KR20170097529A - Cap type lighting block - Google Patents

Cap type lighting block Download PDF

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Publication number
KR20170097529A
KR20170097529A KR1020160028642A KR20160028642A KR20170097529A KR 20170097529 A KR20170097529 A KR 20170097529A KR 1020160028642 A KR1020160028642 A KR 1020160028642A KR 20160028642 A KR20160028642 A KR 20160028642A KR 20170097529 A KR20170097529 A KR 20170097529A
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KR
South Korea
Prior art keywords
groove
block
lighting
illumination
retaining wall
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KR1020160028642A
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Korean (ko)
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KR101866012B1 (en
Inventor
공학봉
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공학봉
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Publication of KR20170097529A publication Critical patent/KR20170097529A/en
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Publication of KR101866012B1 publication Critical patent/KR101866012B1/en

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V21/00Supporting, suspending, or attaching arrangements for lighting devices; Hand grips
    • F21V21/02Wall, ceiling, or floor bases; Fixing pendants or arms to the bases
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V15/00Protecting lighting devices from damage
    • F21V15/01Housings, e.g. material or assembling of housing parts
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V19/00Fastening of light sources or lamp holders
    • F21V19/001Fastening of light sources or lamp holders the light sources being semiconductors devices, e.g. LEDs
    • F21V19/003Fastening of light source holders, e.g. of circuit boards or substrates holding light sources
    • F21V19/0045Fastening of light source holders, e.g. of circuit boards or substrates holding light sources by tongue and groove connections, e.g. dovetail interlocking means fixed by sliding
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21WINDEXING SCHEME ASSOCIATED WITH SUBCLASSES F21K, F21L, F21S and F21V, RELATING TO USES OR APPLICATIONS OF LIGHTING DEVICES OR SYSTEMS
    • F21W2131/00Use or application of lighting devices or systems not provided for in codes F21W2102/00-F21W2121/00
    • F21W2131/10Outdoor lighting
    • F21W2131/103Outdoor lighting of streets or roads

Abstract

An objective of the present invention is to a cap type lighting block including a lighting apparatus capable of simplifying maintenance and improving appearance while being easily installed in a retaining wall and having high durability. To achieve this, the cap type lighting block is installed on the upper part of a retaining wall and includes a lighting unit fastening groove of a sliding groove shape having the same cross section as an appearance cross section of the lighting unit to horizontally slide and insert the lighting unit. According to the present invention, since the cap type lighting block including the lighting unit installed on the bottom part is installed in the upper part of the retaining wall, an effect of largely improving a protection effect from ultraviolet rays of the sun, an external shock, surface or underground water, etc., in comparison with a case of an existing technique installing the lighting unit in the front part of a reinforced earth block. Moreover, since all works are performed in the upper part of the retaining wall even in the case of a maintenance work, the maintenance work is easily and simply realized in comparison with an existing technique performing the maintenance work in the middle part of the retaining wall.

Description

[0001] CAP TYPE LIGHTING BLOCK [0002]

The present invention relates to a cap type lighting block including an illumination device installed on an upper portion of a retaining wall to irradiate illumination downwardly and more specifically to a cap type lighting block provided with a cap type lighting device for facilitating the durability of the lighting device, It is about lighting blocks.

Most civil engineering structures are not only large in size but also have limitations in harmony with the surrounding landscape due to the uncomfortable feeling and the cold image of the concrete structure.

As a result, the National Assembly has passed the law of deliberation on February 07, 2014 (it is obliged to receive more than 30 billion public facilities deliberation), and the importance of harmony with the surrounding landscape as well as the functionality of the facility structure is emerging It is true.

In order to meet this trend, there is a growing interest in the technology of applying lighting to the retaining wall.

The retaining wall is basically a structure formed so as to prevent the soil from collapsing due to its own weight or natural conditions such as rain or the like by being installed on a residential area or a road that forms a boundary with the excavated surface.

