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CN109849335A - A kind of 3D printer lamp control structure using mirror surface refraction principle - Google Patents

A kind of 3D printer lamp control structure using mirror surface refraction principle
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Publication number
CN109849335A
CN109849335ACN201811450495.2ACN201811450495ACN109849335ACN 109849335 ACN109849335 ACN 109849335ACN 201811450495 ACN201811450495 ACN 201811450495ACN 109849335 ACN109849335 ACN 109849335A
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CN
China
Prior art keywords
expander
guiding mechanism
mirror surface
hoistable platform
guide post
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Granted
Application number
CN201811450495.2A
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Chinese (zh)
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CN109849335B (en
Inventor
戴宝木
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Shenzhen Shengfeng Optoelectronic Technology Co ltd
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Nanan Jinfeng Industrial Design Co Ltd
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Priority to CN201811450495.2ApriorityCriticalpatent/CN109849335B/en
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Publication of CN109849335BpublicationCriticalpatent/CN109849335B/en
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Abstract

The invention discloses a kind of 3D printer lamp control structures using mirror surface refraction principle, its structure includes body, observation window, protective door, hoistable platform, guiding mechanism, printing host, hoistable platform quadrangle is connect with guiding mechanism fitting, is printed host by manner and is installed on internal body upper end.Guiding mechanism of the invention is respectively provided with automatic lamp stand, the automatic lamp stand of synchronous drive when hoistable platform rises, and change the angle of No.1 eyeglass in the expander of side by deflecting structure, it drives, is controlled according to the refraction that the position height of lifting has carried out illuminating ray, and then change brightness with No. two eyeglass cooperations in No.1 lens angle conversion process, solves the light blind area generated on hoistable platform, print quality is supervised convenient for staff, and does not need manually to control, the degree of automation is higher.

