KR100728743B1 - Corrugated steel plates concrete bridge - Google Patents

Corrugated steel plates concrete bridge Download PDF

Info

Publication number
KR100728743B1
KR100728743B1 KR1020060013656A KR20060013656A KR100728743B1 KR 100728743 B1 KR100728743 B1 KR 100728743B1 KR 1020060013656 A KR1020060013656 A KR 1020060013656A KR 20060013656 A KR20060013656 A KR 20060013656A KR 100728743 B1 KR100728743 B1 KR 100728743B1
Authority
KR
South Korea
Prior art keywords
corrugated steel
steel sheet
steel plate
concrete
coupled
Prior art date
Application number
KR1020060013656A
Other languages
Korean (ko)
Inventor
정성만
공강주
Original Assignee
주식회사 픽슨
주식회사 동아기술공사
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 주식회사 픽슨, 주식회사 동아기술공사 filed Critical 주식회사 픽슨
Priority to KR1020060013656A priority Critical patent/KR100728743B1/en
Application granted granted Critical
Publication of KR100728743B1 publication Critical patent/KR100728743B1/en

Links

Images

Classifications

    • EFIXED CONSTRUCTIONS
    • E01CONSTRUCTION OF ROADS, RAILWAYS, OR BRIDGES
    • E01DCONSTRUCTION OF BRIDGES, ELEVATED ROADWAYS OR VIADUCTS; ASSEMBLY OF BRIDGES
    • E01D4/00Arch-type bridges
    • EFIXED CONSTRUCTIONS
    • E01CONSTRUCTION OF ROADS, RAILWAYS, OR BRIDGES
    • E01DCONSTRUCTION OF BRIDGES, ELEVATED ROADWAYS OR VIADUCTS; ASSEMBLY OF BRIDGES
    • E01D2101/00Material constitution of bridges
    • E01D2101/20Concrete, stone or stone-like material
    • E01D2101/24Concrete
    • E01D2101/26Concrete reinforced
    • E01D2101/268Composite concrete-metal
    • EFIXED CONSTRUCTIONS
    • E01CONSTRUCTION OF ROADS, RAILWAYS, OR BRIDGES
    • E01DCONSTRUCTION OF BRIDGES, ELEVATED ROADWAYS OR VIADUCTS; ASSEMBLY OF BRIDGES
    • E01D2101/00Material constitution of bridges
    • E01D2101/30Metal

Landscapes

  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Bridges Or Land Bridges (AREA)

Abstract

A corrugated steel plate-concrete bridge is provided to construct a long-span bridge safely by increasing the stiffness of a structure as a whole for supporting the load added on the upper part of a bridge safely by coupling a corrugated steel plate between piers and placing concrete on the corrugated steel plate. The corrugated steel plate-concrete bridge(A) comprises a corrugated steel plate(10) provided with ridges and grooves which are formed continuously in the longitudinal direction to disperse multi-directional load to prevent the deformation and breakage of the corrugated steel plate and coupled to a channel(30) installed on piers(50,50') by a bolt and a nut to prevent the breaking of the corrugated steel plate before placing concrete on the upper part, and concrete(20) coupled on the upper part of the corrugated steel plate by forming through holes on the surface of the corrugated steel plate, installing many bolts(40,40') to the through holes and coupling reinforcing bars to the bolts by binding wires. Hereon the channel is composed of a primary diagonal member and a secondary diagonal member and coupled strongly by anchor bolts buried to the appointed depth from the upper parts of the piers to the lower part to prevent the corrugated steel plate located or coupled between channels from spreading in the outer direction.

Description

파형강판 콘크리트 교량{CORRUGATED STEEL PLATES CONCRETE BRIDGE}Corrugated Steel Concrete Bridge {CORRUGATED STEEL PLATES CONCRETE BRIDGE}

도1은 본 발명에 따른 파형강판 콘크리트 교량의 사시도.1 is a perspective view of a corrugated steel plate concrete bridge according to the present invention.

도2는 본 발명에 따른 파형강판 콘크리트 교량의 종단면도.Figure 2 is a longitudinal sectional view of a corrugated steel plate concrete bridge according to the present invention.

도3은 도2의 B부 확대도.3 is an enlarged view of a portion B of FIG. 2;

도4는 도2의 C부 확대도.4 is an enlarged view of portion C of FIG. 2;

도5a~5e는 본 발명에 따른 파형강판 콘크리트 교량의 시공상태를 도시한 예시도.5a to 5e are exemplary views showing the construction state of the corrugated steel sheet concrete bridge according to the present invention.

