KR101657292B1 - Fixing bracket for installing aerial line - Google Patents
Fixing bracket for installing aerial line Download PDFInfo
- Publication number
- KR101657292B1 KR101657292B1 KR1020160008710A KR20160008710A KR101657292B1 KR 101657292 B1 KR101657292 B1 KR 101657292B1 KR 1020160008710 A KR1020160008710 A KR 1020160008710A KR 20160008710 A KR20160008710 A KR 20160008710A KR 101657292 B1 KR101657292 B1 KR 101657292B1
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- sensing
- communicating
- supporting
- connecting member
- penetrating
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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
- H02G7/00—Overhead installations of electric lines or cables
- H02G7/12—Devices for maintaining distance between parallel conductors, e.g. spacer
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- Chair Legs, Seat Parts, And Backrests (AREA)
Abstract
According to the present invention,
A first support part 11 formed on an upper side and a lower side with a sensing part 11a formed to be open to the upper and lower sides on the rear side; A second support part 12 having a sensing part 12a formed to open to the left and right sides on the rear side and intersecting with the first support part 11 in a cross shape; First and second bolt portions 13 and 14 each having a width smaller than the first support portion 11 and protruding outward from both sides of the first support portion 11; (10) having third and fourth bolts (15, 16) each having a width smaller than that of the second support portion (12) and protruding outward from both sides of the second support portion (12) Wow:
A first support portion 21 formed with upper and lower chambers and having a sensing part 21a formed to be open to the upper and lower sides of the front side; A second support part 22 having a sensing part 22a formed to open to the right and left sides in front of the first support part 21 and crossing the first support part 21 in a cross shape; First and second bolt portions 23 and 24 each having a width smaller than the first support portion 21 and protruding outward from both sides of the first support portion 21; And third and fourth bolt portions 25 and 26 each having a width smaller than the second support portion 22 and protruding outward from both sides of the second support portion 22, A second support member 20 spaced apart from the first support member 20;
And an opening 31b having a width smaller than that of the insertion portion 31a and having one side communicated with the insertion portion 31a and the other side opened to upper and lower side and outer side, A first engaging portion 31 detachably attached to the first bolt portion 13 of the first supporting member 10; And an opening 32b having a width smaller than that of the insertion portion 32a and having one side communicating with the insertion portion 32a and the other side opening up to the upper and lower side and the outer side, A second engaging portion 32 detachably attached to the first bolt portion 23 of the second support member 20; The first communicating portion 33a and the second communicating portion 33b communicate with each other through the first communicating portion 33a and the first communicating portion 33a. The first communicating portion 33a communicates with one side of the first communicating portion 33a. A second communicating portion 33b communicating with the upper side of the player's portion 11a and an upper portion communicating with the other side of the first communicating portion 33a and an upper communicating portion communicating with the lower portion of the second supporting member 20 A first cushioning member 30 made of an elastic material and having a sensing part 33 having a second communicating part 33c communicating with the upper side of the sensing part 21a of the supporting part 21;
And an opening 41b having a width smaller than that of the insertion portion 41a and having one side communicating with the insertion portion 41a and the other side having an opening vertically and outwardly, A first engaging portion 41 detachably attached to the second bolt portion 14 of the first supporting member 10; And an opening 42b having a width smaller than that of the insertion portion 42a and having one side communicated with the insertion portion 42a and the other side opened to the upper and lower side and the outer side, A second engaging portion 42 detachably attached to the second bolt portion 24 of the second support member 20; The first communicating portion 43a and the second communicating portion 43b communicate with each other through the first communicating portion 43a and the first communicating portion 43a. The first communicating portion 43a communicates with one side of the first communicating portion 43a. A second communicating portion 43b which communicates with the lower side of the forward portion 11a and a second communicating portion 43b which opens upward and downward and whose lower side communicates with the other side of the first communicating portion 43a, A second cushioning member 40 made of an elastic material and having a sensing part 43 having a second communicating part 43c communicating with a lower side of the sensing part 21a of the supporting part 21;
And an opening 51b having a width smaller than that of the insertion portion 51a and having one side communicated with the insertion portion 51a and the other side opened to the upper and lower side and the outer side, A first engaging portion 51 detachably attached to the third bolt portion 15 of the first supporting member 10; And an opening 52b having a width smaller than that of the insertion portion 52a and having one side communicating with the insertion portion 52a and the other side opening up to the upper and lower side and the outer side, A second engaging portion 52 detachably attached to the third bolt portion 25 of the second support member 20; The first communicating portion 53a and the second communicating portion 53b are communicated with one side of the first communicating portion 53a while the left communicating with the left communicating with the first communicating portion 53a and the right communicating with the sensing portion of the second supporting portion 12 of the first supporting member 10 The second communicating portion 53b communicating with the left side of the forward portion 12a and the second communicating portion 53b communicating with the other side of the first communicating portion 53a and the left communicating with the left communicating portion 53a, A third cushioning member 50 made of an elastic material and having a sensing part 53 having a second communicating part 53c communicating with the left side of the sensing part 22a of the supporting part 22;
And an opening 61b having a width smaller than that of the insertion portion 61a and having one side communicated with the insertion portion 61a and the other side opened to the upper and lower sides and the outer side, A first engaging portion 61 detachably attached to the fourth bolt portion 16 of the first supporting member 10; And an opening 62b having a width smaller than that of the inserting portion 62a and having one side communicating with the inserting portion 62a and the other side opening to the upper and lower side and the outer side, A second engaging portion 62 detachably attached to the fourth bolt portion 26 of the second support member 20; The first communicating portion 63a formed in the front and rear directions and the first communicating portion 63a communicating with one side of the first communicating portion 63a and the right communicating with the one side of the first communicating portion 63a and the left communicating with the sensing portion of the second supporting portion 12 of the first supporting member 10 A second communicating portion 63b communicating with the right side of the forward portion 12a and a second communicating portion 63b communicating with the other side of the first communicating portion 63a and opened on the right and left sides, A fourth cushioning member 60 of elastic material having a sensing part 63 having a second communicating part 63c communicating with the right side of the sensing part 22a of the supporting part 22;