Such a retaining wall is usually formed by vertically stacking a plurality of reinforcing soil blocks mutually staggered with different layers.

Reinforced earth block is composed of cement, so it can not emit light, so the risk of traffic accidents is increased when the road is used at night.

In order to solve such a problem, a plastic reflector was installed on the retaining wall so that the light irradiated from the head lamp of the vehicle was reflected by the reflector, and the situation of the road or the retaining wall was grasped from the reflected light.

However, the illumination efficiency can not be improved through the reflector as described above, and it is not possible to provide a beautiful city night view, and there is a problem in that a large amount of power is consumed to operate the lighting apparatus.

In order to solve such a problem, Korean Patent Registration No. 10-1154255 discloses a construction in which a lighting device is installed inside a reinforcing soil block.

That is, in the Korean patent, as shown in FIG. 12, grooves are formed in the reinforcing soil block 10, a lighting device is installed in the grooves, and the cover 60 is covered at the front part.

However, in the above-described reinforced soil block, the front surface provided with the cover 60 is exposed to the outside as it is, and is liable to be damaged due to ultraviolet ray or external impact due to the sun, Which is susceptible to rust and insulation problems.

Accordingly, there is a disadvantage that frequent maintenance of the reinforcing soil block installed with the lighting device is required due to such a problem. In particular, there is a disadvantage that maintenance of the reinforcing soil block is cumbersome and inconvenient.

The reason is as follows: First, in the case of retaining wall, it is a large civil engineering structure with a width of several tens meters and a height of 10-20 meters. If a problem occurs in a reinforced earth block including a lighting device installed at the center of the retaining wall, It is necessary to perform dangerous and troublesome maintenance work.

Second, since the wiring for supplying power to the illumination device installed in the inner block of the reinforcing soil is connected through the aggregate or soil layer present in the second half of the reinforcing soil block, the power line existing in the aggregate or the soil layer is handled This is because the maintenance work becomes very troublesome and time-consuming.

There is a problem that it is very troublesome to assemble the reinforcing soil block having the lighting device which requires the parts of the lighting device and the additional cover 60 to be attached to the inside of the reinforcing soil block.

On the other hand, in the prior art, since the reinforcing soil block is installed in the middle of the retaining wall, the number of the surface of the rain enters the retaining wall and then flows into the reinforcing soil block, so that the lighting part is likely to fail easily due to moisture absorption.

In addition, since the reinforced earth block is installed in the middle of the retaining wall, if there is an impact on the retaining wall due to internal or external factors, there is a risk that the reinforcing earth block is impacted and the failure of the lighting portion occurs.

SUMMARY OF THE INVENTION It is an object of the present invention to provide a cap type lighting block including an illumination device which is easy to install on a retaining wall and which has high durability and can be easily maintained and improved in appearance.

In order to solve the above-described problems, the present invention provides a lighting apparatus for a lighting apparatus, comprising: a cap type lighting block installed on an upper portion of a retaining wall, And a main body formed with a plurality of through holes.

In the cap-shaped lighting block according to the present invention, the lighting part fastening groove is composed of an illumination part insertion groove which is opened at the rear part of the cap type lighting block and which has a sliding groove shape and an illumination part receiving groove formed at the front end of the illumination part insertion groove, And the receiving groove is formed in such a manner that the lower portion thereof is opened.

In the cap-shaped lighting block of the present invention, a projecting portion is formed in the middle of the main body of the illumination portion, the illumination portion insertion groove includes a main groove having a shape corresponding to the main body of the illumination portion, And a support groove having a shape corresponding to an end surface of the support member.

In the cap type illuminating block of the present invention, a water inflow preventing groove formed to be opened downward is formed in a bottom surface portion of the main body between a front end portion of the lighting portion engaging groove and a front portion of the main body.