<도면의 주요 부분에 대한 부호의 간단한 설명><Brief description of symbols for the main parts of the drawings>

10:파형강판 11:산형철부10: corrugated steel sheet 11: ridge

12:산형요부 20:콘크리트12: ridged part 20: concrete

30:채널 34:볼트30: Channel 34: Bolt

35:너트 36:앵커볼트35: Nut 36: anchor bolt

40,40':볼트 41:철근40, 40 ': Bolt 41: Reinforcing bar

42:결속선 50,50:교각42: Binding line 50, 50: Pier

본 발명은 파형강판 콘크리트 교량에 관한 것으로서, 특히 교각과 교각 사이에 아치형태로 벤딩된 파형강판의 하부 양측단이 결합되어지도록 하고, 그 상부에 소정의 두께를 갖는 콘크리트가 타설 및 양생되어지도록 함으로써, 구조물의 강성을 증가시켜 30M 이상의 지간을 갖는 교량을 얻을 수 있도록 한 것이다.The present invention relates to a corrugated steel concrete bridge, and in particular, the lower both ends of the corrugated steel sheet bent in the arch form between the bridge piers and the pier to be coupled, and the concrete having a predetermined thickness on the top is to be poured and cured In addition, the rigidity of the structure is increased to obtain a bridge with a span of 30M or more.

일반적으로 평판형태의 강판은 이를 여러 형태로 절곡시켜 탄성 변형시키고, 이를 축방향으로 연속되는 터널형태로 조립함으로써 지하통로 및 용수, 배수로에 사용되어지며 기타 호안용 셀, 배수로, 지붕, 창고 등의 여러 용도로 사용되어지고 있다.In general, the plate-shaped steel sheet is bent in various forms to elastically deform and assemble into a tunnel form that is continuous in the axial direction, and is used in underground passages, water, and drainage passages. It is used for many purposes.

이러한 강판은 구조물의 크기가 작을 경우 하나의 강판을 이용하고, 크기가 커질 경우 벤딩 공정에서 벤딩율을 크게함과 동시에 여러장으로 나뉘어 제조하고, 제조된 파형강판을 여러장을 겹치거나 볼팅 등의 조립공정을 통해 설치되어진다.When the size of the structure is small, such a steel plate is used, and when the size is large, the bending rate is increased and the sheet is divided into several sheets at the same time in the bending process, and the manufactured corrugated steel sheets are overlapped or bolted. It is installed through the assembly process.

또한, 얇은 두께의 강판에 측방향, 횡방향, 종방향 및 다방향으로 부터 작용하는 하중을 여러곳으로 분산시켜 내하력을 크게 하기 위하여 주름공정을 통해 평평한 강판에 주름이 성형된 파형강판을 사용하게 된다.In addition, in order to increase the load capacity by distributing loads acting from the lateral, transverse, longitudinal and multi directions to the thin steel sheet in many places, corrugated steel sheet with corrugated sheet formed on the flat steel sheet through the corrugation process is used. do.

이와 같은 파형강판을 이용하여 교량 구조물을 시공할 경우, 우선 구조물이 시공되어질 지반을 굴착하여 기초지반을 다지고, 거푸집과 철근을 배근하고, 이어 앵커와 채널을 설치한 후 콘크리트 타설하여 양생시키고, 거푸집을 해체한다.When constructing a bridge structure using such corrugated steel sheet, first excavate the ground on which the structure is to be constructed to reinforce the foundation ground, reinforce the formwork and reinforcing bars, and then install anchors and channels and cure by pouring concrete. Dismantle

거푸집이 해체된 채널에 파형강판의 하부가 직각이 되도록 한 후 볼트와 너트로 고정시키고, 채널에 하부가 결합된 파형강판 사이에 다른 파형강판을 동일한 방법으로 결합시키는 볼팅작업을 반복하여 완성된 교량 구조물을 얻을 수 있게 된 다.After the formwork is dismantled, the lower part of corrugated steel is perpendicular to the channel, and then fixed with bolts and nuts, and the bridge completed by repeating the bolting process of joining other corrugated steel plates in the same way between corrugated steel sheets joined to the channel. You get a structure.

그러나 이러한 교량 구조물은 여러방향으로 부터 작용하는 하중을 분산시키도록 강판의 표면에 파형형태의 주름이 성형되어지도록 하였으나, 강판 자체의 두께가 얇음에 따라 교각의 사이가 큰 장지간을 갖는 교량 구조물에 이를 사용하기에는 어려움이 있었다.However, these bridge structures were formed to have corrugated corrugations formed on the surface of the steel sheet to disperse the loads acting from various directions. However, as the thickness of the steel sheet itself is thin, the bridge structures have a long span between bridges. It was difficult to use it.

또한, 이를 방지하기 위하여 강판의 두께를 두껍게 할 경우, 그 표면에 주름을 성형하는 공정이 어렵고, 이를 보관, 운반 및 시공하는 과정에서 많은 어려움이 있었다.In addition, in order to prevent the thickness of the steel sheet to thicken, the process of forming the wrinkles on the surface is difficult, there was a lot of difficulties in the process of storing, transporting and construction.