A nut portion B1a detachably threadably fastened to the first bolt portion 13 of the first support member 10 and pressing the first engagement portion 31 of the first buffer member 30; A first working transmission line mounting member B1 provided on the upper portion of the nut portion B1a and having a fixing portion B1b into which the machining power transmission line L is inserted;
A nut portion B2a which is threadably fastened to the second bolt portion 14 of the first support member 10 in a detachable manner and presses the first engagement portion 41 of the second buffer member 40; A second working transmission line installation member B2 provided on the upper portion of the nut portion B2a and having a fixing portion B2b into which the processing power transmission line L is inserted;
A nut portion B3a detachably threadably fastened to the third bolt portion 15 of the first support member 10 and pressing the first engaging portion 51 of the third buffer member 50; A third working line mounting member B3 provided on the upper portion of the nut portion B3a and having a fixing portion B3b for inserting the machining power transmission line L;
A nut portion B4a detachably threadably fastened to the fourth bolt portion 16 of the first support member 10 and pressing the first engagement portion 61 of the fourth cushioning member 60; A fourth working power transmission line attachment member B4 provided on the upper portion of the nut portion B4a and having a fixing portion B4b for inserting the processing power transmission line L;
A nut portion B5a detachably threadably fastened to the first bolt portion 23 of the second support member 20 and pressing the second engagement portion 32 of the first cushioning member 30; A fifth machining power transmission line installation member B5 provided on the upper portion of the nut portion B5a and having a fixing portion B5b for inserting the machining power transmission line L;
A nut portion B6a detachably threadably fastened to the second bolt portion 24 of the second support member 20 and pressing the second engagement portion 42 of the second buffer member 40; A sixth machining power transmission line installation member B6 provided on the upper portion of the nut portion B6a and having a fixing portion B6b for inserting the machining power transmission line L;
A nut portion B7a detachably threadably fastened to the third bolt portion 25 of the second support member 20 and pressing the second engagement portion 52 of the third buffer member 50; A seventh working power transmission line installation member B7 provided on the upper portion of the nut portion B7a and having a fixing portion B7b for inserting the processing power transmission line L;
A nut portion B8a detachably threadably fastened to the fourth bolt portion 26 of the second support member 20 and pressing the second engagement portion 62 of the fourth cushioning member 60; An eighth working line fixing member B8 provided on the upper portion of the nut portion B8a and having a fixing portion B8b for inserting the working power transmission line L;
A first connecting member S1a1 inserted into the upper part of the detecting part 11a of the first supporting part 11 of the first supporting member 10 and a through part t1 penetrating in the upper and lower directions, A connecting portion S1a2b which is inserted into the penetrating portion t1 of the body portion S1a2a so as to be movable up and down and a connecting portion S1a2b which is provided at the penetrating portion t1 of the body portion S1a2a, And a spring (S1a2c) for pressing the connecting portion (S1a2b) downward so that the connecting portion (S1a2b) contacts the first connecting member (S1a1), so that the second connecting portion (33b) of the first cushioning member A first connecting member S1a provided with a contact S1a2; A first connecting member S1b1 inserted into the upper part of the detecting part 21a of the first supporting part 21 of the second supporting member 20 and a penetrating part t2 penetrating in the upper and lower directions, A connecting portion S1b2b which is inserted into the penetrating portion t2 of the body portion S1b2a so as to be movable upward and downward and a connecting portion S1b2b which is provided at the penetrating portion t2 of the body portion S1b2a, And a spring (S1b2c) for pressing the connecting portion (S1b2b) downward so that the connecting portion (S1b2b) comes into contact with the first connecting member (S1b1) A second connecting member (S1b) provided with a contact (S1b2); Is received in the detecting portion (11a) of the first supporting portion (11) of the first supporting member (10) and has one end connected to the first connecting member (S1a1) of the first connecting member (S1a) A first sensing line S1c exposed to the outside of the first supporting portion 11 of the supporting member 10; One end of which is connected to the first connecting member S1b1 of the second connecting member S1b and the other end of which is connected to the second supporting member 21 of the second supporting member 20, A second sensing line (S1d) exposed to the outside of the first supporting portion (21) of the supporting member (20); One end of which is connected to the connecting portion S1a2b of the second connecting member S1a2 of the first connecting member S1a and the other end of which is connected to the second connecting member S1a2 of the first connecting member S1a, A first sensing member S1 having a third sensing line S1e connected to the connecting portion S1b2b of the second connecting member S1b2 of the member S1b;
A first connecting member S2a1 inserted into the lower part of the detection part 11a of the first supporting part 11 of the first supporting member 10 and a through part t3 penetrating in the upper and lower directions, A connecting portion S2a2b which is inserted into the penetrating portion t3 of the body portion S2a2a so as to be movable up and down and a connecting portion S2a2b which is provided at the penetrating portion t3 of the body portion S2a2a, And a spring S2a2c for urging the connecting portion S2a2b upward so that the connecting portion S2a2b comes into contact with the first connecting member S2a1. The spring S2a2c presses the second connecting portion 43b of the second buffer member 40, A first connecting member S2a provided with a contact S2a2; A first connecting member S2b1 inserted into the lower part of the detecting part 21a of the first supporting part 21 of the second supporting member 20 and a penetrating part t4 penetrating in the upper and lower directions, A connecting portion S2b2b which is inserted into the penetrating portion t4 of the body portion S2b2a such that the connecting portion S2b2b is movable upward and downward and the connecting portion S2b2b which is provided at the penetrating portion t4 of the body portion S2b2a, And a spring S2b2c for pushing the connecting portion S2b2b downward so that the connecting portion S2b2b comes into contact with the first connecting member S2b1 to form the second connecting portion 43c of the second buffer member 40, A second connecting member S2b having a contact S2b2; The first sensing line S2c of the second sensing member S2 is accommodated in the sensing portion 11a of the first supporting portion 11 of the first supporting member 10 and has one end connected to the first connecting member S2a A first sensing line S2c connected to the first connection S2a1 of the first supporting member 10 and the other end exposed to the outside of the first supporting portion 11 of the first supporting member 10; One end of which is connected to the first connecting member S2b1 of the second connecting member S2b and the other end of which is connected to the second connecting member S2b1 of the second supporting member 20, A second sensing line S2d which is exposed to the outside of the first supporting portion 21 of the supporting member 20; One end of which is connected to the connecting portion S2a2b of the second connecting member S2a2 of the first connecting member S2a and the other end of which is connected to the second connecting member S2a2 of the second buffer member 40, A second sensing member S2 having a third sensing line S2e connected to the connection S2b2b of the second connector S2b2 of the member S2b;
