KR20200072978A - Method of drone making kit using cardboard - Google Patents

Method of drone making kit using cardboard Download PDF

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Publication number
KR20200072978A
KR20200072978A KR1020180161162A KR20180161162A KR20200072978A KR 20200072978 A KR20200072978 A KR 20200072978A KR 1020180161162 A KR1020180161162 A KR 1020180161162A KR 20180161162 A KR20180161162 A KR 20180161162A KR 20200072978 A KR20200072978 A KR 20200072978A
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South Korea
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corrugated cardboard
wing
drone
manufacturing
cardboard
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KR1020180161162A
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Korean (ko)
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KR102150174B1 (en
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이언택
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주식회사 코코드론
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B64AIRCRAFT; AVIATION; COSMONAUTICS
    • B64FGROUND OR AIRCRAFT-CARRIER-DECK INSTALLATIONS SPECIALLY ADAPTED FOR USE IN CONNECTION WITH AIRCRAFT; DESIGNING, MANUFACTURING, ASSEMBLING, CLEANING, MAINTAINING OR REPAIRING AIRCRAFT, NOT OTHERWISE PROVIDED FOR; HANDLING, TRANSPORTING, TESTING OR INSPECTING AIRCRAFT COMPONENTS, NOT OTHERWISE PROVIDED FOR
    • B64F5/00Designing, manufacturing, assembling, cleaning, maintaining or repairing aircraft, not otherwise provided for; Handling, transporting, testing or inspecting aircraft components, not otherwise provided for
    • B64F5/10Manufacturing or assembling aircraft, e.g. jigs therefor
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B64AIRCRAFT; AVIATION; COSMONAUTICS
    • B64CAEROPLANES; HELICOPTERS
    • B64C27/00Rotorcraft; Rotors peculiar thereto
    • B64C27/04Helicopters
    • B64C27/08Helicopters with two or more rotors
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B64AIRCRAFT; AVIATION; COSMONAUTICS
    • B64CAEROPLANES; HELICOPTERS
    • B64C39/00Aircraft not otherwise provided for
    • B64C39/02Aircraft not otherwise provided for characterised by special use
    • B64C39/024Aircraft not otherwise provided for characterised by special use of the remote controlled vehicle type, i.e. RPV
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B64AIRCRAFT; AVIATION; COSMONAUTICS
    • B64UUNMANNED AERIAL VEHICLES [UAV]; EQUIPMENT THEREFOR
    • B64U10/00Type of UAV
    • B64U10/10Rotorcrafts
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B64AIRCRAFT; AVIATION; COSMONAUTICS
    • B64UUNMANNED AERIAL VEHICLES [UAV]; EQUIPMENT THEREFOR
    • B64U30/00Means for producing lift; Empennages; Arrangements thereof
    • B64U30/20Rotors; Rotor supports
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B64AIRCRAFT; AVIATION; COSMONAUTICS
    • B64UUNMANNED AERIAL VEHICLES [UAV]; EQUIPMENT THEREFOR
    • B64U50/00Propulsion; Power supply
    • B64U50/10Propulsion
    • B64U50/13Propulsion using external fans or propellers
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B64AIRCRAFT; AVIATION; COSMONAUTICS
    • B64UUNMANNED AERIAL VEHICLES [UAV]; EQUIPMENT THEREFOR
    • B64U50/00Propulsion; Power supply
    • B64U50/10Propulsion
    • B64U50/19Propulsion using electrically powered motors
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B64AIRCRAFT; AVIATION; COSMONAUTICS
    • B64CAEROPLANES; HELICOPTERS
    • B64C27/00Rotorcraft; Rotors peculiar thereto
    • B64C27/32Rotors
    • B64C27/46Blades
    • B64C27/473Constructional features
    • B64C2027/4733Rotor blades substantially made from particular materials
    • B64C2201/024
    • B64C2201/042
    • B64C2201/108
    • B64C2201/165
    • YGENERAL 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
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02TCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO TRANSPORTATION
    • Y02T50/00Aeronautics or air transport
    • Y02T50/60Efficient propulsion technologies, e.g. for aircraft
    • Y02T50/62