In the cap type lighting block of the present invention, the top surface of the main body is formed with a central portion or one end portion thereof being high and the other end portion being relatively low, so that the inclined portion is formed.

In the cap-shaped lighting block of the present invention, the retaining wall is formed of a concrete panel, and a panel forming portion formed of either a convex portion or a concave portion is formed on an upper part of a concrete panel installed on the uppermost portion of the retaining wall, Is formed with a block receiving portion formed of one of a concave portion or a convex portion having a corresponding shape so as to be inserted into the panel forming portion.

In the cap type illuminating block of the present invention, a fastening member receiving groove is formed to penetrate the block receiving portion on the upper surface of the body, and the fastening member passes through the receiving groove and is fastened to the concrete panel through the panel receiving portion .

In the cap-shaped lighting block of the present invention, the lighting unit is connected to the control unit through a connecting line of a lighting unit, a power line connecting line connected to a power source unit is installed in the control unit, a protrusion is formed to protrude forward, And a projecting portion receiving groove for receiving the projecting portion is formed on a side surface of the lighting portion fastening groove on the rear surface portion.

In the cap type lighting block of the present invention, the power supply connection line is connected to a street lamp power supply in the vicinity of the retaining wall or to another illumination power supply.

In the present invention, since the cap-shaped lighting block provided with the illuminating part on the bottom face part is provided on the upper part of the retaining wall, compared with the case where the illuminating part is provided on the front part of the reinforcing soil block of the prior art, The effect to be protected is remarkably improved.

Also, in the case of the maintenance work, all the work is performed at the upper part of the retaining wall, and the maintenance work is much easier and easier than the conventional technique in which the maintenance work is performed in the middle of the retaining wall.

Further, since the cap type lighting block is provided on the upper part of the retaining wall, it does not serve as a retaining wall support, and even if an impact is applied to the retaining wall due to various reasons, no problem occurs in the lighting part of the cap type lighting block.

In addition, in the case of the cap-shaped lighting block of the present invention, since a separate cover or the like is unnecessary as in the prior art, the number of parts of the block including the lighting device is reduced and the workability is improved.

On the other hand, in terms of the lighting effect, the reinforced soil blocks must be installed alternately due to the stiffness problem, so that only the effect of the point illumination can be achieved. However, in the present invention, the retaining walls are down- By illuminating, it seeks harmony with the surrounding scenery and improves not only the accessibility but also the functionality, it has the merit that people can be perceived as a more familiar and functional structure.

In addition, it can be expected to have an advertising effect and a landmark effect as well as a role as an induction light additionally.

1 is a perspective view of a cap type lighting block according to a first embodiment of the present invention.
2 is a view showing a rear surface of the cap type lighting block in the first embodiment of the present invention.
Fig. 3 is a view showing an illumination unit fastened to the cap type illumination block of the first embodiment of the present invention. Fig.
4 is a view showing a projection receiving groove in the cap type lighting block of the first embodiment of the present invention.
5 is a view showing a state in which the illumination unit is fastened to the cap type illumination block of the first embodiment of the present invention.
6 is a view showing a state in which the control unit is fastened to the cap type lighting block of the first embodiment of the present invention.
7 is a view showing a side surface state in which the cap type lighting block of the first embodiment of the present invention is installed.
8 is a plan view showing a state in which the cap type lighting block of the first embodiment of the present invention is installed.
9 is a perspective view of a cap type lighting block in another embodiment of the present invention.
10 is a side view showing a state in which the cap type lighting block of another embodiment of the present invention is installed.
11 is a diagram showing a state in which illumination is performed in the cap type illumination block of the first embodiment of the present invention.

Hereinafter, embodiments of the present invention will be described with reference to the drawings.

[First Embodiment]

1 is a perspective view of a cap type lighting block according to a first embodiment of the present invention. 2 is a view showing a rear surface of the cap type lighting block in the first embodiment of the present invention.

