CN210921839U - Solar energy push rod with stronger wind resistance - Google Patents

Solar energy push rod with stronger wind resistance Download PDF

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Publication number
CN210921839U
CN210921839U CN201920960825.6U CN201920960825U CN210921839U CN 210921839 U CN210921839 U CN 210921839U CN 201920960825 U CN201920960825 U CN 201920960825U CN 210921839 U CN210921839 U CN 210921839U
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CN
China
Prior art keywords
push rod
bearing
gear
reinforcing plate
solar energy
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Active
Application number
CN201920960825.6U
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Chinese (zh)
Inventor
杨勇
李强
卢鹏
王娟
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Ningbo Pavales Intelligent Technology Co ltd
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Dongguan Powernice Intelligent Technology Co ltd
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Priority to CN201920960825.6U priority Critical patent/CN210921839U/en
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    • YGENERAL 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
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/40Solar thermal energy, e.g. solar towers
    • Y02E10/47Mountings or tracking
    • YGENERAL 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
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/50Photovoltaic [PV] energy

Abstract

The utility model relates to the technical field of solar energy push rods, a solar energy push rod with stronger wind resistance is disclosed, which comprises a motor group, a gear group, a bearing seat, a reinforcing plate, a thrust ball bearing and a push rod group for telescopically adjusting the angle of a photovoltaic plate, wherein the motor group and the gear group are arranged in a meshing way, the gear group and the push rod group are arranged in a meshing way, the bearing seat, the reinforcing plate, the thrust ball bearing and the push rod group are arranged in sequence and are arranged in a relatively fixed way, the thrust ball bearing is divided into an upper bearing and a lower bearing by the reinforcing plate, and the upper bearing and the lower bearing are respectively fixed at two ends of the reinforcing; in the solar energy push rod use, the work of motor group drive gear group, gear train drive push rod group is flexible, realizes the angle modulation of photovoltaic board, and external thrust and pulling force transmit to thrust ball bearing through push rod group, and thrust ball bearing transmits for the reinforcing plate, under the effect of reinforcing plate, improves the holding capacity of push rod group, makes solar energy push rod have better anti-wind ability, guarantees solar energy push rod's life.

