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CN-224226570-U - Plate feeding mechanism for photovoltaic plate installation

CN224226570UCN 224226570 UCN224226570 UCN 224226570UCN-224226570-U

Abstract

The utility model discloses a plate feeding mechanism for installing a photovoltaic plate, which relates to the technical field of photovoltaic plate installation, and comprises a photovoltaic plate support, wherein a photovoltaic power generation plate is fixedly connected to the upper side of the photovoltaic plate support, and a photovoltaic plate feeding device is also arranged on one side of the photovoltaic plate support away from the photovoltaic power generation plate; the photovoltaic panel upper plate device comprises two symmetrically arranged supporting side frames, wherein two ends of each supporting side frame are fixedly connected with end stepped shafts, the outer sides of the end stepped shafts are movably connected with lifting driving mechanisms, plate lifting mechanisms are arranged on the lifting driving mechanisms, two ends of each plate lifting mechanism are fixedly connected with safety locking mechanisms which are in sliding fit with the supporting side frames, and the connecting positions of the U-shaped connecting frames and the supporting side frames can be limited by the mutual fit between the double-tooth swing lock cylinders and the triangular teeth, so that the U-shaped connecting frames and the supporting side frames can only move towards one direction, and the situation of sliding of a photovoltaic panel during movement is prevented.

Inventors

  • LIU SHAN
  • LIU HAIMIN

Assignees

  • 广东广盛合新能源科技有限公司

Dates

Publication Date
20260512
Application Date
20250623

Claims (9)

  1. 1. The upper plate mechanism for installing the photovoltaic plate is characterized by comprising a photovoltaic plate bracket (1), wherein a photovoltaic power generation plate (2) is fixedly connected to the upper side of the photovoltaic plate bracket (1), and a photovoltaic plate upper plate device is also arranged on one side, far away from the photovoltaic power generation plate (2), of the photovoltaic plate bracket (1); The photovoltaic panel upper plate device comprises two symmetrically arranged supporting side frames (3), wherein the two ends of the supporting side frames (3) are fixedly connected with end stepped shafts (4), the outer sides of the end stepped shafts (4) are movably connected with lifting driving mechanisms (5), and the lifting driving mechanisms (5) are provided with plate lifting mechanisms (6); Both ends of panel elevating system (6) all fixedly connected with and supporting sideframe (3) sliding fit's safe locking mechanism (7), wherein, safe locking mechanism (7) are including installing shell (71), and the one end that panel elevating system (6) was kept away from to installing shell (71) is equipped with supporting sideframe (3) sliding fit's recess.
  2. 2. The upper plate mechanism for installing the photovoltaic panel according to claim 1, wherein the inner side of the installation shell (71) is further provided with an installation groove (73), the inner side of the installation groove (73) is provided with a double-tooth swing lock cylinder (72) movably connected with the installation shell (71), one end of the double-tooth swing lock cylinder (72) penetrates through the installation shell (71) to extend to the upper side of the installation shell (71), and a steering deflector rod (74) is fixedly connected to the upper side of the installation shell (71).
  3. 3. The upper plate mechanism for installing the photovoltaic panel according to claim 2, wherein triangular teeth (32) are fixedly connected to the inner side of the support side frame (3) in a rectangular array, clamping angles matched with the triangular teeth (32) in a clamping mode are symmetrically arranged on one side of the double-tooth swing lock cylinder (72), and arc-shaped grooves (75) corresponding to the clamping angles are formed on the other side of the double-tooth swing lock cylinder (72).
  4. 4. The upper plate mechanism for installing the photovoltaic panel according to claim 3, wherein the inner side of the installation shell (71) is also in sliding fit with a spherical clamping bead (76), the installation shell (71) is positioned in an arc-shaped groove (75) on any side, and the other side of the spherical clamping bead (76) is fixedly connected with a compression spring (77).
  5. 5. The upper plate mechanism for installing the photovoltaic panel according to claim 4, wherein the plate lifting mechanism (6) comprises a U-shaped connecting frame (61), the two ends of the U-shaped connecting frame (61) are fixedly provided with installing shells (71) through bolts, an L-shaped baffle (63) is integrally arranged above the U-shaped connecting frame (61), and a sliding roll shaft (64) is movably connected between the L-shaped baffle (63) and the U-shaped connecting frame (61) in a rectangular array.
  6. 6. The upper plate mechanism for installing the photovoltaic panel according to claim 5, wherein the lifting driving mechanism (5) comprises symmetrical hollow winding rollers (51), each hollow winding roller (51) is sleeved outside the corresponding end stepped shaft (4), a steel wire traction rope (52) is wound between the two hollow winding rollers (51) in a rectangular array mode, and two ends of the steel wire traction rope (52) are fixedly connected with two sides of the U-shaped connecting frame (61) respectively.
  7. 7. The upper plate mechanism for installing the photovoltaic panel according to claim 6, wherein the end part of the hollow winding roller (51) on any side is fixedly connected with a gear ring, a driving gear (53) is matched with the side surface of the gear ring in a transmission way, and the end part of the driving gear (53) is fixedly connected with a transmission shaft lever (54) penetrating through the supporting side frame (3).
  8. 8. The upper plate mechanism for installing the photovoltaic panel according to claim 7, wherein the supporting side frame (3) is provided with a power steering gear (55) at one end close to the transmission shaft lever (54), the power steering gear (55) is in transmission fit with the transmission shaft lever (54), the end part of the power steering gear (55) is in transmission fit with a driving motor (56), and the driving motor (56) is fixedly connected with the supporting side frame (3).
  9. 9. The upper plate mechanism for installing the photovoltaic panel according to claim 8, wherein a groove through groove (62) corresponding to the steel wire traction rope (52) is formed below the U-shaped connecting frame (61), and the steel wire traction rope (52) penetrates through the inner side of the groove through groove (62).

