipments.
Background technology
Generally all include the processing step for carrying out inserting copper needle (lock pin) into sizing material temple in the production process of spectacle frame Suddenly, which is specially:After first sizing material temple is heated and softened, then sizing material temple and copper needle be delivered to phase respectively Then copper needle is inserted into sizing material temple, to realize the assembling of sizing material temple and copper needle by the assembling station answered.
In traditional technology, the processing of temple is completed by manual operation, and this artificial mode of production is having Generally existing problems in body application:Unstable product quality, the consistency and poor reliability of product, labor intensity Greatly, human cost is high, low production efficiency.
In order to solve the above-mentioned technical problem, although the prior art also has the design scheme for proposing some temple process equipments, But these existing schemes one operate the heating that can only all realize temple and slotting copper core, without can realize temple it is automatic on Material, temple automatically delivering between different station and temple are completed to insert the automatic blanking after copper needle operation.In this way, producing In the process, it needs manually to be put at heating station temple and be heated and softened, needed again manually by temple after the completion of heating It is transported to lock pin station from heating station, also needs manually to put temple taking-up well after completing lock pin operation, needs to spend very much Manpower could complete to produce, the degree of automation is relatively low, and human cost is relatively high, it is difficult to meet user to height automation set Standby demand.Further, since each conveying process is by being accomplished manually in production process, so the production cycle per one-off All different, temple and copper core so as to cause different singles are to be assembled under different temperature conditions, and then cause Insertion precision otherness of the copper core in temple is larger, and the qualification rate for eventually resulting in product is relatively low.
Invention content
The purpose of the present invention is to provide a kind of temple process equipment, during aiming to solve the problem that existing temple processes There is technical issues that human cost it is high,.
In order to achieve the above objectives, scheme provided by the invention is:Temple process equipment, including fixed bracket assembly, feeding Device, heating device, blot lock, for temple to be delivered to the heating device from the feeding device and for will be through adding The temple after thermal softening from the heating device is delivered to the feed device of the blot lock and for that will complete lock pin The blanking device that the temple is removed from the blot lock afterwards, the feeding device, the heating device, lock pin dress Set, the feed device and the blanking device are all installed on the fixed bracket assembly, set on the fixed bracket assembly It is useful for exporting the feeding station of the temple, for supplying the heating device pair to the feed device for the feeding device Heating station that the temple is heated, the lock pin station for carrying out lock pin operation to the temple for the blot lock With for capturing the feeding station of the temple from the blot lock for the blanking device, it is the feeding station, described Heating station, the lock pin station and the feeding station are spaced apart successively along straight line.
Optionally, the blot lock includes temple fixing mould for gripping the temple and for by core item The lock pin mechanism being inserted into the temple, the temple fixing mould include that lower die for carrying the temple and liftable are set It is placed in above the lower die for compressing the upper mold of the temple.
Optionally, the lower die is equipped with the lower impressions for housing the temple, and the lower impressions include bottom cavity wall and two The side chamber wall of a opposite sides for being respectively arranged on the bottom cavity wall, the lower impressions divide mould position to be located at a side chamber wall On.
Optionally, the lower die includes the first template and the second template, and second template, which has, presses on described first First pressure section of the one side edge of template, first pressure section cooperatively form the lower impressions, institute with first template It states the first pressure section and mould position is divided in the joint of first template for the lower impressions;Alternatively,
The lower die includes third template, the 4th template and the 5th template, and the 4th template, which has, presses on described the Second pressure section of the one side edge of three templates, the 5th template have another lateral edges for pressing on the third template Third pressure section, second pressure section, the third pressure section and the third template cooperatively form the lower impressions jointly, Second pressure section and the joint of the third template or the joint of the third pressure section and the third template Divide mould position for the lower impressions.
Optionally, the taper for discharging the temple for the blanking device is additionally provided on the fixed bracket assembly Position has rotation angle between the feeding station and the blowing station, the rotation angle is 90 ° ± 1 °.
Optionally, the blanking device include for drive the lower die the lock pin station and the feeding station it Between carry out the first level moving assembly of straight reciprocating motion, the clamp assemblies for capturing the temple, with the clamping group Part connection for drive the first lifting assembly of the clamp assemblies elevating movement and connect with first lifting assembly with For drive first lifting assembly and the clamp assemblies above the blowing station with above the feeding station between into The rotary components of row rotary motion.
Optionally, the feeding device includes that the firm banking being installed on the fixed bracket assembly, two intervals are set It is placed in above the firm banking for the hopper at the temple both ends is clamped, is installed on the firm banking for tune The baffle for saving the first adjusting part of the spacing of two hoppers, being set between the two hopper bottom ends and the firm banking With being installed on the firm banking for driving the first level moving assembly of the baffle linear reciprocating motion.
Optionally, the hopper includes mainboard body, the two side block parts and use for being respectively arranged on the mainboard body opposite sides In the second adjusting part of the spacing for adjusting the two side block parts;And/or
The feeding device further includes two and is installed on the firm banking for adjusting the two hopper phases respectively To the third adjusting part of the height of the firm banking.
Optionally, the feed device includes bearing assembly for carrying the temple and for driving the carrying group The second of part straight reciprocating moves horizontally component, and the bearing assembly includes two loading plates, is installed on second water Sliding block on flat moving assembly drives with the folding on the sliding block opened or close up for two loading plates of control is installed on Dynamic component.
