Portable garden management trees mount
Technical Field
The invention relates to an ornamental tree management device, in particular to a portable ornamental tree management fixing frame, and particularly relates to a portable ornamental tree management fixing frame capable of fixing a tree which is planted initially.
Background
The urban greening area is further promoted to be increased and decreased along with the continuous development of urban construction, wherein in the current urban construction process, big trees are mostly planted on two sides of a road, so that the urban greening area can be further improved along with the planting of the trees, and the urban greening is purified, wherein in the current tree planting process, the trees are supported by a support stick in the tree planting process, so that the trees can be further fixed, the trees are prevented from falling in the strong wind, although the purpose of supporting the trees can be achieved by the support rod, in the strong wind process, the purpose of supporting the trees can be achieved by the support rod, but the support effect of the support rod is not ideal due to the overlarge wind power, the problem that trees topple over can cause in the same way, fix the bracing piece on trees in-process further cause the increase of work load simultaneously, reduce work efficiency.
Therefore, there is a need to design a portable tree fixing frame for garden management to solve the above-mentioned technical problems.
Disclosure of Invention
The invention aims to overcome the problems in the prior art and provides a portable garden management tree fixing frame, wherein a fixing base is arranged on the ground, a first supporting disc and a second supporting disc are arranged on a tree, so that the first supporting disc and the second supporting disc can be clamped on the tree, a rotating first supporting rod is respectively arranged at the bottom of the first supporting disc and the bottom of the second supporting disc, a rotating second supporting rod is arranged on the fixing base, the first supporting rod slides on the second supporting rod, and can be clamped on the first supporting disc and the second supporting disc through a first machine body and a second machine body, so that the first supporting disc and the second supporting disc can be further fixed on the tree, and the fixing effect on the tree can be further improved.
The invention is realized by the following technical scheme:
the utility model provides a portable gardens management trees mount, including ground, subaerial planting has trees, including a first supporting disk and a second supporting disk, first supporting disk with the second supporting disk is the arc setting respectively, first supporting disk with be connected with a corresponding first connecting block and second connecting block on the second supporting disk respectively, be provided with a pivoted connecting bolt on the first connecting block, be provided with on the second connecting block with the corresponding first screw hole of connecting bolt, first supporting disk with the corresponding back of connecting of second supporting disk with the corresponding joint of trees. Can with first supporting disk and second supporting disk joint are on trees to can be further through connecting bolt will first supporting disk and second supporting disk connect, thereby further support fixedly trees.
The support device is characterized by further comprising two fixing bases which are correspondingly connected, wherein a plurality of rotating second support frames are arranged on the fixing bases respectively, a plurality of rotating first support frames are arranged on the first support disc and the second support disc respectively, and the first support frames slide on the second support frames respectively. Can set up unable adjustment base subaerial to can be right through unable adjustment base first support frame and second support frame support, thereby the support effect of improvement to trees that can step forward.
The first body and the second body are respectively provided with a supporting disc groove corresponding to the first supporting disc and the second supporting disc, the first body and the second body are respectively provided with a butt joint groove corresponding to the first connecting block and the second connecting block, a first sliding block sliding is arranged in the first fixing frame and drives the two sides, the first body and the second body synchronously swing, a twelfth rotating shaft rotating is further arranged on the first fixing frame, and the twelfth rotating shaft drives the first sliding block to slide. Can be through first organism and second organism are right first supporting disk and second supporting disk carry out the joint to the slip of the first supporting disk of drive and second supporting disk that can be further, thereby can be further to first supporting disk and second supporting disk control.
Be provided with a pivoted control swivel on the first organism, the control swivel with connecting bolt is corresponding, still be provided with a pivoted eighth pivot in the first organism, the eighth pivot drives the control swivel rotates, be provided with a pivoted tenth pivot in the first mount, behind the corresponding joint of first organism and second organism, the tenth pivot drives the eighth pivot is rotated, just the control swivel drives connecting bolt rotates, still be provided with a pivoted eleventh pivot on the first mount, the eleventh pivot drives the tenth pivot is rotated. Can further drive connecting bolt's rotation through the rotation of control head to realization that can be further will first supporting disk and second supporting disk are connected.
