CN105553407A - Photovoltaic assembly positioning device - Google Patents
Photovoltaic assembly positioning device Download PDFInfo
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- CN105553407A CN105553407A CN201410596953.9A CN201410596953A CN105553407A CN 105553407 A CN105553407 A CN 105553407A CN 201410596953 A CN201410596953 A CN 201410596953A CN 105553407 A CN105553407 A CN 105553407A
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E10/00—Energy generation through renewable energy sources
- Y02E10/50—Photovoltaic [PV] energy
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Abstract
The invention discloses a photovoltaic assembly positioning device. The photovoltaic assembly positioning device comprises a main body portion (100) and a gland portion (200), the main body portion (100) comprises a first positioning plate (110), a second positioning plate (120), and side plates (130) for connecting the first positioning plate (110) and the second positioning plate (120), the main body portion is used for installing and locating a secondary condenser (320) and a concentrating photovoltaic receiver (310), the gland portion (200) is fixedly assembled on the first positioning plate (110) and provided with a first fixing hole (210) corresponding to a first installing location hole (111), and the first fixing hole is used for fixing the secondary condenser (320). According to the positioning device, the assembling precision of marking the assembling process for a concentrating photovoltaic module can be improved, the photovoltaic generating efficiency can be greatly improved, the structure of a precision assembling device is simplified, modular and batch production of the assembling device can be realized, and the assembling cost is reduced.
Description
Technical field
The invention belongs to solar energy generation technology field, specifically, relate to photovoltaic module positioner.
Background technology
Energy problem is 21 century one of the ultimate challenge that faces of countries in the world.The direction that solar energy highly effective generation technology has been listed in emphasis support and has first developed in the national medium-to long-range program for scientific and technological development of promulgating recently.At present, the Main Bottleneck of restriction solar cell large-scale application how to raise the efficiency and reduces costs, and raise the efficiency further and one of the most effective way reducing photovoltaic generation cost adopts high power concentrator technology.
But the assembling of high power concentrating photovoltaic module needs very high assembly precision, accurate mechanical structure device can improve assembly precision, but often cost is very high for this device, is difficult to meet marketization application; The precision of common condensation photovoltaic module marking assembly technology is often very low, causes photovoltaic cell and assemble hot spot contraposition being forbidden, and then reduces photovoltaic efficiency.Therefore be badly in need of a kind of high accuracy, contradiction that the location set apparatus for converting of condensation photovoltaic module secondary condenser of low cost solves assembly precision and assembly cost, use and meet instructions for use.
Summary of the invention
For solving above-mentioned prior art Problems existing, the object of the present invention is to provide a kind of photovoltaic module positioner, described device solves the contradictory problems between the assembly precision of photovoltaic module location set apparatus for converting and assembly cost.
In order to reach foregoing invention object, present invention employs following technical scheme:
A kind of photovoltaic module positioner, described photovoltaic module comprises interconnective concentration photovoltaic receiver and secondary condenser, this device comprises: main part, described main part comprises the first location-plate, the second location-plate and connects the side plate of described first location-plate and the second location-plate, described first location-plate is provided with the first mounting-positioning holes, for installing and locating described secondary condenser; Described second location-plate is provided with the second mounting-positioning holes, for installing and locating described concentration photovoltaic receiver; Gland part, be fixedly assemblied on described first location-plate, described gland part is provided with first fixing hole corresponding with described first mounting-positioning holes, for being fixed described secondary condenser.
Further, the two ends that described first location-plate is wherein relative are connected to described second location-plate respectively by side plate, and the first location-plate, the second location-plate and two side plates form the frame structure of a trapezoidal shape.
Further, described gland part is provided with multiple positioning clamping pin, described positioning clamping pin is sticked in described first location-plate two ends relative in addition, is assemblied on described first location-plate by described gland partial fixing.
Further, have at least one end to be provided with the detent corresponding with described positioning clamping pin in the two ends that described first location-plate is relative in addition, wherein, at least part of positioning clamping pin is sticked in described detent.
Further, described first mounting-positioning holes is square opening, and four angles of this first square mounting-positioning holes are provided with the first chamfering.
