CN205012668U - Ladder is leaned on in automatic rising of safe high -efficient transportation photovoltaic board - Google Patents
Ladder is leaned on in automatic rising of safe high -efficient transportation photovoltaic board Download PDFInfo
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- CN205012668U CN205012668U CN201520463696.1U CN201520463696U CN205012668U CN 205012668 U CN205012668 U CN 205012668U CN 201520463696 U CN201520463696 U CN 201520463696U CN 205012668 U CN205012668 U CN 205012668U
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- Prior art keywords
- ladder
- photovoltaic panel
- safe
- automatic lifting
- efficient transport
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Abstract
The utility model discloses a ladder is leaned on in automatic rising of safe high -efficient transportation photovoltaic board, but but including portable base, be connected to extension ladder frame on the portable base, be used for loading the photovoltaic board and along the bracket of extension ladder frame length direction motion with be used for the elevating gear of drive carrier motion. The utility model discloses can transport the high altitude with the photovoltaic board in batches through elevating gear to stability and the security in the transportation has been guaranteed, have the material resources of using manpower sparingly, characteristics that flexible nature is high simultaneously to the efficiency of construction has been promoted greatly, the latent emergence of splitting the phenomenon of photovoltaic board can be thoroughly stopped.
Description
Technical field
The utility model belongs to constructions work aid technical field, and particularly a kind of automatic lifting of safe and efficient transport photovoltaic panel is by ladder.
Background technology
Along with country vigorously supports the construction of distributed photovoltaic power generation project, present distributed photovoltaic power generation system gradually be familiar with by masses and accept.In roof distributed photovoltaic project construction process, the carrying of photovoltaic module is a very important link, is also the link that construction contractor takes manpower and materials most.First must ensure the safety of photovoltaic module in the transport of high-altitude, prevent from colliding with and falling, its secondary guarantee handling efficiency and reduce human cost.
Traditional mode of transport is a dead lift, scaffold carrying or elevating stage carrying, this several mode of transport has following three aspect disadvantages: 1, due to photovoltaic panel heavier-weight (18kg/ block), area comparatively large (1650mm*992mm), thinner thickness (being only 5mm), therefore easily collide with in the process being carried to roof, high-altitude, thus cause expensive photovoltaic module to produce invisible hiddenly to split, thus reduce generating efficiency and the application life of monolithic panel, the solar module that in one series arm, generating efficiency is lower, by the energy being taken as other solar modules of load consumption and producing, the solar module that generating efficiency is lower now can generate heat, Here it is hot spot effect, the destruction solar cell that this effect energy is serious, and affect the generating efficiency of whole electricity generation system, 2, traditional mode of transport needs that at substantial is artificial, funds, the time, if pure a dead lift, workman needs at substantial muscle power that the photovoltaic panel of 18KG is shouldered roof, and efficiency is extremely low.If do not have stair to go directly roof, then need the cost plenty of time to set up scaffold, and photovoltaic panel is passed to roof by additional configuration multidigit workman, wastes time and energy.If 3 take elevating stage to carry, then need to carry out on smooth ground, heaviness is not easily carried, can not the various terrain environment of flexible adaptation, and elevating stage equipment price is expensive.Generally speaking, also not having at present can the related tool equipment of efficient transportation photovoltaic panel.
Utility model content
The hidden technical problem split of easy generation in high null process is being carried to for the photovoltaic panel existed in prior art; the utility model provides a kind of automatic lifting of safe and efficient transport photovoltaic panel by ladder; can thoroughly solve the problems of the technologies described above; by lifting gear batch, photovoltaic panel can be transported to high-altitude, and by the stability in protective device guarantee transportation and safety.
For solving the problems of the technologies described above, the technical solution adopted in the utility model is:
A kind of automatic lifting of safe and efficient transport photovoltaic panel by ladder, comprise movable pedestal, the scalable ladder be connected on movable pedestal, for loading photovoltaic panel and the bracket moved along scalable ladder length direction and the lifting gear moved for driven bracket.
Described scalable ladder is formed by multiple short terraced grafting, and described short ladder comprises the terraced bar of relative both sides and the cross bar being connected two terraced bars, and the two ends of described terraced bar are respectively arranged with inserted link and jack.
Two bights on described movable pedestal top are respectively arranged with for the support bar slot with the grafting of support bar one end, and the other end of described support bar is connected with described cross bar.
Described lifting gear comprises hoist engine, fixed pulley and hook, and described hoist engine is installed on the end face of movable pedestal, and the fixed pulley at scalable ladder top walked around by the wire rope on described hoist engine, and is connected with bracket by the hook that wire rope free end connects.
Described bracket upper/lower terminal is connected with two rollers moved along ladder pole length direction, both sides respectively by support, described terraced bar is between described two rollers, and described two rollers contact with two opposite faces of terraced bar as guide rail respectively.
One of them of described roller has for spacing position-arresting disk, the side clamping that described position-arresting disk is adjacent with this rolling wheel guide rails.