The first fixing frame is connected with a first sliding rod, the eleventh rotating shaft and the twelfth rotating shaft are respectively arranged in the first sliding rod to rotate, the first sliding rod is further provided with a sliding second sliding rod, a rotating thirteenth rotating shaft and a rotating fourteenth rotating shaft are arranged in the second sliding rod, and the thirteenth rotating shaft and the fourteenth rotating shaft respectively drive the twelfth rotating shaft and the eleventh rotating shaft to rotate. Can be through first slide bar is in the slip on the second slide bar to adjustment that can be further the height of first organism and second organism, further realization will first supporting disk and second supporting disk are fixed in the eminence of trees, thereby further improvement is to the fixed effect of trees.
Furthermore, one end of the first supporting disk and one end of the second supporting disk are connected through a hinge, the bottoms of the first supporting disk and the second supporting disk are respectively provided with a second groove, a second rotating shaft is respectively arranged in the second grooves, one end of the first supporting frame rotates on the second rotating shaft, two first grooves are respectively arranged on the fixed base, a first rotating shaft is respectively arranged in the first grooves, one end of the second support frame rotates on the first rotating shaft respectively, the second support frame is provided with a third sliding hole respectively, the other end of the first support frame slides in the third sliding hole respectively, a plurality of fourth sliding holes are arranged on the fixed base, and a fixed inserting rod is arranged in each fourth sliding hole and is inserted into the ground.
Furthermore, two sides of the first fixing frame are respectively provided with a fixing block, the first machine body and the second machine body are respectively provided with a third groove corresponding to the fixing block, the fixed blocks are respectively provided with a third rotating shaft, the first machine body and the second machine body respectively rotate on the third rotating shafts, the first machine body and the second machine body are respectively provided with a fourth groove, a fourth rotating shaft is respectively arranged in the fourth grooves, the fourth rotating shaft is respectively provided with a rotating first pull rod, the first fixed frame is internally provided with a first sliding cavity for supporting the first sliding block to slide, the two sides of the first sliding block are respectively provided with a pulling shaft, the pulling shafts are respectively provided with a fifth rotating shaft, and the end parts of the first pulling rods are respectively arranged on the fifth rotating shafts in a rotating mode.
Furthermore, a first rotating pipe which rotates is arranged in the first fixing frame, a second threaded hole is formed in the first rotating pipe, the first threaded rod is correspondingly meshed and connected with the second threaded hole, a fifth bevel gear is arranged on the first rotating pipe, and a sixth bevel gear which is correspondingly meshed and connected with the fifth bevel gear is arranged on the twelfth rotating shaft.
Further, the tip of eighth pivot is provided with a butt joint and turns round, the tip of eighth pivot is provided with a second and turns round, the butt joint is turned round and is last to be provided with a first smooth chamber, the second turns round and is in slide in the first smooth chamber, the second turn round with first smooth chamber is square setting respectively, be provided with one on the first organism and support first turn trough of butt joint turn round pivoted, still be provided with a suppress in the first smooth chamber the second spring of second turn round, still be provided with a second joint groove on the butt joint turn round, the tip of tenth pivot be provided with one with the corresponding joint head in second joint groove, the joint with second joint groove is square setting respectively.
Further, a first threaded hole is formed in the second connecting block, a first rotating hole is formed in the first connecting block, the connecting bolt rotates in the first rotating hole, a first rotating cavity correspondingly communicated with the first rotating hole is formed in the first connecting block, a first rotating head rotating in the first rotating cavity is arranged on the connecting bolt, a first spring for elastically pressing the first rotating head is arranged in the first rotating cavity, the connecting bolt is correspondingly meshed with the first threaded hole and is connected with the first rotating hole, a first clamping groove is formed in the control rotating head, a clamping head corresponding to the first clamping groove is arranged on the connecting bolt, the first clamping groove and the clamping head are respectively arranged in a square shape, a rotating sixth rotating shaft is arranged in the first machine body, and one end of the sixth rotating shaft is respectively connected to the control rotating head, a rotating seventh rotating shaft is further arranged in the first machine body, a first bevel gear which is correspondingly meshed and connected with one end of the seventh rotating shaft and the other end of the sixth rotating shaft are respectively arranged at one end of the seventh rotating shaft, and a second bevel gear which is correspondingly meshed and connected with the other end of the seventh rotating shaft and the eighth rotating shaft are respectively arranged at the other end of the seventh rotating shaft and the eighth rotating shaft.