A first connecting member S3a1 inserted into the left side of the sensing part 12a of the second supporting part 12 of the first supporting member 10 and a through hole t5 penetrating in the upper and lower directions, A connecting portion S3a2b which is inserted into the penetrating portion t5 of the body portion S3a2a so as to be movable up and down and a connecting portion S3a2b which is provided at the penetrating portion t5 of the body portion S3a2a, And a spring S3a2c for pushing the connecting portion S3a2b to the first connecting member S3a1 by pushing the connecting portion S3a2b to the second connecting portion 53b of the third cushioning member 50, A first connecting member S3a provided with a contact S3a2; A first connecting member S3b1 inserted into the left side of the sensing part 22a of the second supporting part 22 of the second supporting member 20 and a through part t6 penetrating through the upper part and the lower part, A connecting portion S3b2b which is inserted into the penetrating portion t6 of the body portion S3b2a so as to be movable up and down and a connecting portion S3b2b which is provided at the penetrating portion t6 of the body portion S3b2a, And a spring S3b2c for urging the connecting portion S3b2b to the first connecting member S3b1 so that the connecting portion S3b2b is in contact with the first connecting member S3b1 so that the second connecting member S3b2b is inserted into the third connecting portion 53c of the third buffer member 50. [ A second connecting member S3b having a contact S3b2; Is received in the sensing part (12a) of the second supporting part (12) of the first supporting member (10) and has one end connected to the first connecting member (S3a1) of the first connecting member (S3a) A first sensing line S3c exposed to the outside of the second supporting portion 12 of the supporting member 10; Is received in the detecting portion 22a of the second supporting portion 22 of the second supporting member 20 and has one end connected to the first connecting member S3b1 of the second connecting member S3b, A second sensing line (S3d) exposed to the outside of the second supporting portion (22) of the supporting member (20); One end thereof is connected to the connecting portion S3a2b of the second connecting member S3a2 of the first connecting member S3a and the other end is connected to the connecting portion S3a2b of the second connecting member S3a2 of the third connecting member S3a, A third sensing member S3 having a third sensing line S3e connected to the connecting portion S3b2b of the second connector S3b2 of the member S3b;
A first connecting member S4a1 inserted into the right side of the sensing part 12a of the second supporting part 12 of the first supporting member 10 and a through part t7 penetrating in the upper and lower directions, A connecting portion S4a2b which is inserted into the penetrating portion t7 of the body portion S4a2a so as to be movable up and down and a connecting portion S4a2b which is provided at the penetrating portion t7 of the body portion S4a2a, And a spring S4a2c for pushing the connecting portion S4a2b to the first connecting member S4a1 so that the connecting portion S4a2b contacts the first connecting member S4a1 and the second connecting portion S4b is inserted into the second connecting portion 63b of the fourth buffer member 60. [ A first connecting member S4a provided with a contact S4a2; The first connecting member S4b1 inserted into the right side of the detecting part 22a of the second supporting part 22 of the second supporting member 20 and the penetrating part t8 penetrating in the upper and lower directions, A connecting portion S4b2b which is inserted into the penetrating portion t8 of the body portion S4b2a so as to be movable up and down and a connecting portion S4b2b which is provided at the penetrating portion t8 of the body portion S4b2a, And a spring S4b2c for pushing the connecting portion S4b2b to the first connecting member S4b1 so as to press the connecting portion S4b2b to the left to contact the first connecting member S4b1 to the third connecting portion 63c of the fourth cushioning member 60, A second connecting member S4b having a contact S4b2; One end of which is connected to the first connecting member S4a1 of the first connecting member S4a and the other end of which is connected to the first connecting member S4a1 of the second supporting member 12 of the first supporting member 10, A first sensing line S4c exposed to the outside of the second supporting portion 12 of the supporting member 10; One end of which is connected to the first connecting member S4b1 of the second connecting member S4b and the other end of which is connected to the second connecting member S4b2 of the second supporting member 22 of the second supporting member 20, A second sensing line S4d exposed to the outside of the second supporting portion 22 of the supporting member 20; One end of which is connected to the connecting portion S4a2b of the second connecting member S4a2 of the first connecting member S4a and the other end of which is connected to the second connecting portion S4a2 of the fourth connecting member S4a, A fourth sensing member S4 having a third sensing line S4e connected to the connection S4b2b of the second connector S4b2 of the member S4b;
The other end of the first sensing line S1c of the first sensing member S1 is electrically connected and the other end of the first sensing line S2c of the second sensing member S2 is electrically connected, The other end of the first sensing line S3c of the first sensing member S4 is electrically connected and the other end of the first sensing line S4c of the fourth sensing member S4 is electrically connected, The first sensing line S2c of the first sensing line S1c and the second sensing line S2c of the second sensing member S2 and the second sensing line S3c of the third sensing member S3 and the fourth sensing line S3c of the fourth sensing member S4, A signal output unit S5 for outputting an electric signal through the sensing line S4c;
The other end of the second sensing line S1d of the first sensing member S1 is electrically connected and the other end of the second sensing line S2d of the second sensing member S2 is electrically connected, The other end of the second sensing line S 3 d of the second sensing member S 3 is electrically connected and the other end of the second sensing line S 4 d of the fourth sensing member S 4 is electrically connected, The second sensing line S2d of the second sensing member S2 and the second sensing line S3d of the third sensing member S3 and the fourth sensing line S3d of the fourth sensing member S4, A signal receiver S6 for receiving the electrical signal from the signal output device S5 via the sensing line S4d;
A transmitter S7 provided in the signal receiver S6 and outputting an alarm signal to the outside when the signal receiver S6 does not receive the electric signal from the signal output unit S5;
And a control unit.
Description
The present invention relates to a stationary bracket for stable transmission line placement.
The processing transmission line is a power facility for supplying power generated by a power plant to each region through a substation for power supply.
At this time, the transmission line is supported by a transmission tower and the transmission towers are installed at regular intervals between the power plant and the substation so as to stably support the transmission lines.
In the case of such a transmission line, there is a possibility that a collision occurs between working transmission lines when a strong wind is blown, which causes a large safety accident such as short-circuit or disconnection.
Therefore, conventionally, a spacer is provided between each transmission line disposed between the transmission tower and the transmission tower to prevent collision between the transmission lines.
However, these conventional spacers can not stably support the machined transmission line, so that there is a limitation in preventing collision between the machined transmission lines.
SUMMARY OF THE INVENTION The present invention has been made to solve the above-mentioned problems, and it is an object of the present invention to provide a stable bracket for a stable machining power transmission line which is installed between working transmission lines and stably prevents collision between working transmission lines.
