Can clear away triangle roof of snow
Technical Field
The invention relates to a triangular roof, in particular to a triangular roof capable of removing accumulated snow.
Background
Current triangular roof all forms through concrete and brick and tile building, the performance is more single, and the effect of clearing away to snow need be cleared away through the manual work, because triangular roof's height is higher, so when the snow on the manual work is cleared away to triangular roof, need go on at the eminence with the help of the ladder sub-station, so the security is lower, and clear away the in-process of snow, do not carry out the separation to snow, a large amount of snow easily slide to people, easily push away people and lead to the emergence of accident.
Disclosure of Invention
Therefore, the need exists for a snow-clearing triangular roof which can automatically clear away the accumulated snow and can block the accumulated snow to prevent the accumulated snow from directly sliding off.
The utility model provides a can clear away triangular roof of snow, including the triangular roof, the sliding block, the gyro wheel, the scraper blade, the curb plate, drive assembly and sheltering from the subassembly, open on the left of the bottom on triangular roof has the opening, the top slidingtype on triangular roof is connected with the sliding block, sliding block lower part bilateral symmetry rotary type is connected with the gyro wheel, the gyro wheel contacts with the top on triangular roof, sliding block upper portion is connected with the scraper blade, the right flank on triangular roof is connected with the curb plate, be equipped with drive assembly in the triangular roof, drive assembly is connected with the sliding block, triangular roof upper portion is equipped with shelters from the subassembly.
Preferably, the driving assembly comprises a reciprocating screw, a nut, a base plate, a speed reducing motor and a gear, the reciprocating screw is rotatably connected to the upper portion in the triangular roof, the nut is connected to the reciprocating screw in a threaded connection mode, the top of the nut is connected with the bottom of the sliding block, the base plate is installed on the right side of the inner bottom of the triangular roof, the speed reducing motor is installed at the top of the base plate, the gear is connected to an output shaft of the speed reducing motor, the right end of the reciprocating screw is also connected with the gear, and the two gears are meshed.
Preferably, shelter from the subassembly including catch bar, shielding plate and second spring, the upper portion front and back symmetry slidingtype on triangle roof is connected with the shielding plate, two shielding plate contacts, and the medial surface right side of shielding plate is the inclined plane, and the left surface of sliding block is connected with the catch bar, catch bar and shielding plate contact, and bilateral symmetry is connected with the second spring between shielding plate medial surface and the triangle roof lateral surface.
Preferably, still including the separation subassembly, the triangle roof lower part is equipped with the separation subassembly, and the separation subassembly is including guide bar, separation board and first spring, and the equal bilateral symmetry in lateral surface lower part of both sides is connected with the guide bar around the triangle roof, controls and all sliding type connection has the separation board between two guide bars that correspond, separation board and scraper blade sliding type connection, the contact of the lateral surface lower part of separation board and triangle roof, be connected with first spring between separation board and the guide bar.
Preferably, still including the subassembly that struts, the triangle roof left side is equipped with the subassembly that struts, the subassembly that struts is including the locating piece, the sliding plate, a slide rail, the guide rail, contact plate and connecting rod, the top left side on triangle roof is connected with the locating piece, sliding connection has the sliding plate on the locating piece, symmetrical connection has two sliding rails around the middle part of the left surface of triangle roof, equal sliding connection has the guide rail on two sliding rails, equal sliding connection has the connecting rod in two guide rails, two connecting rods are connected with two bafflers respectively, the medial surface of two guide rails all is connected with the contact plate, the upper portion of contact plate is the inclined plane, the contact plate contacts with the sliding plate.
Preferably, still including the climbing subassembly, triangle roof bottom left side is equipped with the climbing subassembly, and the climbing subassembly is including fixed block, climbing ladder, slide bar and gim peg, and triangle roof bottom left side is connected with the fixed block, and the fixed block is located the open-ended left side, and the rotation type is connected with the climbing ladder on the fixed block, and the sliding connection has the slide bar in the climbing ladder, and both sides all are connected with the gim peg through threaded connection's mode around the climbing ladder right part.
