CN214847900U - High-frequency coaxial cable with multi-section positioning structure - Google Patents

High-frequency coaxial cable with multi-section positioning structure Download PDF

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Publication number
CN214847900U
CN214847900U CN202120406505.3U CN202120406505U CN214847900U CN 214847900 U CN214847900 U CN 214847900U CN 202120406505 U CN202120406505 U CN 202120406505U CN 214847900 U CN214847900 U CN 214847900U
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China
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ring
cable
holding ring
positioning
adjustment mechanism
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CN202120406505.3U
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Chinese (zh)
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梁劢飞
洪宏
洪超
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Hefei Yuanfa Information Technology Co ltd
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Hefei Yuanfa Information Technology Co ltd
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Abstract

High frequency coaxial cable with multisection location structure, including the cable conductor, the embedding of cable conductor lateral wall is fixed with first holding ring and second holding ring, first holding ring with be connected with adjustment mechanism between the second holding ring, adjustment mechanism parallel arrangement is two sets of, first holding ring, second holding ring and adjustment mechanism connect for the location group, cable conductor lateral wall interval is provided with a plurality of location groups, is connected with between adjacent first holding ring between two location groups and the second holding ring adjustment mechanism. The first positioning ring and the second positioning ring are fixed through the adjusting mechanism, so that the torsion angle of the cable can be reduced, the angular positioning of the cable is ensured, and the damage caused by the overlarge torsion angle is avoided; and utilize adjustment mechanism to inside regulation, can adjust the bending angle of cable conductor to the trend after the bending of cable conductor is fixed a position, the output position of assurance cable conductor.