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  • Engineering & Computer Science (AREA)
  • Aviation & Aerospace Engineering (AREA)
  • Mechanical Engineering (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Manufacturing & Machinery (AREA)
  • Transportation (AREA)
  • Remote Sensing (AREA)
  • Toys (AREA)

Abstract

The present invention relates to a method for manufacturing a drone manufacturing kit using a corrugated cardboard, which folds a corrugated cardboard (1000) for a body to form a body part (100), attaches a wing connecting part (110) to the body part (100), and attaches a wing part (200) to the wing connecting part (110), wherein the body part (100) comprises a wing connecting space part (120) at a lower portion and a control part installing space part (130) at an upper portion. The method for manufacturing a drone manufacturing kit using the corrugated cardboard has a simple structure, enables students or general people to easily manufacture the drone and more easily understand the structure, has inexpensive manufacturing costs by using the corrugated cardboard, prevents accidents caused by fragments generated when the drone is damaged, and is eco-friendly.

Description

골판지를 이용한 드론제작 키트 제작방법{Method of drone making kit using cardboard}Method of drone making kit using cardboard}

본발명은 골판지를 이용한 드론제작 키트 제작방법에 관한 것으로, 보다 상세하게는 몸체용 골판지를 접어서 몸체부를 만들고, 상기 몸체부에 날개연결부를 부착하며, 상기 날개연결부에는 날개부를 부착하여, 구조가 간단하고 학생이나 일반인들이 쉽게 만들면서 구조를 잘 이해할 수 있고, 골판지를 사용하여 제작 단가가 저렴하고, 파손되었을시 나오는 파편으로 인한 안전사고를 예방할 수 있으며 환경친화적인 드론제작 키트 제작방법에 관한 것이다.The present invention relates to a method for manufacturing a drone production kit using corrugated cardboard, and more specifically, by folding a corrugated cardboard for a body to make a body portion, attaching a wing connection portion to the body portion, and attaching a wing portion to the wing connection portion, so that the structure is simple. And it is easy for students or the general public to understand the structure easily, and the production cost is cheap using corrugated cardboard, and it can prevent safety accidents caused by debris when damaged.

