CN111585221B - Reinforcing mechanism of graphite alkene cable conductor - Google Patents
Reinforcing mechanism of graphite alkene cable conductor Download PDFInfo
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- CN111585221B CN111585221B CN202010455939.2A CN202010455939A CN111585221B CN 111585221 B CN111585221 B CN 111585221B CN 202010455939 A CN202010455939 A CN 202010455939A CN 111585221 B CN111585221 B CN 111585221B
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- cable
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- outer casing
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- clamping cylinder
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- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02G—INSTALLATION OF ELECTRIC CABLES OR LINES, OR OF COMBINED OPTICAL AND ELECTRIC CABLES OR LINES
- H02G3/00—Installations of electric cables or lines or protective tubing therefor in or on buildings, equivalent structures or vehicles
- H02G3/02—Details
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- Architecture (AREA)
- Civil Engineering (AREA)
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Abstract
The invention discloses a graphene cable reinforcing mechanism, which comprises a cable, a left outer frame plate, a left outer casing, a right outer frame plate, a cable fixing port and an inner clamping component, wherein the inner clamping component is optimally arranged, a plurality of first support arms and second support arm structures are used for annularly contacting and fixing a cable body, elastic rotation matching can be performed at a connecting box, the external protection effect of the left outer frame plate and the right outer frame plate is good, external support and protection are performed after simple and convenient elastic fastening, and the using effect is good; set up the connecting box through optimizing, installed a book spring in the casing, can make a book spring deformation under the circumstances of controlling first arm rotation with well core rod cooperation to utilize a book spring return effect to make first double-layered section of thick bamboo fastening cable conductor, simple structure realizes high-efficient inside elasticity normal running fit, promotes cooperation result of use.
Description
Technical Field
The invention relates to the related field of cable reinforcement, in particular to a graphene cable reinforcing mechanism.
Background
The cable conductor, the cable of the similar rope that usually is twisted by several or several groups wire (every group is two at least), mutual insulation between every group wire to often turn round around a center and become, whole outside package has highly insulating overburden, and the cable has interior circular telegram, the characteristics of external insulation, graphite alkene cable conductor is mainly the cable conductor of being made by graphite alkene material, and graphite alkene cable conductor's strengthening mechanism refers to the structure body to graphite alkene cable conductor reinforcement, fixed.
When using, because the setting of strengthening mechanism inner structure is different, its reinforcement effect is not identical, is difficult to carry out outside support, protection behind the simple and convenient elastic fastening, and is difficult to realize high-efficient inside elasticity normal running fit, promotes cooperation result of use.
Disclosure of Invention
Therefore, in order to solve the above-mentioned disadvantages, the present invention provides a reinforcing mechanism for a graphene cable.
The invention is realized in such a way that a reinforcing mechanism of a graphene cable is constructed, the device comprises the cable and an inner clamping component, the cable is wrapped at the inner sides of a left outer casing and a right outer casing, the inner clamping component is arranged inside the left outer casing and the right outer casing, the inner clamping component comprises a corner block, a through hole, a first support arm, a connecting box, a first clamping cylinder, a second support arm, a second clamping cylinder and a third clamping cylinder, the through hole is arranged on the corner block in a penetrating way, the corner block is welded and fixed on the first support arm, the connecting box is fixedly arranged at the top end of the first support arm, the first clamping cylinder is embedded and arranged at the bottom end of the right side of the first support arm, the third clamping cylinder is arranged at the left side of the second support arm, the top end of the second clamping cylinder is embedded and arranged on the first support arm, and the outer surface of the second clamping cylinder is attached to the cable.
Preferably, the right side of the left outer casing is embedded with the right outer casing, the left end of the left outer casing is tightly provided with a left outer frame plate, the right end of the right outer casing is tightly provided with a right outer frame plate, and the right outer casing is prefabricated with a wire fixing port.
Preferably, the connecting box includes casing, book spring, side frame board, left side link pole, right side link pole and centre pole, well core rod is installed to the casing internal rotation, it installs on well core rod surface to roll up the spring embedding, well core rod is installed to side frame board internal rotation, left side link pole is connected with a book spring, right side link pole left side is connected with a book spring, well core rod outside end is rotated and is installed in outer shell in a left side, the outer shell in the right side wall notch.
Preferably, the left outer frame plate and the right outer frame plate are the same in structure and size.
Preferably, the first clamping cylinder, the second clamping cylinder and the third clamping cylinder are all cylinder structures and have the same size.