Further, the upper opening of described first mounting-positioning holes is greater than lower openings, and its sidewall takes the form of inclined plane, and matches with the outer peripheral sidewall of described secondary condenser.
Further, described first fixing hole is square opening, and four angles of this first square fixing hole are provided with the second chamfering that chamfer angle is 45 °, and the sidewall of described first fixing hole and the outer peripheral sidewall of described secondary condenser match.
Further, described second mounting-positioning holes comprises the first positioned edge, the second positioned edge and the 3rd positioned edge, and wherein, described second positioned edge and the 3rd positioned edge are interconnected; Described first positioned edge, the second positioned edge and the 3rd positioned edge are for locating described concentration photovoltaic receiver.
Further, described second location-plate is also provided with connecting hole, for this positioner is connected to photovoltaic module group substrates.
Further, described main part is one-body molded by metal material punching press, and the punching press of described gland part from metal material is made one-body molded; Wherein, the one in aluminium, iron and stainless steel selected by described metal material.
Photovoltaic module positioner of the present invention, improves the assembly precision of condensation photovoltaic module marking assembly technology, can increase substantially photovoltaic efficiency; Also simplify the structure of Fine Boring device simultaneously, the mold of assembling device, mass production can be realized, reduce assembly cost.
Accompanying drawing explanation
The following description carried out in conjunction with the drawings, the above-mentioned and other side of embodiments of the invention, feature and advantage will become clearly, in accompanying drawing:
Fig. 1 is the structural representation of the photovoltaic module positioner according to the embodiment of the present invention;
Fig. 2 is the schematic diagram of photovoltaic module positioner after assembling photovoltaic module according to the embodiment of the present invention;
Fig. 3 is the structural representation of the main part of photovoltaic module positioner according to the embodiment of the present invention;
Fig. 4 is the birds-eye perspective of the main part of photovoltaic module positioner according to the embodiment of the present invention;
Fig. 5 is that the master of the main part of photovoltaic module positioner according to the embodiment of the present invention looks perspective view;
Fig. 6 is the structural representation of the gland part of photovoltaic module positioner according to the embodiment of the present invention.
Embodiment
Below, embodiments of the invention are described in detail with reference to the accompanying drawings.But, the present invention can be implemented in many different forms, and the present invention should not be interpreted as being limited to the specific embodiment of setting forth here.On the contrary, provide these embodiments to be to explain principle of the present invention and practical application thereof, thus enable others skilled in the art understand various embodiment of the present invention and be suitable for the various amendments of certain expected application.In the accompanying drawings, for the sake of clarity, the shape and size of element can be exaggerated, and identical label will be used to indicate same or analogous element all the time.
Fig. 1 is the structural representation of the photovoltaic module positioner according to the embodiment of the present invention, and Fig. 2 is the use schematic diagram of the photovoltaic module positioner according to the embodiment of the present invention.
See figures.1.and.2, photovoltaic module comprises interconnective concentration photovoltaic receiver 310 and secondary condenser 320; Photovoltaic module positioner comprises: main part 100, and described main part 100 comprises the first location-plate 110, second location-plate 120 and connects the side plate 130 of the first location-plate 110 and the second location-plate 120; Wherein, the first location-plate 110 is provided with the first mounting-positioning holes 111, for installing and locating secondary condenser 320; Second location-plate 120 is provided with the second mounting-positioning holes 121, for installing and locating concentration photovoltaic receiver 310; And gland part 200, to be fixedly assemblied on the first location-plate 110, gland part 200 is provided with first fixing hole 210 corresponding with the first mounting-positioning holes 111, for being fixed secondary condenser 320.
Wherein, the two ends that the first location-plate 110 is wherein relative are connected to the second location-plate 120, first location-plate 110, second location-plate 120 and two side plates 130 respectively by side plate 130) form the frame structure of a trapezoidal shape; That is, two side plates 130 are connected to the two ends relative with the second location-plate 120, the relative two ends of the first location-plate 110.
Respectively main part 100 and gland part 200 will be described in detail below.