일반적으로 드론이 재난, 교통 등 실생활에 널리 사용되며, 이를 제작하는 방법이 개발되어 왔고, 일례로서, 공개특허공보 공개번호 10-2017-0120802에는 절취선을 따라 뜯을 수 있도록 구성된 몸체 하판 조각, 몸체 상판 조각, 복수개의 날개 지지판 조각, 복수개의 모터 받침대 조각, 복수개의 상판 지지대 조각, 배터리 케이스 조각을 포함하는 목재판, 복수개의 프로펠러, 드론보드, 배터리, 복수개의 모터를 포함하는 조립식 키트를 준비하는 단계; 하면에는 배터리 케이스 조각이 끼워지는 홈을 구비하며 상면에는 드론보드가 장착되는 중앙부와, 중앙부로 부터 방사형으로 돌출되며 단부에 제1 모터삽입공을 구비하는 날개부를 포함하는 몸체 하판 조각을 목재판으로부터 뜯어내고, 제1 모터삽입공과 동일한 직경을 갖는 제2 모터삽입공을 구비하는 날개 지지판 조각을 목재판으로부터 뜯어내어, 몸체 하판 조각의 날개부 상면에 제1 모터삽입공과 제2 모터삽입공이 일치하도록 날개 지지판 조각을 접착하는 단계; 제1 모터삽입공보다 작은 직경을 갖는 모터지지공을 구비하는 모터 받침대 조각을 목재판으로부터 뜯어내어, 몸체 하판 조각의 날개부 하면에 제1 모터삽입공과 모터지지공이 동심원이 되도록 모터 받침대 조각을 접착하는 단계; 날개 지지판 조각에 구비된 홈에 한 쌍의 돌기를 갖는 상판 지지대를 삽입하여 고정시킨 몸체 하판을 준비해 놓고, 몸체 상판 조각의 하면에 몸체 하판과 동일하게 날개 지지판 조각을 접착하되 몸체 상판의 제3 모터삽입공과 날개 지지판의 제4 모터삽입공이 일치하도록 하는 단계; 목재판으로부터 배터리 케이스 조각을 뜯어내어 케이스 형태로 조립 및 접착하여 준비하는 단계; 몸체 하판에 드론보드를 장착하고, 제1 모터삽입공과 제2 모터삽입공에 모터를 삽입하되 모터의 하단이 모터 받침대의 모터지지공에 밀착되도록 장착하는 단계; 몸체 상판 날개부에 결합된 날개 지지판에 구비된 홈에 상판 지지대의 돌기를 삽입하면서, 모터를 몸체 상판의 제3 모터 삽입공과 날개지지판의 제4 모터삽입공에 삽입하여 몸체 하판에 몸체 상판을 결합하는 단계; 및 몸체 하판에 배터리 케이스를 결합하는 단계를 포함하는, 나무 재질의 조립식 드론키트 제조방법이 공개되어 있다.In general, drones are widely used in real life such as disasters and transportation, and a method of manufacturing them has been developed, and as an example, in Patent Publication No. 10-2017-0120802, a body bottom plate piece and a body top plate configured to tear along a perforation line Preparing a prefabricated kit comprising a piece, a plurality of wing support plate pieces, a plurality of motor support pieces, a plurality of top support pieces, a wood plate including a battery case piece, a plurality of propellers, a drone board, a battery, and a plurality of motors. ; The lower surface has a groove into which a piece of the battery case is fitted, and the upper surface has a central portion on which a drone board is mounted, and a body bottom plate piece including a wing portion having a first motor insertion hole at the end and radially protruding from the wooden plate. Tear off, tear off a piece of the wing support plate with a second motor insertion hole having the same diameter as the first motor insertion hole, and tear off a piece of wood from the wooden plate so that the first motor insertion hole and the second motor insertion hole coincide with the upper surface of the wing of the lower body piece. Adhering a piece of the wing support plate; A piece of motor support having a motor support hole having a diameter smaller than that of the first motor insertion hole is torn off from the wooden board, and the motor support piece is attached to the lower surface of the lower part of the body so that the first motor insertion hole and the motor support hole are concentric circles. To do; A body lower plate fixed by inserting an upper plate support having a pair of protrusions into a groove provided in the blade support plate piece is prepared, and a piece of the wing support plate is adhered to the lower surface of the body upper plate piece in the same manner as the body lower plate, but the third motor of the body upper plate Making the insertion hole and the fourth motor insertion hole of the wing support plate coincide; A step of tearing off a piece of battery case from a wooden board and preparing it by assembling and adhering in a case shape; Mounting a drone board on the lower body of the body, inserting the motors into the first motor insertion hole and the second motor insertion hole, but mounting the bottom of the motor so as to be in close contact with the motor support hole of the motor support; While inserting the projection of the top plate support into the groove provided in the wing support plate coupled to the wing portion of the body top plate, insert the motor into the third motor insertion hole of the body top plate and the fourth motor insertion hole of the wing support plate to join the body top plate to the body bottom plate. To do; And a step of coupling the battery case to the lower body of the body, a method of manufacturing a prefabricated drone kit made of wood is disclosed.

등록특허공보 등록번호10-1764850에는 다수의 센서로 이루어진 센서부와, 상기 센서부에 접속되어 상기 센서부의 감지에 의해서 작동하는 구동부와, 상기 센서부와 구동부에 접속되어, 코딩된 프로그램에 따라, 상기 센서부로부터 감지 신호를 수신하여 상기 구동부를 작동시키는 제어부와, 상기 제어부에 접속되어 송수신 기능을 하는 통신부와, 상기 제어부에 접속되어 PID 제어가 가능한 PID 제어 기체와, 상기 통신부를 통해 조종되는 드론과, 상기 제어부에 접속되어 상기 PID 제어 기체와 드론을 조종하는 조이스틱을 포함하는 것을 특징으로 하는 드론 실습용 키트가 공개되어 있다.Registered Patent Publication No. 10-1764850 includes a sensor unit composed of a plurality of sensors, a driving unit connected to the sensor unit and operated by sensing of the sensor unit, connected to the sensor unit and the driving unit, according to a coded program, A control unit for receiving the detection signal from the sensor unit to operate the driving unit, a communication unit connected to the control unit for transmitting and receiving functions, a PID control gas connected to the control unit capable of PID control, and a drone controlled through the communication unit And, it is connected to the control unit has been disclosed a kit for drone practice, characterized in that it comprises a joystick for controlling the PID control aircraft and the drone.