본 발명은 이와 같은 문제점을 해소하기 위하여 창출한 것으로서 교각과 교각 사이에 아치형태로 벤딩된 파형강판의 하부 양측단이 결합되어지도록 하고, 그 상부에 소정 두께를 갖는 콘크리트가 타설 및 양생되어 일체화되어짐에 따라 교량 상부에 작용하는 하중을 안전하게 지지할 수 있도록 구조물의 강성을 증가시켜 장지간을 갖는 교량이 안전하게 시공되어질 수 있는 파형강판 콘크리트 교량을 제공하는데 그 목적이 있다.The present invention has been created to solve such a problem, the lower both ends of the corrugated steel plate bent in the arch form between the bridge piers and the bridges are combined, the concrete having a predetermined thickness on the top is poured and cured to be integrated. The purpose of the present invention is to increase the rigidity of the structure to safely support the load acting on the top of the bridge to provide a corrugated steel concrete bridge that can be safely constructed bridge with long span.

이와 같은 목적을 달성하기 위한 본 발명은 교각 사이에 파형강판의 하단이 결합되고, 상기 파형강판의 상부에 콘크리트가 타설되어지고, 상기 파형강판은 산형철부(11)와 산형요부(12)가 길이방향으로 연속되어고, 상기 파형강판의 하단 양측이 앵커볼트(36)로 교각(50)(50')의 상부에 고정된 채널(30)에 볼트(34)와 너트(35)로 결합되어지고, 상기 파형강판(10)의 외주면에 둘레를 따라 다수개의 볼트(40)(40')가 설치되어지고, 상기 볼트(40)(40')에 철근(41)이 결속선(42)으로 배근되어지며 상기 파형강판(10)의 표면과 볼트(40)(40') 및 철근(41)이 콘크리트(20)에 매설되어지도록 구성된 파형강판 콘크리트 교량에 있어서, 상기 파형강판의 하단이 결합되어지는 채널(30)은 제1관통홈(311)을 갖는 수평강재(31)의 일측단이 절단된 형태를 취하며 그 타측단이 소정 경사로 절곡된 제1경사강재(32)가 형성되어지고, 상기 제1경사강재(32)의 상단에 제1경사강재(32)의 절곡방향과 반대되는 방향으로 절곡된 제2경사강재(33)를 형성하되, 상기 제2경사강재(33)에 제2관통홈(331)이 형성되어지고, 상기 수평강재(31)와 제1경사강재(32) 및 제2경사강재(33)가 일체로 형성되어 길이방향으로 길게 연장되어지고, 상기 파형강판은 하부 양측에 각각 파형의 형태를 갖는 보강판(14)이 더 결합되어짐을 특징으로 하는 파형강판 콘크리트 교량을 제공함에 그 목적이 달성된다.The present invention for achieving the above object is the bottom of the corrugated steel sheet is coupled between the piers, the concrete is poured on top of the corrugated steel sheet, the corrugated steel sheet is a ridge 11 and the ridge recess 12 length Direction, and both ends of the lower end of the corrugated steel sheet are coupled to the channel 30 fixed to the upper portion of the pier 50, 50 'by the anchor bolt 36 by the bolt 34 and the nut 35 A plurality of bolts 40, 40 ′ are installed on the outer circumferential surface of the corrugated steel sheet 10, and reinforcing bars 41 are disposed on the bolts 40, 40 ′ as a binding line 42. In the corrugated steel concrete bridge configured to be the surface of the corrugated steel sheet 10 and bolts 40, 40 'and reinforcement 41 is embedded in the concrete 20, the lower end of the corrugated steel sheet is coupled The channel 30 has a shape in which one end of the horizontal steel 31 having the first through groove 311 is cut and the other end is bent in a predetermined slope. The first inclined steel 32 is formed, and the second inclined steel 33 is bent on the top of the first inclined steel 32 in a direction opposite to the bending direction of the first inclined steel 32. However, a second through hole 331 is formed in the second inclined steel 33, and the horizontal steel 31, the first inclined steel 32 and the second inclined steel 33 are integrally formed. The object is achieved by providing a corrugated steel plate concrete bridge, characterized in that it is extended in the longitudinal direction, the corrugated steel sheet is further coupled to the reinforcement plate 14 having a corrugated shape on each side of the lower side.

삭제delete

삭제delete

삭제delete

이하, 본 발명에 실시예를 첨부 도면을 참조하여 설명하면 다음과 같다.Hereinafter, embodiments of the present invention will be described with reference to the accompanying drawings.