Fig. 3 is the structural representation of the main part of photovoltaic module positioner according to the embodiment of the present invention; Fig. 4 is the birds-eye perspective of the main part of photovoltaic module positioner according to the embodiment of the present invention; Fig. 5 is that the master of the main part of photovoltaic module positioner according to the embodiment of the present invention looks perspective view.
Particularly, with reference to Fig. 3 to Fig. 5, the first location-plate 110 in main part 100 being provided with the first mounting-positioning holes 111, first mounting-positioning holes 111 is square opening, and four angles of this first square mounting-positioning holes 111 are provided with four the first chamferings 112; First mounting-positioning holes 111 for secondary condenser 320 is carried out installation location, and the first chamfering 112 be provided be beneficial to secondary condenser 320 carry out installations locate time conveniently pick and place.Meanwhile, the upper opening of the first mounting-positioning holes 111 is greater than lower openings, and its sidewall takes the form of inclined plane, and matches, as shown in Figure 5 with the outer peripheral sidewall of secondary condenser 320.The second location-plate 120 in main part 100 is provided with the second mounting-positioning holes 121, second mounting-positioning holes 121 and there is the first positioned edge 122, second positioned edge 123 and the 3rd positioned edge 124; Wherein, the second positioned edge 123 is connected with the 3rd positioned edge 124, and the first positioned edge 122, second positioned edge 123 and the 3rd positioned edge 124 are for locating concentration photovoltaic receiver 310.The size of the second mounting-positioning holes 121 surrounded by the first positioned edge 122, second positioned edge 123 and the 3rd positioned edge 124 is consistent with the size of concentration photovoltaic receiver 310, simultaneously, one end of second mounting-positioning holes 121 is opening-like, can facilitate picking and placeing of concentration photovoltaic receiver 310.Second installation location-plate 120 is also provided with connecting hole 125, and connecting hole 125 is for being connected to photovoltaic module group substrates by this positioner, and the size of the size of connecting hole 125 and the alignment pin 330 of condensation photovoltaic module group substrates matches.
In the present embodiment, the line mid point being centrally located at two connecting holes 125 of the photovoltaic cell on concentration photovoltaic receiver 310, simultaneously, the face, hole of the first mounting-positioning holes 111 and the face, hole of two connecting holes 125 are in parallel two planes, and on the perpendicular bisector being centrally located at the line of two connecting holes 125 of the first mounting-positioning holes 111, so can ensure that secondary condenser 320 is corresponding with concentration photovoltaic receiver 310 upper-lower position; In use, the photovoltaic cell that sunlight can be made effectively to expose on concentration photovoltaic receiver 310 is surperficial, improves optically focused precision.
Fig. 6 is the structural representation of the gland part of photovoltaic module positioner according to the embodiment of the present invention.
With reference to Fig. 6, gland part 200 is provided with first fixing hole 210 corresponding with the first mounting-positioning holes 111, for being fixed secondary condenser 320; First fixing hole 210 is square opening, and four angles of this first square fixing hole 210 being provided with four chamfer angles is that the sidewall of the second chamfering 211, first fixing hole 210 of 45 ° and the outer peripheral sidewall of secondary condenser 320 match.Gland part 200 is provided with multiple positioning clamping pin 220, positioning clamping pin 220 is sticked in the two ends relative in addition that the first location-plate 110 does not connect with side plate 130, and gland part 200 is fixedly assemblied on the first location-plate 110.In order to make gland part 200 gland more firm on the first location-plate 110, and keep gland part 200 with the first location-plate 110, relative movement can not occur, one end is had at least to be also provided with the detent 113 corresponding with positioning clamping pin 220 in the two ends relative in addition that first location-plate 110 does not connect with side plate 130, wherein, part positioning clamping pin 220 is sticked in detent 113; That is, the two ends relative in addition that the first location-plate 110 does not connect with side plate 130 can arrange detent 113, or one end wherein can arrange detent 113; Wherein, each detent 113 can be corresponding with multiple positioning clamping pin 220, and as shown in Figure 1, but also each detent 113 is corresponding with a positioning clamping pin 220 respectively.In the present embodiment, one end in the two ends relative in addition that first location-plate 110 does not connect with side plate 130 is provided with a detent 113, gland part is provided with four positioning clamping pin 220, and two positioning clamping pin 220 are sticked in a described detent 113; Positioning clamping pin 220 also has inside projection 221, and namely positioning clamping pin 220 is sticked in detent 113 by protruding 221, and the outward flange distance of two of homonymy positioning clamping pin 220 is equal with the width of detent 113, but the present invention is not restricted to this.