그러나 상기 종래의 드론 제작 키트는 강성이 있는 재료(나무, 철)로 제작하기 때문에 단가가 비싸고, 드론이 파손 되었을시에 나오는 파편으로 인한 안전사고를 당할 수 있고, 복잡한 구조로인해 드론 제작이 힘들어서 만들기 어려운 단점이 있었다.However, since the conventional drone production kit is made of a rigid material (wood, iron), the unit price is expensive, and a drone can be subject to safety accidents due to debris when it is damaged. There were drawbacks that were difficult to make.

따라서 본 발명은 상기와 같은 문제점을 해결하고자 안출된 것으로 구조가 간단하고 학생이나 일반인들이 쉽게 만들면서 구조를 잘 이해할 수 있고, 골판지를 사용하여 제작 단가가 저렴하고, 파손되었을시 나오는 파편으로 인한 안전사고를 최소화 할 수 있으며 환경친화적인 골판지를 이용한 드론제작 키트 제작방법을 제공하고자 하는 것이다.Therefore, the present invention has been devised to solve the above problems, the structure is simple, students or the general public can easily understand the structure while making it, the production cost is cheap using corrugated cardboard, and safety due to debris appearing when damaged The aim is to provide a method for manufacturing a drone production kit using environmentally friendly corrugated cardboard that can minimize accidents.

본발명은 골판지를 이용한 드론제작 키트 제작방법에 관한 것으로, 몸체용 골판지(1000)를 접어서 몸체부(100)를 만들고, 상기 몸체부(100)에 날개연결부(110)를 부착하며, 상기 날개연결부(110)에는 날개부(200)를 부착하되, 상기 몸체부(100)는 하부의 날개연결공간부(110)와 상부의 제어부 설치공간부(120)로 이루어지는 것을 특징으로 한다. The present invention relates to a method of manufacturing a drone production kit using corrugated cardboard, by folding the corrugated cardboard (1000) for the body to make the body portion 100, attaching the wing connection portion 110 to the body portion 100, and the wing connection portion (110) is attached to the wing portion 200, the body portion 100 is characterized in that it consists of a lower wing connection space portion 110 and the upper control unit installation space portion 120.

따라서 본발명은 구조가 간단하고 학생이나 일반인들이 쉽게 만들면서 구조를 잘 이해할 수 있고, 골판지를 사용하여 제작 단가가 저렴하고, 파손되었을시 나오는 파편으로 인한 안전사고를 예방할 수 있으며 환경친화적인 현저한 효과가 있다.Therefore, the present invention is simple in structure and can be easily understood by students and the general public, making the structure inexpensive using corrugated cardboard, preventing safety accidents caused by debris when damaged, and remarkably eco-friendly effect There is.

도1은 본 발명에 의한 몸체용 골판지(1000)의 평면도
도2는 본 발명에 의한 조립이 완성된 드론의 측면도
도3은 본 발명에 의한 몸체부(100)의 측면도
1 is a plan view of a corrugated cardboard 1000 for a body according to the present invention
Figure 2 is a side view of the drone assembly is completed according to the present invention
Figure 3 is a side view of the body portion 100 according to the present invention

본발명은 골판지를 이용한 드론제작 키트 제작방법에 관한 것으로, 몸체용 골판지(1000)를 접어서 몸체부(100)를 만들고, 상기 몸체부(100)에 날개연결부(110)를 부착하며, 상기 날개연결부(110)에는 날개부(200)를 부착하되, 상기 몸체부(100)는 하부의 날개연결공간부(120)와 상부의 제어부 설치공간부(130)로 이루어지는 것을 특징으로 한다. The present invention relates to a method of manufacturing a drone production kit using corrugated cardboard, by folding the corrugated cardboard (1000) for the body to make the body portion 100, attaching the wing connection portion 110 to the body portion 100, and the wing connection portion (110) is attached to the wing portion 200, the body portion 100 is characterized in that consisting of a lower wing connecting space portion 120 and the upper control unit installation space portion 130.