Optionally, the heating device includes being carried for carrying the heating bearing seat of the temple, being set to the heating Heating gland component above seat and the second lifting assembly for driving the heating gland component elevating movement, the heating Bearing seat and second lifting assembly are all installed on the fixed bracket assembly, and second lifting assembly is positioned at described Heat the top of bearing seat.
Temple process equipment provided by the invention realizes placement and the automatic charging of temple by feeding device, by adding Thermal realizes the automatic heating and softening to temple, is realized by blot lock and is operated to the auto-bolting of temple, passes through feeding Device realizes self-feeding of the temple between feeding device to heating device and between heating device to blot lock, leads to Automatic blanking of the blanking device realization to temple after completion lock pin operation on blot lock is crossed, to realize temple process In continuous and automatic action, in this way, on the one hand can effectively reduce human cost in temple process;It on the other hand can profit In the production efficiency for improving temple;Another further aspect since the production cycle controllable time of every one-off is consistent, therefore, be conducive to improve The qualification rate of product.In addition, the present invention by by feeding station, heating station, lock pin station and feeding station along straight line successively It is spaced apart, in this way, conducive to the integral layout of optimization temple process equipment so that the compact overall structure of temple process equipment, And integral monitoring is carried out to running equipment convenient for operator.
Description of the drawings
In order to more clearly explain the embodiment of the invention or the technical proposal in the existing technology, to embodiment or will show below There is attached drawing needed in technology description to be briefly described, it should be apparent that, the accompanying drawings in the following description is only this Some embodiments of invention for those of ordinary skill in the art without creative efforts, can be with The structure shown according to these attached drawings obtains other attached drawings.
Fig. 1 is the overall schematic one for the temple process equipment that the embodiment of the present invention one provides;
Fig. 2 is the overall schematic two for the temple process equipment that the embodiment of the present invention one provides;
Fig. 3 is the distribution schematic diagram of each station in the temple process equipment that the embodiment of the present invention one provides;
Fig. 4 is the partial schematic diagram one for the temple process equipment that the embodiment of the present invention one provides;
Fig. 5 is the partial schematic diagram two for the temple process equipment that the embodiment of the present invention one provides;
Fig. 6 is the temple blanking device of the offer of the embodiment of the present invention one in the case where clamp assemblies are located at blowing station upper states Partial schematic diagram;
Fig. 7 is the temple blanking device of the offer of the embodiment of the present invention one in the case where clamp assemblies are located at feeding station upper states Partial schematic diagram;
Fig. 8 is the stereoscopic schematic diagram that the temple that the embodiment of the present invention one provides fixes lower die;
Fig. 9 is the close-up schematic view at A in Fig. 8;
Figure 10 is the schematic top plan view that the temple that the embodiment of the present invention one provides fixes lower die;
Figure 11 is the stereoscopic schematic diagram that temple provided by Embodiment 2 of the present invention fixes lower die;
Figure 12 is the close-up schematic view at B in Figure 11;
Figure 13 is the schematic top plan view that temple provided by Embodiment 2 of the present invention fixes lower die.
Specific implementation mode
Following will be combined with the drawings in the embodiments of the present invention, and technical solution in the embodiment of the present invention carries out clear, complete Site preparation describes, it is clear that described embodiment is only a part of the embodiment of the present invention, instead of all the embodiments.Base Embodiment in the present invention, those of ordinary skill in the art obtained without creative efforts it is all its His embodiment, shall fall within the protection scope of the present invention.
It is to be appreciated that the directional instruction (such as up, down, left, right, before and after ...) of institute is only used in the embodiment of the present invention In explaining relative position relation, motion conditions etc. under a certain particular pose (as shown in the picture) between each component, if should When particular pose changes, then directionality instruction also correspondingly changes correspondingly.
It should also be noted that, when element is referred to as on " being fixed on " or " being set to " another element, it can be straight It is connected on another element or may be simultaneously present centering elements.When an element is known as " connection " another element, It can be directly connected to another element or may be simultaneously present centering elements.
In addition, the description for being related to " first ", " second " etc. in the present invention is used for description purposes only, and should not be understood as referring to Show or imply its relative importance or implicitly indicates the quantity of indicated technical characteristic." first ", " are defined as a result, Two " feature can explicitly or implicitly include at least one of the features.In addition, the technical solution between each embodiment can To be combined with each other, but must can be implemented as basis with those of ordinary skill in the art, when the combination of technical solution occurs Conflicting or cannot achieve when, will be understood that the combination of this technical solution is not present, also not the present invention claims protection model Within enclosing.
Embodiment one:
As Figure 1-10 shows, the embodiment of the present invention one provide temple process equipment, including fixed bracket assembly 100, on Expect device 200, heating device 300, blot lock 400, for temple to be delivered to heating device 300 simultaneously from feeding device 200 For the temple after heated softening to be delivered to the feed device 500 of blot lock 400 from heating device 300 and for will be complete At the blanking device 600 that the temple after lock pin is removed from blot lock 400, feeding device 200, heating device 300, blot lock 400, feed device 500 and blanking device 600 are all installed on fixed bracket assembly 100, and fixed bracket assembly 100, which is equipped with, to be used Temple is carried out in exporting the feeding station 101 of temple to feed device 500 for feeding device 200, being used for supplying/heating system 300 The heating station 102 of heating, for for blot lock 400 to temple carry out lock pin operation lock pin station 103 and for supply under Material device 600 captures the feeding station 104 of temple, feeding station 101, heating station 102, lock pin work from blot lock 400 Position 103 and feeding station 104 are spaced apart successively along straight line.