The corner, bottom of described movable pedestal is provided with a universal wheel respectively by falling " U " shape frame, wherein two universal wheels is provided with brake gear.
Described brake gear comprises one and forms with " U " shape frame the first contact be rotationally connected, and is provided with the second wafer be attached thereto inside described first contact.
The cross bar on described scalable ladder top is provided with the antiseize device for making terraced rod guide and building isolate.
Described movable pedestal is provided with the draw-in groove for being connected with scalable ladder.
Compared with prior art, the beneficial effect that the utility model has is:
1. combined by movable pedestal, scalable ladder, bracket and lifting gear, achieve bulk transport photovoltaic panel, easy to operate, time saving and energy saving, and avoid the hidden generation splitting phenomenon.
2. the universal wheel of movable pedestal configure band brake gear, ensure that maneuverability and security and stability.
3. the sliceable design of scalable ladder, splice by terraced length according to object of construction production free setting, add by ladder compliance.
4. the track roller design of conveying tray, ensure that pallet decreases frictional force while not departing from guide rail, adds efficiency and application life.
5. antiseize device ensure that guide rail is smooth and easy, allows the roller of pallet for transporting not hinder in traveling process.
Accompanying drawing explanation
Fig. 1 is the perspective view of automatic lifting by ladder of safe and efficient transport photovoltaic panel of the present utility model;
Fig. 2 is Fig. 1 I enlarged drawing;
Fig. 3 is supporter roller of the present utility model and scalable ladder orbital position relation schematic diagram.
In Fig. 1-Fig. 3,1. movable pedestal; 11. support bar slots; 12. draw-in grooves; 2. scalable ladder; 21. terraced bars; 22. cross bars; 3. bracket; 31. supports; 32. rollers; 321. position-arresting disk; 4. bracing frame; 5. hoist engine; 6. wire rope; 7. link up with; 8. universal wheel; 9. brake gear; 91. first contacts; 92. the second wafers; 10. fall " U " shape frame.
Detailed description of the invention
For making those skilled in the art better understand the technical solution of the utility model, below in conjunction with the drawings and specific embodiments, the utility model is elaborated.
As shown in Figure 1, a kind of automatic lifting of safe and efficient transport photovoltaic panel by ladder, comprise movable pedestal 1, the scalable ladder 2 be connected on movable pedestal 1, for loading photovoltaic panel and the bracket 3 moved along scalable ladder 2 length direction and the lifting gear moved for driven bracket 3.
Scalable ladder 2 is formed by multiple short terraced grafting, each short by terraced length not etc., short ladder comprises the terraced bar 21 of relative both sides and is connected the cross bar 22 of terraced bar, the two ends of ladder bar 21 are respectively arranged with inserted link and jack, for being connected with other short terraced interpolation, the length that height of formation does not wait, by ladder, to adapt to building and the construction site of differing heights, enhances flexibility.
In order to increase scalable ladder 2 stability in use and reliability, be respectively arranged with in two bights on movable pedestal 1 top for the support bar slot 11 with support bar 4 one end grafting, the other end of support bar 4 is connected with cross bar 22.
In order to reduce costs, handled easily, the device comprising hoist engine 5, fixed pulley and hook 7 selected by lifting gear, hoist engine 5 is installed on the end face of movable pedestal 1, the fixed pulley (not shown in FIG.) at scalable ladder top walked around by wire rope 6 on hoist engine 5, and is connected with bracket 3 by the hook 7 that wire rope 6 free end connects.
As shown in Figure 3, bracket 3 upper/lower terminal is connected with two rollers 32 moved along both sides ladder bar 21 length direction respectively by support 31, ladder bar 21 is between two rollers 32, two rollers 32 contact with two opposite faces of terraced bar 21 as guide rail respectively, such structure can ensure that bracket 3 is reposefully along lifting rail, avoids the hidden appearance splitting phenomenon of photovoltaic panel.
Roller 32 one of them (being the roller near bracket 3 in the present embodiment) has for spacing position-arresting disk 321, the side clamping that position-arresting disk 321 is adjacent with this rolling wheel guide rails, can ensure to depart from by terraced guide rail in bracket uphill process, decrease friction simultaneously, add conevying efficiency and service life of equipment.
In order to easy to operate, the movement of movable pedestal 1 is by installing a universal wheel 8 in the corner, bottom of movable pedestal 1 realize respectively by falling " U " shape frame 10, universal wheel 8 can realize moving freely of movable pedestal 1, wherein two universal wheels 8 are provided with brake gear 9, can ensure by the stability and safety in terraced transportation.
As shown in Figure 2, in order to simplify structure, brake gear 9 comprises one and forms with " U " shape frame 10 the first contact 91 be rotationally connected, the second wafer 92 be attached thereto is provided with inside first contact 91, when needs movable pedestal 1 is halted motionless, as long as be rotated down the first contact 91, first contact 91 to drive the second wafer 92 to make the second wafer 92 contact with universal wheel 8 to block universal wheel 8.