또한, 상기 몸체용 골판지(1000)는 몸체용 사각형 골판지(1100) 좌, 우변에 각각 두 개씩 날개연결부용 사각형 골판지(1110)가 일체로 형성되며, 몸체용 사각형 골판지(1100) 상변에는 제어부와 배터리가 설치되는 제어부 설치공간부(120)를 형성하기 위한 사각형의 상판 골판지(1200)가 일체로 형성되며 상기 사각형의 상판 골판지(1200)는 가로 주름이 두 번 형성되며, 끝단에는 결합용 돌기(1201)가 형성되고, 상기 몸체용 사각형 골판지(1100) 하변에는 날개연결공간부(120)를 형성하기 위한 사각형의 하판 골판지(1300)가 일체로 형성되되, 상기 사각형의 하판 골판지(1300)는 가로 주름이 두 번 형성되며, 끝단에는 결합용 돌기(1301)가 형성되되, 결합용 돌기(1301)에도 가로 주름이 형성되어 접으면, 먼저 상판 사각형 골판지(1200)가 위로 접히고, 이후 날개연결부용 사각형 골판지(1110)가 아래로 접히고, 이후 하판 사각형 골판지(1300)가 아래로 접혀서 몸체부(100)의 윗부분이 제어부 설치공간부(120)를 형성하고, 상기 몸체부(100)의 아랫부분이 날개연결공간부(120)가 형성되며, 상기 하판 사각형 골판지(1300)의 결합용 돌기(1301)의 하면 끝단에 접착제를 발라 몸체용 사각형 골판지(1100) 하면에 결합하여 좌우가 개방된 직육면체가 형성 되는 것을 특징으로 한다. In addition, the body corrugated cardboard (1000) is a rectangular corrugated cardboard (1100) for the body, two on the left and right sides, respectively, a rectangular corrugated cardboard (1110) for the wing connection is formed integrally, and a controller and a battery at the top of the rectangular corrugated cardboard (1100) A rectangular upper plate corrugated cardboard 1200 for forming the control unit installation space portion 120 is installed integrally formed, the horizontal upper corrugated cardboard 1200 is formed with two horizontal folds, and a coupling protrusion 1201 at the end. ) Is formed, the bottom of the rectangular corrugated cardboard 1100 for the body is integrally formed with a rectangular lower corrugated cardboard 1300 for forming the wing connection space part 120, the rectangular lower corrugated cardboard 1300 has a horizontal wrinkle This is formed twice, and at the end, a coupling protrusion 1301 is formed, but a horizontal wrinkle is formed on the coupling protrusion 1301, and when folded, the top plate square corrugated cardboard 1200 is folded first, and thereafter a square for a wing connection portion The corrugated cardboard 1110 is folded down, and then the lower quadrangular corrugated cardboard 1300 is folded down so that the upper portion of the body portion 100 forms the control unit installation space portion 120, and the lower portion of the body portion 100 is Wing connection space part 120 is formed, and the adhesive is applied to the lower end of the lower surface of the projection 1301 of the lower quadrangular corrugated cardboard 1300 to be joined to the lower surface of the rectangular corrugated cardboard 1100 for the body to form a rectangular parallelepiped with left and right openings. It is characterized by being.

또한, 상기 몸체용 사각형 골판지(1100)에는 상기 날개연결부용 사각형 골판지(1110)들이 결합하게 세로홈이 상부에 두 개 하부에 두 개 형성되는 것을 특징으로 한다. In addition, the rectangular corrugated cardboard 1100 for the body is characterized in that two vertical grooves are formed at the top and two at the bottom so that the square corrugated cardboard 1110 for the wing connection portion is coupled.

또한, 상기 몸체용 사각형 골판지(1100)에는 하변 테두리에 두 개의 가로홈이 형성되어 상판 사각형 골판지의 돌기들이 결합되는 것을 특징으로 한다. In addition, two transverse grooves are formed at the lower edge of the rectangular corrugated cardboard 1100 for the body, and the protrusions of the upper rectangular corrugated cardboard are combined.

또한, 날개연결부(110)는 골판지로 만들어지는 원통형 기둥으로 몸체부(100)의 전후좌우에 각각 하나씩 결합되는 것을 특징으로 한다. In addition, the wing connection portion 110 is characterized by being coupled to each of the front and rear and right and left of the body portion 100 as a cylindrical pillar made of corrugated cardboard.