Preferably, the triangular roof structure further comprises a suspension assembly, the suspension assembly is arranged on the right side of the bottom of the triangular roof and comprises connecting blocks, rotating rods and clamping blocks, the connecting blocks are symmetrically connected to the front and the back of the right side of the bottom of the triangular roof, the rotating rods are rotatably connected between the two connecting blocks, the clamping blocks are connected to the rotating rods, and the right side face of each clamping block is an inclined plane.
Preferably, the front and rear sides of the lower part of the triangular roof are both arc-shaped.
The invention has the following advantages:
1. the two shielding plates can shield the triangular roof to prevent snow from entering the triangular roof, the reciprocating screw rod can be rotated through the speed reducing motor, the scraper can be moved left and right through the rotation of the reciprocating screw rod, the scraper can be moved left and right to push down the accumulated snow on the triangular roof to the left and right to achieve the purpose of removing the accumulated snow, and therefore the effect of automatically removing the accumulated snow is achieved.
2. The snow cover blocking plate can block the snow on the upper portion of the triangular roof, the snow higher than the blocking plate falls into the lower portion of the triangular roof, the front side and the rear side of the lower portion of the triangular roof are arc-shaped, so that the snow cover can be contained to prevent the snow cover from directly sliding off, the pushing rod moves leftwards to a proper position to enable the blocking plate to move upwards to not block the snow cover on the upper portion of the triangular roof, the snow cover on the upper portion of the triangular roof slides downwards to the lower portion of the triangular roof, the pushing rod and the scraper can move leftwards and rightwards to repeatedly push the snow cover on the lower portion of the triangular roof down, the snow cover can be prevented from directly falling off to the front side and the rear side, safety can be improved, and the effect of blocking the snow cover to prevent the snow cover from directly sliding off is achieved.
3. People can climb upwards through slide bar and climbing ladder, and the rethread opening gets into the inside on triangular roof, and the fixture block can block the slide bar fixedly to can fix the climbing ladder, prevent that slide bar and climbing ladder from rocking at will.
Drawings
Fig. 1 is a schematic perspective view of a first embodiment of the present invention.
Fig. 2 is a partial perspective view of the present invention.
Fig. 3 is a schematic sectional perspective view of the present invention.
Fig. 4 is a schematic perspective view of a second embodiment of the present invention.
Fig. 5 is a schematic perspective view of the driving assembly of the present invention.
Figure 6 is a schematic perspective view of a barrier assembly of the present invention.
Fig. 7 is a perspective view of the expansion assembly of the present invention.
FIG. 8 is a schematic view of a first partial structure of the shielding assembly of the present invention.
FIG. 9 is a schematic view of a second partially assembled body of the shielding assembly of the present invention.
Figure 10 is a perspective view of the climbing assembly of the present invention.
Fig. 11 is a perspective view of the suspension assembly of the present invention.
The labels in the figures are: 1-triangular roof, 2-sliding block, 3-roller, 4-scraper, 5-side plate, 6-driving component, 61-reciprocating screw, 62-nut, 63-backing plate, 64-speed reduction motor, 65-gear, 7-blocking component, 71-guide rod, 72-blocking plate, 73-first spring, 8-spreading component, 81-positioning block, 82-sliding plate, 83-sliding rail, 84-guide rail, 85-contact plate, 86-connecting rod, 9-blocking component, 91-pushing rod, 92-blocking plate, 93-second spring, 10-climbing component, 101-fixing block, 102-climbing ladder, 103-sliding rod, 104-positioning bolt, 11-hanging component, 111-connecting block, 112-rotating rod, 113-clamping block.
Detailed Description
To facilitate an understanding of the invention, the invention will now be described more fully hereinafter with reference to the accompanying drawings. Preferred embodiments of the present invention are shown in the drawings. This invention may, however, be embodied in many different forms and should not be construed as limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete.