Temple process equipment provided in this embodiment operates for realizing the auto-bolting of sizing material temple.Specifically, fixed Bracket component 100 for realizing temple process equipment application site installation.Feeding device 200 comes for realizing temple Material is placed and automatic charging, and heating device 300 heats for realizing to the automatic of temple so that temple softening, blot lock 400 It is operated for realizing to the auto-bolting of temple, feed device 500 is for realizing temple from feeding device 200 to heating device Between 300 and from heating device 300 to the self-feeding blot lock 400, blanking device 600 is for realizing to lock pin The automatic blanking of temple on device 400.Temple process equipment provided in an embodiment of the present invention realizes temple feeding, temple one Secondary conveying, temple heating, temple second-pumping, temple lock pin, temple blanking continuous and automatic action, in this way, on the one hand can Effectively reduce the human cost in temple process;On the other hand can be conducive to improve the production efficiency of temple;Another further aspect by It is consistent in the production cycle controllable time of every one-off, therefore, it is conducive to improve the qualification rate of product.In addition, the present embodiment passes through Feeding station 101, heating station 102, lock pin station 103 and feeding station 104 are spaced apart successively along straight line, in this way, sharp In the integral layout of optimization temple process equipment so that the compact overall structure of temple process equipment, and it is convenient for operator couple Running equipment carries out integral monitoring.
Preferably, referring to Fig.1 shown in -3, fixed bracket assembly 100 is including workbench 110 and is set to workbench 110 The fixed frame 120 of top, feeding station 101, heating station 102, lock pin station 103 and feeding station 104 along lineal layout in On workbench 110.
Preferably, shown in referring to FIG. 1, FIG. 2 and FIG. 4, blot lock 400 includes being fixed for gripping the temple of temple Mold 410 and for by core item be inserted into temple in lock pin mechanism 420, temple fixing mould 410 includes for carrying temple Lower die 411 and liftable are set to 411 top of lower die for compressing the upper mold 412 of temple.In this implementation, core item is concretely Copper core.In specific production process, for temple after completing to heat, feed device 500 can be by the temple after heating and softening from heating Device 300 is sent in lower die 411, and then 412 times general who has surrendered's temples of upper mold compress, and core item is inserted into mirror by last lock pin mechanism 420 In leg, the lock pin operation of temple is completed in this way.
Preferably, upper mold 412 is installed on by a lifting cylinder on fixed frame 120, which can drive upper mold 412 oscilaltion campaigns.Herein, upper mold 412 realizes that the liftable above lower die 411 is arranged by cylinder, has structure tight It gathers, is easy for installation, being quick on the draw, the features such as feature of environmental protection is good;It of courses, in concrete application, upper mold 412 is also by other manner reality The liftable setting of 411 top of present lower die, for example, hydraulic cylinder or motor and screw transmission combination etc..
Preferably, with reference to shown in Fig. 8-10, lower die 411 is equipped with the lower impressions 4111 for housing temple, lower impressions 4111 Side chamber wall 4113 including bottom cavity wall 4112 and two opposite sides for being respectively arranged on bottom cavity wall 4112, point of lower impressions 4111 Mould position is located on a side chamber wall 4113.Bottom cavity wall 4112 is used to support temple, and two side chamber walls 4113 can be opposite from two Direction clamp temple.Lower impressions 4111 divide mould position to be the position that lower impressions 4111 carry out point mould.In the present embodiment, lead to It crosses and divides mould position to be set on a side chamber wall 4113 lower impressions 4111, in this way, in specific production process, lower impressions 4111 Divide mould from side, the temple thus produced, spue line is located at the edge of temple, and the spue line is very slight, no longer needs to another External application artificial treatment, and need to can only be disposed with the mode of tumbling, very simply, conveniently, people is greatly saved in processing operation The workload and cost of work, and conducive to the production efficiency of raising temple.
Preferably, with reference to shown in Fig. 8-10, lower die 411 includes the first template 401 and the second template 402, the second template 402 The first pressure section 4021 with the one side edge for pressing on the first template 401, the first pressure section 4021 are matched with the first template 401 Conjunction forms lower impressions 4111, and the joint of the first pressure section 4021 and the first template 401 is that lower impressions 4111 divide mould position. Herein, by the way that the part (i.e. the first pressure section 4021) of the second template 402 to be pressed on to the one side edge of the first template 401 Place, and lower impressions 4111 are cooperatively formed by first pressure section 4021 and the first template 401, while by the first pressure section 4021 Divide mould position with what the joint of the first template 401 was set as lower impressions 4111, in this way, when dividing mould, the first template 401 and Two templates 402 are separated from the side of lower impressions 4111, to realize the effect that mould is divided in side.
