TELESCOPIC MAST
20220205266 ยท 2022-06-30
Inventors
Cpc classification
F21V21/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y10T428/1362
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
Abstract
A telescopic mast includes: a tubular main body in which a power supply signal wire is embedded; one or more tubular sections coupled to be withdrawn from or insertable into the tubular main body; one or more coupling members which are provided at the top ends of the tubular main body and the tubular sections to fix or release the coupling between the tubular main body and the tubular sections during a withdrawn or insertion operation of the tubular sections; and a power supply coupling member which is connected to the power supply signal wire embedded in the tubular main body to supply power thereto.
Claims
1. A telescopic mast comprising: a tubular main body embedded with a power signal line; one or more tubular sections coupled to the tubular main body, to be drawn out or drawn in; one or more coupling members provided at top portions of the tubular main body and the tubular sections to fix or release the coupling between the tubular main body and the tubular sections when a draw-in or draw-out operation of the tubular sections is performed; and a power supply coupling member connected to the power signal line embedded in the tubular main body to supply power, wherein: the tubular main body includes a first frame made of a composite material wound to have a first diameter in a length direction, and a second frame made of a composite material wound to have a second diameter in a length direction on the first frame, and the power signal line is embedded to be parallel in the length direction between the first frame and the second frame.
2. (canceled)
3. The telescopic mast according to claim 1, wherein the tubular main body has a thickness of 2.0 to 3.0 mm including the first and second frames.
4. The telescopic mast according to claim 1, further comprising a switch for controlling operation of the power supply coupling member as a tubular section adjacent to the tubular main body is drawn out, wherein the switch is embedded in a coupling member disposed at a top portion of the tubular main body.
5. The telescopic mast according to claim 4, wherein: the switch is a magnetic switch electrically connected to the power signal line, and the tubular section adjacent to the tubular main body includes a guide unit corresponding to a position of the magnetic switch and parallel in the length direction on an outer surface, and a magnetic body disposed at a point of the guide unit to generate a magnetic field for driving the magnetic switch.
6. The telescopic mast according to claim 5, wherein the magnetic body is disposed at a bottom portion of the tubular section adjacent to the tubular main body.
7. The telescopic mast according to claim 1, wherein the power supply coupling member is detachably coupled on an outer surface of the tubular main body.
8. The telescopic mast according to claim 1, wherein the one or more tubular sections are drawn out or drawn in by means of any one among a chain, a belt, and a rope when power is supplied by the power supply coupling member.
9. The telescopic mast according to claim 1, wherein the composite material includes at least one composite material selected from a group of composite materials prepared by mixing glass fiber, carbon fiber, aramid fiber or polymer fiber with resin.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
DESCRIPTION OF SYMBOLS
[0030] 1: Mandrel
[0031] 1000: Telescopic mast
[0032] 10: Tubular main body
[0033] 15: Power signal line
[0034] 20: Coupling member
[0035] 21: Magnetic switch
[0036] 23: Switch connection line
[0037] 30: Power supply coupling member
[0038] 33: Power signal line connection terminal fixing unit
[0039] 35: Power signal line connection terminal
[0040] 40: Tubular section
[0041] 43: Guide unit
[0042] 45: Magnetic body
BEST MODE FOR CARRYING OUT THE INVENTION
[0043] Hereinafter, preferred embodiments of the present invention will be described in detail with reference to the accompanying drawings in order to clarify the technical spirit of the present invention. In describing the present invention, when it is determined that a detailed description of a related well-known function or component may unnecessarily obscure the gist of the present invention, the detailed description will be omitted. Components having practically the same functional configuration in the drawings are assigned with the same reference numerals and symbols as much as possible although they are shown in different drawings. For convenience of explanation, devices and methods will be described together when needed.
[0044]
[0045] Referring to
[0046] More specifically, the tubular main body 10 may include the power signal line 15 in the inside that forms the thickness, and include the coupling member 20 at the top portion (the left area in
[0047] Here, the power signal line 15 is a signal line for receiving power to draw out one or more tubular sections disposed inside the tubular main body 10, and one end of the power signal line 15 may be connected to a power supply coupling member 30 that can supply power to the telescopic mast 1000, and the other end may be connected to a magnetic switch 21 included in the coupling member 20.
[0048] That is, although the power signal line 15 in the prior art is treated as a separate line that is not physically connected to the tubular main body 10 in order to drive the telescopic mast 1000, in the present invention, as the power signal line 15 is disposed in the inside that forms the thickness of the tubular main body 10, the power signal line 15 may be prevented from being damaged by an external environment.
[0049] Meanwhile, the tubular main body 10 and the tubular sections constituting the core main body of the telescopic mast 1000 are manufactured with high strength to be prevented from being damaged in an external environment, and should be light-weighted for easy storage and transportation. That is, the tubular main body 10 and the tubular sections should be formed to be thin, and a method of inserting the power signal line 15 inside the tubular main body 10 formed to be thin may be as described below.