It should be noted that the terms "inner", "outer", "left", "right" and the like as used herein are for illustrative purposes only and do not represent the only embodiments.
Example 1
Referring to fig. 1-4, a triangular roof capable of removing accumulated snow comprises a triangular roof 1, sliding blocks 2, rollers 3, scraping plates 4, side plates 5, a driving component 6 and a shielding component 9, wherein the front side and the rear side of the lower part of the triangular roof 1 are circular arc-shaped, the left side of the bottom of the triangular roof 1 is provided with an opening through which people can conveniently enter the triangular roof 1, the top of the triangular roof 1 is slidably connected with the sliding blocks 2, the lower part of the sliding blocks 2 is bilaterally and rotationally connected with the rollers 3, the rollers 3 are in contact with the top of the triangular roof 1, the rollers 3 can assist the sliding blocks 2 to move, the upper part of the sliding blocks 2 is connected with the scraping plates 4 in a bolt connection mode, the scraping plates 4 are used for removing accumulated snow, the right side of the triangular roof 1 is connected with the side plates 5, the side plates 5 are used for closing the triangular roof 1, the driving component 6 is arranged in the triangular roof 1, drive assembly 6 is connected with sliding block 2, and drive assembly 6 is used for driving sliding block 2 and takes scraper blade 4 to remove the snow removing, and 1 upper portion on the triangular roof is equipped with shelters from subassembly 9, shelters from subassembly 9 and is used for sheltering from triangular roof 1, prevents that the snow from getting into in the triangular roof 1.
Referring to fig. 3 and 5, the driving assembly 6 includes a reciprocating screw 61, a nut 62, a backing plate 63, a reduction motor 64 and a gear 65, the upper portion inside the triangular roof 1 is connected with the reciprocating screw 61 through a bearing, the reciprocating screw 61 is connected with the nut 62 through a threaded connection mode, the top of the nut 62 is connected with the bottom of the sliding block 2, the backing plate 63 is installed on the right side of the inner bottom of the triangular roof 1 through a bolt connection mode, the reduction motor 64 is installed on the top of the backing plate 63 through a bolt connection mode, an output shaft of the reduction motor 64 is connected with the gear 65 through a coupling, the right end of the reciprocating screw 61 is also connected with the gear 65, and the two gears 65 are meshed.
As shown in fig. 1, 8 and 9, the shielding assembly 9 includes a push rod 91, shielding plates 92 and second springs 93, the shielding plates 92 are connected to the upper portion of the triangular roof 1 in a sliding manner, the two shielding plates 92 are in contact with each other, the shielding plates 92 are used for shielding the triangular roof 1 to prevent snow from entering the triangular roof 1, the right sides of the inner side surfaces of the shielding plates 92 are inclined surfaces, the left side surface of the sliding block 2 is connected with the push rod 91, the push rod 91 is in contact with the shielding plates 92, and the second springs 93 are symmetrically connected between the inner side surfaces of the shielding plates 92 and the outer side surface of the triangular roof 1.
When more accumulated snow is accumulated on the triangular roof 1 and the accumulated snow on the triangular roof 1 needs to be cleared, the output shaft of the gear motor 64 is started to rotate, the reciprocating screw 61 can be driven to rotate through the gear 65, the nut 62 can be driven to move left and right through the rotation of the reciprocating screw 61, the nut 62 moves left and right to drive the sliding block 2 to move left and right, the roller 3 rolls on the top of the triangular roof 1 along with the reciprocating screw, the sliding block 2 moves left and right to drive the scraper 4 and the push rod 91 thereon to move left and right, the push rod 91 moves left to extrude the two shielding plates 92 to move outwards, the second spring 93 stretches along with the nut, the two shielding plates 92 do not shield the triangular roof 1 after moving outwards, so that the sliding block 2 and the push rod 91 can move left and right smoothly, the scraper 4 can push the accumulated snow on the triangular roof 1 downwards towards the left and right sides, the accumulated snow clearing purpose is achieved, and after the accumulated snow on the triangular roof 1 is cleared, after the sliding block 2 drives the scraper 4 and the push rod 91 to move rightwards to the limit, the speed reducing motor 64 is closed; the push rod 91 moves rightwards to the limit and then is separated from the shielding plates 92, under the reset action of the second spring 93, the two shielding plates 92 can move inwards to reset and contact with each other, so that the triangular roof 1 can be shielded through the two shielding plates 92, and snow can be prevented from entering the triangular roof 1.