본 발명에 따른 파형강판 콘크리트 교량(A)은 도1 내지 도4에 도시된 바와 같이, 파형강판(10)과, 상기 파형강판(10)의 상부에 결합된 콘크리트(20)로 구성되어 있다.Corrugated steel plate concrete bridge (A) according to the present invention is composed of a corrugated steel sheet 10 and the concrete 20 coupled to the upper portion of the corrugated steel sheet 10, as shown in Figures 1 to 4.

여기에서, 상기 파형강판(10)은 산형철부(11)와 산형요부(12)가 길이방향으 로 연속되어지도록 형성되어 다방향으로부터 작용하는 하중을 여러방향으로 분산시켜 파형강판(10)이 변형 및 파손되는 것을 방지하도록 구성되어 있고, 이러한 파형강판(10)은 길이방향에 대하여 직각인 방향으로 벤딩되어 상부로 볼록한 아치형태를 갖도록 구성되어 있다.Here, the corrugated steel sheet 10 is formed such that the ridge 11 and the recess 12 are continuous in the longitudinal direction to distribute the load acting in multiple directions in multiple directions to deform the corrugated steel sheet 10. And it is configured to prevent breakage, and the corrugated steel sheet 10 is configured to be bent in a direction perpendicular to the longitudinal direction to have an upper convex arch shape.

또한, 상기 파형강판(10)의 하단 양측은 교각(50)(50')의 상부에 설치된 채널(30)에 볼트(34)와 너트(35)로 결합되어짐에 따라 그 상부로 콘크리트(20)가 타설되기 전에 파형강판(10)이 무너지는 것을 막을 수 있도록 구성되어 있다.In addition, both sides of the lower end of the corrugated steel sheet 10 is coupled to the channel 30 installed on the upper portion of the pier 50, 50 'by the bolt 34 and the nut 35, the concrete 20 to the top thereof It is configured to prevent the corrugated steel sheet 10 from falling down before it is poured.

상기 채널(30)은 교각(50)(50') 상부에서 하부를 향하여 소정의 깊이로 매립된 앵커볼트(36)에 의하여 견고히 결합되어지도록 구성되어지고, 각각의 채널(30) 사이에 위치한 또는 결합된 파형강판(10)이 그 자중에 의하여 바깥측 방향으로 펼쳐지는 것을 방지하도록 구성되어 있다.The channel 30 is configured to be firmly coupled by an anchor bolt 36 buried to a predetermined depth from the top of the pier 50, 50 'and positioned between each channel 30 or The combined corrugated steel sheet 10 is configured to prevent spreading outward by its own weight.

이를 위해, 상기 채널(30)은 제1관통홈(311)을 갖는 수평강재(31)의 일측단이 절단된 형태를 취하며 그 타측단이 소정 경사로 절곡된 제1경사강재(32)가 일체로 형성되어지고, 상기 제1경사강재(32)의 상단에 제1경사강재(32)의 절곡방향과 반대되는 방향으로 절곡된 제2경사강재(33)가 일체로 형성되어지도록 구성되어 있다.To this end, the channel 30 has a form in which one end of the horizontal steel 31 having the first through groove 311 is cut and the other inclined first end steel 32 having the other end bent in a predetermined slope. The second inclined steel material 33 is formed on the upper end of the first inclined steel material 32 and bent in a direction opposite to the bending direction of the first inclined steel material 32.

또한, 파형강판(10)의 양측단 하부와 제2경사부재(33)가 볼트(34)와 너트(35)로 결합되어지도록 하기 위하여 상기 제2경사부재(33)의 경사면에는 소정의 직경을 갖는 제2관통홈(331)이 형성되어 있고, 수평강재(31)의 중앙 부근에는 제2관통홈(331)과 동일한 형태를 갖는 제1관통홈(311)이 형성되어 앵커볼트(36)에 결합 되어지도록 구성되어 있다.In addition, a predetermined diameter is formed on the inclined surface of the second inclined member 33 so that the lower ends of the both sides of the corrugated steel plate 10 and the second inclined member 33 are coupled with the bolt 34 and the nut 35. The second through groove 331 having a first through groove 311 having the same shape as the second through groove 331 is formed near the center of the horizontal steel 31 is formed in the anchor bolt 36 It is configured to be combined.

그리고 상기 수평강재(31)와 제1경사강재(32) 및 제2경사강재(33)가 프레스 등으로 절곡된 일체로 형성되어 길이방향으로 길게 연장되어지도록 구성되어 있다.In addition, the horizontal steel 31, the first inclined steel 32 and the second inclined steel 33 is formed integrally bent by a press or the like is configured to extend in the longitudinal direction.