Description

Solar energy push rod with stronger wind resistance
Technical Field
The patent of the utility model relates to a technical field of solar energy push rod particularly, relates to the stronger solar energy push rod of anti-wind ability.
Background
The solar energy push rod is mainly applied to solar equipment, and the photovoltaic panel is driven to rotate along with the angle of sunlight, so that the sunlight is received at the maximum angle of the photovoltaic panel, the greater electric energy conversion rate is realized, and the improvement of the solar energy utilization rate is guaranteed.
At present, the inclination angle of a photovoltaic panel is adjusted by a solar push rod according to the illumination direction, and the solar push rod is manually controlled or intelligently controlled to adjust the angle of the photovoltaic panel.
In the prior art, when the angle of the photovoltaic panel is adjusted by the solar push rod, the solar push rod is easily influenced by the bearing capacity of wind power and the bearing capacity of the photovoltaic panel, the existing solar push rod is insufficient in impact force and load force, so that the service life of the solar push rod is reduced, the service life of the solar push rod is generally required to be 20 years, and the service life of the existing solar push rod cannot be met.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a solar energy push rod that anti-wind ability is stronger, aim at solving prior art, the problem that solar energy push rod bearing capacity is low.
The utility model discloses a realize like this, solar push rod that anti-wind ability is stronger, including motor group, gear train, bearing seat, reinforcing plate, thrust ball bearing and the flexible push rod group who adjusts the photovoltaic board angle, the motor group with the gear train is the meshing and arranges, the gear train with push rod group is the meshing and arranges, the bearing seat the reinforcing plate thrust ball bearing push rod group is to arrange in proper order and is the relatively fixed and arranges, the reinforcing plate will thrust ball bearing falls into upper bearing and lower bearing, just upper bearing and the lower bearing is fixed respectively the both ends of reinforcing plate.
Further, the gear train has the rear end face that deviates from push rod group, the rear end face of gear train is equipped with the atress seat, the atress seat with the rear end face of gear train is fixed arrangement.
Further, be equipped with a plurality of first screws and a plurality of second screw on the atress seat, be equipped with a plurality of first nuts and a plurality of second nut on the reinforcing plate, follow the atress seat extremely the direction of reinforcing plate, first screw runs through in proper order the atress seat the bearing seat the reinforcing plate and first nut, and will the bearing seat with reinforcing plate locking, the second screw runs through in proper order the atress seat the bearing seat the reinforcing plate and the second nut, and will the bearing seat with reinforcing plate locking.
Furthermore, the gear set is provided with a front end face facing the push rod set, and the bearing seat and the front end face of the gear set are fixedly arranged; the push rod group includes the telescopic body of rod and is the push rod shell of fixed arrangement, the inner of the body of rod with the push rod shell is fixed arrangement, the outer end of the body of rod extends and runs through respectively the reinforcing plate with the rear end face of gear train and with the gear train is the meshing and arranges.
Furthermore, the rod body comprises a telescopic part and a fixing part, the telescopic part forms the outer end, and the fixing part and the push rod shell are fixedly arranged; when the gear set drives the telescopic part to rotate, the telescopic part moves relative to the fixed part.
Furthermore, the gear set comprises a connecting sleeve, the connecting sleeve comprises a front sleeve body and a rear sleeve body, the front sleeve body penetrates through the thrust ball bearing to be embedded and fixed in the rear sleeve body, and the thrust ball bearing is clamped between the front sleeve body and the rear sleeve body; the outer end of the rod body sequentially penetrates through the rear sleeve body, the thrust ball bearing and the front sleeve body.
Furthermore, the solar push rod with higher wind resistance comprises a fastening nut, the outer end of the rod body penetrates through the front sleeve body and extends outwards to form a fixed section, and the fastening nut is connected with the fixed section; when the fastening nut and the fixed section are in a screwing state, the rod body and the gear set are relatively fixedly arranged.
Further, the gear set includes a gear cover, a gear portion, and a gear case having a side end opening, the gear portion being mounted in the gear case, the gear cover covering the side end opening of the gear case; the stress seat and the gear cover are fixedly arranged, and the gear shell and the bearing seat are fixedly arranged.