Example 2
On embodiment 1's basis, combine shown in fig. 1 and fig. 6, still including separation subassembly 7, triangle roof 1 lower part is equipped with separation subassembly 7, separation subassembly 7 is used for blockking snow, prevent that snow is direct landing downwards, separation subassembly 7 is including guide bar 71, separation board 72 and first spring 73, the equal bilateral symmetry of lateral surface lower part of triangle roof 1 front and back both sides is connected with guide bar 71, all sliding connection has separation board 72 between two guide bar 71 that correspond about, separation board 72 and scraper blade 4 sliding connection, separation board 72 and the contact of the lateral surface lower part of triangle roof 1, separation board 72 is used for blockking snow, prevent that snow is direct landing downwards, be connected with first spring 73 between separation board 72 and the guide bar 71.
Referring to fig. 1 and 7, the snow-removing roof further comprises a spreading assembly 8, the spreading assembly 8 is arranged on the left side of the triangular roof 1, the spreading assembly 8 is used for driving the blocking plate 72 to move upwards to enable snow on the upper portion of the triangular roof 1 to slide down to the lower portion of the triangular roof 1, the spreading assembly 8 comprises a positioning block 81, a sliding plate 82, sliding rails 83, guide rails 84, contact plates 85 and connecting rods 86, the positioning block 81 is connected to the left side of the top of the triangular roof 1, the sliding plate 82 is connected to the positioning block 81 in a sliding manner, the two sliding rails 83 are symmetrically connected to the front and back of the middle portion of the left side surface of the triangular roof 1, the two sliding rails 83 are connected to the guide rails 84 in a sliding manner, the connecting rods 86 are connected to the two blocking plates 72 in a sliding manner, the contact plates 85 are connected to the inner side surfaces of the two guide rails 84 in a bolt connection manner, and the upper portion of the contact plates 85 is an inclined surface, the contact plate 85 is in contact with the slide plate 82.
Initially, the blocking plate 72 blocks the accumulated snow on the upper part of the triangular roof 1, the accumulated snow higher than the blocking plate 72 falls into the lower part of the triangular roof 1, because the front side and the rear side of the lower part of the triangular roof 1 are both arc-shaped, the snow can be contained and prevented from directly sliding off, so that the snow at the lower part of the triangular roof 1 can be pushed down when the scraper 4 moves leftwards, when the pushing rod 91 moves leftwards to be in contact with the sliding plate 82, the pushing rod 91 continues to move leftwards to push the sliding plate 82 to move leftwards, the sliding plate 82 moves leftwards to push the contact plate 85 to move outwards, the contact plate 85 moves outwards to push the guide rail 84 to move outwards, the guide rail 84 moves outwards to push the blocking plate 72 to move upwards through the connecting rod 86, the first spring 73 is compressed, the connecting rod 86 slides in the guide rail 84, the blocking plate 72 does not block snow on the upper portion of the triangular roof 1 after moving upwards, and the snow on the upper portion of the triangular roof 1 slides downwards to the lower portion of the triangular roof 1; when the pushing rod 91 moves rightwards to be separated from the sliding plate 82, the blocking plate 72 can move downwards to reset under the reset action of the first spring 73 to block the accumulated snow on the upper part of the triangular roof 1 again, the blocking plate 72 moves downwards to reset, the guide rail 84 can move inwards to reset through the connecting rod 86, the guide rail 84 moves inwards to reset to drive the contact plate 85 to move inwards to reset, the contact plate 85 moves inwards to reset to push the sliding plate 82 to move rightwards to reset, so that the accumulated snow on the lower part of the triangular roof 1 can be pushed downwards again when the scraper 4 moves rightwards, the operation of clearing the accumulated snow can be repeated, the accumulated snow can be prevented from directly falling to the front side and the rear side, and the safety can be improved.