한편, 상기 파형강판(10)과 콘크리트(20)의 결합은 파형강판(10)의 표면에 둘레를 따라 드릴링으로 관통홀을 형성하고, 상기 관통홀에 다수개의 볼트(40)(40')를 설치하여 결속선(42)으로 철근(41)이 볼트(40)(40')를 따라 결속되어지도록 구성되어지고, 상기 철근(41)은 파형강판(10)의 원주방향으로 설치되는 주철근(411)과, 상기 파형강판(10)의 폭방향으로 설치되는 배력철근(412)로 구성되어있다. 또한, 결속선(42)으로 결속되어진 볼트(40)(40')와 철근(41) 및 파형강판(10)의 표면이 타설되어지는 콘크리트(20)에 매설되어지도록 구성되어 있다.On the other hand, the combination of the corrugated steel sheet 10 and concrete 20 forms a through hole by drilling along the periphery of the surface of the corrugated steel sheet 10, a plurality of bolts (40, 40 ') in the through hole The reinforcing bar 41 is configured to be bound along the bolts 40 and 40 'by the binding line 42, and the reinforcing bar 41 is installed in the circumferential direction of the corrugated steel plate 10. ) And a lifting reinforcement bar 412 provided in the width direction of the corrugated steel sheet 10. In addition, the surfaces of the bolts 40 and 40 ', the reinforcing bars 41, and the corrugated steel sheet 10, which are bound by the binding line 42, are embedded in the concrete 20 to be poured.

이러한 파형강판 콘크리트 교량(A)의 시공은 도5a에 도시된 바와 같이 먼저, 파형강판(10)이 설치되어질 교각(50)의 상부에 앵커볼트(36)를 시공하고, 시공되어진 앵커볼트(36)에 채널(30)의 수평강재(31)에 형성된 제1관통홈(311)을 끼워 너트로 결합시키는 과정을 반복하여 모든 교각(50)(50')에 채널(30)이 고정되어도록 한다.The construction of the corrugated steel sheet concrete bridge (A), as shown in Figure 5a, first, to install the anchor bolt 36 on the top of the pier 50 on which the corrugated steel sheet 10 is to be installed, the anchor bolt 36 The first through groove 311 formed in the horizontal steel 31 of the channel 30 is inserted into the coupling to be coupled with a nut so that the channel 30 is fixed to all the piers 50 and 50 '. .

다음, 파형강판(10)의 양측단을 교각(50)(50')의 상부에 고정된 채널(30) 사이에 끼워지도록 한 후 제2경사강재(33)에 형성된 제2관통홈(331)을 통해 볼트(34)를 삽입하고, 너트(35)를 조임으로써 파형강판(10)을 결합시킨다.(도5b)Next, second end grooves 331 formed at the second inclined steel material 33 are inserted between the end portions of the corrugated steel sheet 10 between the channels 30 fixed to the upper portions of the piers 50 and 50 '. Insert the bolt 34 through, and tighten the corrugated steel plate 10 by tightening the nut 35 (Fig. 5b).

다음, 채널(30) 사이에 결합된 파형강판(10)의 둘레를 따라 드릴링 작업을 통해 관통홀을 형성하고, 형성된 관통홀에 볼트(40)(40')를 결합시키고, 파형강판 (10)의 표면으로 노출된 볼트(40)(40')를 따라 철근(41)에 주철근(411)은 파형강판(10)의 원주방향으로 배력철근(412)은 파형강판(10)의 폭방향으로 결속선(42)에 의하여 결속되도록 한다.(도5c)Next, a through hole is formed through a drilling operation along the circumference of the corrugated steel sheet 10 coupled between the channels 30, the bolts 40 and 40 ′ are coupled to the formed through hole, and the corrugated steel sheet 10 is formed. Along the bolts 40, 40 'exposed to the surface of the reinforcing bars 41, the main reinforcing bars 411 are coupled in the circumferential direction of the corrugated steel sheet 10 in the width direction of the corrugated steel sheet 10 Bound by line 42 (FIG. 5C).

다음, 파형강판(10)의 상부로 설치된 볼트(40)(40')와 철근(41)인 주철근(411)과 배력철근(412)이 매립되어지도록 콘크리트(20)를 타설하여 양생시키는 것으로 도5d와 같은 파형강판 콘크리트 교량(A)이 시공되어진다. 이때, 타설되어지는 콘크리트(20)의 일부가 파형강판(10)의 양측으로 누출되는 것을 방지하도록 하기 위한 방안으로 거푸집과 동일한 기능을 갖는 콘크리트 막음패널이 결합되어지도록 하는 것이 바람직하다.Next, by casting the concrete 20 to bury the reinforcing bars 411 and the reinforcing bars 412, which are bolts 40, 40 'and reinforcing bars 41, which are installed on the upper part of the corrugated steel sheet 10, are cured. Corrugated steel concrete bridge A such as 5d is constructed. At this time, it is preferable that the concrete blocking panel having the same function as the formwork is combined to prevent a portion of the concrete 20 to be poured to both sides of the corrugated steel sheet 10 to be coupled.