Preferably, with reference to shown in Fig. 8-10, the first template 401 includes the first main part 4011,4012 and of first boss portion Second boss portion 4013, first boss portion 4012 and second boss portion 4013 are respectively along the opposite two sides of the first main part 4011 Edge is convexly equipped in the top surface of the first main part 4011, and the first pressure section 4021 presses in second boss portion 4013, the first main part 4011 top surface constitutes bottom cavity wall 4112, and the side towards second boss portion 4013 in first boss portion 4012 constitutes a side chamber Wall 4113, second boss portion 4013 towards first boss portion 4012 side and the first pressure section 4021 towards first boss The side in portion 4012 collectively forms another side chamber wall 4113.Specifically, between first boss portion 4012 and second boss portion 4013 Every the top surface for being convexly equipped in the first main part 4011, second boss portion 4013 is supported from the supported underneath first of the second pressure section 4041 Splenium 4021, the first main part 4011, first boss portion 4012, second boss portion 4013 and the first pressure section 4021 enclose jointly Form lower impressions 4111.
Preferably, with reference to shown in Fig. 8-10, the second template 402 includes the second main part 4022 and is laterally convexly equipped in the second master 4022 side of body portion simultaneously presses on the first pressure section 4021 in the first template 401.The first mould of direction of second main part 4022 The side of plate 401 and the side of the second template of direction 402 of the first main part 4011 mutually contact, the first pressure section 4021 are laterally extended projection from the side top of the first template of direction 401 of the second main part 4022.
Preferably, with reference to shown in Fig. 8-10, lower impressions 4111 further include end cavity wall 4114, the bottom of end cavity wall 4114 Portion is connect with bottom cavity wall 131, and the both sides of end cavity wall 4114 are connect with both sides cavity wall 132 respectively.Lower impressions 4111 are in length side It is upwards one end open, the closed cavity of the other end, cavity wall 4114 place end in end is the blind end of lower impressions 4111.Its In, lower impressions 4111 be open one end be easy for copper needle can from the end be inserted into temple in, and closed one end be used for temple into Row supports limit.
Preferably, it referring to Fig.1 shown in -3, is additionally provided on fixed bracket assembly 100 for discharging mirror for blanking device 600 The blowing station 105 of leg has rotation angle between feeding station 104 and blowing station 105.Herein, by by feeding station The mode with rotation angle is set as between 104 and blowing station 105, in this way, conducive to avoiding generating between different motion mechanism Interference phenomenon, and may make the overall structure of temple process equipment compact.
Preferably, rotation angle is 90 ° ± 1 °.It is further preferable that rotation angle is 90 °, i.e. blowing station 105 and feeding Station 104 is vertical setting.
Preferably, referring to Fig.1, shown in Fig. 3, Fig. 5 and Fig. 6, blanking device 600 includes for driving lower die 411 in lock pin The first level moving assembly 610 of straight reciprocating motion is carried out between station 103 and feeding station 104, for capturing temple Clamp assemblies 620, connect with clamp assemblies 620 for drive 620 elevating movement of clamp assemblies the first lifting assembly 630 and It is connect with the first lifting assembly 630 for the first lifting assembly of driving 630 with clamp assemblies 620 above blowing station 105 The rotary components 640 being rotated between 104 top of feeding station.In specific production process, when temple is completed to insert After core operation, first level moving assembly 610 can drive lower die 411 that temple is driven to be moved to feeding station from lock pin station 103 104, rotary components 640 can drive the first lifting assembly 630 and 620 rotary motion of clamp assemblies so that clamp assemblies 620 rotate The top of temple to feeding station 104, then the first lifting assembly 630 can drive clamp assemblies 620 decline crawl lower die 411 On temple, clamp assemblies 620 complete crawl temple after, the first lifting assembly 630 drive clamp assemblies 620 drive temple on It rises and resets, rotary components 640 drive the first lifting assembly 630 to drive clamp assemblies 620, temple spinning reduction to blowing station At 105, so as to complete the automatic blanking of temple, and then the human cost in temple process is effectively reduced, and be conducive to Improve the production efficiency of temple.In addition, clamp assemblies 620 by rotation mode between feeding station 104 and blowing station 105 It is moved, in this way, conducive to avoiding generating interference phenomenon between different motion mechanism, and may make the entirety of blanking device 600 Structure is compact.
Preferably, first level moving assembly 610 is installed on workbench 110, and rotary components 640 are installed on fixed frame On 120.
Preferably, with reference to shown in Fig. 5-7, clamp assemblies 620 include installation component 621, are installed on installation component 621 Adsorption element 622 and the clamping components 623 being installed on installation component 621, installation component 621 and the first lifting assembly 630 connect It connects.In specific clamping process, first temple will be sucked out out of lower die 411 lower impressions 4111 in temple for adsorption element 622, press from both sides Component 623 is held again to clamp temple.Herein, crawl temple is carried out by the cooperation of adsorption element 622 and clamping components 623, It captures process conveniently, and conducive to ensure that the solid and reliable property of the clamping temple movement of clamp assemblies 620, effectively prevents being clamped The phenomenon that temple falls off when temple movement is clamped in component 620.
Preferably, with reference to shown in Fig. 5-7, clamping components 623 include two holding fingers 6231 and are clamped for driving two The opening and closing drive cylinder 6232 that finger 6231 opens and closes, opening and closing drive cylinder 6232 are installed on installation component 621 and are pressed from both sides with two Hold the connection of finger 6231.When opening and closing drive cylinder 6232 acts, two holding fingers 6231 can be driven to open or close, to Clamping and release conducive to two holding fingers 6231 of realization to temple.Herein, holding finger 6231 uses opening and closing drive cylinder 6232 driving opening and closing, have it is compact-sized, easy for installation, be quick on the draw, the characteristic that the feature of environmental protection is good.