Furthermore, the solar push rod with stronger wind resistance comprises a fixing piece, and the fixing piece penetrates through the stress base and extends through the bearing base; when the fixing piece is screwed, the stress seat and the bearing seat are relatively fixedly arranged.
Furthermore, the solar push rod with stronger wind resistance comprises a connecting seat, the connecting seat and the bearing seat are fixedly arranged, and the rod body penetrates through the connecting seat and extends outwards to be connected with the gear set; when the motor group drives the gear group to work, the rod body rotates to drive the push rod shell to move relative to the connecting seat.
Compared with the prior art, the solar push rod with stronger wind resistance provided by the utility model has the advantages that when the solar push rod is used, the gear set is driven by the motor set to work, and the gear set drives the push rod set to extend and retract, so that the angle adjustment of the photovoltaic panel is realized; the reinforcing plate and the thrust ball bearing are fixedly arranged, external thrust and pulling force are transmitted to the thrust ball bearing through the push rod group, and the thrust ball bearing is transmitted to the reinforcing plate; under the action of the reinforcing plate, the bearing capacity of the push rod group is improved, so that the solar push rod has better wind resistance, and the service life of the solar push rod is ensured; the reinforcing plate divides the thrust ball bearing into an upper bearing and a lower bearing, the upper bearing and the lower bearing are respectively fixed at two ends of the reinforcing plate, external thrust and pulling force are borne by the reinforcing plate, the reinforcing plate is high in strength and can bear larger push-pull force, deformation and damage to other components are avoided, and the bearing capacity of the solar push rod is improved.
Drawings
Fig. 1 is an exploded schematic view of a solar energy push rod with stronger wind resistance provided by the present invention;
fig. 2 is a schematic cross-sectional view of the solar energy push rod with stronger wind resistance provided by the present invention;
fig. 3 is a schematic perspective view of the solar energy push rod with stronger wind resistance provided by the present invention;
fig. 4 is an internal schematic view of the solar energy push rod with stronger wind resistance provided by the present invention.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
The following describes the implementation of the present invention in detail with reference to specific embodiments.
The same or similar reference numerals in the drawings of the present embodiment correspond to the same or similar components; in the description of the present invention, it should be understood that if there are the terms "upper", "lower", "left", "right", etc. indicating the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, it is only for convenience of description and simplification of the description, but it is not intended to indicate or imply that the device or element referred to must have a specific orientation, be constructed in a specific orientation, and be operated, and therefore the terms describing the positional relationship in the drawings are only for illustrative purposes and are not to be construed as limitations of the present patent, and those skilled in the art can understand the specific meanings of the terms according to specific situations.
Referring to fig. 1-4, the preferred embodiment of the present invention is shown.
The utility model provides a solar energy push rod that anti-wind ability is stronger, including motor group 1, gear train 2, bearing seat 3, reinforcing plate 4, thrust ball bearing 5 and the flexible push rod group 6 of adjusting the photovoltaic board angle, motor group 1 is the meshing with gear train 2 and arranges, gear train 2 is the meshing with push rod group 6 and arranges, bearing seat 3, reinforcing plate 4, thrust ball bearing 5, push rod group 6 is to arrange in proper order and be the relatively fixed and arrange, reinforcing plate 4 falls into thrust ball bearing 5 upper bearing 51 and lower bearing 52, and upper bearing 51 and lower bearing 52 fix respectively at the both ends of reinforcing plate 4.
According to the solar push rod with higher wind resistance, in the use process of the solar push rod, the motor group 1 drives the gear group 2 to work, and the gear group 2 drives the push rod group 6 to stretch and retract, so that the angle adjustment of the photovoltaic panel is realized; the reinforcing plate 4 and the bearing plate are fixedly arranged, external thrust and pulling force are transmitted to the thrust ball bearing 5 through the push rod group 6, the thrust ball bearing 5 is transmitted to the reinforcing plate 4, and the reinforcing plate 4 is transmitted to the gear group 2; under the action of the reinforcing plate 4, the bearing capacity of the push rod group 6 is improved, so that the solar push rod has better wind resistance, and the service life of the solar push rod is ensured; the thrust ball bearing 5 is divided into the upper bearing 51 and the lower bearing 52 by the reinforcing plate 4, the upper bearing 51 and the lower bearing 52 are respectively fixed at two ends of the reinforcing plate 4, external thrust and pulling force are borne by the reinforcing plate 4, the strength of the reinforcing plate 4 is high, larger push-pull force can be borne, deformation and damage to other components are avoided, and the bearing capacity of the solar push rod is improved.