Furthermore, a ninth rotating shaft is arranged in the first fixing frame, one end of the ninth rotating shaft and the tenth rotating shaft are respectively provided with a third bevel gear correspondingly meshed and connected, and the other end of the eleventh rotating shaft and the tenth rotating shaft are respectively provided with a fourth bevel gear correspondingly meshed and connected.
Further, a first supporting block for supporting the eleventh rotating shaft and the twelfth rotating shaft to rotate is arranged in the first sliding rod, a second supporting block for supporting the thirteenth rotating shaft and the fourteenth rotating shaft to rotate is arranged in the second sliding rod, a fixed seat is arranged at the end of the second sliding rod, a first motor and a second motor are arranged on the fixed seat, the first motor drives the thirteenth rotating shaft to rotate, the second motor drives the fourteenth rotating shaft to rotate, a second sliding hole is respectively formed in the thirteenth rotating shaft and the fourteenth rotating shaft, the eleventh rotating shaft and the twelfth rotating shaft respectively slide in the second sliding hole, and the eleventh rotating shaft, the twelfth rotating shaft and the second sliding hole are respectively arranged in a square shape.
Compared with the prior art, the invention has the beneficial effects that: a first supporting disk and a second supporting disk which are correspondingly connected can be arranged on the tree, a fixed base is arranged on the ground, a second rotating support frame is arranged on the fixed base, a first rotating support frame is arranged on the first support disc and the second support disc, the first support frame slides on the second support frame respectively, meanwhile, the first supporting disk and the second supporting disk can be respectively clamped through the first machine body and the second machine body, thereby further fixing the first support disc and the second support disc on the tree, and further fixing the first support disc and the second support disc at the high position of the tree, thereby further assurance arrives the fixed effect to trees, and further the problem of blowing down trees that prevents to lead to because of the strong wind to the realization carries out automatic control to first supporting disk and second supporting disk.
Drawings
The invention is further described below with reference to the accompanying drawings.
Fig. 1 is a schematic view of an overall structure of a portable garden management tree mount according to an embodiment of the present invention.
Fig. 2 is a schematic view of the overall structure of the fixing base according to the embodiment of the invention.
Fig. 3 is a top view of the overall structure of the first fixing frame according to the embodiment of the invention.
Fig. 4 is a side view of the overall structure of the first body according to the embodiment of the present invention.
Fig. 5 is a schematic view of a connecting mechanism of the first body and the second body according to the embodiment of the invention.
Fig. 6 is a schematic view of a connection mechanism of an eighth rotating shaft and a tenth rotating shaft according to an embodiment of the invention.
FIG. 7 is a schematic view of a connection structure of a second slide bar and a first slide bar according to an embodiment of the present invention.
Fig. 8 is a schematic view of a connection structure of the first support frame and the second support frame according to the embodiment of the invention.