Preferably, adsorption element 622 is vacuum cups, i.e., adsorption element 622 realizes the suction to temple by negative pressure of vacuum It is attached.
Preferably, adsorption element 622 is equipped with multiple, is conducive to the absorption reliability for ensureing adsorption element 622 to temple in this way.
Preferably, installation component 621 is plate-shaped member, simple in structure, easily fabricated, and is easy to 622 He of adsorption element The installation of clamping components 623.
Specifically, one end of installation component 621 is connect with the first lifting assembly 630, the other end is free end, clamping components 623 are installed on the free end of installation component 621.
Preferably, the first lifting assembly 630 is cylinder.Herein, the first lifting assembly 630 uses cylinder, has structure tight It gathers, is easy for installation, being quick on the draw, the features such as feature of environmental protection is good;It of courses, in concrete application, the first lifting assembly 630 can also be used The components of other achievable straight reciprocating motions replaces, for example, hydraulic cylinder or motor and screw transmission combination etc..
Preferably, rotary components 640 are rotary cylinder, and herein, rotary components 640 use rotary cylinder, have structure tight It gathers, is easy for installation, being quick on the draw, the features such as feature of environmental protection is good;It of courses, in concrete application, rotary components 640 can also be used other The component that rotary motion can be achieved replaces, for example, motor and rotary drive pair combination, wherein rotary drive pair concretely tooth Take turns transmission or Worm Wheel System pair etc..
Preferably, with reference to shown in Fig. 3 and Fig. 5-7, first level moving assembly 610 includes for being installed for lower die 411 Slide 611 and connect with slide 611 for driving slide 611 move back and forth horizontally move horizontally component 612.Lower die 411 It is installed on the top of slide 611, moving horizontally component 612 can drive slide 611 in lock pin station 103 and feeding station 104 Between carry out linear reciprocating motion.
Preferably, referring to Fig.1 with shown in Fig. 5-7, blanking device 600 further includes for carrying out guiding sliding to slide 611 Guide frame 650.The setting of guide frame 650, can be conducive to the stationarity and motion track that raising slide 611 moves horizontally Accuracy.
Preferably, with reference to shown in Fig. 5-7, guide rail 651 and two of the guide frame 650 including two spaced and parallel settings The guide pad 652 being slidably matched respectively with two guide rails 651, two guide pads 652 are all connect with slide 611.Two guide rails 651 intervals are installed on the workbench 110 of fixed bracket assembly 100, and the both ends of slide 611 pass through two guide pads respectively 652 are installed on guide rail 651.Herein, it by the cooperation of two guide pads 652 and two guide rails 651, can effectively realize to slide 611 support, guiding role.
Preferably, it is cylinder to move horizontally component 612, and the cylinder body for moving horizontally component 612 is installed by a connecting seat It is stretched in cylinder body and and cylinder in the piston rod one end on the workbench 110 of fixed bracket assembly 100, moving horizontally component 612 Body flexible connection, the other end stretch out outside cylinder body to be connect with slide 611.Herein, it moves horizontally component 612 and uses cylinder, there is knot Structure is compact, it is easy for installation, be quick on the draw, the features such as feature of environmental protection is good;It of courses, in concrete application, moves horizontally component 612 and also may be used Using the combination etc. of the component replacement of other achievable straight reciprocating motions, such as hydraulic cylinder or motor and screw transmission.
The operation principle of blanking device 600 that one preferred embodiment of the present embodiment provides is:Temple completes lock pin operation Afterwards, moving horizontally component 612 drives slide 611 that the temple in lower die 411 and lower die 411 is driven to be moved to from lock pin station 103 At feeding station 104;Rotary components 640 drive the first lifting assembly 630 and clamp assemblies 620 to be revolved above blowing station 105 Go to 104 top of feeding station;First lifting assembly 630 drives clamp assemblies 620 to decline;Lower die 411 divides mould, adsorption element 622 are sucked out temple from lower die 411, and clamping components 623 clamp temple;First lifting assembly 630 drives clamp assemblies 620 to drive Temple ascending motion;Rotary components 640 drive the first lifting assembly 630 and clamp assemblies 620 to drive temple from feeding station 104 Top is rotated to 105 top of blowing station;Clamp assemblies 620 discharge temple, so as to complete the automatic blanking of single temple.
Preferably, referring to Fig.1, shown in Fig. 3 and Fig. 4, feed device 500 includes the bearing assembly 510 for carrying temple With for driving the third of 510 straight reciprocating of bearing assembly to move horizontally component 520, bearing assembly 510 is held including two Support plate 511 is installed on third and moves horizontally the sliding block 512 on component 520 and be installed on sliding block 512 and two held for control The folding drive member 513 that support plate 511 opens or closes up.It is when needing that temple is defeated from feeding device 200 in specific production process When sending to heating device 300, third moves horizontally component 520 and sliding block 512 is driven to drive 513, two carryings of folding drive member Plate 511 moves, so that two loading plates 511 are moved to feeding station 101, feeding device 200 exports a temple to two On loading plate 511;Then, third moves horizontally component 520 and drives drive folding 513, two loading plates of drive member of sliding block 512 511 movements, so that two loading plates 511 are moved to heating station 102, folding drive member 513 drives two loading plates 511 to beat Open so that the temple on two loading plates 511 can be placed on heating device 300, in this way, complete by temple from Automatic conveying of the feeding station 101 to heating station 102.Temple is sent to lock pin by feed device 500 from heating station 102 The process of station 103, it is similar that temple is sent to the process of heating station 102 with feed device 500 from feeding station 101, This is no longer described in detail.