When using photovoltaic module positioner according to the present invention to position photovoltaic module, particularly, with reference to Fig. 2, first carry out installation locate with the second mounting-positioning holes 121 on the second location-plate 120 and the first positioned edge 122, second positioned edge 123 wherein, the 3rd positioned edge 124 pairs of concentration photovoltaic receivers 310; Two connecting hole 125 places simultaneously on the second location-plate 120, are fixed by the 330 pairs of photovoltaic module positioners of the alignment pin on condensation photovoltaic module group substrates.Then secondary condenser 320 is placed on the first mounting-positioning holes 111 place on the first location-plate 110, the first mounting-positioning holes 111 coincide with secondary condenser 320 shape can position secondary condenser 320.In the present embodiment, the line mid point being centrally located at two connecting holes 125 of the photovoltaic cell on concentration photovoltaic receiver 310, the face, hole of the first mounting-positioning holes 111 and the face, hole of two connecting holes 125 are in parallel two planes, and on the perpendicular bisector being centrally located at the line of two connecting holes 125 of the first mounting-positioning holes 111, so ensure that secondary condenser 320 is corresponding with the position of the photovoltaic cell on concentration photovoltaic receiver 310, can significantly improve optically focused precision in use, thus improve the photoelectric conversion efficiency of condensation photovoltaic module.
In the assembling and positioning process of described photovoltaic module positioner, can more be securely fixed on photovoltaic module positioner to make secondary condenser 320, secondary condenser 320 is positioned after on the first mounting-positioning holes 111, also needs to utilize gland part 200 pairs of secondary condenser 320 to fix further.Gland part 200 has the first fixing hole 210 mated with the shape of the first mounting-positioning holes 111 and size, after first fixing hole 210 pairs secondary condenser 320 is fixed, gland part 200 being fixed on firmly in main part 100 to projecting inward projection 221 in four positioning clamping pin 220 in gland part 200, this completes the location of photovoltaic module positioner to concentration photovoltaic receiver 310 and secondary condenser 320 and fixes.
Described photovoltaic module positioning device structure is simple, practical, not only can ensure the assembly precision of condensation photovoltaic module, and then can ensure the photoelectric conversion efficiency of condensation photovoltaic module; Simultaneously, main part 100 wherein and gland part 200 can be one-body molded by aluminium, iron and stainless steel and other metal materials punching press, make one-body molded by metal material punching press, use Sheet Metal Forming Technology to carry out batch machining, thus cut down finished cost, enhance productivity.
Although illustrate and describe the present invention with reference to specific embodiment, but it should be appreciated by those skilled in the art that: when not departing from the spirit and scope of the present invention by claim and equivalents thereof, the various changes in form and details can be carried out at this.
Claims (10)
1. a photovoltaic module positioner, described photovoltaic module comprises interconnective concentration photovoltaic receiver (310) and secondary condenser (320), and it is characterized in that, this device comprises:
Main part (100), described main part (100) comprises the first location-plate (110), the second location-plate (120) and connects the side plate (130) of described first location-plate (110) and the second location-plate (120), described first location-plate (110) is provided with the first mounting-positioning holes (111), for installing and locating described secondary condenser (320); Described second location-plate (120) is provided with the second mounting-positioning holes (121), for installing and locating described concentration photovoltaic receiver (310);
Gland part (200), fixedly be assemblied on described first location-plate (110), described gland part (200) is provided with first fixing hole (210) corresponding with described first mounting-positioning holes (111), for being fixed described secondary condenser (320).
2. positioner according to claim 1, it is characterized in that, the wherein relative two ends of described first location-plate (110) are connected to described second location-plate (120) respectively by side plate (130), and the first location-plate (110), the second location-plate (120) and two side plates (130) form the frame structure of a trapezoidal shape.