Description

A kind of 3D printer lamp control structure using mirror surface refraction principle
Technical field
The present invention relates to 3D printer fields, particularly with regard to a kind of 3D printer lamp control using mirror surface refraction principleStructure.
Background technique
Based on 3D printer can be by digital 3D file unlike inkjet printer, and object is printed, led toCross by it is some can adhesiveness material carry out accumulation superposition, to form a complete 3D object, the design of some printers isThe height of printing is controlled using the movement of bottom elevation platform, the three-dimension object of printing can move, and print head is then solidIt is fixed, such problems is deposited in existing 3D printer use process on the market:
Existing technology is in print procedure, and since the movement of hoistable platform be easy to cause original light to generate blind area, work peopleMember can not be multi-faceted observation print quality, and equipment not can enter inside during the work time and be controlled, and adjustment gets up to haveDifficulty.
Summary of the invention
In view of the deficienciess of the prior art, it is an object of the present invention to provide a kind of 3D printers using mirror surface refraction principleLamp control structure, to solve existing technology in print procedure, since the movement of hoistable platform be easy to cause original light to generate blind area,Staff can not be multi-faceted observation print quality, and equipment not can enter inside during the work time and be controlled, adjustmentGet up difficult problem.
To achieve the goals above, the present invention is to realize by the following technical solutions: a kind of former using mirror surface refractionThe 3D printer lamp control structure of reason, structure include body, observation window, protective door, hoistable platform, guiding mechanism, print host,Hoistable platform quadrangle is connect with guiding mechanism fitting, and printing host is installed on internal body upper end by manner, and body is leftSide lower end is equipped with observation window, and protective door is connected with body by hinge, there are four guiding mechanism is set, and is installed on guiding mechanismInternal quadrangle, hoistable platform are installed on body lower end.
As advanced optimizing for the technical program, guiding mechanism includes guide post, automatic lamp stand, mandril, linkage board, linkagePlate is installed on guiding mechanism lower end by fitting mode, and automatic lamp stand is equipped in the middle part of guide post, and mandril is set to linkage board right end, automaticallyIt is connected at the top of lamp stand bottom right end and mandril.
As advanced optimizing for the technical program, automatic lamp stand includes side expander, deflecting structure, master priming, top expansionDevice, shot-light are opened up, master priming is connected by fitting mode with guide post, and deflecting structure is set to inside guide post, and side expander is set to masterChassis surface, and be connected with deflecting structure, top expander is installed at the top of the expander of side by manner, and shot-light is set to masterChassis surface, top expander are set to side expander upper end.
As advanced optimizing for the technical program, side expander includes No.1 eyeglass, apical axis, sticks up bar, magnetic bead, and apical axis is setThere are two, and both ends in the middle part of master priming are installed on by manner, there are two No.1 eyeglass is set, and lower end respectively with apical axis phaseFitting sticks up bar by manner and is respectively arranged in No.1 eyeglass rear end, and magnetic bead is set to deflecting inside configuration, sticks up bar end and magneticPearl is connected.
As advanced optimizing for the technical program, deflecting structure is including in the upshift plate that hangs down, sliding rail, guide post inner cavity, limitColumn hangs down there are two upshift plate sets, and is installed on guide post inner cavity two sides rear end, and sliding rail is respectively arranged on vertical upshift plate opposite direction oneSide, and be integrated, limit center pillar is set in the middle part of guide post inner cavity, is equipped with magnetic bead between sliding rail and limit center pillar.
As advanced optimizing for the technical program, pushing up expander includes No. two eyeglasses, conversion pull rod, reinforcement block, conversionBoth ends are connected with No. two eyeglass rear ends at the top of pull rod, and reinforcement block is set in the middle part of conversion pull rod.
As advanced optimizing for the technical program, the upshift plate that hangs down uses metal material, inside attracting by magnetic bead magnetismWith limit center pillar cooperation, so that magnetic bead is carried out spacing extension control along sliding rail track, improve stability.
Be hollow design in the middle part of magnetic bead as advanced optimizing for the technical program, when moving in parallel with conversion pull rodSynchronous fitting, the swing angle so as to carry out No. two eyeglasses according to the tilt angle of conversion pull rod control.
Beneficial effect
A kind of 3D printer lamp control structure using mirror surface refraction principle of the present invention imports data in printing host, andIt is printed on hoistable platform surface, internal observation can be carried out by observation window and protective door, it is convenient to understand printing matter in timeAmount, guiding mechanism are used to cooperate the movement of hoistable platform, increase mobile stability, and linkage board connects hoistable platform, roseIt drives automatic lamp stand to synchronize by mandril in journey to move up, so that it is guaranteed that the irradiation position of main light is consistent, it is whole in automatic lamp standIn body uphill process, two No.1 eyeglasses drive magnetic bead to move in deflecting structure by sticking up bar, and then change the spacing of magnetic bead,The tilting for realizing No.1 eyeglass rear end, using apical axis as fulcrum, two No.1 eyeglasses change the refraction angle of shot-light, can incite somebody to actionThe brightness of light refraction is adjusted according to the position of lifting, and magnetic bead is moved by sliding rail along the tilt angle of vertical upshift plate,And then change spaced position, and the upshift plate that hangs down is metal material, magnetic attracting effect is played with magnetic bead, improves the steady of adjustmentIt is qualitative, in addition, top expander is located at the top of shot-light, pull rod is converted by groove fitting in the middle part of magnetic bead, in the translation of magnetic bead spacingNo. two eyeglass rear ends are pulled under being driven in the process with conversion pull rod inclination face contact, the angle for realizing No. two eyeglasses, which synchronizes, to be becomeChange, light refraction is made to have reached peak efficiency.