The cap-shaped lighting block 10 of the present invention is generally made of a concrete material, but is not limited thereto, and may be formed of reinforced plastic or other materials.

In the present invention, 'cap type' in the cap type lighting block 10 is installed on the upper part of the retaining wall 40 and is used to be installed to protrude outward from the retaining wall 40.

Although the overall shape of the main body 10b of the cap type lighting block 10 is not limited, in the present embodiment, the width of the front portion 11 is formed to be a trapezoid formed to be longer than the width of the rear portion 12. [ Here, the front part 11 is a part exposed to the outside from the retaining wall, and the rear part 12 is a part provided inside the retaining wall.

When the cap type lighting block 10 is formed in a trapezoidal shape, it is advantageous that the cap type lighting block 10 can be constructed so as to form a curved surface when the retaining wall surface is curved.

The top surface portion 13 of the cap type lighting block 10 may be formed in a flat shape or the longitudinal center portion 10a may protrude upward and the longitudinal end portion may be relatively low as shown in Fig. ) May be formed.

In the cap-shaped lighting block 10, the lighting part coupling groove 100 is formed so as to extend in the longitudinal direction.

The lighting unit coupling groove 100 is formed to have a shape corresponding to the lighting unit 20 so that the lighting unit 20 can be slidably inserted into the front side of the rear side of the cap type lighting block 10.

The lighting part coupling groove 100 includes an illumination part insertion groove 110 having a rear part 12 opened and a sliding groove shape and an illumination part receiving groove 120 formed at a front end of the illumination part insertion groove 110.

The illumination portion insertion groove 110 is formed to have a sliding groove shape while extending in such a manner that the cross section of the rear portion 20 has the same cross section in the direction of the front portion 10 with the same cross section as the outer cross section of the illumination portion 20.

The illumination part accommodating groove 120 has a shape corresponding to the outer shape of the illumination part 20. In this embodiment, the illumination part 20 has a circular shape and is formed to have a semicircular shape.

In the present embodiment, both the illumination part insertion groove 110 and the illumination part receiving groove 120 in the illumination part fastening groove 100 are closed at the upper part but opened at the lower part.

However, the illumination portion insertion groove 110 is merely an insertion action of the illumination portion 20, and only the illumination portion receiving groove 120 may be opened.

Fig. 3 is a view showing an illumination unit fastened to the cap type illumination block of the first embodiment of the present invention. Fig.

The illumination unit 20 includes a main body 21 having a cylindrical outer shape, an illumination reflecting unit 22 having a flange-shaped outer shape at the lower end of the main body 21, And an illumination unit 23 provided inside the illumination unit.

On the other hand, a protruding support portion 24 protruding in the outward direction is formed on the outside of the main body 21. In this embodiment, the case of two protrusions is described, but the present invention is not limited thereto, and the cross-sectional shape of the protrusions may have a different cross-sectional shape as long as it supports the illumination portion 20. [

In this embodiment, a main body groove 111 having a shape corresponding to the main body 21 of the illumination part 20 is formed in the illumination part insertion groove 110 basically.

A support groove 112 having a shape corresponding to the end surface of the protruding support portion 24 of the illumination portion 20 is formed in the middle of the body groove 111 in the illumination portion insertion groove 110.

An illumination groove 113 having a sectional shape corresponding to the reflection portion 22 of the illumination portion 20 is formed at the lowermost end of the illumination portion receiving groove 110.

A water inflow preventing groove 200 extending in the width direction is formed in the bottom surface portion 14 of the cap type lighting block 10 between the front portion 11 and the illumination portion receiving groove 120 in the cap type lighting block 10.

The water inflow preventing groove 200 is formed so as to extend upward in the width direction of the cap-shaped lighting block 10 while being closed upward and downward.

In the present embodiment, the water inflow preventing groove 200 is formed to extend continuously in the width direction of the cap type lighting block 10, but it is not limited thereto and may be formed discontinuously as necessary.