In the figure: 1 ground, 2 trees, 3 fixed base, 4 first groove, 5 first rotating shaft, 6 fixed inserted bar, 7 first supporting disc, 8 second supporting disc, 9 second groove, 10 second rotating shaft, 11 first supporting frame, 12 second supporting frame, 13 first fixed frame, 14 fixed block, 15 third rotating shaft, 16 third groove, 17 fourth groove, 18 fourth rotating shaft, 19 first pull bar, 20 first sliding cavity, 21 first sliding block, 22 pulling shaft, 23 fifth rotating shaft, 24 first threaded rod, 25 first connecting block, 26 second connecting block, 27 connecting bolt, 28 control rotating head, 29 sixth rotating shaft, 30 seventh rotating shaft, 31 first bevel gear, 32 eighth rotating shaft, 33 second bevel gear, 34 ninth rotating shaft, 35 tenth rotating shaft, 36 third bevel gear, 37 fourth bevel gear, 38 eleventh rotating shaft, 39 hinge, 40 first body, 41 second body, 42 supporting disc groove, 43 butt joint groove, 44 first screw hole, 45 first rotating cavity, 46 first rotating hole, 47 first rotating head, 48 first spring, 49 first clamping groove, 50 first rotating groove, 51 butt joint rotating head, 52 first sliding cavity, 53 second rotating head, 54 second spring, 55 second clamping groove, 56 clamping joint, 57 first rotating pipe, 58 fifth bevel gear, 59 second screw hole, 60 sixth bevel gear, 61 twelfth rotating shaft, 62 first sliding rod, 63 first supporting block, 64 second sliding rod, 65 thirteenth rotating shaft, 66 fourteenth rotating shaft, 67 second sliding hole, 68 first motor, 69 second motor, 70 second supporting block, 71 fixed seat, 72 third sliding hole, 73 fourth sliding hole and 74 fixed bolt.
Detailed Description
As shown in fig. 1 to 8, a portable gardens management trees mount, including ground 1, it has trees 2 to plant on ground 1, including a first supporting disk 7 and a second supporting disk 8, first supporting disk 7 with second supporting disk 8 is the arc setting respectively, first supporting disk 7 with be connected with a corresponding first connecting block 25 and second connecting block 26 on the second supporting disk 8 respectively, be provided with a pivoted connecting bolt 27 on the first connecting block 25, be provided with on the second connecting block 26 with the corresponding first screw hole 44 of connecting bolt 27, first supporting disk 7 with second supporting disk 8 after corresponding the connection with the corresponding joint of trees 2.
First supporting disk 7 and second supporting disk 8 semicircular in shape respectively set up, first supporting disk 7 with the corresponding rotation of second supporting disk 8 is connected, first supporting disk 7 with can the joint on trees 2 after the corresponding concatenation of second supporting disk 8 first supporting disk 7 with the tip of second supporting disk 8 is provided with a first connecting block 25 and second connecting block 26 respectively be provided with a pivoted connecting bolt 27 on the first connecting block 25, can pass through connecting bolt 27 with the corresponding meshing of first screw hole 44 is connected, thereby can further with first supporting disk 7 and the corresponding connection of second supporting disk 8, thereby can with first supporting disk 7 and the joint of second supporting disk 8 are on trees.
The support device is characterized by further comprising two fixing bases 3 which are correspondingly connected, wherein a plurality of rotating second support frames 12 are respectively arranged on the fixing bases 3, a plurality of rotating first support frames 11 are respectively arranged on the first support disc 7 and the second support disc 8, and the first support frames 11 respectively slide on the second support frames 12.
The fixing bases 3 are respectively arranged in a semicircular shape, a plurality of rotating second support frames 12 are respectively arranged on the fixing bases 3, the number of the second support frames 12 is set according to the design requirement, a plurality of rotating first support frames 11 are respectively arranged at the bottoms of the first support discs 7 and the second support discs 8, the first support frames 11 respectively correspond to the second support frames 12, the first support frames 11 respectively slide on the second support frames 12, so that after the first support discs 7 and the second support discs 8 are clamped on trees, the trees can be further supported by the first support frames 11 and the second support frames 12 after the first support frames 11 and the second support frames 12 are clamped on the trees 2, and meanwhile, the first support frames 11 can slide on the second support frames 12, adjustment that can be further first supporting disk 7 and the height of 8 joint on trees of second supporting disk to further assurance is to the support effect to trees, thereby prevents the toppling over problem that the strong wind caused trees 2.
The portable electronic device further comprises a first fixing frame 13, a first rotating body 40 and a second rotating body 41 are arranged on two sides of the first fixing frame 13 respectively, a supporting plate groove 42 corresponding to the first supporting plate 7 and the second supporting plate 8 is arranged on each of the first body 40 and the second body 41 respectively, a butt joint groove 43 corresponding to the first connecting block 25 and the second connecting block 26 is arranged on each of the first body 40 and the second body 41 respectively, a first sliding block 21 is arranged in the first fixing frame 13, the first sliding block 21 drives the two sides of the first body 40 and the second body 41 to synchronously swing, a twelfth rotating shaft 61 is further arranged on the first fixing frame 13, and the twelfth rotating shaft 61 drives the first sliding block 21 to slide.