Preferably, folding drive member 513 includes two folding cylinders, and two folding cylinders respectively drive two loading plates 511 movements.
Preferably, third moves horizontally the combination that component 520 is motor and screw rod transmission pair, and transmission is steady, and is easy to Accurately control out transmission position.Herein, bearing assembly 510 from feeding station 101 is moved to heating station 102 and from heater It is to drive to realize by same driving mechanism that position 102, which is moved to lock pin station 103 all, simple in structure, compact;It of courses, has In body application, bearing assembly 510 is moved to heating station 102 from feeding station 101 and is moved to from heating station 102 slotting Core station 103 can also be driven by two different driving mechanisms and be realized.
Preferably, referring to Fig.1, shown in Fig. 3 and Fig. 4, feeding device 200 includes being installed on fixed bracket assembly 100 Firm banking 210, two is arranged at intervals at 210 top of firm banking for the hopper 220 at temple both ends is clamped, is installed on admittedly Determine the first adjusting part 230 of the spacing on pedestal 210 for two hoppers 220 of adjusting, be set to two hoppers, 220 bottom end and consolidate Determine baffle 240 between pedestal 210 and is installed on firm banking 210 for the of driving 240 linear reciprocating motion of baffle Two move horizontally component 250.Installation of the firm banking 210 for realizing feeding device 200 on fixed bracket assembly 100, Gu Determine pedestal 210 to be specifically installed on workbench 110.Two hoppers 220 are vertically spaced set on the top of firm banking 210, Two hoppers 220 and baffle 240 collectively form the feeding memory space for storing temple, and temple is upper from two hoppers 220 Side is positioned in feeding memory space, outside the lower section of two hoppers 220 output feeding memory space.In concrete application, when sending The third of material device 500 moves horizontally component 520 and two loading plates 511 is driven to be moved to two 220 lower sections of hopper, and second is horizontal Moving assembly 250 drives baffle 240 to be removed from two 220 bottom ends of hopper, and the temple in two hoppers 220 is fallen under gravity Onto two loading plates 511, then third moves horizontally two loading plates 511 of driving of component 520 from two 220 lower sections of hoppers It removes and is moved towards heating station 102, second, which moves horizontally component 250, drives baffle 240 to be moved to two 220 bottom ends of hopper Continue to fall to keep out temple.
Preferably, the first adjusting part 230 includes the first sliding rail and the first sliding shoe, and a hopper 220 is slided by first Motion block is installed on the first sliding rail.
Preferably, second to move horizontally component 250 be cylinder, compact-sized, easy for installation, be quick on the draw, the feature of environmental protection It is good;It of courses, in concrete application, second moves horizontally the component that other achievable straight reciprocating motions can also be used in component 250 Instead of, for example, hydraulic cylinder or motor and screw transmission combination etc..
Preferably, referring to Fig.1, shown in Fig. 3 and Fig. 4, hopper 220 is respectively arranged on mainboard body including mainboard body 221, two Second adjusting part 223 of the side block part 222 of 221 opposite sides and spacing for adjusting both sides block piece 222.Side block part 222 Concretely rod-like structure or platy structure.Mainboard body 221 and two side block parts 222 are enclosed a rectangle card slot, the The setting of two adjusting parts 223, be adjusted the rectangle card slot width so that hopper 220 can be used for placing it is a variety of not With the temple of width.Two hoppers 220 interval in such a way that rectangular card channel opening is opposite is arranged.
Preferably, a side block part 222 is integrally formed with mainboard body 221, another side block part 222 passes through the second adjusting group Part 223 is installed on mainboard body 221.
Preferably, the second adjusting part 223 is connect with mainboard body 221 the second sliding rail, connect with mainboard body 221 One link block is connect and the second sliding shoe being slidably matched with sliding rail and connect with side block part 222 with a side block part 222 Two link blocks, the first link block are bolted with the second link block, and the first link block is equipped with first worn for bolt and connects Hole is connect, the second link block is equipped with the second connecting hole worn for bolt, and one of the first connecting hole and the second connecting hole are waist Type hole.
Preferably, referring to Fig.1, shown in Fig. 3 and Fig. 4, feeding device 200 further includes two and is installed on firm banking 210 For adjusting the third adjusting part 260 that two hoppers 220 are relatively fixed the height of pedestal 210 respectively.Third adjusting part 260 Setting, height between two 220 bottom ends of hopper and baffle 240 is adjusted, to conducive to realizing the defeated of different height temple Go out, so that feeding device 200 can be used to implement the automatic charging of a variety of different height temples.
Preferably, third adjusting part 260 includes the screw rod transmission machine being connected between hopper 220 and firm banking 210 Structure and the rotational handle acted for controlling lead screw transmission mechanism.