이때, 이치형태로 설치된 파형강판(10)의 상단 중앙인 크라운부에는 파형강판(10)에 인장력이 발생하게되나 파형강판(10)의 단면적이 큼으로써 단면의 크기를 얇게 설치할 수있게 되고, 교각에 결합되는 하부는 콘크리트 인장응력이 발생하게 되나 콘크리트(20) 내부의 매립된 철근(41)에 의하여 저항됨에 따라 단면저항력을 크게하기 위해 크라운부의 두께보다 더 두껍게 하는 것이 바람직하다.At this time, the tensile force is generated in the corrugated steel sheet 10 in the crown portion of the upper center of the corrugated steel sheet 10 installed in a binary form, but the cross-sectional area of the corrugated steel sheet 10 is large, so that the size of the cross section can be thinly installed. The lower portion coupled to the concrete is caused to be tensile stress, but is preferably thicker than the thickness of the crown portion in order to increase the cross-sectional resistance as resisted by the embedded reinforcing bar 41 in the concrete 20.

다음, 콘크리트(20)가 양생되어진 상부에 소정 두께를 갖도록 흙채움(60)을 한 후 그 상부에 노면포장(70)을 하여 차량이 이동할 수 있게 된다.Next, after filling the soil 60 to have a predetermined thickness on the concrete 20 is cured, the pavement (70) on the top of the vehicle can move.

한편, 본 발명에서는 채널(30)에 볼트(34)와 너트(35)로 결합되어진 파형강판(10)의 하단 양측이 그대로 결합되어지도록 하였으나, 이러한 방법 이외에 동일한 주름을 갖는 보강판(14)을 파형강판(10)의 내측이나 외측에 밀착되어지도록 구성하여 사용할 수 있다. 이러한 경우, 파형강판(10)의 두께가 다른 부분에 비하여 두껍게 됨에 따라 안전성을 더 높일 수 있도록 하고, 부분적인 부식이 발생하였을 경우, 부식의 진행도를 늦추어 파손되어지는 것을 방지할 수 있게 된다.Meanwhile, in the present invention, both sides of the lower end of the corrugated steel sheet 10 coupled to the channel 30 by the bolt 34 and the nut 35 are combined as they are, but in addition to the above method, the reinforcing plate 14 having the same corrugation is provided. It can be configured and used to be in close contact with the inside or the outside of the corrugated steel sheet 10. In this case, as the thickness of the corrugated steel sheet 10 becomes thicker than other parts, the safety can be further increased, and when partial corrosion occurs, the corrosion progress can be prevented from being damaged by slowing down the progress of corrosion.

이와 같이 본 발명은 교각과 교각 사이에 아치형태로 벤딩된 파형강판의 하부 양측단이 결합되어지도록 하고, 그 상부에 소정의 두께를 갖는 콘크리트가 타설 및 양생되어지도록 하여 전체적으로 구조물의 강성을 증가시켜 장지간이 필요한 교량을 안전하게 시공할 수 있도록 한 것이다.Thus, the present invention is to be coupled to both ends of the lower end of the corrugated steel sheet bent in the arch form between the piers and piers, and to increase the rigidity of the structure as a whole having a concrete having a predetermined thickness is poured and cured It was designed to allow the construction of long-term bridges safely.

또한 본 발명은 파형강판 콘크리트 교량의 상부 중앙인 크라운부에 구조역학상 정모멘트가 발생하며, 이때 합성단면이 중립축으로 부터 거리와 파형강판의 단면적에 의하여 계산되어진 단면적으로 저항하며, 파형강판이 연속되도록 설치되어 있어 단면적이 크므로 그 만큼 두께를 얇게 할 수 있도록 한 것이다.In addition, the present invention generates a structural moment of static moment in the crown portion of the upper center of the corrugated steel concrete bridge, wherein the composite section resists the cross-sectional area calculated by the distance from the neutral axis and the cross-sectional area of the corrugated steel sheet, the corrugated steel sheet is continuous It is installed so that the cross-sectional area is large, so that the thickness can be made thinner.

그리고 파형강판 콘크리트 교량의 하단은 구조역학상 부모멘트가 발생하며, 이때 합성단면의 중립축으로 부터 거리와 단면적에 의해 계산되어진 단면적으로 저항하여 단면 압축부의 파형강판의 면적이 최소화되어져 최대 인장철근비가 조절됨에 따라 크라운부는 얇게 지점부인 하단은 두꺼운 단면이 제공되어진다.In addition, the bottom of corrugated steel concrete bridge generates structural momentum. At this time, the area of the corrugated steel sheet of the compressed section is minimized by resisting the cross-sectional area calculated by distance and cross-sectional area from the neutral axis of the composite section. As a result, the crown is thinner and the lower end is provided with a thicker cross section.

