CN204553456U - The electrodeless metal grid mesh of a kind of ultraprecise pastes net arrangement automatically - Google Patents

The electrodeless metal grid mesh of a kind of ultraprecise pastes net arrangement automatically Download PDF

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Publication number
CN204553456U
CN204553456U CN201520158105.XU CN201520158105U CN204553456U CN 204553456 U CN204553456 U CN 204553456U CN 201520158105 U CN201520158105 U CN 201520158105U CN 204553456 U CN204553456 U CN 204553456U
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CN
China
Prior art keywords
metal ring
pastes
grid mesh
net
rotor
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Expired - Fee Related
Application number
CN201520158105.XU
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Chinese (zh)
Inventor
王晗
刘湛基
陈新
陈新度
刘强
欧维均
刘国锋
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Guangdong University of Technology
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Guangdong University of Technology
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Priority to CN201520158105.XU priority Critical patent/CN204553456U/en
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Publication of CN204553456U publication Critical patent/CN204553456U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model relates to the electrodeless metal grid mesh of a kind of ultraprecise and automatically pastes net arrangement, comprising: the subsides net metal ring being arranged in three-dimensional system of coordinate; Lift device, described lift device drives and pastes net metal ring along z-axis automatic lifting; Rot, described rot drives and pastes net metal ring around z-axis automatic rotation; Expansion bend, described expansion bend drives and pastes net metal ring along x-axis automatic telescopic; Rotor, described rotor drives and pastes net metal ring around x-axis automatic rotation.The utility model is carried out the automatic adjustment of attitude to subsides net metal ring by lift device, rot, expansion bend and rotor, make to paste net metal ring, at three-dimensional system of coordinate, there is multiple adjustable degrees of freedom, thus metal grid mesh can be pressed close to flexibly, accurately, avoid appointing work to operate the error brought, improve quality of product and manufacturing efficiency.The utility model can be applicable to precision manufactureing equipment technical field.