Description

High-frequency coaxial cable with multi-section positioning structure
Technical Field
The utility model belongs to the technical field of communication cable processing, in particular to high frequency coaxial cable with multisection location structure.
Background
A communication cable is a communication line consisting of a core twisted from a plurality of mutually insulated wires or conductors and an outer sheath protecting the core from moisture and mechanical damage. In particularly harsh environments, protective layers may also be installed on the outside of the telecommunication cable jacket, if necessary. Communication cables are classified into single-conductor, symmetrical cable and coaxial cable according to the type of cable.
The coaxial cable is a cable in which an inner conductor and an outer conductor on the same axis form a loop, the outer conductor surrounds the inner conductor, and the inner conductor and the outer conductor are insulated, but the cable is usually twisted at a large angle easily under the condition that the cable is not fixed in position, so that the cable and a lead inside the cable are twisted and damaged, and when the cable is bent and fixed, the bending degree of the cable cannot be controlled, the bending trend of the cable cannot be guaranteed, the installation position of the cable is deviated, and the installation accuracy of the cable is influenced.
SUMMERY OF THE UTILITY MODEL
The utility model discloses not enough to prior art exists provides the high frequency coaxial cable with multisection location structure, and concrete technical scheme is as follows:
high frequency coaxial cable with multisection location structure, including the cable conductor, the embedding of cable conductor lateral wall is fixed with first holding ring and second holding ring, first holding ring with be connected with adjustment mechanism between the second holding ring, adjustment mechanism parallel arrangement is two sets of, first holding ring, second holding ring and adjustment mechanism connect for the location group, cable conductor lateral wall interval is provided with a plurality of location groups, is connected with between adjacent first holding ring between two location groups and the second holding ring adjustment mechanism.
Furthermore, the adjusting mechanism comprises a pull rope, the pull rope is a rigid rope, and the pull rope is connected between the first positioning ring and the second positioning ring.
Furthermore, adjustment mechanism still includes first adjusting bolt and second adjusting bolt, first adjusting bolt through connection in inside the first holding ring, second adjusting bolt through connection in inside the second holding ring, first adjusting bolt with be connected with between the second adjusting bolt the stay cord.
Furthermore, the adjusting mechanism further comprises a spring, the spring is sleeved on the outer side of the pull rope, and two ends of the spring are respectively connected to the side walls of the first positioning ring and the second positioning ring.
Furthermore, the first positioning ring comprises a first ring body and a second ring body, the first ring body and the second ring body are the same semicircular rings, the side wall of the first positioning ring is symmetrically provided with first fixing blocks, the side wall of the second positioning ring is symmetrically provided with second fixing blocks, and the first fixing blocks and the second fixing blocks are fixed through screw matching.
The utility model has the advantages that:
1. the first positioning ring and the second positioning ring arranged on the side wall of the cable are fixed through the adjusting mechanism, so that the torsion angle of the cable can be reduced, the angular positioning of the cable is ensured, and the damage caused by the overlarge torsion angle is avoided;
2. and utilize adjustment mechanism to inside regulation, can adjust the bending angle of cable conductor to the trend after the bending of cable conductor is fixed a position, the output position of assurance cable conductor.
Drawings
Fig. 1 is a schematic view illustrating an overall structure of a high-frequency coaxial cable with a multi-section positioning structure according to the present invention;
fig. 2 is a cross-sectional view showing the connection structure of the adjusting mechanism of the present invention;
fig. 3 is a cross-sectional view showing a connection structure between the positioning sets according to the present invention;
fig. 4 shows a schematic view of a first positioning ring structure of the present invention;
shown in the figure: 1. a cable wire; 2. a first positioning ring; 21. a first ring body; 211. a first fixed block; 22. a second ring body; 221. a second fixed block; 3. an adjustment mechanism; 31. a first adjusting bolt; 32. a spring; 33. pulling a rope; 34. a second adjusting bolt; 4. a second retaining ring.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention is further described in detail with reference to the following embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
The high-frequency coaxial cable with the multi-section positioning structure comprises a cable conductor 1, wherein a first positioning ring 2 and a second positioning ring 4 are embedded and fixed on the side wall of the cable conductor 1, an adjusting mechanism 3 is connected between the first positioning ring 2 and the second positioning ring 4, the adjusting mechanisms 3 are arranged in two groups in parallel, the first positioning ring 2, the second positioning ring 4 and the adjusting mechanism 3 are connected into positioning groups, a plurality of positioning groups are arranged on the side wall of the cable conductor 1 at intervals, and the adjusting mechanism 3 is connected between the adjacent first positioning ring 2 and the second positioning ring 4 between the two positioning groups; the first positioning ring 2 and the second positioning ring 4 arranged on the side wall of the cable 1 are fixed through the adjusting mechanism 3, so that the torsion angle of the cable 1 can be reduced, the angular positioning of the cable 1 is ensured, and the damage caused by the overlarge torsion angle is avoided; and utilize adjustment mechanism 3 to inside regulation, can adjust the bending angle of cable conductor 3 to the trend after the bending of cable conductor 1 is fixed a position, guarantees the output position of cable conductor 3.
As shown in fig. 2, the adjusting mechanism 3 includes a pulling rope 33, the pulling rope 33 is a rigid rope, and the pulling rope 33 is connected between the first positioning ring 2 and the second positioning ring 4; utilize the stay cord 33 of rigidity to connect between first holding ring 2 and second holding ring 4, can connect as a whole with cable conductor 1 lateral wall, can prevent that cable conductor 1 from excessively twisting, play the guard action to cable conductor 1.
The adjusting mechanism 3 further comprises a first adjusting bolt 31 and a second adjusting bolt 34, the first adjusting bolt 31 is connected inside the first positioning ring 2 in a penetrating manner, the second adjusting bolt 34 is connected inside the second positioning ring 4 in a penetrating manner, and the pull rope 33 is connected between the first adjusting bolt 31 and the second adjusting bolt 34; the connection length of the pull rope 33 is controlled by adjusting the position of the first adjusting bolt 31 on the first positioning ring 2 or the position of the second adjusting bolt 34 on the second positioning ring 4, so that the distance between the first positioning ring 2 and the second positioning ring 4 is adjusted, the cable 1 can be bent, the bending degree of the cable 1 can be controlled, and the trend of the cable 1 is positioned.
The adjusting mechanism 3 further comprises a spring 32, the spring 32 is sleeved outside the pull rope 33, and two ends of the spring 32 are respectively connected to the side walls of the first positioning ring 2 and the second positioning ring 4; after the distance between the first positioning ring 2 and the second positioning ring 4 is reduced to bend the cable 1, and when the distance between the first positioning ring 2 and the second positioning ring 4 is reset, the compressed or stretched spring 32 can automatically restore the bent cable 1, so that the cable 1 is kept in a horizontal linear state.
As shown in fig. 4, the first positioning ring 2 includes a first ring body 21 and a second ring body 22, the first ring body 21 and the second ring body 22 are both identical semicircular rings, first fixing blocks 211 are symmetrically arranged on the side wall of the first ring body 21, second fixing blocks 221 are symmetrically arranged on the side wall of the second ring body 22, and the first fixing blocks 211 and the second fixing blocks 221 are fixed by screws in a matching manner; the first ring body 21 and the second ring body 22 are matched and embedded in the side wall of the cable 1, so that the cable 1 is convenient to install and detach, the first positioning ring 2 and the second positioning ring 4 are convenient to install in fixed positions with different spacing distances, and the cable 1 is enabled to have more matched adjusting and positioning.
When the utility model is implemented, the utility model,
firstly, embedding and fixing a first positioning ring 2 and a second positioning ring 4 in parallel on the side wall of a cable 1 according to a diagram 4, wherein the first positioning ring 2 and the second positioning ring 4 have the same structure and are detachable structures, and the first positioning ring 2 and the second positioning ring 4 which are arranged in parallel can keep a device connected with each other vertical;
the first ring body 21 and the second ring body 22 which are both semicircular are matched, and the first fixing blocks 211 symmetrically arranged on the side wall of the first ring body 21 and the second fixing blocks 221 symmetrically arranged on the side wall of the second ring body 22 are matched and fixed by screws, so that the first ring body 21 and the second ring body 22 are sealed and fixed and are completely sleeved and fixed on the side wall of the cable 1;
then, connecting the adjusting mechanism 3 between the first positioning ring 2 and the second positioning ring 4 according to fig. 1 and fig. 2, firstly, rotating the first adjusting bolt 31 to the direction of the second positioning ring 4 to be penetrated and connected inside the first positioning ring 2, then rotating the second adjusting bolt 34 to the direction of the first positioning ring 2 to be penetrated and connected inside the second positioning ring 4, then connecting one end of the pull rope 33 to the first adjusting bolt 31, then penetrating the spring 32 through the pull rope 33 to be sleeved on the outer side wall of the pull rope 33, then connecting the other end of the pull rope 33 to the second adjusting bolt 34, adjusting the fixed position of the first adjusting bolt 31 or the second adjusting bolt 34 to adjust the pull rope 33 to be tensioned linearly, and the spring 32 just clings to the first positioning ring 2 and the second positioning ring 4, thus completing the fixing of the adjusting mechanism 3;
finally, when the cable 1 is installed and fixed and the cable 1 is twisted, the stay cord 33 which is tensioned to be in the horizontal state length can prevent the cable 1 from rotating at a large angle, so that the twisting angle of the cable 1 is limited and positioned from the outer side, the structure inside the cable 1 is protected to be complete, and the stability of the cable 1 is ensured;
and when cable conductor 1 need carry out crooked wiring, through rotating first adjusting bolt 31 or second adjusting bolt 34, increase or reduce the length of stay cord 33 for the distance between first holding ring 2 and the second holding ring 4 that stay cord 33 is connected increases or reduces, thereby makes cable conductor 1 fix a position the trend with the crooked degree of demand, the installation of cable conductor 1 of being convenient for, and guaranteed cable conductor 1's output position.
The above description is only for the purpose of illustrating the preferred embodiments of the present invention and is not intended to limit the present invention, but rather, the appended claims are intended to cover all such modifications, equivalents, and improvements as fall within the true spirit and scope of the invention.