또한, 상기 날개부(200)는 플라스틱 재질의 날개와 상기 날개를 가동하는 모터로 이루어지는 것을 특징으로 한다. In addition, the wing portion 200 is characterized by consisting of a plastic blade and a motor for moving the wing.

또한, 상기 제어부, 배터리, 모터는 전선으로 연결되는 것을 특징으로 한다. In addition, the control unit, the battery, the motor is characterized in that connected by a wire.

본발명을 첨부도면에 의해 상세히 설명하면 다음과 같다. The present invention will be described in detail with reference to the accompanying drawings.

본발명의 제작방법은 몸체용 골판지를 접어서 몸체부를 만들고, 상기 몸체에 날개연결부를 부착하며, 상기 날개연결부에는 날개부를 부착하되, 상기 몸체부는 하부의 날개연결공간부와 상부의 제어부 설치공간부로 이루어진다.The manufacturing method of the present invention is made by folding a corrugated cardboard for the body to make a body part, attaching a wing connection part to the body, and attaching a wing part to the wing connection part, wherein the body part comprises a lower wing connection space part and an upper control part installation space part. .

상기 몸체용 골판지는 사각형 골판지 좌, 우변에 각각 두 개씩 날개연결부용 직사각형 골판지가 일체로 형성된다.The corrugated cardboard for the body is integrally formed with a rectangular corrugated cardboard for the wing connection part, two on the left and right sides of the rectangular corrugated cardboard.

사각형 골판지 상변에는 제어부와 배터리가 설치되는 제어부 설치공간부를 형성하기 위한 사각형의 상판 골판지가 일체로 형성되며 상기 사각형의 상판 골판지는 가로 주름이 두 번 형성되며, 끝단에는 결합용 돌기가 형성된다.On the upper side of the rectangular corrugated cardboard, a square upper corrugated cardboard is integrally formed to form a control unit installation space where a control unit and a battery are installed. The rectangular upper corrugated cardboard is formed with two horizontal wrinkles, and a coupling protrusion is formed at the end.

상기 사각형 골판지 하변에는 날개연결공간부를 형성하기 위한 직사각형의 하판 골판지가 일체로 형성되되, 상기 직사각형의 하판 골판지는 가로 주름이 두 번 형성되며, 끝단에는 결합용 돌기가 형성되되, 결합용 돌기에도 가로 주름이 형성된다.On the underside of the rectangular corrugated cardboard, a rectangular lower corrugated cardboard is formed integrally to form a wing connection space, and the horizontal corrugated cardboard is formed with double transverse folds, and a coupling protrusion is formed at the end, and is also transverse to the coupling protrusion. Wrinkles are formed.

그러므로 접으면, 먼저 상판 사각형 골판지가 위로 접히고, 이후 날개연결부용 사각형골판지가 아래로 접히고, 이후 하판 사각형 골판지가 아래로 접혀서 몸체부의 윗부분이 제어부 설치공간부를 형성하고, 상기 몸체부의 아랫부분이 날개연결공간부가 형성되며, 상기 하판 사각형 골판지의 결합용 돌기의 하면 끝단에 접착제를 발라 몸체용 사각형 골판지 하면에 결합하여 좌우가 개방된 직육면체가 형성 되는 것이다.Therefore, when folded, first the upper square cardboard is folded up, then the square cardboard for wing connection is folded down, and then the lower square square cardboard is folded down so that the upper part of the body part forms the control unit installation space, and the lower part of the body part Wing connection space is formed, and the adhesive is applied to the lower end of the lower projection of the lower corrugated cardboard to be bonded to the lower corrugated cardboard for the body to form a rectangular parallelepiped with left and right openings.

한편, 상기 사각형 골판지에는 상기 날개연결부용 직사각형 골판지들이 결합하게 세로홈이 상부에 두 개 하부에 두 개 형성된다.On the other hand, in the rectangular corrugated cardboard, two vertical grooves are formed at the top and two at the bottom so that the rectangular corrugated cardboards for the wing connection are combined.

상기 사각형 골판지에는 하변 테두리에 두 개의 가로홈이 형성되어 상판 사각형 골판지의 돌기들이 결합되는 것이다.The square corrugated cardboard is formed with two horizontal grooves at the lower edge, and the protrusions of the square corrugated cardboard are combined.