A first swinging body 40 and a second swinging body 41 are respectively arranged on two sides of the first fixing frame 13, a support plate groove 42 in a semicircular shape is respectively arranged on the first body 40 and the second body 41, the first support plate 7 and the second support plate 8 respectively correspond to the support plate groove 42, so that the first support plate 7 and the second support plate 8 can be respectively clamped in the support plate groove 42, the first support plate 7 and the second support plate 8 can be further driven to move by swinging of the first body 40 and the second body 41, a butt joint groove 43 corresponding to the first connecting block 25 and the second connecting block 26 is respectively arranged on the first body 40 and the second body 41, a first sliding block 21 is arranged in the first fixing frame 13, and the swinging bodies of the first body 40 and the second body 41 on two sides can be further driven by sliding of the first sliding block 21 And the opening and closing of the first support disc 7 and the second support disc 8 can be further controlled, so that the first support disc 7 and the second support disc 8 can be further fixed on the tree 2, meanwhile, the height of the first support disc 7 and the height of the second support disc 8 fixed on the tree 2 can be further adjusted, a twelfth rotating shaft 61 is arranged in the first fixing frame 13, so that the first sliding block 21 can be further driven to slide through the rotation of the twelfth rotating shaft 61, and the opening and closing of the first body 40 and the second body 41 can be further controlled through the rotation of the twelfth rotating shaft 61, so that the opening and closing of the first support disc 7 and the second support disc 8 can be further controlled, and the tree can be further controlled to be fixed.
Be provided with a pivoted control swivel 28 on the first organism 40, control swivel 28 with connecting bolt 27 is corresponding, still be provided with a pivoted eighth pivot 32 in the first organism 40, eighth pivot 32 drives control swivel 28 rotates, be provided with a pivoted tenth pivot 35 in the first mount 13, after first organism 40 and the corresponding joint of second organism 41, tenth pivot 35 drives eighth pivot 32 rotates, just control swivel 28 drives connecting bolt 27 rotates, still be provided with a pivoted eleventh pivot 38 on the first mount 13, eleventh pivot 38 drives tenth pivot 35 rotates.
A rotary control rotor 28 is arranged on the first machine body 40, the control rotor 28 corresponds to the connecting bolt 27, so that the connecting bolt 27 can be further driven to rotate by the rotation of the control rotor 28, a rotary eighth rotating shaft 32 is arranged in the first machine body 40, the eighth rotating shaft 32 controls the rotation of the control rotor 28, a rotary tenth rotating shaft 35 is arranged in the first fixing frame 13, after the first machine body 40 and the second machine body 41 are correspondingly clamped, the tenth rotating shaft 35 can be correspondingly connected with the eighth rotating shaft 32, so that the eighth rotating shaft 32 can be driven to rotate by the rotation of the tenth rotating shaft 35, the rotation of the control rotor 28 can be further controlled by the rotation of the tenth rotating shaft 35, and the rotation of the connecting bolt 27 can be further controlled, further controlling the connection of said first support disc 7 and second support disc 8.
The first fixing frame 13 is connected with a first sliding rod 62, the eleventh rotating shaft 38 and the twelfth rotating shaft 61 rotate in the first sliding rod 62, the first sliding rod 62 is further provided with a sliding second sliding rod 64, the second sliding rod 64 is internally provided with a rotating thirteenth rotating shaft 65 and a rotating fourteenth rotating shaft 66, and the thirteenth rotating shaft 65 and the fourteenth rotating shaft 66 drive the twelfth rotating shaft 61 and the eleventh rotating shaft 38 to rotate respectively.