The cross bar 22 on scalable ladder 2 top is provided with the antiseize device (not shown in FIG.) for making terraced rod guide and building isolate, antiseize device is used for the contact point by terraced guide rail and building to keep apart, smooth and easy to ensure guide rail, allow the pulley of pallet for transporting not hinder in traveling process.
Movable pedestal 1 is provided with the draw-in groove 12 for being connected with scalable ladder 2, to facilitate carrying.
The using method of the present embodiment is: control starting or stoping of hoist engine by direction switch, hoist engine realizes the lifting of bracket by the wire rope and suspension hook walking around fixed pulley.
Above embodiment is only exemplary embodiment of the present utility model, is not used in restriction the utility model, and protection domain of the present utility model is defined by the claims.Those skilled in the art can in essence of the present utility model and protection domain, and make various amendment or equivalent replacement to the utility model, this amendment or equivalent replacement also should be considered as dropping in protection domain of the present utility model.
Claims (10)
1. the automatic lifting of a safe and efficient transport photovoltaic panel is by ladder, it is characterized in that, comprise movable pedestal, the scalable ladder be connected on movable pedestal, for loading photovoltaic panel and the bracket moved along scalable ladder length direction and the lifting gear moved for driven bracket.
2. the automatic lifting of safe and efficient transport photovoltaic panel according to claim 1 is by ladder, it is characterized in that, described scalable ladder is formed by multiple short terraced grafting, described short ladder comprises the terraced bar of relative both sides and the cross bar being connected two terraced bars, and the two ends of described terraced bar are respectively arranged with inserted link and jack.
3. the automatic lifting of safe and efficient transport photovoltaic panel according to claim 2 is by ladder, it is characterized in that, two bights on described movable pedestal top are respectively arranged with for the support bar slot with the grafting of support bar one end, and the other end of described support bar is connected with described cross bar.
4. the automatic lifting of safe and efficient transport photovoltaic panel according to claim 1 is by ladder, it is characterized in that, described lifting gear comprises hoist engine, fixed pulley and hook, described hoist engine is installed on the end face of movable pedestal, the fixed pulley at scalable ladder top walked around by wire rope on described hoist engine, and is connected with bracket by the hook that wire rope free end connects.
5. the automatic lifting of the safe and efficient transport photovoltaic panel according to the arbitrary claim of claim 1 is by ladder, it is characterized in that, described bracket upper/lower terminal is connected with two rollers moved along ladder pole length direction, both sides respectively by support, described terraced bar is between described two rollers, and described two rollers contact with two opposite faces of terraced bar as guide rail respectively.
6. the automatic lifting of the safe and efficient transport photovoltaic panel according to the arbitrary claim of claim 5 is by ladder, and it is characterized in that, one of them of described roller has for spacing position-arresting disk, the side clamping that described position-arresting disk is adjacent with this rolling wheel guide rails.
7. the automatic lifting of safe and efficient transport photovoltaic panel according to claim 1 is by ladder, it is characterized in that, the corner, bottom of described movable pedestal is provided with a universal wheel respectively by falling " U " shape frame, wherein two universal wheels is provided with brake gear.
8. the automatic lifting of safe and efficient transport photovoltaic panel according to claim 7 is by ladder, it is characterized in that, described brake gear comprises one and forms with " U " shape frame the first contact be rotationally connected, and is provided with the second wafer be attached thereto inside described first contact.
9. the automatic lifting of safe and efficient transport photovoltaic panel according to claim 2 is by ladder, it is characterized in that, the cross bar on described scalable ladder top being provided with the antiseize device for making terraced rod guide and building isolate.
10. the automatic lifting of safe and efficient transport photovoltaic panel according to claim 1 is by ladder, it is characterized in that, described movable pedestal being provided with the draw-in groove for being connected with scalable ladder.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201520463696.1U CN205012668U (en) | 2015-07-01 | 2015-07-01 | Ladder is leaned on in automatic rising of safe high -efficient transportation photovoltaic board |
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CN201520463696.1U CN205012668U (en) | 2015-07-01 | 2015-07-01 | Ladder is leaned on in automatic rising of safe high -efficient transportation photovoltaic board |
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CN205012668U true CN205012668U (en) | 2016-02-03 |
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CN201520463696.1U Expired - Fee Related CN205012668U (en) | 2015-07-01 | 2015-07-01 | Ladder is leaned on in automatic rising of safe high -efficient transportation photovoltaic board |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104929378A (en) * | 2015-07-01 | 2015-09-23 | 源程环境能源科技(上海)有限公司 | Automatic elevating leaning ladder for transporting photovoltaic panels safely and efficiently |
-
2015
- 2015-07-01 CN CN201520463696.1U patent/CN205012668U/en not_active Expired - Fee Related
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104929378A (en) * | 2015-07-01 | 2015-09-23 | 源程环境能源科技(上海)有限公司 | Automatic elevating leaning ladder for transporting photovoltaic panels safely and efficiently |
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Legal Events
Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
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: 20160203 Termination date: 20160701 |