Preferably, referring to Fig.1 shown in -4, heating device 300 includes for carrying the heating bearing seat 310 of temple, being set to Heat the heating gland component 320 above bearing seat 310 and second liter for driving heating 320 elevating movement of gland component It comes down to a lower group part 330, heats bearing seat 310 and the second lifting assembly 330 is all installed on fixed bracket assembly 100, and the second lifting Component 330 is located at the top of heating bearing seat 310.Heat bearing seat 310 and heating gland component 320 all with high-frequency heating apparatus (not shown) connects.In specific production process, temple can be sent on heating bearing seat 310 by feed device 500, and then the Driving heating 320 descending motion of gland component of two lifting assemblies 330 compresses temple, and high-frequency heating apparatus starts, so as to make Temple is obtained under the action of high-frequency heating fully by thermal softening.
In order to make it easy to understand, herein, the work of temple process equipment in the present embodiment is described with the process of single temple It is as principle:Feeding device 200 exports temple to feed device 500;Temple is delivered to heating dress by feed device 500 It sets on 300;Heating device 300 heats temple;Temple after heating and softening is exported to feeding and is filled by heating device 300 It sets on 500;Temple after heating and softening is delivered on blot lock 400 by feed device 500;Heating device 300 to temple into Row lock pin;Temple after completing lock pin on blot lock 400 is removed blanking by blanking device 600, in this way, completing single mirror In the process of leg.
Embodiment two:
As figs 11-13, temple process equipment provided in this embodiment is lower die with the main distinction of embodiment one 411 structure setting is different, is embodied in:In embodiment one, lower die 411 is made of two templates;And in the present embodiment, under Mould 411 is made of three templates.Specifically, in the present embodiment, lower die 411 includes third template 403, the 4th template 404 and the Five templates 405, the 4th template 404 have the second pressure section 4041 of the one side edge for pressing on third template 403, the 5th template 405 have the third pressure section 4051 for another lateral edges for pressing on third template 403, and the second pressure section 4041, third compress Portion 4051 cooperatively forms lower impressions 4111, the engagement of the second pressure section 4041 and third template 403 jointly with third template 403 Mould position is divided in place or third pressure section 4051 and the joint of third template 403 for lower impressions 4111.In the present embodiment, lead to It crosses and presses on the part (i.e. the second pressure section 4041) of the 4th template 404 at the one side edge of third template 403, it will The part (i.e. third pressure section 4051) of 5th template 405 presses on the other side edge of third template 403, and passes through Second pressure section 4041, third pressure section 4051 and third template 403 cooperatively form lower impressions 4111, while second being compressed Portion 4041 is set as lower impressions with the joint of third template 403 or third pressure section 4051 and the joint of third template 403 4111 divide mould position, in this way, when dividing mould, the 4th template 404 and third template 403 or the 5th template 405 and third mould Plate 403 is separated from the side of lower impressions 4111, to realize the effect that mould is divided in side.
Preferably, bottom cavity wall 4112 is made of third template 403;One side chamber wall 4113 is made of the second pressure section 4041 Or it is collectively formed with third template 403 by the second pressure section 4041;Another side chamber wall 4113 is by 4051 structure of third pressure section It is collectively formed with third template 403 at or by third pressure section 4051.
Preferably, third template 403 includes third main part 4031, third boss portion 4032 and the 4th boss portion 4033, Third boss portion 4032 and the 4th boss portion 4033 are convexly equipped in third master along the opposite both sides of the edge of third main part 4031 respectively The top surface in body portion 4031, the second pressure section 4041 press in third boss portion 4032, and third pressure section 4051 presses on the 4th In boss portion 4033, the top surface of third main part 4031 constitutes bottom cavity wall 4112, the 4th boss of direction of third boss portion 4032 The side of the 4th boss portion 4033 of direction of the side in portion 4033 and the second pressure section 4041, which collectively forms, constitutes a side chamber wall 4113, the 4th boss portion 4033 towards the side of third boss portion 4032 and third pressure section 4051 towards third boss portion 4032 side collectively forms another side chamber wall 4113.Specifically, third boss portion 4032 and the 4th boss portion 4033 interval It is convexly equipped in the opposite both sides in 4031 top surface of third main part, supported underneath of the third boss portion 4032 from the second pressure section 4041 Second pressure section 4041, the 4th boss portion 4033 is from the supported underneath third pressure section 4051 of third pressure section 4051, third master Body portion 4031, third boss portion 4032, the 4th boss portion 4033, the second pressure section 4041 and third pressure section 4051 enclose jointly Form lower impressions 4111.
Preferably, the 4th template 404 includes the 4th main part 4042 and is laterally convexly equipped in 4042 side of the 4th main part simultaneously Press on the second pressure section 4041 in third template 403.The side towards third template 403 of 4th main part 4042 and the The side of the 4th template 404 of direction of three main parts 4031 mutually contacts, and the second pressure section 4041 is from the 4th main part 4042 side top towards third template 403 is laterally extended projection.
Preferably, the 5th template 405 includes the 5th main part 4052 and is laterally convexly equipped in 4052 side of the 5th main part simultaneously Press on the third pressure section 4051 in third template 403.The side towards third template 403 of 5th main part 4052 and the The side of the 5th template 405 of direction of three main parts 4031 mutually contacts, and third pressure section 4051 is from the 5th main part 4052 side top towards third template 403 is laterally extended projection.