Claims (4)

삭제delete 삭제delete 교각 사이에 파형강판의 하단이 결합되고, 상기 파형강판의 상부에 콘크리트가 타설되어지고, 상기 파형강판은 산형철부(11)와 산형요부(12)가 길이방향으로 연속되어고, 상기 파형강판의 하단 양측이 앵커볼트(36)로 교각(50)(50')의 상부에 고정된 채널(30)에 볼트(34)와 너트(35)로 결합되어지고, 상기 파형강판(10)의 외주면에 둘레를 따라 다수개의 볼트(40)(40')가 설치되어지고, 상기 볼트(40)(40')에 철근(41)이 결속선(42)으로 배근되어지며 상기 파형강판(10)의 표면과 볼트(40)(40') 및 철근(41)이 콘크리트(20)에 매설되어지도록 구성된 파형강판 콘크리트 교량에 있어서,The lower end of the corrugated steel sheet is coupled between the piers, concrete is poured on the upper portion of the corrugated steel sheet, the corrugated steel sheet is a continuous ridge 11 and the recessed portion 12 in the longitudinal direction, the Both sides of the lower side are coupled to the channel 30 fixed to the upper part of the pier 50, 50 'by the anchor bolts 36 with the bolt 34 and the nut 35, the outer peripheral surface of the corrugated steel sheet 10 A plurality of bolts 40, 40 ′ are installed along the circumference, and reinforcing bars 41 are disposed on the bolts 40, 40 ′ by the binding line 42, and the surface of the corrugated steel plate 10 is provided. In the corrugated steel concrete bridge, which is configured such that the bolts 40, 40 'and the reinforcing bar 41 are embedded in the concrete 20, 상기 파형강판의 하단이 결합되어지는 채널(30)은 제1관통홈(311)을 갖는 수평강재(31)의 일측단이 절단된 형태를 취하며 그 타측단이 소정 경사로 절곡된 제1경사강재(32)가 형성되어지고, 상기 제1경사강재(32)의 상단에 제1경사강재(32)의 절곡방향과 반대되는 방향으로 절곡된 제2경사강재(33)를 형성하되, 상기 제2경사강재(33)에 제2관통홈(331)이 형성되어지고, 상기 수평강재(31)와 제1경사강재(32) 및 제2경사강재(33)가 일체로 형성되어 길이방향으로 길게 연장되어지고, 상기 파형강판은 하부 양측에 각각 파형의 형태를 갖는 보강판(14)이 더 결합되어짐을 특징으로 하는 파형강판 콘크리트 교량.The channel 30 to which the lower end of the corrugated steel sheet is coupled has a shape in which one end of the horizontal steel 31 having the first through hole 311 is cut and the other end of which is bent at a predetermined slope. A second inclined steel material 33 is formed on the upper end of the first inclined steel material 32 and bent in a direction opposite to the bending direction of the first inclined steel material 32. A second through hole 331 is formed in the inclined steel 33, and the horizontal steel 31, the first inclined steel 32 and the second inclined steel 33 are integrally formed to extend in the longitudinal direction. The corrugated steel sheet is a corrugated steel sheet concrete bridge, characterized in that the reinforcement plate (14) having a corrugated shape on each side of the lower side is further coupled. 삭제delete
KR1020060013656A 2006-02-13 2006-02-13 Corrugated steel plates concrete bridge KR100728743B1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
KR1020060013656A KR100728743B1 (en) 2006-02-13 2006-02-13 Corrugated steel plates concrete bridge

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
KR1020060013656A KR100728743B1 (en) 2006-02-13 2006-02-13 Corrugated steel plates concrete bridge

Related Child Applications (1)

Application Number Title Priority Date Filing Date
KR2020060003952U Division KR200415325Y1 (en) 2006-02-13 2006-02-13 Corrugated steel plates concrete bridge

Publications (1)

Publication Number Publication Date
KR100728743B1 true KR100728743B1 (en) 2007-06-19

Family

ID=38372548

Family Applications (1)

Application Number Title Priority Date Filing Date
KR1020060013656A KR100728743B1 (en) 2006-02-13 2006-02-13 Corrugated steel plates concrete bridge

Country Status (1)

Country Link
KR (1) KR100728743B1 (en)