Description

The electrodeless metal grid mesh of a kind of ultraprecise pastes net arrangement automatically
Technical field
The utility model relates to precision manufactureing equipment technical field, and particularly the electrodeless metal grid mesh of a kind of ultraprecise pastes net arrangement automatically.
Background technique
Metal grid mesh divides substrate and class of the linerless end two, is widely used in signal disturbing, the technical field such as input and THz wave.But along with developing rapidly of nanotechnolgy, the testing precision for various types of signal requires day by day to improve.Different input instruments has its respective feature with not enough, and for the use field of injustice and specific technical requirements, is necessary to develop corresponding input instrument.Hyperfinely as the oscillographic constituent elements of a kind of input, the technical fields such as manufacturing industry, medical science, military affairs can be widely used in without substrate metal aperture plate.Hyperfine electrodeless metal grid mesh grid line arrangement needs to ensure its well-balanced property, the shape of the interval error of metal grid lines and metal grid lines itself, is the deciding factor of oscillograph testing precision.The process for machining and manufacturing of hyperfine electrodeless metal grid mesh develops abroad and comparatively goes out maturation, but due to its manufacture difficulty higher, slower development at home, manufacture level is lower, and current product depends on import.
The shaping external frame of hyperfine electrodeless metal grid mesh mostly is metal cirque, and therefore the round method for square of general utilizationization manufactures this series products.Namely arrange in the plane of rectangle or be wound around out the well-balanced metal grid mesh of one deck.Rectangle plane is embedded with circular metal aperture plate ring, by tackiness agent by metal grid mesh good bond on metal grid mesh ring.In order to make metal grid mesh and circular metal aperture plate loop contacts good, and be unlikely to the formed precision affecting metal grid mesh, so be necessary to control well metal grid mesh ring to exceed the height of rectangle plane.But because diameter wiry is very little, when circular metal aperture plate ring exceeds rectangle plane, form a small boss, metal grid mesh produces at the curved edge of metal grid mesh ring and slides when shaping, have impact on formed precision.
Current utilizationization circle is that the manufacturing technology of square is as follows: on rectangle plane, coiling goes out the metal grid mesh of well-balanced arrangement, Non-follow control circular metal ring from the below of metal grid mesh close to metal grid mesh, until arrive and the firm accessible position of metal grid mesh, this position must make bonding effect preferably be unlikely to because circular metal ring contacts with the undue of metal grid mesh, stirs the metal grid mesh of well-balanced arrangement afterwards.But, activity space below metal grid mesh is limited, Non-follow control circular metal ring presses close to metal grid mesh, position location is uncontrollable, positioning precision is poor, easily cause metal ring too to contact with metal grid mesh with metal grid mesh excesssive gap or circular metal ring, cause change and other harmful effects of pitch.
Model utility content
In order to overcome above-mentioned technical problem, the purpose of this utility model is that providing a kind of ensures that the electrodeless metal grid mesh of the ultraprecise of grating ring quality pastes net arrangement automatically.
The technological scheme that the utility model adopts is:
The electrodeless metal grid mesh of a kind of ultraprecise pastes net arrangement automatically, comprising:
Be arranged in the subsides net metal ring of three-dimensional system of coordinate;
Lift device, described lift device drives and pastes net metal ring along z-axis automatic lifting;
Rot, described rot drives and pastes net metal ring around z-axis automatic rotation;
Expansion bend, described expansion bend drives and pastes net metal ring along x-axis automatic telescopic;
Rotor, described rotor drives and pastes net metal ring around x-axis automatic rotation.
As further improvement of the utility model, described lift device is fixed on rot, and described rotor is connected with the output terminal of lift device, and described expansion bend is fixed on rotor, the output terminal of described subsides net metal ring connecting expansion device.
As further improvement of the utility model, described subsides net metal ring comprises metal ring stand, be arranged on metal outer shroud on metal ring stand and metallic inner, the output terminal of the end connecting expansion device of described metal ring stand.
As further improvement of the utility model, described rot comprises lifting turntable.
As further improvement of the utility model, described lift device comprises the guide rail be fixed on lifting turntable, the slide block coordinated with guide rail and drives the driver element of slide block translation, and described slide block is as the output terminal of lift device, and described guide rail is arranged along z-axis.
As further improvement of the utility model, the drive motor that described driver element comprises elevating screw and drives elevating screw to rotate, described elevating screw to be positioned in guide rail and to balance with guide rail to arrange, and described slide block is threaded with elevating screw.
As further improvement of the utility model, described rotor comprises the flexible turntable be fixedly connected with the output terminal of lift device.
As further improvement of the utility model, described expansion bend comprises the flexible rod arranged along x-axis, and described flexible rod one end connects pastes net metal ring, and the other end is connected to telescopic driver, and described telescopic driver is fixedly connected with rotor.
As further improvement of the utility model, described telescopic driver comprises motor reducer and the telescopic screw rod being connected motor reducer output terminal, and described telescopic screw rod is threaded with flexible rod, and described motor reducer is fixedly connected with rotor.