A first slide bar 62 is connected to the first fixed frame 13, the eleventh rotating shaft 38 and the twelfth rotating shaft 61 rotate in the first slide bar 62, a second slide bar 64 is disposed on the first slide bar 62, so that the first slide bar 62 slides on the second slide bar 64 to further adjust the height of the first fixed frame 13, so that the height of the first supporting plate 7 and the second supporting plate 8 fixed on the tree can be further adjusted, a thirteenth rotating shaft 65 and a fourteenth rotating shaft 66 are disposed in the second slide bar 64, the twelfth rotating shaft 61 and the eleventh rotating shaft 38 slide on the thirteenth rotating shaft 65 and the fourteenth rotating shaft 66, respectively, and the twelfth rotating shaft 61 and the eleventh rotating shaft 38 can be driven to rotate by the thirteenth rotating shaft 65 and the fourteenth rotating shaft 66, respectively, therefore, the opening and closing of the first body 40 can be further controlled respectively, and the rotation of the connecting bolt 27 can be controlled at the same time, so as to further drive the connection of the first supporting disk 7 and the second supporting disk 8.
As shown in fig. 3 and 8, one end of the first supporting plate 7 is connected to one end of the second supporting plate 8 through a hinge 39, the bottoms of the first supporting plate 7 and the second supporting plate 8 are respectively provided with a second groove 9, the second grooves 9 are respectively provided with a second rotating shaft 10, one end of the first supporting frame 11 rotates on the second rotating shaft 10, the fixing base 3 is provided with two first grooves 4, the first grooves 4 are respectively provided with a first rotating shaft 5, one end of the second supporting frame 12 rotates on the first rotating shaft 5, the second supporting frame 12 is provided with a third sliding hole 72, the other end of the first supporting frame 11 slides in the third sliding hole 72, the second supporting frame 12 is provided with a fixing bolt 74 for pressing the first supporting frame 11, the fixed base 3 is provided with a plurality of fourth sliding holes 73, the fourth sliding holes 73 are respectively provided with a fixed inserted bar 6, and the fixed inserted bar 6 is inserted into the ground 1.
One end of the first supporting disk 7 is correspondingly connected with one end of the second supporting disk 8 through a hinge 39, so that the first supporting disk 7 and the second supporting disk 8 can be further opened and closed, the bottoms of the first supporting disk 7 and the second supporting disk 8 are respectively provided with a second groove 9, the second grooves 9 are respectively provided with a second rotating shaft 10, one end of the first supporting rack 11 is respectively rotated on the second rotating shaft 10, the fixed base 3 is respectively provided with a first groove 4, the number of the first grooves 4 is corresponding to that of the second grooves 9, the first grooves 4 are respectively provided with a first rotating shaft 5, one end of the second supporting rack 12 is respectively rotated on the first rotating shaft 5, the second supporting rack 12 is respectively provided with a third sliding hole 72, and the first supporting rack 11 is respectively slid in the third sliding hole 72, the second support frames 12 are respectively provided with a fixing bolt 74, so that the first support frames 11 can be further compressed through the fixing bolt 74, the connection length of the first support frames 11 and the second support frames 12 can be further increased, and the fixing effect on trees is improved.
As shown in fig. 3, two fixing blocks 14 are respectively disposed on two sides of the first fixing frame 13, a third groove 16 corresponding to the fixing blocks 14 is respectively disposed on the first body 40 and the second body 41, a third rotating shaft 15 is respectively disposed on the fixing blocks, the first body 40 and the second body 41 respectively rotate on the third rotating shaft 15, a fourth groove 17 is respectively disposed on the first body 40 and the second body 41, a fourth rotating shaft 18 is respectively disposed in the fourth groove 17, a rotating first pull rod 19 is respectively disposed on the fourth rotating shaft 18, a first sliding cavity 20 supporting the first sliding block 21 to slide is disposed in the first fixing frame 13, a pull shaft 22 is respectively disposed on two sides of the first sliding block 21, and a fifth rotating shaft 23 is respectively disposed on the pull shaft 22, the ends of the first pull rod 19 rotate on the fifth rotating shafts 23, respectively.