For the prior art, there is accessible advantage after operation of the present invention:
Guiding mechanism is respectively provided with automatic lamp stand, the automatic lamp stand of synchronous drive when hoistable platform rises, and passes through deflecting knotStructure changes the angle of No.1 eyeglass in the expander of side, drives in No.1 lens angle conversion process with No. two eyeglass cooperations, according toThe position height of lifting has carried out the refraction control of illuminating ray, and then changes brightness, solves the lamp generated on hoistable platformLight blind area supervises print quality convenient for staff, and does not need manually to control, and the degree of automation is higher.
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 a kind of structural schematic diagram of the 3D printer lamp control structure using mirror surface refraction principle of the present invention.
Fig. 2 is that a kind of guiding mechanism sectional structure of the 3D printer lamp control structure using mirror surface refraction principle of the present invention showsIt is intended to.
Fig. 3 is that a kind of automatic lamp stand plan structure of the 3D printer lamp control structure using mirror surface refraction principle of the present invention is shownIt is intended to.
Fig. 4 is that a kind of deflecting structure sectional structure of the 3D printer lamp control structure using mirror surface refraction principle of the present invention showsIt is intended to.
Fig. 5 is that a kind of top expander backsight structure of the 3D printer lamp control structure using mirror surface refraction principle of the present invention is shownIt is intended to.
Numbering in the drawing explanation: body -1, observation window -2, protective door -3, hoistable platform -4, guiding mechanism -5, printing masterMachine -6, guide post -501, automatic lamp stand -502, mandril -503, linkage board -504, side expander -5021, deflecting structure -5022, masterBar -50213, magnetic bead -, shot-light -5025, No.1 eyeglass -50211, apical axis -50212, are stuck up at top expander -5024 in chassis -502350214, hang down upshift plate -50221, sliding rail -50222, guide post inner cavity -50223, limit center pillar -50224, No. two eyeglasses -50241,Convert pull rod -50242, reinforcement block -50243.
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 toSpecific embodiment and Detailed description of the invention, the preferred embodiment that the present invention is further explained.
Be previously mentioned in the present invention up and down, inside and outside, front and back and left and right on the basis of the orientation in Fig. 1.
Embodiment
Fig. 1-Fig. 5 is please referred to, the present invention provides a kind of 3D printer lamp control structure using mirror surface refraction principle, structureIncluding body 1, observation window 2, protective door 3, hoistable platform 4, guiding mechanism 5, printing host 6,4 four jiaos of the hoistable platform with leadConnected to 5 fitting of mechanism, the printing host 6 is installed on 1 inner upper end of body by manner, on the left of the body 1 underEnd is equipped with observation window 2, and the protective door 3 is connected with body 1 by hinge, there are four the guiding mechanism 5 is set, and is installed on5 inside quadrangle of guiding mechanism, the hoistable platform 4 are installed on 1 lower end of body, import data in printing host 6, and going up and down4 surface of platform is printed, and can carry out internal observation by observation window 2 and protective door 3, convenient to understand print quality in time,Guiding mechanism 5 is used to cooperate the movement of hoistable platform 4, increases mobile stability.
The guiding mechanism 5 includes guide post 501, automatic lamp stand 502, mandril 503, linkage board 504, the linkage board 504It is installed on 5 lower end of guiding mechanism by fitting mode, is equipped with automatic lamp stand 502 in the middle part of the guide post 501, the mandril 503 is setIt is connected at the top of 504 right end of linkage board, the automatic 502 bottom right end of lamp stand and mandril 503, linkage board 504 is for connectingHoistable platform 4 drives automatic lamp stand 502 to synchronize in uphill process and moves up by mandril 503, so that it is guaranteed that the irradiation of main lightPosition consistency.
The automatic lamp stand 502 include side expander 5021, deflecting structure 5022, master priming 5023, top expander 5024,Shot-light 5025, the master priming 5023 are connected by fitting mode with guide post 501, and the deflecting structure 5022 is set to guide postInside 501, the side expander 5021 is set to 5023 surface of master priming, and is connected with deflecting structure 5022, the top extensionDevice 5025 is installed on 5021 top of side expander by manner, and the shot-light 5025 is set to 5023 surface of master priming, describedIt pushes up expander 5024 and is set to 5021 upper end of side expander.