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103255707A (en) * 2013-06-05 2013-08-21 中交第一公路勘察设计研究院有限公司 Fixing structure of arc feet of steel corrugated plate arc arch bridge
CN105464006A (en) * 2015-12-31 2016-04-06 长安大学 Masonry arch bridge reinforced structure and construction method thereof
CN109811633A (en) * 2019-03-11 2019-05-28 河海大学 A kind of corrugated steel and Combined concrete double curvature arched bridge and preparation method thereof
CN111058368A (en) * 2020-01-13 2020-04-24 哈尔滨工业大学 Corrugated steel reinforcing arch utilizing high-strength grouting material and building method thereof
CN111335150A (en) * 2020-04-08 2020-06-26 江西省高速公路投资集团有限责任公司 Connection structure of arch steel sheet that contains ripple and girder steel
CN111877127A (en) * 2020-08-25 2020-11-03 中交路桥华南工程有限公司 Construction method of continuous arch bridge

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4695187A (en) * 1984-08-02 1987-09-22 Bridginfill Design Ltd. Concrete arch buried bridge
KR200167832Y1 (en) 1999-08-24 2000-02-15 포스코신기술연구조합 Structures for composite corrugated steel concrete plate

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4695187A (en) * 1984-08-02 1987-09-22 Bridginfill Design Ltd. Concrete arch buried bridge
KR200167832Y1 (en) 1999-08-24 2000-02-15 포스코신기술연구조합 Structures for composite corrugated steel concrete plate

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103255707A (en) * 2013-06-05 2013-08-21 中交第一公路勘察设计研究院有限公司 Fixing structure of arc feet of steel corrugated plate arc arch bridge
CN105464006A (en) * 2015-12-31 2016-04-06 长安大学 Masonry arch bridge reinforced structure and construction method thereof
CN109811633A (en) * 2019-03-11 2019-05-28 河海大学 A kind of corrugated steel and Combined concrete double curvature arched bridge and preparation method thereof
CN111058368A (en) * 2020-01-13 2020-04-24 哈尔滨工业大学 Corrugated steel reinforcing arch utilizing high-strength grouting material and building method thereof
CN111335150A (en) * 2020-04-08 2020-06-26 江西省高速公路投资集团有限责任公司 Connection structure of arch steel sheet that contains ripple and girder steel
CN111877127A (en) * 2020-08-25 2020-11-03 中交路桥华南工程有限公司 Construction method of continuous arch bridge

Similar Documents

Publication Publication Date Title
JP2009516109A (en) Temporary earth retaining device
KR100728743B1 (en) Corrugated steel plates concrete bridge
US20130008125A1 (en) Construction method for new underground structure
KR20120088237A (en) Column Complxed with Concrete and steel tube
KR101816767B1 (en) Reinforced concrete reinforced concrete structure
JP4740029B2 (en) Manufacturing method of floor slab or lining board
JP2007254974A (en) Prestressed concrete floor slab bridge of composite structure of steel/concrete using shape steel, and construction method of the prestressed concrete floor slab bridge
KR20060110973A (en) Corrugated steel plate and connection apparatus of the same
KR101095700B1 (en) Retaining Wall Structure and Constructing Method thereof
JP2008088634A (en) Composite steel-concrete floor slab
JP4697875B2 (en) Lightweight embankment blocks and lightweight embankment structures
JP4392379B2 (en) Manufacturing method of floor slab bridge and floor slab unit using square steel pipe
KR20110093139A (en) Rahmen type corrugated steel plate structures
KR101213680B1 (en) Prefabricate tunnel structure using wave type steel plate
JP5152689B2 (en) Structure and method for joining pier and footing
KR200415325Y1 (en) Corrugated steel plates concrete bridge
KR102608598B1 (en) Waveform steel sheet structure equipped with the reinforcing mold
KR100808977B1 (en) Connecting structure of corner supporting beam for temporary soil sheathing work
KR101213684B1 (en) wave type steel plate tunnel
KR100826895B1 (en) Decreased-stress type retaining wall on the advantages to backfill
KR101832291B1 (en) Reinforced Concrete Composite Corrugated Steel Shear Reinforced Structures Combined with Fastening Members for Stiffness Improvement
KR100728265B1 (en) Concrete charge concavo-convex steel sheet circular structure
JP5551943B2 (en) Foundation structure using ground improvement body
KR101037502B1 (en) Reinforcement
KR100655879B1 (en) The curved portion construction method and structure of the corrugated steel plate structure

Legal Events

Date Code Title Description
A201 Request for examination
E902 Notification of reason for refusal
E701 Decision to grant or registration of patent right
GRNT Written decision to grant
G170 Publication of correction
FPAY Annual fee payment

Payment date: 20130605

Year of fee payment: 7

FPAY Annual fee payment

Payment date: 20140528

Year of fee payment: 8

FPAY Annual fee payment

Payment date: 20150602

Year of fee payment: 9

FPAY Annual fee payment

Payment date: 20160516

Year of fee payment: 10

FPAY Annual fee payment

Payment date: 20170529

Year of fee payment: 11

FPAY Annual fee payment

Payment date: 20180531

Year of fee payment: 12

FPAY Annual fee payment

Payment date: 20190530

Year of fee payment: 13