Two fixing blocks 14 are respectively arranged at two sides of the first fixing frame 13, a third groove 16 is respectively arranged on the first machine body 40 and the second machine body 41, the fixed blocks 14 are respectively provided with a third rotating shaft 15, the first body 40 and the second body 41 respectively rotate on the third rotating shafts 15, the first sliding block 21 can be supported by the first sliding cavity 20, the normal sliding of the first sliding block 21 can be ensured, so that the sliding of the pulling shaft 22 can be further driven by the sliding of the first sliding block 21, thereby further driving the sliding of the first pull rod 19, and further driving the synchronous action of the first body 40 and the second body 41, so that the opening and closing of the first and second bodies 40 and 41 can be further controlled by the sliding of the first slider 21.
As shown in fig. 3 and 4, a rotating first rotating pipe 57 is arranged in the first fixing frame 13, a second threaded hole 59 is arranged on the first rotating pipe 57, the first threaded rod 24 is correspondingly engaged with the second threaded hole 59, a fifth bevel gear 58 is arranged on the first rotating pipe 57, and a sixth bevel gear 60 is arranged on the twelfth rotating shaft 61 and correspondingly engaged with the fifth bevel gear 58.
The fifth bevel gear 58 is correspondingly engaged with the sixth bevel gear 60, the first rotary pipe 57 can be further driven to rotate by the rotation of the twelfth rotary shaft 61, a second threaded hole 59 is formed in the first rotary pipe 57, and the first threaded rod 24 is correspondingly engaged with the second threaded hole 59, so that the first slide block 21 can be further driven to slide by the rotation of the first rotary pipe 57, and the motion of the first body 40 and the second body 41 can be further controlled.
As shown in fig. 3 and 6, the end of the eighth rotating shaft 32 is provided with a butt joint rotating head 51, the end of the eighth rotating shaft 32 is provided with a second rotating head 53, the butt joint rotating head 51 is provided with a first sliding cavity 52, the second rotating head 53 slides in the first sliding cavity 52, the second rotating head 53 and the first sliding cavity 52 are respectively in a square arrangement, the first body 40 is provided with a support, the butt joint rotating head 51 rotates the first rotating groove 50, the first sliding cavity 52 is further provided with a second spring 54 for biasing the second rotating head 53, the butt joint rotating head 51 is further provided with a second clamping groove 55, the end of the tenth rotating shaft 35 is provided with a clamping head 56 corresponding to the second clamping groove 55, and the clamping head 56 and the second clamping groove 55 are respectively in a square arrangement.
After the first body 40 is clamped with the first fixing frame 13, the clamping joint 56 can be clamped in the second clamping groove 55, the clamping joint 56 and the second clamping groove 55 are respectively in a square shape, so that the rotation of the tenth rotating shaft 35 can further drive the rotation of the butt joint rotating head 51, the butt joint rotating head 51 is provided with a first sliding cavity 52, the eighth rotating shaft 32 is provided with a second rotating head 53, the second rotating head 53 and the first sliding cavity 52 are respectively in a square shape, so that the rotation of the tenth rotating shaft 35 can further drive the rotation of the eighth rotating shaft 32, the first sliding cavity 52 is internally provided with a second spring 54, the second rotating head 53 can be pressed by the second spring 54, and the butt joint rotating head 51 can be further reset, the first body 40 is provided with a first rotating groove 50, so that the docking head 51 can be supported by the first rotating groove 50, and the normal rotation of the docking head 51 can be further ensured.
As shown in fig. 3 and 5, a first rotation hole 46 is formed in the first connecting block 25, the connecting bolt 27 rotates in the first rotation hole 46, a first rotation cavity 45 correspondingly communicated with the first rotation hole 46 is formed in the first connecting block 25, a first rotation head 47 rotating in the first rotation cavity 45 is arranged on the connecting bolt 27, a first spring 48 for biasing the first rotation head 47 is arranged in the first rotation cavity 45, the connecting bolt 27 is correspondingly engaged with the first threaded hole 44, a first clamping groove 49 is formed in the control rotation head 28, a clamping head corresponding to the first clamping groove 49 is arranged on the connecting bolt 27, the first clamping groove 49 and the clamping head are respectively arranged in a square shape, a rotary sixth rotation shaft 29 is arranged in the first body 40, one end of the sixth rotating shaft 29 is connected to the control swivel 28, a seventh rotating shaft 30 is further disposed in the first body 40, a first bevel gear 31 correspondingly engaged with and connected to one end of the seventh rotating shaft 30 and the other end of the sixth rotating shaft 29, and a second bevel gear 33 correspondingly engaged with and connected to the other end of the seventh rotating shaft 30 and the eighth rotating shaft 32.