The side expander 5021 includes No.1 eyeglass 50211, apical axis 50212, sticks up bar 50213, magnetic bead 50214, describedThere are two apical axis 50212 is set, and 5023 middle part both ends of master priming are installed on by manner, the No.1 eyeglass 50211 is setThere are two, and lower end is respectively with 50212 phase fitting of apical axis, it is described to stick up bar 50213 No.1 mirror is respectively arranged in by manner50211 rear end of piece, the magnetic bead 50214 is set to inside deflecting structure 5022, described to stick up 50213 end of bar and 50214 phase of magnetic beadConnection, during automatic lamp stand 502 rises overally, two No.1 eyeglasses 50211 drive magnetic bead 50214 by sticking up bar 50213It is moved in deflecting structure 5022, and then changes the spacing of magnetic bead 50214, realize the tilting of 50211 rear end of No.1 eyeglass, withApical axis 50212 is used as fulcrum, and two No.1 eyeglasses 50211 change the refraction angle of shot-light 5025, to play tune to brightnessSection effect.
The deflecting structure 5022 includes hang down upshift plate 50221, sliding rail 50222, guide post inner cavity 50223, limit center pillar50224, there are two the vertical upshift plate 50221 is set, and it is installed on 50223 inside two sides rear end of guide post inner cavity, the sliding rail50222 are respectively arranged on the opposite side of vertical upshift plate 50221, and are integrated, and the limit center pillar 50224 is set in guide post50223 middle part of chamber, is equipped with magnetic bead 50214 between the sliding rail 50222 and limit center pillar 50224, magnetic bead 50214 passes through sliding rail50222 move along the tilt angle of vertical upshift plate 50221, and then change spaced position, and the upshift plate 50221 that hangs down is metal materialMatter plays magnetic attracting effect with magnetic bead 50214, improves the stability of adjustment.
The top expander 5024 includes No. two eyeglasses 50241, conversion pull rod 50242, reinforcement block 50243, the conversion50242 top both ends of pull rod are connected with No. two 50241 rear ends of eyeglass, and the reinforcement block 50243 is set in conversion pull rod 50242Portion passes through groove fitting in the middle part of magnetic bead 50214 and converts pull rod 50242 in addition, top expander 5024 is located at 5025 top of shot-light,It is tilted under face contact drives with conversion pull rod 50242 to No. two 50241 rear ends of eyeglass in the translation motion of 50214 spacing of magnetic beadIt is pulled, realizes the synchronous variation of angle of No. two eyeglasses 50241, light refraction is made to have reached peak efficiency.
The vertical upshift plate 50221 uses metal material, magnetic attracting by magnetic bead 50214, inside and limit center pillar50224 cooperations enable magnetic bead 50214 to carry out spacing extension control along 50222 track of sliding rail, improve stability.
It is hollow design in the middle part of the magnetic bead 50214, the fitting synchronous with conversion pull rod 50242 when moving in parallel, thusIt can be controlled according to the swing angle that the tilt angle of conversion pull rod 50242 carries out No. two eyeglasses 50241.
The principle of the present invention: it imports data in printing host 6, and is printed on 4 surface of hoistable platform, pass through observationWindow 2 and protective door 3 can carry out internal observation, and convenient to understand print quality in time, guiding mechanism 5 is for cooperating hoistable platform 4Movement, increase mobile stability, linkage board 504 connects hoistable platform 4, drives automatically in uphill process by mandril 503Lamp stand 502, which synchronizes, to be moved up, so that it is guaranteed that the irradiation position of main light is consistent, during automatic lamp stand 502 rises overally, twoA No.1 eyeglass 50211 drives magnetic bead 50214 to move in deflecting structure 5022 by sticking up bar 50213, and then changes magnetic bead50214 spacing realizes the tilting of 50211 rear end of No.1 eyeglass, using apical axis 50212 as fulcrum, two No.1 eyeglasses50211 change the refraction angle of shot-light 5025, the brightness of light refraction can be adjusted according to the position of lifting, magnetic bead50214 are moved by sliding rail 50222 along the tilt angle of vertical upshift plate 50221, and then change spaced position, and the upshift plate that hangs down50221 be metal material, plays magnetic attracting effect with magnetic bead 50214, improves the stability of adjustment, in addition, top extensionDevice 5024 is located at 5025 top of shot-light, passes through groove fitting in the middle part of magnetic bead 50214 and converts pull rod 50242, in 50214 spacing of magnetic beadTranslation motion in tilt with conversion pull rod 50242 No. two 50241 rear ends of eyeglass pulled under face contact drives, realize No. twoThe synchronous variation of the angle of eyeglass 50241, makes light refraction reach peak efficiency.
Problems solved by the invention is existing technology in print procedure, since the movement of hoistable platform be easy to cause original lampLight generate blind area, the observation print quality that staff can not be multi-faceted, and equipment not can enter during the work time it is internal intoRow control, adjustment are got up difficult, and the present invention is combined with each other by above-mentioned component, solves the light generated on hoistable platformBlind area supervises print quality convenient for staff, and does not need manually to control, and the degree of automation is higher.
The basic principles, main features and advantages of the present invention have been shown and described above, the technology of the industryPersonnel are it should be appreciated that the present invention is not limited to the above embodiments, and the above embodiments and description only describe thisThe 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 characteristicThe present invention will also have various changes and improvements, these changes and improvements both fall within scope of the claimed invention, therefore this hairBright 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 wrappedContaining an independent technical solution, this description of the specification is merely for the sake of clarity, and those skilled in the art shouldIt considers the specification as a whole, the technical solutions in the various embodiments may also be suitably combined, forms those skilled in the artThe other embodiments being understood that.