The lighting unit 20 is connected to a control unit 30 including a ballast and a connection device.

In this embodiment, the control unit 30 is formed in a substantially rectangular box shape, and a protrusion 31 for fixing the control unit 30 to the cap type lighting block 10 is formed at the front side.

The protruding portion 31 includes an extending portion 31a extending in the longitudinal direction and a supporting portion 31b formed in the lateral direction at the end portion of the extending portion 31a.

The control unit 30 is electrically connected to the illumination unit 20 by the illumination unit connection line 32 and is connected to the power supply unit (not shown) by the power supply connection line 33.

4 is a view showing a projection receiving groove in the cap type lighting block of the first embodiment of the present invention.

In the cap-shaped lighting block 10, protruding portion receiving grooves 300 for receiving the protruding portions 31 are formed on both sides of the illumination portion inserting groove 110.

The protrusion receiving groove 300 also has an extended portion insertion groove 301a having a shape that is opened downward and closed upward and has a shape corresponding to the extending portion 31a of the protruding portion 31 and a supporting portion 31b And a supporting portion receiving groove 301b having a shape corresponding to the supporting portion receiving groove 301b.

Next, a method of installing the illuminating unit using the thus formed cap type illuminating block and an operation and effect will be described.

5 is a view showing a state in which the illumination unit is fastened to the cap type illumination block of the first embodiment of the present invention.

The illuminating unit 20 is slid along the illuminating unit engaging groove 100 formed in the cap type illuminating block 10 and the illuminating unit 20 is inserted until reaching the illuminating unit accommodating groove 120, The projecting support portion 24 is supported in the support groove 112 of the illumination portion receiving groove 110 and is supported without being detached downward.

As described above, in the present invention, the lighting unit fastening operation is simply completed by slidingly inserting the lighting unit 20 into the cap-shaped lighting block 10.

Therefore, compared with the case where the cover 60 is installed and the lighting installation work is performed in the prior art, the cover 60 is unnecessary, which reduces the number of parts and reduces the number of workings. do.

6 is a view showing a state in which the control unit is fastened to the cap type lighting block of the first embodiment of the present invention.

The protruding portion 31 of the control unit 30 is inserted into the protruding portion receiving groove 301 while moving upward from the lower portion of the cap type lighting block 10 so that the control unit 30 does not move in the left- Since the bottom surface of the retaining wall 40 is supported by the upper surface of the retaining wall 40, the projecting portion 31 does not come off in the vertical direction.

In the present invention, the lighting part connecting line 32 connecting the lighting part 20 and the control part 30 is received in the lighting part receiving groove 100, and a separate operation for the electric wiring of the lighting part connecting line 32 And the lighting part connecting line 32 is prevented from being damaged from external impact, temperature difference, rust due to inflow of water, and the like.

In addition, in the present invention, since one illumination block module concept is formed by installing one lighting unit 20 and one control unit 30 in one cap-shaped lighting block 10, the installation and maintenance work is simple and the width of the retaining wall is wide It is easy to expand.

7 is a view showing a side surface state in which the cap type lighting block of the first embodiment of the present invention is installed.

In the present invention, the lighting unit 20 formed on the bottom surface of the cap type lighting block 10 is installed so as to protrude forward of the retaining wall 40 and face downward.

In the present invention, the lighting unit 20 is installed on the bottom surface portion 14 of the cap type lighting block 10, so that compared with the case where the lighting unit is installed on the front surface of the conventional lighting apparatus, It is possible to solve the problem that the breakage is likely to occur.

Also, the feature that the lighting unit 20 is installed on the bottom surface portion rather than the front surface portion serves to reduce the problem of inflow of snow or rain to the front surface portion.

In particular, in the present invention, the water inflow prevention groove 200 is formed in the bottom surface of the cap type lighting block 10, so that the water rides on the bottom portion of the lighting portion 20 due to the number of surfaces of rain or leakage of groundwater, It is possible to prevent the inflow of water into the illumination unit 20 because the inflow preventing groove 200 is blocked or dropped by the inflow preventing groove 200.