Be provided with a first commentaries on classics hole 46 on first connecting block 25 to can be through first commentaries on classics hole 46 is right connecting bolt 27 supports, can further guarantee to connecting bolt 27's rotation, work as first organism 40 with the corresponding joint of second organism 41 back, can further make connecting bolt 27 joint in first joint groove 49, connecting bolt 27's tip is provided with a joint head, can further make the joint head joint in first joint groove 49, first joint groove 49 and joint head are square setting respectively, thereby can further pass through the rotation of control commentaries on classics head 28 can drive connecting bolt 27's rotation be provided with a first commentaries on classics chamber 45 in first connecting block 25 be provided with a first commentaries on classics head 47 on connecting bolt 27, thereby can be through first spring 48 to first commentaries on classics head 47 suppress, therefore, the connecting bolt 27 can be further reset, the connecting bolt 27 can be driven to rotate by the rotation of the control rotary head 28, the connecting bolt 27 can be connected in the first threaded hole 44, and the purpose of connecting the first supporting plate 7 and the second supporting plate 8 can be achieved.
As shown in fig. 3 and 4, a ninth rotating shaft 34 is disposed in the first fixing frame 13, a third bevel gear 36 correspondingly engaged with and connected to the tenth rotating shaft 35 is disposed at one end of the ninth rotating shaft 34, and a fourth bevel gear 37 correspondingly engaged with and connected to the eleventh rotating shaft 38 and the tenth rotating shaft 35 is disposed at the other end of the eleventh rotating shaft 38.
The rotation of the tenth rotating shaft 35 can be further driven by the eleventh rotating shaft 38 through the corresponding meshing connection of the two third bevel gears 36 and the corresponding meshing connection of the two fourth bevel gears 37, so as to further control the rotation of the connecting bolt 27.
As shown in fig. 4 and 7, a first supporting block 63 is disposed in the first sliding rod 62 for supporting the eleventh rotating shaft 38 and the twelfth rotating shaft 61 to rotate, a second supporting block 70 is arranged in the second sliding rod 64 for supporting the thirteenth rotating shaft 65 and the fourteenth rotating shaft 66 to rotate, the end of the second sliding rod 64 is provided with a fixed seat 71, the fixed seat 71 is provided with a first motor 68 and a second motor 69, the first motor 68 drives the thirteenth rotating shaft 65 to rotate, the second motor 69 drives the fourteenth rotating shaft 66 to rotate, a second sliding hole 67 is respectively arranged on the thirteenth rotating shaft 65 and the fourteenth rotating shaft 66, the eleventh rotating shaft 38 and the twelfth rotating shaft 61 respectively slide in the second sliding holes 67, and the eleventh rotating shaft 38, the twelfth rotating shaft 61 and the second sliding hole 67 are respectively arranged in a square shape.
The first slide bar 62 can slide on the second slide bar 64, so that the extension lengths of the first slide bar 62 and the second slide bar 64 can be further adjusted, the eleventh rotating shaft 38 and the twelfth rotating shaft 61 respectively slide in the second slide hole 67, the fixed seat 71 is provided with a first motor 68 and a second motor 69, so that the thirteenth rotating shaft 65 and the fourteenth rotating shaft 66 can be further driven to rotate, so that the connection between the first supporting disk 7 and the second supporting disk 8 can be further controlled, and the eleventh rotating shaft 38, the twelfth rotating shaft 61, the thirteenth rotating shaft 65 and the fourteenth rotating shaft 66 can be further supported by the first supporting block 63 and the second supporting block 70, so that the normal rotation thereof can be further ensured.