Claims (6)

CN201811450495.2A2018-11-302018-11-30 A 3D printer light control structure using the principle of mirror refractionActiveCN109849335B (en)

Priority Applications (1)

Application NumberPriority DateFiling DateTitle
CN201811450495.2ACN109849335B (en)2018-11-302018-11-30 A 3D printer light control structure using the principle of mirror refraction

Applications Claiming Priority (1)

Application NumberPriority DateFiling DateTitle
CN201811450495.2ACN109849335B (en)2018-11-302018-11-30 A 3D printer light control structure using the principle of mirror refraction

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CN109849335Atrue CN109849335A (en)2019-06-07
CN109849335B CN109849335B (en)2021-05-18

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Citations (8)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
JPH11108625A (en)*1997-10-061999-04-23Canon Inc Surface shape measuring device
JP2004022276A (en)*2002-06-142004-01-22Fuji Electric Holdings Co Ltd Proximity switch
US20050208168A1 (en)*2004-03-182005-09-22Hickerson Kevin PApparatus for three dimensional printing using image layers
CN204585866U (en)*2015-05-112015-08-26中海清华(天津)智能科技发展有限公司The illumination apparatus of 3D printer
CN204773639U (en)*2015-07-162015-11-18渭南高新区火炬科技发展有限责任公司3D printer illumination mechanism
CN107718552A (en)*2017-10-082018-02-23芜湖智享三维打印服务有限公司A kind of illumination apparatus of 3D printer
CN108474527A (en)*2015-12-292018-08-31飞利浦照明控股有限公司Customized 3D printing lighting apparatus
CN108582768A (en)*2018-05-222018-09-28张梦如A kind of photocuring 3D printer

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
JPH11108625A (en)*1997-10-061999-04-23Canon Inc Surface shape measuring device
JP2004022276A (en)*2002-06-142004-01-22Fuji Electric Holdings Co Ltd Proximity switch
US20050208168A1 (en)*2004-03-182005-09-22Hickerson Kevin PApparatus for three dimensional printing using image layers
CN204585866U (en)*2015-05-112015-08-26中海清华(天津)智能科技发展有限公司The illumination apparatus of 3D printer
CN204773639U (en)*2015-07-162015-11-18渭南高新区火炬科技发展有限责任公司3D printer illumination mechanism
CN108474527A (en)*2015-12-292018-08-31飞利浦照明控股有限公司Customized 3D printing lighting apparatus
CN107718552A (en)*2017-10-082018-02-23芜湖智享三维打印服务有限公司A kind of illumination apparatus of 3D printer
CN108582768A (en)*2018-05-222018-09-28张梦如A kind of photocuring 3D printer

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Effective date of registration:20210414

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