According to an aspect of the present invention,
A
A
And an opening 31b having a width smaller than that of the
And an opening 41b having a width smaller than that of the insertion portion 41a and having one side communicating with the insertion portion 41a and the other side having an opening vertically and outwardly, A first
And an opening 51b having a width smaller than that of the
And an opening 61b having a width smaller than that of the
A nut portion B1a detachably threadably fastened to the
A nut portion B2a which is threadably fastened to the
A nut portion B3a detachably threadably fastened to the
A nut portion B4a detachably threadably fastened to the
A nut portion B5a detachably threadably fastened to the
A nut portion B6a detachably threadably fastened to the
A nut portion B7a detachably threadably fastened to the
A nut portion B8a detachably threadably fastened to the
A first connecting member S1a1 inserted into the upper part of the detecting
A first connecting member S2a1 inserted into the lower part of the
A first connecting member S3a1 inserted into the left side of the
A first connecting member S4a1 inserted into the right side of the
The other end of the first sensing line S1c of the first sensing member S1 is electrically connected and the other end of the first sensing line S2c of the second sensing member S2 is electrically connected, The other end of the first sensing line S3c of the first sensing member S4 is electrically connected and the other end of the first sensing line S4c of the fourth sensing member S4 is electrically connected, The first sensing line S2c of the first sensing line S1c and the second sensing line S2c of the second sensing member S2 and the second sensing line S3c of the third sensing member S3 and the fourth sensing line S3c of the fourth sensing member S4, A signal output unit S5 for outputting an electric signal through the sensing line S4c;
The other end of the second sensing line S1d of the first sensing member S1 is electrically connected and the other end of the second sensing line S2d of the second sensing member S2 is electrically connected, The other end of the second sensing line S 3 d of the second sensing member S 3 is electrically connected and the other end of the second sensing line S 4 d of the fourth
A transmitter S7 which is provided in the signal receiver S6 and outputs an alarm signal to the outside when the signal receiver S6 does not receive the electric signal from the signal output unit S5,
And a control unit.
The present invention stably maintains the spacing between working transmission lines and enables an external manager to quickly find out when an abnormality occurs.
1 is a sectional view for explaining a fixed bracket for placing a stable machining power transmission line according to the present invention,
Fig. 2 is a sectional view taken along line XX in Fig. 1,
3 is a sectional view of the YY line of Fig. 1,
4 is a sectional view for explaining the first to fourth buffer members of the present invention,
5 is a view for explaining a to d in Fig. 2,
Fig. 6 is a view for explaining e to h in Fig. 3,
FIG. 7 and FIG. 8 are views for explaining the operation of the fixed bracket for the stable machining transmission line arrangement according to the present invention.
BEST MODE FOR CARRYING OUT THE INVENTION The present invention will now be described in detail with reference to the accompanying drawings.
FIG. 1 is a sectional view for explaining a fixed bracket for placing a stable working transmission line according to the present invention, FIG. 2 is a sectional view taken along line XX of FIG. 1, FIG. 5 is a view for explaining a to d of FIG. 2, FIG. 6 is a view for explaining e to h of FIG. 3, and FIGS. The structural features of the present invention will be described with reference to FIG.
The stationary bracket for placing the stable working transmission line according to the present invention comprises a
The
The first supporting
The
The first and
The third and
The
The
The
The first and
The third and
The
The
The
The sensing
The
The
The
The
The
The
The
The sensing
The
The
The
The
The first working transmission line attachment member B1 is detachably and threadably fastened to the
The second working transmission line attachment member B2 is threadably fastened to the
The third working transmission line attachment member B3 is threadably fastened to the
The fourth working transmission line attachment member B4 is threadably fastened to the
The fifth working transmission line installation member B5 is threadably fastened to the
The sixth working transmission line installation member B6 is threadably fastened to the
The seventh working power transmission line attachment member B7 is threadably fastened to the
The eighth transmission line installation member B8 is threadably fastened to the
The first sensing member S1 includes a first connecting member S1a, a second connecting member S1b, a first sensing line S1c, a second sensing line S1d, and a third sensing line S1e ).
The first connecting member S1a of the first sensing member S1 has the first connecting member S1a1 and the second connecting member S1a2.
The first contact S1a1 of the first connecting member S1a of the first sensing member S1 is inserted on the upper side of the
The second connecting member S1a2 of the first connecting member S1a of the first sensing member S1 has a body portion S1a2a having a penetration portion t1 formed so as to pass through the upper and lower chambers, A connecting portion S1a2b which is inserted into the penetrating portion t1 of the connecting portion S1a2b so as to be movable upward and downward and a connecting portion S1a2b which is provided at the penetrating portion t1 of the body portion S1a2a and which presses the connecting portion S1a2b downward, And a spring S1a2c for causing the first sensing member S1 to contact the first connecting member S1a1 of the first connecting member S1a of the first sensing member S1, 33b.
The second connecting member S1b of the first sensing member S1 has the first connecting member S1b1 and the second connecting member S1b2.
The first contact S1b1 of the second connecting member S1b of the first sensing member S1 is inserted on the upper side of the
The second connecting member S1b2 of the second connecting member S1b of the first sensing member S1 has a body portion S1b2a having a penetration portion t2 formed so as to pass through the upper and lower chambers, A connecting portion S1b2b which is inserted into the penetrating portion t2 of the body portion S1b2a so as to be movable up and down and a connecting portion S1b2b which is provided at the penetrating portion t2 of the body portion S1b2a and which presses the connecting portion S1b2b downward, And a spring S1b2c for causing the first sensing member S1 to contact the first connecting member S1b1 of the second connecting member S1b of the first sensing member S1, 33c.
The first sensing line S1c of the first sensing member S1 is received in the
The second sensing line S1d of the first sensing member S1 is accommodated in the
The third sensing line S1e of the first sensing member S1 is received in the
The second sensing member S2 includes a first connecting member S2a, a second connecting member S2b, a first sensing line S2c, a second sensing line S2d, and a third sensing line S2e ).
The first connecting member S2a of the second sensing member S2 has the first connecting member S2a1 and the second connecting member S2a2.
The first connecting member S2a1 of the first connecting member S2a of the second sensing member S2 is inserted below the
The second connecting member S2a2 of the first connecting member S2a of the second sensing member S2 has a body portion S2a2a having a penetration portion t3 penetrating through the upper and lower chambers, A connecting portion S2a2b which is inserted into the penetrating portion t3 of the body portion S2a2a in such a manner that the connecting portion S2a2b is movably inserted into the penetrating portion t3 of the body portion S2a2a and the connecting portion S2a2b And a spring S2a2c for causing the second sensing member S2 to contact the first connecting member S2a1 of the first connecting member S2a of the second sensing member S2, 43b.
The second connecting member S2b of the second sensing member S2 has the first connecting member S2b1 and the second connecting member S2b2.