Preferably, the inner clamping assembly is erected and installed on the periphery of the outer side of the wire fixing port, and the wire fixing port is a circular opening.
Preferably, the first support arm is of an axisymmetric structure, and the long distances of the extension arms on the two sides are the same.
Preferably, the left outer frame plate is of a W-shaped structure, and the right outer frame plate is of a W-shaped structure.
Preferably, the included angle formed by the first support arm and the second support arm around the circumference of the cable is sixty degrees.
Preferably, the bottom end of the left connecting rod is fixedly arranged on the central rod.
Preferably, the left outer frame plate is made of aluminum alloy, and is light in weight and high in hardness.
Preferably, the coil spring is made of spring steel, and the elastic potential energy is large.
The invention has the following advantages: the invention provides a graphene cable wire reinforcing mechanism through improvement, and compared with the same type of equipment, the graphene cable wire reinforcing mechanism has the following improvement:
the method has the advantages that: according to the reinforcing mechanism of the graphene cable, the inner clamping assembly is optimally arranged, the cable body is fixed in an annular contact manner by utilizing the structures of the first support arms and the second support arms, the cable body can be elastically and rotatably matched at the connecting box, the external protection effect of the left outer frame plate and the right outer frame plate is good, the external support and protection can be performed after the cable body is simply, elastically and tightly fastened, and the using effect is good.
The method has the advantages that: according to the graphene cable reinforcing mechanism, the connecting box is optimally arranged, the coil spring is arranged in the shell, the coil spring can be matched with the central rod to deform under the condition that the first supporting arm is controlled to rotate, the first clamping barrel is used for fastening the cable by utilizing the return action of the coil spring, the structure is simple, efficient internal elastic rotation matching is realized, and the matching use effect is improved.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic view of a wire fixing port according to the present invention;
FIG. 3 is a schematic view of the inner clamping assembly of the present invention;
FIG. 4 is an enlarged view of a portion of the invention at A in FIG. 3;
fig. 5 is a schematic view of the construction of the junction box of the present invention.
Wherein: the cable comprises a cable line-1, a left outer frame plate-2, a left outer frame shell-3, a right outer frame plate-4, a right outer frame plate-5, a cable fixing port-6, an inner clamping component-7, corner blocks-701, a perforation-702, a first support arm-703, a connecting box-704, a first clamping cylinder-705, a second support arm-706, a second clamping cylinder-707, a third clamping cylinder-708, a shell-7041, a coil spring-7042, a side frame plate-7043, a left connecting rod-7044, a right connecting rod-7045 and a central rod-7046.
Detailed Description
The present invention will be described in detail with reference to fig. 1 to 5, and the technical solutions in the embodiments of the present invention will be clearly and completely described, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Example one
Referring to fig. 1 to 3, the present invention provides a graphene cable reinforcing mechanism by improvement, including a cable 1 and an inner clamping component 7, wherein the inner clamping component 7 is installed inside a left outer casing 3 and a right outer casing 4, the cable 1 is wrapped inside the left outer casing 3 and the right outer casing 4 to facilitate external protection of the cable 1, the right side of the left outer casing 3 is nested with the right outer casing 4, the left end of the left outer casing 3 is tightly mounted with a left outer frame plate 2, the left outer frame plate 2 is supported by a structure body of the left outer frame plate 2, the right side of the right outer casing 4 is tightly mounted with a right outer frame plate 5, the right outer casing 4 is pre-fabricated with a cable fixing port 6, so that the cable 1 can pass through the left outer casing 3 and the right outer casing 4 to be reinforced.
Referring to fig. 4 and 5, the present invention provides a graphene cable reinforcing mechanism by improving the structure, the inner clamping assembly 7 includes a corner block 701, a bore 702, a first arm 703, a junction box 704, a first cartridge 705, a second arm 706, a second cartridge 707, and a third cartridge 708, the corner block 701 is provided with a through hole 702 in a penetrating way, the corner block 701 is fixed on the first supporting arm 703 in a welding way, so that the connecting box 704 can be matched with the left outer casing 3 and the right outer casing 4 in a rotating way, the top end of the first arm 703 is fixedly provided with a connecting box 704, the first clamping cylinder 705 is embedded and arranged at the bottom end of the right side of the first arm 703, the third clamping cylinder 708 is arranged on the left side of the second support arm 706, the matching use effect is good, the cable 1 is conveniently clamped, the top end of the second clamping cylinder 707 is embedded and mounted on the first support 703, and the outer surface of the second clamping cylinder 707 is attached to the cable 1.
