Tree trimming machine
A tree pruning and equipment technology, applied in the field of tree pruning equipment, can solve problems affecting users' normal power consumption, staff injury, high work intensity, etc., and achieve the effects of eliminating potential hidden dangers, reducing labor intensity, and improving safety
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Embodiment 1
[0017] As shown in the figure: the tree pruning apparatus of the present embodiment comprises an insulating rod, scissors located on the insulating rod, a traction rope 4 and an insulating handle 5; 23. The fixed shear handle 24 and the rotating shaft I 25, the dynamic shear head 21 and the dynamic shear handle 22 are integrally formed, the fixed shear head 23 and the fixed shear handle 24 are integrally formed, the dynamic shear handle 22 and the fixed shear handle 24 pass through Rotating shaft I 25 is cross-connected flexibly and a compression spring 3 is provided between the moving scissor handle 22 and the fixed scissor handle 24; an axial channel 1a is provided in the insulating rod, and the fixed scissor handle 24 is fixed on the top of the insulating rod and has a A through hole 24a communicating with the axial passage 1a, one end of the traction rope 4 is connected with the insulating handle 5, and the other end is connected with the dynamic scissor handle 22 after pas...
Embodiment 2
[0023] The tree pruning apparatus of the present embodiment is structurally identical to the tree pruning apparatus parts in Embodiment 1, and the difference is only in the composition of the glass fiber material; in the present embodiment, the glass fiber material includes the following components in parts by weight: 31 parts of quartz sand, 10 parts of limestone, 5 parts of dolomite, 1 part of boric acid, 4 parts of Glauber's salt, 2 parts of fluorite, 1 part of pyrophyllite, 9 parts of alumina, and 10 parts of silicon dioxide. The materials of the above components are melted and sintered into 20mm rods or spheres, and then heated and remelted to make finer 3-60um fibers, and then the fibers are made into super-strong fiber rods by reverse winding with a roller machine or barrel. The material has high strength. After testing, the tensile strength of a single fine fiber can reach 2840Mpa, and the elastic modulus can reach 86000Mpa, which is several times higher than that of h...
Embodiment 3
[0025] The tree pruning apparatus of the present embodiment is structurally identical to the tree pruning apparatus parts in Embodiment 1, and the difference is only in the composition of the glass fiber material; in the present embodiment, the glass fiber material includes the following components in parts by weight: Quartz sand 35.5 parts, limestone 13.5 parts, dolomite 9.5 parts, boric acid 3.5 parts, Glauber's salt 7 parts, fluorite 5.5 parts, pyrophyllite 3 parts, alumina 12 parts, silicon dioxide 12 parts. The materials of the above components are melted and sintered into 20mm rods or spheres, and then heated and remelted to make finer 3-60um fibers, and then the fibers are made into super-strong fiber rods by reverse winding with a roller machine or barrel. The material has high strength. After testing, the tensile strength of a single fine fiber can reach 2985Mpa, and the elastic modulus can reach 88500Mpa, which is several times higher than that of high-strength glass...
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