The first connecting member S2b1 of the second connecting member S2b of the second sensing member S2 is inserted below the
The second connecting member S2b2 of the second connecting member S2b of the second sensing member S2 has a body portion S2b2a having a penetration portion t4 penetrating the body portion S2b2a, A connecting portion S2b2b which is inserted into the penetrating portion t4 of the body portion S2b2a in such a manner that the connecting portion S2b2b is movably inserted into the penetrating portion t4 of the body portion S2b2a and the connecting portion S2b2b And a spring S2b2c for causing the second sensing member S2 to contact the first connecting member S2b1 of the second connecting member S2b of the second sensing member S2, 43c.
The first sensing line S2c of the second sensing member S2 is accommodated in the
The second sensing line S2d of the second sensing member S2 is accommodated in the
The third sensing line S2e of the second sensing member S2 is received in the
The third sensing member S3 includes a first connecting member S3a, a second connecting member S3b, a first sensing line S3c, a second sensing line S3d, and a third sensing line S3e ).
The first connecting member S3a of the third sensing member S3 has the first connecting member S3a1 and the second connecting member S3a2.
The first contact S3a1 of the first connecting member S3a of the third sensing member S3 is inserted to the left of the
The second connecting member S3a2 of the first connecting member S3a of the third sensing member S3 has a body portion S3a2a having a penetration portion t5 penetrating through the upper and lower walls, A connecting portion S3a2b which is inserted into the penetrating portion t5 of the body portion S3a2a so as to be movable upward and downward and a connecting portion S3a2b which is provided at the penetrating portion t5 of the body portion S3a2a and which presses the connecting portion S3a2b to the right, And a spring S3a2c for causing the third sensing member S3 to contact the first connecting member S3a1 of the first connecting member S3a of the third sensing member S3, 53b.
The second connecting member S3b of the third sensing member S3 has the first connecting member S3b1 and the second connecting member S3b2.
The first contact S3b1 of the second connecting member S3b of the third sensing member S3 is inserted to the left of the
The second connecting member S3b2 of the second connecting member S3b of the third sensing member S3 has a body portion S3b2a having a penetration portion t6 penetrating the upper and lower chambers, A connecting portion S3b2b inserted into the penetrating portion t6 of the body portion S3b2a in such a manner that the connecting portion S3b2b is movably inserted into the penetrating portion t6 of the body portion S3b2a and the connecting portion S3b2b Of the
The first sensing line S3c of the third sensing member S3 is accommodated in the
The second sensing line S3d of the third sensing member S3 is accommodated in the
The third sensing line S3e of the third sensing member S3 is received in the
The fourth sensing member S4 includes a first connecting member S4a, a second connecting member S4b, a first sensing line S4c, a second sensing line S4d, and a third sensing line S4e ).
The first connecting member S4a of the fourth sensing member S4 has the first connecting member S4a1 and the second connecting member S4a2.
The first contact S4a1 of the first connecting member S4a of the fourth sensing member S4 is inserted to the right of the
The second connecting member S4a2 of the first connecting member S4a of the fourth sensing member S4 has a body portion S4a2a having a penetrating portion t7 penetrating through the upper and lower walls, A connecting portion S4a2b which is inserted into the penetrating portion t7 of the body portion S4a2a so as to be movable up and down and a connecting portion S4a2b which is provided on the penetrating portion t7 of the body portion S4a2a and which presses the connecting portion S4a2b to the left, And a spring S4a2c for causing the fourth sensing member S4 to contact the first connecting member S4a1 of the first connecting member S4a of the fourth sensing member S4, 63b.
The second connecting member S4b of the fourth sensing member S4 has the first connecting member S4b1 and the second connecting member S4b2.
The first connector S4b1 of the second connecting member S4b of the fourth sensing member S4 is inserted to the right of the
The second connecting member S4b2 of the second connecting member S4b of the fourth sensing member S4 has a body portion S4b2a having a penetration portion t8 formed so as to pass through the upper and lower chambers, A connecting portion S4b2b which is inserted into the penetrating portion t8 of the body portion S4b2a such that the connecting portion S4b2b can be moved upward and downward and the connecting portion S4b2b which is provided at the penetrating portion t8 of the body portion S4b2a, Of the
The first sensing line S4c of the fourth sensing member S4 is received in the
The second sensing line S4d of the fourth sensing member S4 is received in the
The third sensing line S4e of the fourth sensing member S4 is received in the
The other end of the first sensing line S1c of the first sensing member S1 is electrically connected and the other end of the first sensing line S2c of the second sensing member S2 is electrically connected The other end of the first sensing line S3c of the third sensing member S3 is electrically connected and the other end of the first sensing line S4c of the fourth sensing member S4 is electrically connected, The first sensing line S1c of the sensing member S1 and the first sensing line S2c of the second sensing member S2 and the second sensing line S3c of the third sensing member S3, And outputs an electric signal through the fourth sensing line S4c of the fourth switch S4.
The other end of the second sensing line S1d of the first sensing member S1 is electrically connected to the signal receiver S6 and the other end of the second sensing line S2d of the second sensing member S2 is electrically connected The other end of the second sensing line S3d of the third sensing member S3 is electrically connected and the other end of the second sensing line S4d of the fourth sensing member S4 is electrically connected, The second sensing line S1d of the sensing member S2 and the second sensing line S2d of the second sensing member S2 and the second sensing line S3d of the third sensing member S3, And receives the electric signal from the signal output unit S5 through the fourth sensing line S4d in the step S4.
The transmitter S7 is installed in the signal receiver S6 and outputs a warning signal to the outside when the signal receiver S6 does not receive the electric signal from the signal output unit S5.
FIGS. 7 and 8 are views for explaining the operation of the fixed bracket for placing a stable working transmission line according to the present invention, and the operation of the present invention will be described with reference to FIGS. 7 and 8. FIG.
The installation relationship between the configurations of the fixed brackets according to the present invention will be described below.
The first supporting
The first sensing line S1c of the first sensing member S1 connected to the signal output unit S5 is connected to the first connection S1a1 of the first connecting member S1a of the first sensing member S1, And the second sensing line S1d of the first sensing member S1 is connected to the first connection S1b1 of the second connecting member S1b of the first sensing member S1, The first sensing member S1 is connected to the second connection S1a2 of the first connection member S1a of the first sensing member S1 and the second connection S1b2 of the second connection member S1b of the first sensing member S1, Is connected to the third sensing line S1e.