The gear set 2 is provided with a rear end face deviating from the push rod set 6, the rear end face of the gear set 2 is provided with a stress seat 21, and the stress seat 21 and the rear end face of the gear set 2 are fixedly arranged.
The external push-pull force is finally transmitted to the stress base 21 through the gear set 2, and the stress base 21 further improves the bearing capacity of the solar push rod.
Be equipped with a plurality of first screws 211 and a plurality of second screw 212 on the atress seat 21, be equipped with a plurality of first nuts and a plurality of second nut on the reinforcing plate 4, along the direction of atress seat 21 to reinforcing plate 4, first screw 211 runs through atress seat 21 in proper order, bearing seat 3, reinforcing plate 4 and first nut, and lock bearing seat 3 and reinforcing plate 4, second screw 212 runs through atress seat 21 in proper order, bearing seat 3, reinforcing plate 4 and second nut, and lock bearing seat 3 and reinforcing plate 4.
The first screw 211 is an M6 screw, the first nut is an M6 nut, the second screw 212 is an M8 screw, and the second nut is an M8 nut.
The stress base 21, the bearing base 3 and the reinforcing plate 4 form a whole, so that the whole structure of the solar push rod is more stable.
The gear set 2 is provided with a front end face facing the push rod set 6, and the bearing seat 3 and the front end face of the gear set 2 are fixedly arranged; the push rod group 6 comprises a telescopic rod body 61 and a push rod shell 62 which is fixedly arranged, the inner end of the rod body 61 is fixedly arranged with the push rod shell 62, and the outer end of the rod body 61 extends to penetrate through the rear end faces of the reinforcing plate 4 and the gear set 2 respectively and is arranged in a meshed mode with the gear set 2.
The body of rod 61 is flexible to realize the regulation to the photovoltaic board angle, and the body of rod 61 runs through reinforcing plate 4 and gear train 2, can transmit the push-pull power of coming on the photovoltaic board for reinforcing plate 4.
The body of rod 61 includes preceding pole and back pole, and gear set 2 is connected to the preceding pole, and preceding pole and back pole pass through threaded connection, and like this, when the pole was rotatory before the gear set 2 drive, the relative back pole of messenger's preceding pole removed, realizes the flexible of the body of rod 61.
Alternatively, the extension and retraction of the rod 61 are achieved by hydraulic pressure, or the extension and retraction of the rod 61 are achieved by providing a driving motor.
The photovoltaic panel is fixed on the stress base 21, and under the effect of stress base 21, the installation area of photovoltaic panel is increased, and the bearing capacity of solar energy push rod are improved.
The rod body 61 comprises a telescopic part 612 and a fixing part 611, the telescopic part 612 forms an outer end, and the fixing part 611 and the push rod shell 62 are fixedly arranged; when the gear set 2 drives the telescopic part 612 to rotate, the telescopic part 612 moves relative to the fixed part 611; thereby realize the flexible of the body of rod 61, realize the angle modulation to the photovoltaic board.
The gear set 2 comprises a connecting sleeve 22, the connecting sleeve 22 comprises a front sleeve body 221 and a rear sleeve body 222, the front sleeve body 221 penetrates through the thrust ball bearing 5 and is embedded into the fixed rear sleeve body 222, and the thrust ball bearing 5 is clamped between the front sleeve body 221 and the rear sleeve body 222; the outer end of the rod body 61 penetrates through the rear sleeve body 222, the thrust ball bearing 5 and the front sleeve body 221 in sequence.
The connecting sleeve 22 penetrates through and fixes the thrust ball bearing 5, and the reinforcing plate 4 props against and fixes the thrust bearing; the outer end of the rod body 61 penetrates through the thrust bearing and the connecting sleeve 22 respectively.
When the solar push rod is used, the rod body 61 is subjected to external impact force and push-pull force and is transmitted to the connecting sleeve 22, the connecting sleeve 22 is transmitted to the thrust ball bearing 5, and the thrust ball bearing 5 is transmitted to the reinforcing plate 4, so that force transfer is realized, and the bearing capacity of the solar push rod are improved.
The connecting sleeve 22 comprises a front sleeve body 221 and a rear sleeve body 222, the front sleeve body 221 penetrates through the thrust ball bearing 5 and is embedded into the fixed rear sleeve body 222, and the thrust ball bearing 5 is clamped between the front sleeve body 221 and the rear sleeve body 222; the outer end of the rod body 61 sequentially penetrates through the rear sleeve body 222, the thrust ball bearing 5 and the front sleeve body 221; under the action of the front sleeve body 221 and the rear sleeve body 222, the arrangement stability of the thrust ball bearing 5 is improved, and meanwhile, the transmission of impact force and push-pull force is facilitated.