Referring to fig. 3 and 5, the present invention provides, by way of improvement, a graphene cable reinforcing mechanism, where the connection box 704 includes a housing 7041, a coil spring 7042, a side frame plate 7043, a left engaging rod 7044, a right engaging rod 7045, and a central rod 7046, the housing 7041 has the central rod 7046 rotatably mounted therein, the coil spring 7042 is embedded in an outer surface of the central rod 7046 for use in an elastic fit, the side frame plate 7043 has the central rod 7046 rotatably mounted therein, the left engaging rod 7044 is connected to the coil spring 7042, a left side of the right engaging rod 7045 is connected to the coil spring 7042, so that the coil spring 7042 is mounted in a corresponding position in the housing 7041, and an outer side end of the central rod 7046 is rotatably mounted in inner wall notches of the left outer sheath 3 and the right outer sheath 4.
Referring to fig. 1 to 4, the present invention provides a graphene cable reinforcing mechanism by improvement, the left outer frame plate 2 and the right outer frame plate 5 have the same structure and size, the first clamping cylinder 705, the second clamping cylinder 707, and the third clamping cylinder 708 are all cylindrical structures, and have the same size and good contact bonding effect, the inner clamping assembly 7 is installed around the outer side of the cable fixing port 6, and the cable fixing port 6 is a circular opening, so as to facilitate the penetration of the cable 1.
Referring to fig. 1 to 5, the present invention provides a graphene cable reinforcing mechanism by improvement, wherein the first arm 703 has an axisymmetric structure, the long distance between the two extending arms is the same, the contact effect with the outer surface of the cable 1 is good, the right outer frame plate 5 has a W-shaped structure, the left outer frame plate 2 has a W-shaped structure, the supporting effect is good, the included angle between the first arm 703 and the second arm 706 around the circumference of the cable 1 is sixty degrees, the bottom end of the left connecting rod 7044 is fixedly mounted on the central rod 7046, and the coil spring 7042 is reasonably kept mounted.
Example two
The invention provides a graphene cable reinforcing mechanism through improvement, the first support arm 703 rotates along the inner walls of the left outer casing 3 and the right outer casing 4 through the connecting box 704 to meet corresponding matching use, the radius of the central rod 7046 is two centimeters, the length of the coil spring 7042 is more than six centimeters, and the elastic recovery effect is good.
The invention provides a graphene cable reinforcing mechanism through improvement, and the working principle is as follows;
firstly, when in use, the cable 1 is placed at the cable fixing port 6, the left outer casing 3 and the right outer casing 4 move oppositely to be combined, two support arms are arranged on the left outer casing 3, and one support arm, namely a second support arm 706, is arranged on the right outer casing 4;
secondly, before combination, the first clamping cylinder 705 and the second clamping cylinder 707 at the bottom end of the first supporting arm 703 are shifted, so that the coil spring 7042 in the shell 7041 can be matched and rotated to deform, the first clamping cylinder 705 and the second clamping cylinder 707 are tightly attached to the outer side of the cable 1 by utilizing restoring force, and after the three supporting arms are adjusted to be in contact with and fixed on the surface of the cable 1, the left outer casing 3 and the right outer casing 4 can be controlled to move towards each other and be combined to complete assembly;
thirdly, the pile body reinforcing structure with the cable 1 fixed is further fixed by the left outer frame plate 2 and the right outer frame plate 5.
The invention provides a graphene cable reinforcing mechanism through improvement, an inner clamping component 7 is optimally arranged, a cable body is fixed by annular contact of a plurality of first support arms 703 and second support arms 706, and the cable body can be elastically and rotatably matched at a connecting box 704, so that the left outer frame plate 2 and the right outer frame plate 5 have good external protection effect, are simply and elastically fastened and then are externally supported and protected, and have good use effect; set up connecting box 704 through optimizing, the built-in book spring 7042 that is equipped with of casing 7041 can make a book spring 7042 warp under the first arm 703 pivoted of control with well core rod 7046 cooperation to utilize a book spring 7042 return effect to make first double-layered section of thick bamboo 705 fastening cable conductor 1, simple structure realizes high-efficient inside elasticity normal running fit, promotes the cooperation result of use.
The basic principles and main features of the present invention and the advantages of the present invention have been shown and described, and the standard parts used in the present invention are all available on the market, the special-shaped parts can be customized according to the description and the accompanying drawings, the specific connection mode of each part adopts the conventional means of bolt and rivet, welding and the like mature in the prior art, the machinery, parts and equipment adopt the conventional type in the prior art, and the circuit connection adopts the conventional connection mode in the prior art, and the details are not described herein.