In this state, the first connection S1a1 of the first connection member S1a of the first sensing member S1 and the second connection S1a1 of the first connection member S1a of the first sensing member S1 The first engaging
Thereafter, the nut B1a of the first working transmission line installation member B1 is fastened to the
At this time, when a space is formed between the nut portion B1a of the first processing line installation member B1 and the
When a space is formed between the nut portion B5a of the fifth working transmission line installation member B5 and the
As described above, according to the present invention, the first sensing line S1c, the second sensing line S1d, and the third sensing line S1e of the first sensing member S1 are not exposed to the outside, The first sensing line S 1 c of the first
In the present invention, the second to
2, the working transmission line L is installed on the first supporting
The first to
7, when the wind power is applied, the
At this time, the first to
On the other hand, when the installation period of the present invention is long or the strength of the wind force is strong, the first to
8, the third sensing line S1e of the first sensing member S1 accommodated in the
At this time, the signal receiver S6 is disconnected from the third sensing line S1e of the first sensing member S1 and no longer receives the electrical signal from the signal output device S5.
If the signal receiver S6 no longer receives the electric signal, the transmitter S7 sends a warning signal to the external management center that a problem has occurred in the fixed bracket according to the present invention.
As a result, the administrator can take immediate action on the fixed brackets where problems have occurred.
10; A
30; A
50; A
B1 to B8; First to fourth working power transmission line installation members S1 to S4; The first to fourth sensing members
S5; Signal output device S6; Signal receiver
S7; transmitter
Claims (1)
A first support portion 21 formed with upper and lower chambers and having a sensing part 21a formed to be open to the upper and lower sides of the front side; A second support part 22 having a sensing part 22a formed to open to the right and left sides in front of the first support part 21 and crossing the first support part 21 in a cross shape; First and second bolt portions 23 and 24 each having a width smaller than the first support portion 21 and protruding outward from both sides of the first support portion 21; And third and fourth bolt portions 25 and 26 each having a width smaller than the second support portion 22 and protruding outward from both sides of the second support portion 22, A second support member 20 spaced apart from the first support member 20;
And an opening 31b having a width smaller than that of the insertion portion 31a and having one side communicated with the insertion portion 31a and the other side opened to upper and lower side and outer side, A first engaging portion 31 detachably attached to the first bolt portion 13 of the first supporting member 10; And an opening 32b having a width smaller than that of the insertion portion 32a and having one side communicating with the insertion portion 32a and the other side opening up to the upper and lower side and the outer side, A second engaging portion 32 detachably attached to the first bolt portion 23 of the second support member 20; The first communicating portion 33a and the second communicating portion 33b communicate with each other through the first communicating portion 33a and the first communicating portion 33a. The first communicating portion 33a communicates with one side of the first communicating portion 33a. A second communicating portion 33b communicating with the upper side of the player's portion 11a and an upper portion communicating with the other side of the first communicating portion 33a and an upper communicating portion communicating with the lower portion of the second supporting member 20 A first cushioning member 30 made of an elastic material and having a sensing part 33 having a second communicating part 33c communicating with the upper side of the sensing part 21a of the supporting part 21;
And an opening 41b having a width smaller than that of the insertion portion 41a and having one side communicating with the insertion portion 41a and the other side having an opening vertically and outwardly, A first engaging portion 41 detachably attached to the second bolt portion 14 of the first supporting member 10; And an opening 42b having a width smaller than that of the insertion portion 42a and having one side communicated with the insertion portion 42a and the other side opened to the upper and lower side and the outer side, A second engaging portion 42 detachably attached to the second bolt portion 24 of the second support member 20; The first communicating portion 43a and the second communicating portion 43b communicate with each other through the first communicating portion 43a and the first communicating portion 43a. The first communicating portion 43a communicates with one side of the first communicating portion 43a. A second communicating portion 43b which communicates with the lower side of the forward portion 11a and a second communicating portion 43b which opens upward and downward and whose lower side communicates with the other side of the first communicating portion 43a, A second cushioning member 40 made of an elastic material and having a sensing part 43 having a second communicating part 43c communicating with a lower side of the sensing part 21a of the supporting part 21;
And an opening 51b having a width smaller than that of the insertion portion 51a and having one side communicated with the insertion portion 51a and the other side opened to the upper and lower side and the outer side, A first engaging portion 51 detachably attached to the third bolt portion 15 of the first supporting member 10; And an opening 52b having a width smaller than that of the insertion portion 52a and having one side communicating with the insertion portion 52a and the other side opening up to the upper and lower side and the outer side, A second engaging portion 52 detachably attached to the third bolt portion 25 of the second support member 20; The first communicating portion 53a and the second communicating portion 53b are communicated with one side of the first communicating portion 53a while the left communicating with the left communicating with the first communicating portion 53a and the right communicating with the sensing portion of the second supporting portion 12 of the first supporting member 10 The second communicating portion 53b communicating with the left side of the forward portion 12a and the second communicating portion 53b communicating with the other side of the first communicating portion 53a and the left communicating with the left communicating portion 53a, A third cushioning member 50 made of an elastic material and having a sensing part 53 having a second communicating part 53c communicating with the left side of the sensing part 22a of the supporting part 22;
And an opening 61b having a width smaller than that of the insertion portion 61a and having one side communicated with the insertion portion 61a and the other side opened to the upper and lower sides and the outer side, A first engaging portion 61 detachably attached to the fourth bolt portion 16 of the first supporting member 10; And an opening 62b having a width smaller than that of the inserting portion 62a and having one side communicating with the inserting portion 62a and the other side opening to the upper and lower side and the outer side, A second engaging portion 62 detachably attached to the fourth bolt portion 26 of the second support member 20; The first communicating portion 63a formed in the front and rear directions and the first communicating portion 63a communicating with one side of the first communicating portion 63a and the right communicating with the one side of the first communicating portion 63a and the left communicating with the sensing portion of the second supporting portion 12 of the first supporting member 10 A second communicating portion 63b communicating with the right side of the forward portion 12a and a second communicating portion 63b communicating with the other side of the first communicating portion 63a and opened on the right and left sides, A fourth cushioning member 60 of elastic material having a sensing part 63 having a second communicating part 63c communicating with the right side of the sensing part 22a of the supporting part 22;