The front sleeve body 221 comprises a front baffle and a front embedded section, the front baffle is connected with one end of the front embedded section, the rear sleeve body 222 comprises a rear baffle and a rear embedded section, and the rear baffle is connected with one end of the rear embedded section; the other end of the front embedding section is embedded into a thrust ball bearing 5, the front baffle is abutted against one end of the thrust ball bearing 5, the other end of the rear embedding section is embedded into the thrust ball bearing 5, and the rear baffle is abutted against the other end of the thrust ball bearing 5; the relative fixing effect of the front sleeve body 221, the thrust ball bearing 5 and the rear sleeve body 222 is enhanced, and the transmission and the transfer of force are ensured.
The front baffle and the rear baffle are respectively arranged in a circular ring shape, and are respectively arranged towards the thrust ball bearing 5 in a flat shape; thus, the contact area between the front baffle and the thrust ball bearing 5 is increased, the contact area between the rear baffle and the thrust ball bearing 5 is increased, the setting stability of the thrust ball bearing 5 is enhanced, and the transmission and the transfer of force are facilitated.
The rear sleeve body 222 is connected with a deep groove ball bearing 223, and the rod body 61 penetrates through the rear sleeve body 222 after penetrating through the deep groove ball bearing 223; under the effect of deep groove ball bearing 223, bear radial load, strengthen the flexible stability of the body of rod 61.
The solar push rod with stronger wind resistance comprises a fastening nut, the outer end of the rod body 61 penetrates through the front sleeve body 221 and extends outwards to form a fixed section, and the fastening nut is connected with the fixed section; when the fastening nut and the fixing section are in a screwed state, the rod body 61 and the gear set 2 are relatively fixedly arranged; the setting steadiness of the reinforcing body of rod 61.
The fastening nut and the stressed seat 21 are fixedly arranged, so that the reinforcing plate 4 can transmit impact force and push-pull force to the stressed seat 21 conveniently; meanwhile, the connection stability of the force bearing seat 21 and the gear set 2 is enhanced.
The gear set 2 includes a gear cover 23, a gear portion 24, and a gear case 25 having a side end opening, the gear portion 24 being mounted in the gear case 25, the gear cover 23 covering the side end opening of the gear case 25; the stress seat 21 and the gear cover 23 are fixedly arranged, and the gear shell 25 and the bearing seat 3 are fixedly arranged; the stress base 21 and the gear set 2 are relatively fixedly arranged.
Moreover, gear portion 24 includes a plurality of gears, and a plurality of gear intermeshing realizes the transmission of power, realizes that the power transmission of motor group 1 reaches the body of rod 61, realizes the flexible of the body of rod 61 to adjust the angle of photovoltaic board.
The solar push rod with stronger wind resistance comprises a fixing piece 7, wherein the fixing piece 7 penetrates through the stress base 21 and extends to penetrate through the bearing base 3; when the fixing piece 7 is screwed, the stress base 21 and the bearing base 3 are relatively fixedly arranged; under the action of the fixing piece 7, the force bearing seat 21, the gear cover 23, the gear shell 25 and the bearing seat 3 are integrated.
In addition, under the action of the fixing piece 7, the bearing seat 3 and the reinforcing plate 4 are convenient to transmit the impact force and the push-pull force to the paper bearing seat 21, and the integral impact force and the load force are improved.
The solar push rod with stronger wind resistance comprises a connecting seat 8, the connecting seat 8 and the bearing seat 3 are fixedly arranged, and a rod body 61 penetrates through the connecting seat 8 and extends outwards to be connected with the gear set 2; when the motor group 1 drives the gear group 2 to work, the rod body 61 rotates to drive the push rod shell 62 to move relative to the connecting seat 8; realize the body of rod 61 flexible, in addition, under the effect of connecting seat 8, the cooperation of push rod shell 62 and gear train 2 is convenient for.
The motor group 1 comprises a driving motor, the driving motor is provided with a power output end, and the power output end of the driving motor extends to be meshed with the gear parts 24 of the gear group 2, so that the gears of the gear parts 24 are driven to rotate, and power transmission is realized.
The above description is only exemplary of the present invention and should not be construed as limiting the present invention, and any modifications, equivalents and improvements made within the spirit and principles of the present invention are intended to be included within the scope of the present invention.