The previous description of the disclosed embodiments is provided to enable any person skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the generic principles defined herein may be applied to other embodiments without departing from the spirit or scope of the invention. Thus, the present invention is not intended to be limited to the embodiments shown herein but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.
Claims (9)
1. The reinforcing mechanism for the graphene cable comprises a cable (1), wherein the cable (1) is wrapped on the inner sides of a left outer casing (3) and a right outer casing (4);
the method is characterized in that: the cable clamp comprises a left outer casing (3) and a right outer casing (4), and further comprises an inner clamping component (7), wherein the inner clamping component (7) is arranged inside the left outer casing (3) and the right outer casing (4), the inner clamping component (7) comprises a corner block (701), a through hole (702), a first support arm (703), a connecting box (704), a first clamping cylinder (705), a second support arm (706), a second clamping cylinder (707) and a third clamping cylinder (708), the corner block (701) is provided with the through hole (702) in a penetrating manner, the corner block (701) is welded and fixed on the first support arm (703), the top end of the first support arm (703) is fixedly provided with the connecting box (704), the first clamping cylinder (705) is embedded and arranged at the bottom end of the right side of the first support arm (703), the left side of the second support arm (706) is provided with the third clamping cylinder (708), the top end of the second clamping cylinder (707) is embedded and arranged on the first support arm (703), and the outer surface of the second clamping cylinder (707) is attached to the cable (1), the connecting box (704) comprises a shell (7041), a rolling spring (7042), a side frame plate (7043), a left connecting rod (7044), a right connecting rod (7045) and a central rod (7046), wherein a central rod (7046) is installed in the shell (7041) in a rotating mode, the rolling spring (7042) is installed on the outer surface of the central rod (7046) in an embedded mode, the central rod (7046) is installed in the side frame plate (7043) in a rotating mode, the left connecting rod (7044) is connected with the rolling spring (7042), the left side of the right connecting rod (7045) is connected with the rolling spring (7042), and the outer end of the central rod (7046) is installed in grooves in the inner walls of a left outer shell (3) and a right outer shell (4) in a rotating mode.
2. The reinforcing mechanism of graphite alkene cable conductor of claim 1, characterized in that: the left outer casing (3) right side is nested with the right outer casing (4), a left outer frame plate (2) is installed at the left side end of the left outer casing (3) in a fastening mode, a right outer frame plate (5) is installed at the right side of the right outer casing (4) in a fastening mode, and a wire fixing port (6) is prefabricated on the right outer casing (4).
3. The reinforcing mechanism of graphite alkene cable conductor of claim 2, characterized in that: the left outer frame plate (2) and the right outer frame plate (5) are identical in structure and size.
4. The reinforcing mechanism of graphite alkene cable conductor of claim 1, characterized in that: the first clamping cylinder (705), the second clamping cylinder (707) and the third clamping cylinder (708) are all cylinder structures and have the same size.
5. The reinforcing mechanism of graphite alkene cable conductor of claim 1, characterized in that: the inner clamping assembly (7) is erected and installed on the periphery of the outer side of the wire fixing port (6), and the wire fixing port (6) is a circular opening.
6. The reinforcing mechanism of graphite alkene cable conductor of claim 1, characterized in that: the first support arm (703) is of an axisymmetric structure, and the long distances of the extension arms on the two sides are the same.
7. The reinforcing mechanism of graphite alkene cable conductor of claim 2, characterized in that: the right outer frame plate (5) is of a W-shaped structure, and the left outer frame plate (2) is of a W-shaped structure.
8. The reinforcing mechanism of graphite alkene cable conductor of claim 1, characterized in that: the included angle formed by the first support arm (703) and the second support arm (706) around the circumference of the cable (1) is sixty degrees.
9. The reinforcing mechanism of graphite alkene cable conductor of claim 1, characterized in that: the bottom end of the left connecting rod (7044) is fixedly arranged on the central rod (7046).
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Effective date of registration: 20211104 Address after: 225600 Lingtang market town, Gaoyou City, Yangzhou City, Jiangsu Province Applicant after: YANGZHOU ZHONGNENG CABLE Co.,Ltd. Address before: No. 120, Yuanyuan village, Dahe Township, Wuping County, Longyan City, Fujian Province, 364300 Applicant before: Lan Xinyi |
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