[0050]
[0051] Referring to
[0052] Here, the power signal line 15 is disposed at the center of the first frame 10a, one end of which may be disposed to be exposed to the outside of the first frame 10 to be connected to the magnetic switch 21 shown in
[0053] Next, referring to
[0054] More specifically, the fiber forming the first and second frames 10a and 10b may include at least one composite material selected from a group of composite materials prepared by mixing glass fiber, carbon fiber, aramid fiber or polymer fiber with resin.
[0055] That is, the tubular main body 10 constituting the main body of the telescopic mast 1000 is made of a light-weighted composite material with high strength to improve corrosion resistance and strength of the entire main body and to prevent damage to the power signal line 15 in an external environment.
[0056] In addition, the composite material may be wound to tightly contact at regular intervals or without an overlapping area in the process of forming the first and second frames 10a and 10b, and accordingly, uneven stacking of the first and second frames 10a and 10b can be prevented, and corrosion resistance and strength of the telescopic mast 1000 can be improved.
[0057] Next, referring to
[0058] Finally, referring to
[0059] That is, the tubular main body 10 forming the core of the telescopic mast 1000 of the present invention has a very thin thickness of about 2.5 mm and is embedded with the power signal line 15 at the same time, and as wiring connection is simpler than that of a conventional telescopic mast separately provided with a power signal line 15, speedy installation, durability, and convenience and stability of operation can be secured.
[0060] Meanwhile, in order to prevent the power signal line 15 from being damaged by the grinder A in the process of polishing the separated tubular main body 10, the partially exposed power signal line 15 may be bent into the inner space of the tubular main body 10.
[0061] Referring to
[0062]
[0063] Referring to
[0064]
[0065] Meanwhile, the coupling member 20 and the power supply coupling member 30 may be coupled to the tubular main body 10 in a bonding method, and for example, the coupling may be performed in various bonding methods, such as bonding using an adhesive sheet, bonding using silicone, and the like.
[0066]
[0067] Referring to
[0068] More specifically, the operation of fixing or releasing the coupling with the adjacent section may be performed according to the drawing-out or drawing-in operation of the tubular section 40, and to this end, the tubular section 40 closest to the tubular main body 10 may include a guide unit 43 that is parallel in the length direction on the outer surface.
[0069] Here, the guide unit 43 may be formed at a point corresponding to the position of the magnetic switch 21, and may perform a function of preventing the rising tubular section 40 from rotating in the circumferential direction.
[0070] In addition, the tubular section 40 may include a magnetic body 45 disposed at one point of the guide unit 43 to generate magnetic fields for driving the magnetic switch 21, and the magnetic body 45 may be disposed at the bottom portion of the tubular section 40 adjacent to the tubular main body 10.
[0071] Referring to
[0072] As described above, as the length of the telescopic mast 1000 is determined by the magnetic body 45 disposed on the outer surface of the tubular section 40, a user may set a point at which the magnetic body 45 will be disposed in consideration of the length of the tubular main body 10 and one or more tubular sections 40.
[0073]
[0074] Referring to
[0075] Meanwhile, the plurality of tubular sections 40, 60, 80, 100, and 120 may be drawn out or drawn in by means of any one among a chain, a belt, and a rope when power is supplied by the power supply coupling member 30, and when the tubular sections are coupled in a belt manner, a belt roller (not shown) for supplying a belt to the plurality of tubular sections 40, 60, 80, 100, and 120 may be provided outside the tubular main body 10, and as the plurality of tubular sections 40, 60, 80, 100, and 120 is drawn out, the belt may be fixedly coupled in the length direction.
[0076] The telescopic mast 1000 according to an embodiment of the present invention has been described above. According to the present invention, as the telescopic mast 1000 can be drawn out to an accurate height that meets a standard when facilities including a monitoring sensor such as a camera, a communication device such as an antenna, a lighting device and the like perform their function, reliability of the device can be improved. In addition, as the power signal line 15 for supplying power is embedded in the thickness of the thin tubular main body 10, there is an effect of preventing damage to the power signal line 15.
[0077] The present invention has been described above in detail with reference to preferred embodiments shown in the drawings. Since these embodiments are not intended to limit the present invention, but merely illustrative, the true technical protection scope of the present invention should be determined by the technical spirit of the appended claims, not by the above description. Although specific terms are used in this specification, they are used only for the purpose of describing the concept of the present invention, and are not used to limit the meaning or scope of the present invention described in the claims.
[0078] Each step of the present invention does not need to be performed in the described order, and may be performed in parallel, selectively, or individually. Those skilled in the art will understand that various modifications and equivalent other embodiments are possible without departing from the essential technical spirit of the present invention described in the claims.