A nut portion B1a detachably threadably fastened to the first bolt portion 13 of the first support member 10 and pressing the first engagement portion 31 of the first buffer member 30; A first working transmission line mounting member B1 provided on the upper portion of the nut portion B1a and having a fixing portion B1b into which the machining power transmission line L is inserted;
A nut portion B2a which is threadably fastened to the second bolt portion 14 of the first support member 10 in a detachable manner and presses the first engagement portion 41 of the second buffer member 40; A second working transmission line installation member B2 provided on the upper portion of the nut portion B2a and having a fixing portion B2b into which the processing power transmission line L is inserted;
A nut portion B3a detachably threadably fastened to the third bolt portion 15 of the first support member 10 and pressing the first engaging portion 51 of the third buffer member 50; A third working line mounting member B3 provided on the upper portion of the nut portion B3a and having a fixing portion B3b for inserting the machining power transmission line L;
A nut portion B4a detachably threadably fastened to the fourth bolt portion 16 of the first support member 10 and pressing the first engagement portion 61 of the fourth cushioning member 60; A fourth working power transmission line attachment member B4 provided on the upper portion of the nut portion B4a and having a fixing portion B4b for inserting the processing power transmission line L;
A nut portion B5a detachably threadably fastened to the first bolt portion 23 of the second support member 20 and pressing the second engagement portion 32 of the first cushioning member 30; A fifth machining power transmission line installation member B5 provided on the upper portion of the nut portion B5a and having a fixing portion B5b for inserting the machining power transmission line L;
A nut portion B6a detachably threadably fastened to the second bolt portion 24 of the second support member 20 and pressing the second engagement portion 42 of the second buffer member 40; A sixth machining power transmission line installation member B6 provided on the upper portion of the nut portion B6a and having a fixing portion B6b for inserting the machining power transmission line L;
A nut portion B7a detachably threadably fastened to the third bolt portion 25 of the second support member 20 and pressing the second engagement portion 52 of the third buffer member 50; A seventh working power transmission line installation member B7 provided on the upper portion of the nut portion B7a and having a fixing portion B7b for inserting the processing power transmission line L;
A nut portion B8a detachably threadably fastened to the fourth bolt portion 26 of the second support member 20 and pressing the second engagement portion 62 of the fourth cushioning member 60; An eighth working line fixing member B8 provided on the upper portion of the nut portion B8a and having a fixing portion B8b for inserting the working power transmission line L;
A first connecting member S1a1 inserted into the upper part of the detecting part 11a of the first supporting part 11 of the first supporting member 10 and a through part t1 penetrating in the upper and lower directions, A connecting portion S1a2b which is inserted into the penetrating portion t1 of the body portion S1a2a so as to be movable up and down and a connecting portion S1a2b which is provided at the penetrating portion t1 of the body portion S1a2a, And a spring (S1a2c) for pressing the connecting portion (S1a2b) downward so that the connecting portion (S1a2b) contacts the first connecting member (S1a1), so that the second connecting portion (33b) of the first cushioning member A first connecting member S1a provided with a contact S1a2; A first connecting member S1b1 inserted into the upper part of the detecting part 21a of the first supporting part 21 of the second supporting member 20 and a penetrating part t2 penetrating in the upper and lower directions, A connecting portion S1b2b which is inserted into the penetrating portion t2 of the body portion S1b2a so as to be movable upward and downward and a connecting portion S1b2b which is provided at the penetrating portion t2 of the body portion S1b2a, And a spring (S1b2c) for pressing the connecting portion (S1b2b) downward so that the connecting portion (S1b2b) comes into contact with the first connecting member (S1b1) A second connecting member (S1b) provided with a contact (S1b2); Is received in the detecting portion (11a) of the first supporting portion (11) of the first supporting member (10) and has one end connected to the first connecting member (S1a1) of the first connecting member (S1a) A first sensing line S1c exposed to the outside of the first supporting portion 11 of the supporting member 10; One end of which is connected to the first connecting member S1b1 of the second connecting member S1b and the other end of which is connected to the second supporting member 21 of the second supporting member 20, A second sensing line (S1d) exposed to the outside of the first supporting portion (21) of the supporting member (20); One end of which is connected to the connecting portion S1a2b of the second connecting member S1a2 of the first connecting member S1a and the other end of which is connected to the second connecting member S1a2 of the first connecting member S1a, A first sensing member S1 having a third sensing line S1e connected to the connecting portion S1b2b of the second connecting member S1b2 of the member S1b;
A first connecting member S2a1 inserted into the lower part of the detection part 11a of the first supporting part 11 of the first supporting member 10 and a through part t3 penetrating in the upper and lower directions, A connecting portion S2a2b which is inserted into the penetrating portion t3 of the body portion S2a2a so as to be movable up and down and a connecting portion S2a2b which is provided at the penetrating portion t3 of the body portion S2a2a, And a spring S2a2c for urging the connecting portion S2a2b upward so that the connecting portion S2a2b comes into contact with the first connecting member S2a1. The spring S2a2c presses the second connecting portion 43b of the second buffer member 40, A first connecting member S2a provided with a contact S2a2; A first connecting member S2b1 inserted into the lower part of the detecting part 21a of the first supporting part 21 of the second supporting member 20 and a penetrating part t4 penetrating in the upper and lower directions, A connecting portion S2b2b which is inserted into the penetrating portion t4 of the body portion S2b2a such that the connecting portion S2b2b is movable upward and downward and the connecting portion S2b2b which is provided at the penetrating portion t4 of the body portion S2b2a, And a spring S2b2c for pushing the connecting portion S2b2b downward so that the connecting portion S2b2b comes into contact with the first connecting member S2b1 to form the second connecting portion 43c of the second buffer member 40, A second connecting member S2b having a contact S2b2; The first sensing line S2c of the second sensing member S2 is accommodated in the sensing portion 11a of the first supporting portion 11 of the first supporting member 10 and has one end connected to the first connecting member S2a A first sensing line S2c connected to the first connection S2a1 of the first supporting member 10 and the other end exposed to the outside of the first supporting portion 11 of the first supporting member 10; One end of which is connected to the first connecting member S2b1 of the second connecting member S2b and the other end of which is connected to the second connecting member S2b1 of the second supporting member 20, A second sensing line S2d which is exposed to the outside of the first supporting portion 21 of the supporting member 20; One end of which is connected to the connecting portion S2a2b of the second connecting member S2a2 of the first connecting member S2a and the other end of which is connected to the second connecting member S2a2 of the second buffer member 40, A second sensing member S2 having a third sensing line S2e connected to the connection S2b2b of the second connector S2b2 of the member S2b;