Other than above-mentioned difference, the other structures of temple process equipment provided in this embodiment all can refer to embodiment one It optimizes, this will not be detailed here.
The foregoing is merely the preferred embodiment of the present invention, are not intended to limit the scope of the invention, every at this Under the inventive concept of invention, using equivalent structure transformation made by description of the invention and accompanying drawing content, or directly/use indirectly In the scope of patent protection that other related technical areas are included in the present invention.

Claims (10)

1. temple process equipment, which is characterized in that including fixed bracket assembly, feeding device, heating device, blot lock, use In by temple from the feeding device be delivered to the heating device and for by the temple after heated softening from described Heating device is delivered to the feed device of the blot lock and is filled from the lock pin for that will complete the temple after lock pin Set the blanking device of removal, the feeding device, the heating device, the blot lock, the feed device and it is described under Material device is all installed on the fixed bracket assembly, and the fixed bracket assembly is equipped with for supplying the feeding device to institute It states feed device and exports the feeding station of the temple, the heater for being heated to the temple for the heating device Position, for for the blot lock to the temple carry out lock pin operation lock pin station and for for the blanking device from institute State the feeding station that the temple is captured on blot lock, the feeding station, the heating station, the lock pin station and institute Feeding station is stated to be spaced apart successively along straight line.
2. temple process equipment as described in claim 1, which is characterized in that the blot lock includes for gripping The temple fixing mould of temple and the lock pin mechanism for being inserted into core item in the temple are stated, the temple fixing mould includes Lower die and liftable for carrying the temple are set to above the lower die to compress the upper mold of the temple.
3. temple process equipment as claimed in claim 2, which is characterized in that the lower die is equipped with for housing the temple Lower impressions, the lower impressions include the side chamber wall of bottom cavity wall and two opposite sides for being respectively arranged on the bottom cavity wall, under described Cavity divides mould position to be located on a side chamber wall.
4. temple process equipment as claimed in claim 3, which is characterized in that the lower die includes the first template and the second mould Plate, second template have press on first template one side edge the first pressure section, first pressure section with First template cooperatively forms the lower impressions, and the joint of first pressure section and first template is the mo(u)ld bottom half Chamber divides mould position;Alternatively,
The lower die includes third template, the 4th template and the 5th template, and the 4th template, which has, presses on the third mould Second pressure section of the one side edge of plate, the 5th template have the third for another lateral edges for pressing on the third template Pressure section, second pressure section, the third pressure section and the third template cooperatively form the lower impressions jointly, described Second pressure section is institute with the joint of the third template or the third pressure section and the joint of the third template That states lower impressions divides mould position.
5. such as claim 2 to 4 any one of them temple process equipment, which is characterized in that on the fixed bracket assembly also Equipped with the blowing station for discharging the temple for the blanking device, have between the feeding station and the blowing station It is 90 ° ± 1 ° to have rotation angle, the rotation angle.
6. temple process equipment as claimed in claim 5, which is characterized in that the blanking device include for drive it is described under Mould carries out the first level moving assembly of straight reciprocating motion, for capturing between the lock pin station and the feeding station The clamp assemblies of the temple are connect with the clamp assemblies for driving the first lifting of the clamp assemblies elevating movement It component and is connect with first lifting assembly for driving first lifting assembly with the clamp assemblies in taper The rotary components being rotated between above position top and the feeding station.
7. such as Claims 1-4 any one of them temple process equipment, which is characterized in that the feeding device includes installation In on the fixed bracket assembly firm banking, two be arranged at intervals above the firm banking for the mirror is clamped The hopper at leg both ends, be installed on the firm banking for adjust two hoppers spacing the first adjusting part, set It the baffle that is placed between the two hopper bottom ends and the firm banking and is installed on the firm banking for driving institute State the first level moving assembly of baffle linear reciprocating motion.
8. temple process equipment as claimed in claim 7, which is characterized in that the hopper include mainboard body, two set respectively In the second adjusting part of the side block part of the mainboard body opposite sides and spacing for adjusting the two side block parts;And/or
The feeding device further includes two and is installed on the firm banking for adjusting two hoppers respectively with respect to institute State the third adjusting part of the height of firm banking.
9. such as Claims 1-4 any one of them temple process equipment, which is characterized in that the feed device includes being used for Carry the bearing assembly of the temple and for driving the second of the bearing assembly straight reciprocating to move horizontally component, institute Bearing assembly is stated to include two loading plates, be installed on described second and move horizontally the sliding block on component and be installed on the sliding block The folding drive member opened or closed up for two loading plate of control.
10. such as Claims 1-4 any one of them temple process equipment, which is characterized in that the heating device includes being used for Carry the heating bearing seat of the temple, set on the heating gland component heated above bearing seat and for driving described add Second lifting assembly of hot pressing cap assemblies elevating movement, the heating bearing seat and second lifting assembly are all installed on described On fixed bracket assembly, and second lifting assembly is located at the top of the heating bearing seat.
CN201721882491.2U 2017-12-28 2017-12-28 Temple process equipment Active CN208006283U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108454120A (en) * 2017-12-28 2018-08-28 深圳市众创立科技有限公司 Temple process equipment

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108454120A (en) * 2017-12-28 2018-08-28 深圳市众创立科技有限公司 Temple process equipment

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