When the inclined portion 14 for raising the center of the cap type lighting block 10 is formed, the rainwater is drained along the inclined portion 14 to prevent the rainwater from being absorbed by the cap type lighting block 10 made of a concrete material, Thereby further increasing the effect and increasing the durability of the lighting unit.

8 is a plan view showing a state in which the cap type lighting block of the first embodiment of the present invention is installed.

The power source connection line 33 of the control unit 30 is connected to the power source after the illumination unit 20 is installed inside the cap type lighting block 10 and the control unit 30 is installed behind the cap type lighting block 10. In the present invention, When connected to the installed roadside power or other lighting power, it is lighted / disappeared when the streetlight lighting / lighting is turned on / off, so that it is not necessary to install a separate power source.

In the meantime, in the present invention, since the cap type lighting block 10 is installed on the upper part of the retaining wall to perform the lighting operation, only the upper part where the cap type lighting block 10 is installed requires maintenance work. In case of maintenance work of reinforcement block installed in the middle of the retaining wall, maintenance work is much easier.

In addition, since the cap type lighting block 10 is installed on the upper part of the retaining wall in the present invention, maintenance work related to the control part 30 is required to be performed only in the rear part. Therefore, The maintenance work is more simple and comfortable.

Since the cap type illuminating block of the present invention is installed on the upper part of the retaining wall, even when an impact is applied to the retaining wall due to internal or external causes, shock is not transmitted to the lighting part 20 installed inside the cap type lighting block 10, .

[Second Embodiment]

9 is a perspective view of a cap type lighting block in another embodiment of the present invention. 10 is a view showing a side surface state in which a cap type lighting block of another embodiment of the present invention is installed.

In the first embodiment, the cap type lighting block is a case in which the retaining wall is formed of the reinforcing soil block 40. In the second embodiment, the cap type lighting block provided in the case where the retaining wall is formed of the concrete panel 50, Lt; / RTI >

The basic configuration of the cap type lighting block 10 is the same as that of the first embodiment, and the other configuration is that the block receiving portion 400 and the connection pin receiving portion 500 are additionally formed.

The block receiving portion 400 may be formed as a convex portion as shown in Fig. 9A or a concave portion as shown in Fig. 9B on the bottom portion 14 of the cap type lighting block 10. [

A concave or convex panel receiving portion (not shown) having a shape corresponding to the convex portion or the concave portion of the block receiving portion 400 is formed at the upper end of the concrete panel 50 installed at the uppermost end of the retaining wall 510 are formed.

On the other hand, the cap-shaped lighting block 10 is formed with a groove-shaped fastening member receiving portion 500 passing through the block receiving portion 400 from the upper side to the lower side.

In the present embodiment, two fastening member receiving portions 500 are formed on both sides of the engaging groove 100, but the number of the fastening member receiving portions 500 is not limited and may be appropriately selected according to the width of the cap-shaped lighting block 10 to be mounted.

In the case of the cap-shaped lighting block 10 of the second embodiment, on the other hand, the rear portion is formed to have a high height and the front portion is formed to be low, so that the inclined portion 10b is formed. As in the case of the first embodiment, Thereby preventing the penetration of the inside of the lighting unit 20 and securing the durability life of the lighting unit 20.

The cap-shaped illumination block 10 of the second embodiment thus formed is installed as shown in Fig.

Like the case of the first embodiment, the lighting part 20 is inserted into the lighting part engaging groove 100 formed inside the cap type lighting block 10 of the second embodiment, and the lighting part 20 is connected to the control part 30 And then the concrete panel 50 is installed on the top of the next retaining wall.

At this time, the block receiving portion 400 of the cap type lighting block 10 is installed to be inserted into the panel receiving portion 510 of the concrete panel 50.