3. positioner according to claim 2, it is characterized in that, described gland part (200) is provided with multiple positioning clamping pin (220), described positioning clamping pin (220) is sticked in described first location-plate (110) two ends relative in addition, described gland part (200) is fixedly assemblied on described first location-plate (110).
4. positioner according to claim 3, it is characterized in that, one end is had at least to be provided with the detent (113) corresponding with described positioning clamping pin (220) in the two ends that described first location-plate (110) is relative in addition, wherein, at least part of positioning clamping pin (220) is sticked in described detent (113).
5. positioner according to claim 1, is characterized in that, described first mounting-positioning holes (111) is square opening, and four angles of this square the first mounting-positioning holes (111) are provided with the first chamfering (112).
6. positioner according to claim 5, is characterized in that, the upper opening of described first mounting-positioning holes (111) is greater than lower openings, and its sidewall takes the form of inclined plane, and matches with the outer peripheral sidewall of described secondary condenser (320).
7. positioner according to claim 6, it is characterized in that, described first fixing hole (210) is square opening, four angles of this square the first fixing hole (210) are provided with the second chamfering (211) that chamfer angle is 45 °, and the sidewall of described first fixing hole (210) and the outer peripheral sidewall of described secondary condenser (320) match.
8. positioner according to claim 1, it is characterized in that, described second mounting-positioning holes (121) comprises the first positioned edge (122), the second positioned edge (123) and the 3rd positioned edge (124), wherein, described second positioned edge (123) and the 3rd positioned edge (124) are interconnected; Described first positioned edge (122), the second positioned edge (123) and the 3rd positioned edge (124) are for locating described concentration photovoltaic receiver (310).
9. positioner according to claim 1, is characterized in that, described second location-plate (120) is also provided with connecting hole (125), for this positioner is connected to photovoltaic module group substrates.
10. positioner according to claim 1, is characterized in that, described main part (100) is one-body molded by metal material punching press, and described gland part (200) is made one-body molded by metal material punching press; Wherein, the one in aluminium, iron and stainless steel selected by described metal material.
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CN201410596953.9A CN105553407B (en) | 2014-10-29 | 2014-10-29 | Photovoltaic module positioner |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
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CN107994843A (en) * | 2016-10-26 | 2018-05-04 | 中国科学院苏州纳米技术与纳米仿生研究所 | The condensation photovoltaic module and its babinet of focus adjustable |
CN110919119A (en) * | 2019-11-27 | 2020-03-27 | 武汉心浩智能科技有限公司 | 5G dielectric filter assembly line tool clamp and method |
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CN202332933U (en) * | 2011-11-29 | 2012-07-11 | 天威新能源控股有限公司 | Installing and positioning template for wiring box of crystal silicon solar assembly |
CN102637779A (en) * | 2012-05-12 | 2012-08-15 | 成都聚合科技有限公司 | Method for positioning accuracy of concentrating photovoltaic cell sheet electrode wire |
CN202549893U (en) * | 2012-05-02 | 2012-11-21 | 天津蓝天太阳科技有限公司 | Supporting frame for Fresnel lens set of spotlight photovoltaic component |
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Patent Citations (4)
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JP2011238665A (en) * | 2010-05-06 | 2011-11-24 | Jfe Civil Engineering & Construction Corp | Solar power generation module support structure |
CN202332933U (en) * | 2011-11-29 | 2012-07-11 | 天威新能源控股有限公司 | Installing and positioning template for wiring box of crystal silicon solar assembly |
CN202549893U (en) * | 2012-05-02 | 2012-11-21 | 天津蓝天太阳科技有限公司 | Supporting frame for Fresnel lens set of spotlight photovoltaic component |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
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CN107994843A (en) * | 2016-10-26 | 2018-05-04 | 中国科学院苏州纳米技术与纳米仿生研究所 | The condensation photovoltaic module and its babinet of focus adjustable |
CN110919119A (en) * | 2019-11-27 | 2020-03-27 | 武汉心浩智能科技有限公司 | 5G dielectric filter assembly line tool clamp and method |
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