Claims (10)

1. Solar energy push rod that anti wind ability is stronger, its characterized in that, including motor group, gear train, bearing seat, reinforcing plate, thrust ball bearing and the flexible push rod group who adjusts the photovoltaic board angle, motor group with the gear train is the meshing and arranges, the gear train with push rod group is the meshing and arranges, the bearing seat the reinforcing plate thrust ball bearing push rod group is to arrange in proper order and be the relatively fixed arrangement, the reinforcing plate will thrust ball bearing falls into upper bearing and lower bearing, just upper bearing and the lower bearing is fixed respectively the both ends of reinforcing plate.
2. The solar energy push rod with higher wind resistance capability of claim 1, wherein the gear set is provided with a rear end face deviating from the push rod set, the rear end face of the gear set is provided with a stress base, and the stress base and the rear end face of the gear set are fixedly arranged.
3. The solar energy push rod with stronger wind resistance capability according to claim 2, wherein a plurality of first screws and a plurality of second screws are arranged on the stress base, a plurality of first nuts and a plurality of second nuts are arranged on the reinforcing plate, and along the direction from the stress base to the reinforcing plate, the first screws sequentially penetrate through the stress base, the bearing base, the reinforcing plate and the first nuts and lock the bearing base with the reinforcing plate, and the second screws sequentially penetrate through the stress base, the bearing base, the reinforcing plate and the second nuts and lock the bearing base with the reinforcing plate.
4. The solar putter of claim 3 wherein said gear train has a front face facing said putter train, said load bearing seat being fixedly disposed with said front face of said gear train; the push rod group includes the telescopic body of rod and is the push rod shell of fixed arrangement, the inner of the body of rod with the push rod shell is fixed arrangement, the outer end of the body of rod extends and runs through respectively the reinforcing plate with the rear end face of gear train and with the gear train is the meshing and arranges.
5. The more wind resistant solar putter of claim 4 wherein said shaft includes a telescoping portion forming said outer end and a fixed portion in fixed arrangement with said putter housing; when the gear set drives the telescopic part to rotate, the telescopic part moves relative to the fixed part.
6. The solar energy push rod with higher wind resistance as claimed in claim 5, wherein the gear set comprises a connecting sleeve, the connecting sleeve comprises a front sleeve body and a rear sleeve body, the front sleeve body penetrates through the thrust ball bearing to be embedded and fixed in the rear sleeve body, and the thrust ball bearing is clamped between the front sleeve body and the rear sleeve body; the outer end of the rod body sequentially penetrates through the rear sleeve body, the thrust ball bearing and the front sleeve body.
7. The solar energy push rod with higher wind resistance as claimed in claim 6, wherein the solar energy push rod with higher wind resistance comprises a fastening nut, the outer end of the rod body extends outwards through the front sleeve body to form a fixed section, and the fastening nut is connected with the fixed section; when the fastening nut and the fixed section are in a screwing state, the rod body and the gear set are relatively fixedly arranged.
8. The solar putter of any one of claims 2-6 wherein the gear assembly includes a gear cover, a gear portion and a gear housing having a side opening, the gear portion being mounted within the gear housing, the gear cover covering the side opening of the gear housing; the stress seat and the gear cover are fixedly arranged, and the gear shell and the bearing seat are fixedly arranged.
9. The solar energy push rod with stronger wind resistance capability of any one of claims 2 to 6, characterized in that the solar energy push rod with stronger wind resistance capability comprises a fixing piece which extends through the force bearing seat and penetrates through the load bearing seat; when the fixing piece is screwed, the stress seat and the bearing seat are relatively fixedly arranged.
10. The solar energy push rod with stronger wind resistance capability of any one of claims 4 to 6, wherein the solar energy push rod with stronger wind resistance capability comprises a connecting seat, the connecting seat and the bearing seat are fixedly arranged, and the rod body penetrates through the connecting seat and extends outwards to be connected with the gear set; when the motor group drives the gear group to work, the rod body rotates to drive the push rod shell to move relative to the connecting seat.
CN201920960825.6U 2019-06-24 2019-06-24 Solar energy push rod with stronger wind resistance Active CN210921839U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920960825.6U CN210921839U (en) 2019-06-24 2019-06-24 Solar energy push rod with stronger wind resistance

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920960825.6U CN210921839U (en) 2019-06-24 2019-06-24 Solar energy push rod with stronger wind resistance

Publications (1)

Publication Number Publication Date
CN210921839U true CN210921839U (en) 2020-07-03

Family

ID=71351193

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920960825.6U Active CN210921839U (en) 2019-06-24 2019-06-24 Solar energy push rod with stronger wind resistance

Country Status (1)

Country Link
CN (1) CN210921839U (en)

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Effective date of registration: 20220812

Address after: 315000 buildings 3 and 4, No. 398, Binhai Avenue, Binhai New Area, economic development zone, Fenghua District, Ningbo City, Zhejiang Province (self declaration)

Patentee after: Ningbo pavales Intelligent Technology Co.,Ltd.

Address before: 3rd and 4th Floor, Building A2, Kai Ruifeng Industrial Park, No. 137, Changdong Road, Banshi Village, Changping Town, Dongguan City, Guangdong Province, 523573

Patentee before: DONGGUAN POWERNICE INTELLIGENT TECHNOLOGY Co.,Ltd.

TR01 Transfer of patent right