Then, the fastening member 60 such as a bolt is passed through the connection pin receiving portion 500 formed in the cap type lighting block 10 to penetrate the panel receiving portion 510 formed on the concrete panel 50, ).

In the second embodiment, the cap type lighting block 10 is fastened by the block receiving portion 400 and the panel receiving portion 510, and the fastening member 60 is fastened to the mutually fastened portions, 10 and the concrete panel 50 is firmly secured.

The other operational effects are the same as those in the first embodiment.

11 is a diagram showing a state in which illumination is performed in the cap type illumination block of the first embodiment of the present invention.

Fig. 11A shows a state before illumination is turned on in a cap type lighting block, and Fig. 11B shows a state after illumination in a cap type illumination block.

When the cap-shaped lighting block of the present invention is installed to illuminate the lighting, the lighting is downwardly downward from the upper part of the retaining wall. Thus, the lighting structure is indirectly used, and the advantage of the retaining wall is gently utilized in harmony with the surrounding landscape .

In contrast to the prior art in which the illumination is provided between the illumination toe blocks to act as point illumination, the present invention exerts a different lighting effect by irradiating the illumination from the upper part to the lower part as a whole.

10: cap type lighting block 20:
30:

Claims (9)

A cap type lighting block provided on an upper portion of a retaining wall,
And a main body having a lighting groove engaging groove formed in a sliding groove shape so as to have the same cross-sectional shape as the outer cross-section of the illumination unit for sliding and inserting the lighting unit in the longitudinal direction.
The method according to claim 1,
The illuminating section engaging groove is composed of an illuminating section inserting groove which is opened at the rear part of the cap type illuminating block and which has a sliding groove shape and an illuminating section accommodating groove formed at the front end of the illuminating section inserting groove,
Wherein the illumination portion accommodating groove is formed in such a manner that a lower portion thereof is opened.
The method of claim 2,
A protrusion is formed in the middle of the main body of the illumination unit,
The illumination section insertion groove
A main body groove having a shape corresponding to the main body of the illumination unit and a support groove having a shape corresponding to an end face of the projecting support portion of the illumination unit in the middle of the main body groove.
The method of claim 3,
And a water inflow preventing groove formed to be opened downward is formed in a bottom surface portion of the main body between a front end portion of the lighting section fastening groove and a front surface portion of the main body.
The method of claim 4,
Wherein the upper surface of the main body has a central portion or one end portion thereof is higher and the other end portion thereof is relatively lowered to form an inclined portion.
The method of claim 5,
The retaining wall is formed of a concrete panel,
A panel forming part formed of one of a convex part and a concave part is formed on an upper part of the concrete panel installed at the uppermost part of the retaining wall,
Wherein the bottom surface of the main body is provided with a block accommodating portion formed with one of a concave portion or a convex portion having a corresponding shape so as to be inserted into the panel forming portion.
The method of claim 6,
A fastening member receiving groove is formed in the upper surface of the body so as to pass through the block receiving portion,
Wherein the fastening member passes through the receiving groove and passes through the panel receiving portion to be fastened to the concrete panel.
The method according to claim 1 or 2,
The illumination unit is connected to the control unit by the illumination unit connection line,
The control unit may include a power supply line connected to a power supply unit,
A protrusion is formed in the control unit so as to protrude forward,
And a protruding portion receiving groove for receiving the protruding portion is formed on a side surface of the illuminating portion engaging groove on a rear surface portion of the cap type illuminating block.
The method of claim 8,
Wherein the power supply connection line is connected to a street lamp power supply or other illumination power source around the retaining wall.
KR1020160028642A 2016-02-18 2016-03-10 Cap type lighting block KR101866012B1 (en)

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20230106188A (en) * 2022-01-05 2023-07-13 곽은구 LED light equipped retaining wall block with enhanced visibility and aesthetic impression

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