Example 3
On embodiment 2's basis, combine shown in fig. 4 and 10, still including climbing subassembly 10, 1 bottom left side of triangular roof is equipped with climbing subassembly 10, climbing subassembly 10 is used for people to climb and gets into in the triangular roof 1, climbing subassembly 10 is including fixed block 101, climbing ladder 102, sliding rod 103 and gim peg 104, 1 bottom left side of triangular roof is connected with fixed block 101, fixed block 101 is located the open-ended left side, the rotation type is connected with climbing ladder 102 on the fixed block 101, sliding rod 103 is connected with in the climbing ladder 102, both sides all are connected with gim peg 104 through threaded connection's the mode around the climbing ladder 102 right part, gim peg 104 is used for fixing sliding rod 103.
As shown in fig. 4 and fig. 11, the climbing ladder further includes a hanging component 11, the hanging component 11 is arranged on the right side of the bottom of the triangular roof 1, the hanging component 11 is used for limiting the sliding rod 103 and the climbing ladder 102, and preventing the sliding rod 103 and the climbing ladder 102 from shaking randomly, the hanging component 11 includes a connecting block 111, a rotating rod 112 and a clamping block 113, the connecting block 111 is symmetrically connected to the front and back of the right side of the bottom of the triangular roof 1, the rotating rod 112 is rotatably connected between the two connecting blocks 111, the clamping block 113 is connected to the rotating rod 112, the right side of the clamping block 113 is an inclined plane, the clamping block 113 is used for clamping the sliding rod 103 to limit the climbing ladder 102, and preventing the sliding rod 103 and the climbing ladder 102 from shaking randomly.
Initially, the clamping block 113 clamps the sliding rod 103, when people want to enter the triangular roof 1, the clamping block 113 can be rotated towards the left lower direction, so that the clamping block 113 loosens the sliding rod 103, then the clamping block 113 is loosened, and under the action of gravity, the clamping block 113 is rotated and reset along with the sliding rod 103; the sliding rod 103 can then be turned to the lower left to turn the climbing ladder 102 to the lower left, then the positioning bolt 104 is unscrewed to loosen the sliding rod 103, then the sliding rod 103 is pulled downwards to make the sliding rod 103 contact with the ground, then the positioning bolt 104 is screwed down to fix the sliding rod 103, and then people can climb upwards through the sliding rod 103 and the climbing ladder 102 and enter the inside of the triangular roof 1 through the opening. When people climb down to the ground, the operation is repeated, so that the sliding rod 103 moves back into the climbing ladder 102, then the sliding rod 103 rotates towards the right upper side, so that the climbing ladder 102 rotates towards the right upper side to reset, after the sliding rod 103 rotates to be in contact with the fixture block 113, the sliding rod 103 continues to rotate, so that the fixture block 113 can be extruded to rotate towards the left upper side, and after the sliding rod 103 does not extrude the fixture block 113, under the action of gravity, the fixture block 113 rotates and resets to clamp and fix the sliding rod 103 again, so that the climbing ladder 102 can be fixed, and the sliding rod 103 and the climbing ladder 102 are prevented from shaking randomly.
The above examples are merely representative of preferred embodiments of the present invention, and the description thereof is more specific and detailed, but not to be construed as limiting the scope of the present invention. It should be noted that various changes, modifications and substitutions may be made by those skilled in the art without departing from the spirit of the invention, and all are intended to be included within the scope of the invention. Therefore, the protection scope of the present patent shall be subject to the appended claims.