The beneficial effects of the utility model are: the utility model is carried out the automatic adjustment of attitude to subsides net metal ring by lift device, rot, expansion bend and rotor, make to paste net metal ring, at three-dimensional system of coordinate, there is multiple adjustable degrees of freedom, thus metal grid mesh can be pressed close to flexibly, accurately, avoid appointing work to operate the error brought, improve quality of product and manufacturing efficiency.
Accompanying drawing explanation
Below in conjunction with drawings and embodiments, the utility model is further illustrated.
Fig. 1 is structural representation of the present utility model;
Fig. 2 is the sectional view of expansion bend of the present utility model and rotor.
Embodiment
Disclose the electrodeless metal grid mesh of a kind of ultraprecise in embodiment and automatically paste net arrangement, as shown in Figure 1, comprise the subsides net metal ring 1 being arranged in xyz three-dimensional system of coordinate.This subsides net metal ring 1 for pressing close to metal grid mesh to paste net operation, its have along the degrees of freedom of z-axis translation, the degrees of freedom rotated along z-axis, along the degrees of freedom of x-axis translation and the degrees of freedom that rotates along x-axis.
Wherein, it is lifting that definition pastes net metal ring 1 along z-axis translation, be flexible along x-axis translation, the degrees of freedom be so elevated is driven automatically by lift device, the degrees of freedom rotated along z-axis is driven automatically by rot, flexible degrees of freedom is driven automatically by expansion bend, and the degrees of freedom rotated by x-axis is driven automatically by rotor.
Concrete, lift device is fixed on rot, and therefore lift device can rotate along z-axis with rot; Rotor is connected with the output terminal of lift device, and therefore rotor can be elevated with lift device; Expansion bend is fixed on rotor, and therefore expansion bend can rotate with rotor; Paste the output terminal of net metal ring 1 connecting expansion device, therefore pasting net metal ring 1 can not only stretch with expansion bend, four degrees of freedom also simultaneously have lifting, rotating along x-axis and z-axis.When pasting net, by these four degrees of freedom, subsides net metal ring 1 is carried out to the adjustment of pose, press close to aperture plate more accurately.
Further, the device of the present embodiment comprises one piece of base plate 7 be fixed in xy plane.Lifting turntable 2 as rot is arranged on base plate 7, can rotate in the plane of this base plate 7, is namely can rotate along z-axis.Lifting turntable 2 is driven by a stepper motor, and this stepper motor there is no shown in Figure 1, and those skilled in the art can arrange this stepper motor as required.
Lift device comprises the guide rail 31 be fixed on lifting turntable 2, the slide block 32 coordinated with guide rail 31 and the driver element driving slide block 32 translation.Guide rail 31 is arranged along z-axis, and the translating stroke of slide block 32 is also that therefore slide block 32 is as the output terminal of lift device along z-axis.
Drive the driver element of slide block 32 can have various ways, the preferably mode of feed screw nut.The drive motor 34 that concrete driver element comprises an elevating screw 33 and drives elevating screw 33 to rotate.Elevating screw 33 to be positioned in guide rail 31 and balance with guide rail 31 to arrange, the two ends of elevating screw 33 smoothly also overcoat screw rodb base 36, two screw rodb bases 36 be fixedly mounted on guide rail 31, thus form revolute pair with elevating screw 33.Elevating screw 33 not can be elevated, but only can rotate, and so can arrange nut structure bottom slide block 32, this nut structure is threaded with elevating screw 33, and by said structure, the rotation of elevating screw 33 can be with movable slider 32 to be elevated.Drive motor 34 in embodiment is stepper motor, be positioned at guide rail 31 top, be connected on guide rail 31 by motor cabinet 37, and the output shaft of drive motor 34 connects elevating screw 33 by coupling 35.
The structure of above-mentioned stepper motor and feed screw nut can ensure that the lifting of slide block 32z axle is stable, accurate.
In embodiment, rotor comprises the flexible turntable 4 be fixedly connected with slide block 32, and flexible turntable 4, along yz layout, rotates along x-axis.Flexible turntable 4 is controlled by motor, there is no and illustrate, but those skilled in the art can be arranged on slide block 32 as required in this motor figure, and makes the output shaft of motor connect flexible turntable 4.
In the present embodiment, expansion bend comprises the flexible rod 5 arranged along x-axis, and flexible rod 5 one end connects pastes net metal ring 1, and the other end is connected to telescopic driver, and telescopic driver is fixedly connected with flexible turntable 4.By the driving of telescopic driver, flexible rod 5 along x-axis translation back and forth, thus can drive the flexible of subsides net metal ring 1.
Preferably, telescopic driver comprises motor reducer 61 and the telescopic screw rod 62 being connected motor reducer 61 output terminal, and motor reducer 61 is fixed on flexible turntable 4.As depicted in figs. 1 and 2, flexible rod 5 comprises outer bar 52 and interior bar 51, and outer bar 52 is placed on interior bar 51 periphery and relative with the main body of motor reducer 61 fixing, and the top of interior bar 51 can be stretched out from outer bar 52 top.The wall of outer bar 52 is provided with the guiding groove 521 along x-axis, interior bar 51 wall is provided with the guiding projection coordinated with guiding groove 521, and by the cooperation of guiding projection and guiding groove 521, interior bar 51 also to stretch translation along x-axis.The flexible translation of interior bar 51 specifically can realize as follows: interior bar 51 bottom is fixedly connected with flexible nut 511, and telescopic screw rod 62 is threaded with flexible nut 511, while so motor reducer 61 drives telescopic screw rod 62 to rotate, and the i.e. flexible of interior bar 51.
In the present embodiment, paste net metal ring 1 to comprise metal ring stand 11, be arranged on metal outer shroud 12 on metal ring stand 11 and metallic inner 13, the interior bar 51 of the end connection expansion link 5 of metal ring stand 11.Metal outer shroud 12 is also provided with locking nut 14, itself and metallic inner 13, metal ring stand 11 are locked.
The above be the utility model preferred embodiment, it does not form the restriction to the utility model protection domain.