Description

Plate feeding mechanism for photovoltaic plate installation Technical Field The utility model particularly relates to the technical field of photovoltaic panel installation, in particular to an upper panel mechanism for photovoltaic panel installation. Background In order to perform the suspension of a load on a conventional pallet, for example a wooden pallet, and by arranging the strap, it is possible to fix it by a single-part strap (also called an endless strap) by passing the strap under the pallet and then through the load above. However, in practice, it has been noted that most of the current plate feeding mechanisms adopt steel wire ropes to pull the plates, and the connection parts are generally connected by using hooks, so that the plates are very easy to loose during movement, and the moving plates drop downwards, so that the plates are damaged, and the workers below are easily injured; The movable frame is pulled by the steel wire rope to carry out upper plate, the steel wire rope is pulled, along with the increase of service time, the junction of the steel wire rope and the movable frame and the steel wire rope can be worn greatly, when the wear is serious, the risk of tripping or breakage can be caused in the use process, and the photovoltaic plate falls down, so that the risk is high during use, and the safety is poor. Disclosure of utility model The utility model aims to provide an upper plate mechanism for installing a photovoltaic plate, which can limit the connection part of a U-shaped connecting frame and a side supporting frame to move only in one direction through the mutual matching between a double-tooth swing lock cylinder and triangular teeth, so that the situation of sliding off during the movement of the photovoltaic plate is prevented, and a steel wire traction rope in a rectangular array can be used for distributing the tensile force during the upper plate, so that safety accidents caused by damage are prevented, and the safety during the use is further improved. To solve the technical problems set forth in the background art. In order to achieve the above purpose, the present utility model provides the following technical solutions: The upper plate mechanism for installing the photovoltaic plate comprises a photovoltaic plate support, wherein a photovoltaic power generation plate is fixedly connected to the upper side of the photovoltaic plate support, and a photovoltaic plate upper plate device is further arranged on one side, far away from the photovoltaic power generation plate, of the photovoltaic plate support; The photovoltaic panel upper plate device comprises two symmetrically arranged supporting side frames, wherein the two ends of each supporting side frame are fixedly connected with end stepped shafts, the outer sides of the end stepped shafts are movably connected with lifting driving mechanisms, and the lifting driving mechanisms are provided with plate lifting mechanisms; both ends of panel elevating system all fixedly connected with and support limit frame sliding fit's safe locking mechanism, wherein, safe locking mechanism is including the installation shell, and the one end that the installation shell kept away from panel elevating system is equipped with and supports limit frame sliding fit's recess. As a further technical scheme of the utility model, the inner side of the installation shell is also provided with an installation groove, the inner side of the installation groove is provided with a double-tooth swing lock cylinder movably connected with the installation shell, one end of the double-tooth swing lock cylinder penetrates through the installation shell to extend to the upper side of the installation shell, and a steering deflector rod is fixedly connected to the upper side of the installation shell. As a further technical scheme of the utility model, triangular teeth are fixedly connected to the inner side of the support side frame in a rectangular array, clamping angles matched with the triangular teeth in a clamping way are symmetrically arranged on one side of the double-tooth swing lock cylinder, and arc-shaped grooves corresponding to the clamping angles are formed on the other side of the double-tooth swing lock cylinder. As a further technical scheme of the utility model, the inner side of the installation shell is also in sliding fit with a spherical clamping bead, the installation shell is positioned in an arc-shaped groove on any side, and the other side of the spherical clamping bead is fixedly connected with a compression spring. As a further technical scheme of the utility model, the plate lifting mechanism comprises a U-shaped connecting frame, the two ends of the U-shaped connecting frame are both fixedly provided with mounting shells through bolts, an L-shaped baffle is integrally arranged above the U-shaped connecting frame, and a sliding roll shaft is movably connected between the L-shaped baffle and the U-shaped connecting frame