A first connecting member S3a1 inserted into the left side of the sensing part 12a of the second supporting part 12 of the first supporting member 10 and a through hole t5 penetrating in the upper and lower directions, A connecting portion S3a2b which is inserted into the penetrating portion t5 of the body portion S3a2a so as to be movable up and down and a connecting portion S3a2b which is provided at the penetrating portion t5 of the body portion S3a2a, And a spring S3a2c for pushing the connecting portion S3a2b to the first connecting member S3a1 by pushing the connecting portion S3a2b to the second connecting portion 53b of the third cushioning member 50, A first connecting member S3a provided with a contact S3a2; A first connecting member S3b1 inserted into the left side of the sensing part 22a of the second supporting part 22 of the second supporting member 20 and a through part t6 penetrating through the upper part and the lower part, A connecting portion S3b2b which is inserted into the penetrating portion t6 of the body portion S3b2a so as to be movable up and down and a connecting portion S3b2b which is provided at the penetrating portion t6 of the body portion S3b2a, And a spring S3b2c for urging the connecting portion S3b2b to the first connecting member S3b1 so that the connecting portion S3b2b is in contact with the first connecting member S3b1 so that the second connecting member S3b2b is inserted into the third connecting portion 53c of the third buffer member 50. [ A second connecting member S3b having a contact S3b2; Is received in the sensing part (12a) of the second supporting part (12) of the first supporting member (10) and has one end connected to the first connecting member (S3a1) of the first connecting member (S3a) A first sensing line S3c exposed to the outside of the second supporting portion 12 of the supporting member 10; Is received in the detecting portion 22a of the second supporting portion 22 of the second supporting member 20 and has one end connected to the first connecting member S3b1 of the second connecting member S3b, A second sensing line (S3d) exposed to the outside of the second supporting portion (22) of the supporting member (20); One end thereof is connected to the connecting portion S3a2b of the second connecting member S3a2 of the first connecting member S3a and the other end is connected to the connecting portion S3a2b of the second connecting member S3a2 of the third connecting member S3a, A third sensing member S3 having a third sensing line S3e connected to the connecting portion S3b2b of the second connector S3b2 of the member S3b;
A first connecting member S4a1 inserted into the right side of the sensing part 12a of the second supporting part 12 of the first supporting member 10 and a through part t7 penetrating in the upper and lower directions, A connecting portion S4a2b which is inserted into the penetrating portion t7 of the body portion S4a2a so as to be movable up and down and a connecting portion S4a2b which is provided at the penetrating portion t7 of the body portion S4a2a, And a spring S4a2c for pushing the connecting portion S4a2b to the first connecting member S4a1 so that the connecting portion S4a2b contacts the first connecting member S4a1 and the second connecting portion S4b is inserted into the second connecting portion 63b of the fourth buffer member 60. [ A first connecting member S4a provided with a contact S4a2; The first connecting member S4b1 inserted into the right side of the detecting part 22a of the second supporting part 22 of the second supporting member 20 and the penetrating part t8 penetrating in the upper and lower directions, A connecting portion S4b2b which is inserted into the penetrating portion t8 of the body portion S4b2a so as to be movable up and down and a connecting portion S4b2b which is provided at the penetrating portion t8 of the body portion S4b2a, And a spring S4b2c for pushing the connecting portion S4b2b to the first connecting member S4b1 so as to press the connecting portion S4b2b to the left to contact the first connecting member S4b1 to the third connecting portion 63c of the fourth cushioning member 60, A second connecting member S4b having a contact S4b2; One end of which is connected to the first connecting member S4a1 of the first connecting member S4a and the other end of which is connected to the first connecting member S4a1 of the second supporting member 12 of the first supporting member 10, A first sensing line S4c exposed to the outside of the second supporting portion 12 of the supporting member 10; One end of which is connected to the first connecting member S4b1 of the second connecting member S4b and the other end of which is connected to the second connecting member S4b2 of the second supporting member 22 of the second supporting member 20, A second sensing line S4d exposed to the outside of the second supporting portion 22 of the supporting member 20; One end of which is connected to the connecting portion S4a2b of the second connecting member S4a2 of the first connecting member S4a and the other end of which is connected to the second connecting portion S4a2 of the fourth connecting member S4a, A fourth sensing member S4 having a third sensing line S4e connected to the connection S4b2b of the second connector S4b2 of the member S4b;
The other end of the first sensing line S1c of the first sensing member S1 is electrically connected and the other end of the first sensing line S2c of the second sensing member S2 is electrically connected, The other end of the first sensing line S3c of the first sensing member S4 is electrically connected and the other end of the first sensing line S4c of the fourth sensing member S4 is electrically connected, The first sensing line S2c of the first sensing line S1c and the second sensing line S2c of the second sensing member S2 and the second sensing line S3c of the third sensing member S3 and the fourth sensing line S3c of the fourth sensing member S4, A signal output unit S5 for outputting an electric signal through the sensing line S4c;
The other end of the second sensing line S1d of the first sensing member S1 is electrically connected and the other end of the second sensing line S2d of the second sensing member S2 is electrically connected, The other end of the second sensing line S 3 d of the second sensing member S 3 is electrically connected and the other end of the second sensing line S 4 d of the fourth sensing member S 4 is electrically connected, The second sensing line S2d of the second sensing member S2 and the second sensing line S3d of the third sensing member S3 and the fourth sensing line S3d of the fourth sensing member S4, A signal receiver S6 for receiving the electrical signal from the signal output device S5 via the sensing line S4d;
A transmitter S7 which is provided in the signal receiver S6 and outputs an alarm signal to the outside when the signal receiver S6 does not receive the electric signal from the signal output unit S5,
And a stationary bracket for securing a stable machining transmission line.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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KR1020160008710A KR101657292B1 (en) | 2016-01-25 | 2016-01-25 | Fixing bracket for installing aerial line |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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KR1020160008710A KR101657292B1 (en) | 2016-01-25 | 2016-01-25 | Fixing bracket for installing aerial line |
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KR101657292B1 true KR101657292B1 (en) | 2016-09-13 |
Family
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KR1020160008710A KR101657292B1 (en) | 2016-01-25 | 2016-01-25 | Fixing bracket for installing aerial line |
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Citations (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPH06165353A (en) * | 1992-11-24 | 1994-06-10 | Furukawa Electric Co Ltd:The | Multiconductor transmission line |
KR100899184B1 (en) | 2008-12-23 | 2009-05-27 | (주)유진씨엔이 | A spacer of power-transmission line |
KR100905247B1 (en) * | 2009-03-07 | 2009-06-29 | 남도종합기술(주) | A structure of clamping using spacer damper |
KR101101907B1 (en) * | 2010-07-28 | 2012-01-02 | 한국전력공사 | Spacer damper and temperature monitor system of transmission line having the same |
-
2016
- 2016-01-25 KR KR1020160008710A patent/KR101657292B1/en active IP Right Grant
Patent Citations (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPH06165353A (en) * | 1992-11-24 | 1994-06-10 | Furukawa Electric Co Ltd:The | Multiconductor transmission line |
KR100899184B1 (en) | 2008-12-23 | 2009-05-27 | (주)유진씨엔이 | A spacer of power-transmission line |
KR100905247B1 (en) * | 2009-03-07 | 2009-06-29 | 남도종합기술(주) | A structure of clamping using spacer damper |
KR101101907B1 (en) * | 2010-07-28 | 2012-01-02 | 한국전력공사 | Spacer damper and temperature monitor system of transmission line having the same |
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