날개연결부는 골판지로 만들어지는 원통형 기둥으로 몸체부의 전후좌우에 각각 하나씩 결합되며, 상기 날개부는 플라스틱 재질의 날개와 상기 날개를 가동하는 모터로 이루어진다. 날개는 축이 지면과 수직으로 형성되어 날개가 수평과 평행하게 위치되게 한다.The wing connection part is a cylindrical pillar made of corrugated cardboard, and is coupled to the front and rear and right and left of the body part, respectively. The wing is formed perpendicular to the ground so that the wing is positioned parallel to the horizontal.

상기 제어부, 배터리, 모터는 전선으로 연결된다.The control unit, the battery, and the motor are connected by wires.

골판지의 전체 전개도는 “

Figure pat00001
” 형상이다.The overall development of the corrugated cardboard is “
Figure pat00001
It is a shape.

따라서 본발명은 구조가 간단하고 학생이나 일반인들이 쉽게 만들면서 구조를 잘 이해할 수 있고, 골판지를 사용하여 제작 단가가 저렴하고, 파손되었을시 나오는 파편으로 인한 안전사고를 예방할 수 있으며 환경친화적인 현저한 효과가 있다.Therefore, the present invention is simple in structure and can be easily understood by students and the general public, making the structure inexpensive using corrugated cardboard, preventing safety accidents caused by debris when damaged, and remarkably eco-friendly effect There is.

1000 : 몸체용 골판지 1100 : 몸체용 사각형 골판지
1110 : 날개연결부용 사각형 골판지 1200 : 상판 골판지
1201 : 결합용 돌기 1300 : 하판 골판지
1301 : 결합용 돌기 100 : 몸체부
110 : 날개연결부 120 : 날개연결공간부
130 : 제어부 설치공간부 200 : 날개부
1000: corrugated cardboard for body 1100: rectangular corrugated cardboard for body
1110: square corrugated cardboard for wing connection 1200: top corrugated cardboard
1201: projection for bonding 1300: lower corrugated cardboard
1301: engaging projection 100: body portion
110: wing connection 120: wing connection space
130: control unit installation space 200: wing

Claims (3)

몸체용 골판지(1000)를 접어서 몸체부(100)를 만들고, 상기 몸체부(100)에 날개연결부(110)를 부착하며, 상기 날개연결부(110)에는 날개부(200)를 부착하되, 상기 몸체부(100)는 하부의 날개연결공간부(120)와 상부의 제어부 설치공간부(130)로 이루어지는 것을 특징으로 하는 골판지를 이용한 드론제작 키트 제작방법
Fold the corrugated cardboard 1000 for the body to make the body portion 100, attach the wing connection portion 110 to the body portion 100, attach the wing portion 200 to the wing connection portion 110, but the body Part 100 is a method for manufacturing a drone production kit using corrugated cardboard, characterized in that it consists of a lower wing connecting space part 120 and an upper control part installation space part 130.
제1항에 있어서, 상기 날개연결부(110)는 골판지로 만들어지는 원통형 기둥으로 몸체부(100)의 전후좌우에 각각 하나씩 결합되는 것을 특징으로 하는 골판지를 이용한 드론제작 키트 제작방법
The method of claim 1, wherein the wing connection portion (110) is a cylindrical pillar made of corrugated cardboard, and a method for manufacturing a drone manufacturing kit using corrugated cardboard is characterized in that it is coupled to the front and rear sides of the body portion (100).
제2항에 있어서, 상기 날개부(200)는 플라스틱 재질의 날개와 상기 날개를 가동하는 모터로 이루어지는 것을 특징으로 하는 골판지를 이용한 드론제작 키트 제작방법
The method of claim 2, wherein the wing part 200 is made of a plastic material and a motor for moving the wing.
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Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2018513056A (en) * 2015-04-20 2018-05-24 マイケル クック,ジョージ Aerial delivery assembly

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2018513056A (en) * 2015-04-20 2018-05-24 マイケル クック,ジョージ Aerial delivery assembly

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* Cited by examiner, † Cited by third party
Title
mike estee. How To Build a Cardboard Quadcopter. mikest, 2012년 3월 26일* *
뉴스투데이. [별별영상]로봇손부터 마차까지...골판지 작품. MBC, 2018년 4월 12일* *

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