Claims (9)

1. the electrodeless metal grid mesh of ultraprecise pastes a net arrangement automatically, it is characterized in that, comprising:
Be arranged in the subsides net metal ring (1) of three-dimensional system of coordinate;
Lift device, described lift device drives and pastes net metal ring (1) along z-axis automatic lifting;
Rot, described rot drives and pastes net metal ring (1) around z-axis automatic rotation;
Expansion bend, described expansion bend drives and pastes net metal ring (1) along x-axis automatic telescopic;
Rotor, described rotor drives and pastes net metal ring (1) around x-axis automatic rotation.
2. the electrodeless metal grid mesh of ultraprecise according to claim 1 pastes net arrangement automatically, it is characterized in that: described lift device is fixed on rot, described rotor is connected with the output terminal of lift device, described expansion bend is fixed on rotor, the output terminal of described subsides net metal ring (1) connecting expansion device.
3. the electrodeless metal grid mesh of ultraprecise according to claim 2 pastes net arrangement automatically, it is characterized in that: described subsides net metal ring (1) comprises metal ring stand (11), be arranged on metal outer shroud (12) on metal ring stand (11) and metallic inner (13), the output terminal of the end connecting expansion device of described metal ring stand (11).
4. the electrodeless metal grid mesh of ultraprecise according to claim 2 pastes net arrangement automatically, it is characterized in that: described rot comprises lifting turntable (2).
5. the electrodeless metal grid mesh of ultraprecise according to claim 4 pastes net arrangement automatically, it is characterized in that: described lift device comprises the guide rail (31) be fixed on lifting turntable (2), the slide block (32) coordinated with guide rail (31) and the driver element driving slide block (32) translation, described slide block (32) is as the output terminal of lift device, and described guide rail (31) is arranged along z-axis.
6. the electrodeless metal grid mesh of ultraprecise according to claim 5 pastes net arrangement automatically, it is characterized in that: the drive motor (34) that described driver element comprises elevating screw (33) and drives elevating screw (33) to rotate, described elevating screw (33) to be positioned in guide rail (31) and to balance with guide rail (31) to arrange, and described slide block (32) is threaded with elevating screw (33).
7. the electrodeless metal grid mesh of ultraprecise according to Claims 2 or 3 or 4 or 5 or 6 pastes net arrangement automatically, it is characterized in that: described rotor comprises the flexible turntable (4) be fixedly connected with the output terminal of lift device.
8. the electrodeless metal grid mesh of ultraprecise according to Claims 2 or 3 or 4 or 5 or 6 pastes net arrangement automatically, it is characterized in that: described expansion bend comprises the flexible rod (5) arranged along x-axis, described flexible rod (5) one end connects pastes net metal ring (1), the other end is connected to telescopic driver, and described telescopic driver is fixedly connected with rotor.
9. the electrodeless metal grid mesh of ultraprecise according to claim 8 pastes net arrangement automatically, it is characterized in that: described telescopic driver comprises motor reducer (61) and the telescopic screw rod (62) being connected motor reducer (61) output terminal, described telescopic screw rod (62) is threaded with flexible rod (5), and described motor reducer (61) is fixedly connected with rotor.
CN201520158105.XU 2015-03-19 2015-03-19 The electrodeless metal grid mesh of a kind of ultraprecise pastes net arrangement automatically Expired - Fee Related CN204553456U (en)

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CN201520158105.XU CN204553456U (en) 2015-03-19 2015-03-19 The electrodeless metal grid mesh of a kind of ultraprecise pastes net arrangement automatically

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Application Number Priority Date Filing Date Title
CN201520158105.XU CN204553456U (en) 2015-03-19 2015-03-19 The electrodeless metal grid mesh of a kind of ultraprecise pastes net arrangement automatically

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104763718A (en) * 2015-03-19 2015-07-08 广东工业大学 Device and method for automatically adhering ultra-precise electrodeless metal grid mesh
CN112325941A (en) * 2020-11-06 2021-02-05 李培江 Vibration and displacement detection device of GIS isolating switch device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104763718A (en) * 2015-03-19 2015-07-08 广东工业大学 Device and method for automatically adhering ultra-precise electrodeless metal grid mesh
CN112325941A (en) * 2020-11-06 2021-02-05 李培江 Vibration and displacement detection device of GIS isolating switch device

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GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20150812

Termination date: 20160319