Claims (5)

1. High frequency coaxial cable with multisection location structure, its characterized in that: including cable conductor (1), cable conductor (1) lateral wall embedding is fixed with first holding ring (2) and second holding ring (4), first holding ring (2) with be connected with adjustment mechanism (3) between second holding ring (4), adjustment mechanism (3) parallel arrangement has two sets ofly, first holding ring (2), second holding ring (4) and adjustment mechanism (3) are connected for the location group, cable conductor (1) lateral wall interval is provided with a plurality of location groups, is connected with between adjacent first holding ring (2) between two location groups and second holding ring (4) adjustment mechanism (3).
2. The high-frequency coaxial cable with multi-segmented positioning structure as claimed in claim 1, wherein: the adjusting mechanism (3) comprises a pull rope (33), the pull rope (33) is a rigid rope, and the pull rope (33) is connected between the first positioning ring (2) and the second positioning ring (4).
3. The high-frequency coaxial cable with multi-segmented positioning structure as claimed in claim 2, wherein: adjustment mechanism (3) still include first adjusting bolt (31) and second adjusting bolt (34), first adjusting bolt (31) through connection in inside first holding ring (2), second adjusting bolt (34) through connection in inside second holding ring (4), first adjusting bolt (31) with be connected with between second adjusting bolt (34) stay cord (33).
4. The high-frequency coaxial cable with multi-segmented positioning structure as claimed in claim 3, wherein: the adjusting mechanism (3) further comprises a spring (32), the spring (32) is sleeved on the outer side of the pull rope (33), and two ends of the spring (32) are respectively connected to the side walls of the first positioning ring (2) and the second positioning ring (4).
5. The high-frequency coaxial cable with multi-segmented positioning structure as claimed in claim 4, wherein: first retainer ring (2) include first ring body (21) and second ring body (22), first ring body (21) and second ring body (22) are the same semicircle ring, first ring body (21) lateral wall symmetry is provided with first fixed block (211), second ring body (22) lateral wall symmetry is provided with second fixed block (221), first fixed block (211) with second fixed block (221) are fixed through the screw cooperation.
CN202120406505.3U 2021-02-23 2021-02-23 High-frequency coaxial cable with multi-section positioning structure Active CN214847900U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120406505.3U CN214847900U (en) 2021-02-23 2021-02-23 High-frequency coaxial cable with multi-section positioning structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120406505.3U CN214847900U (en) 2021-02-23 2021-02-23 High-frequency coaxial cable with multi-section positioning structure

Publications (1)

Publication Number Publication Date
CN214847900U true CN214847900U (en) 2021-11-23

Family

ID=78883944

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120406505.3U Active CN214847900U (en) 2021-02-23 2021-02-23 High-frequency coaxial cable with multi-section positioning structure

Country Status (1)

Country Link
CN (1) CN214847900U (en)

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