KR20020001274A - The method of developing the parts drawings of assembly drawings designed by the metal mold CAD automatically - Google Patents

The method of developing the parts drawings of assembly drawings designed by the metal mold CAD automatically Download PDF

Info

Publication number
KR20020001274A
KR20020001274A KR1020000035739A KR20000035739A KR20020001274A KR 20020001274 A KR20020001274 A KR 20020001274A KR 1020000035739 A KR1020000035739 A KR 1020000035739A KR 20000035739 A KR20000035739 A KR 20000035739A KR 20020001274 A KR20020001274 A KR 20020001274A
Authority
KR
South Korea
Prior art keywords
parts
automatically
developing
drawings
assembly drawing
Prior art date
Application number
KR1020000035739A
Other languages
Korean (ko)
Other versions
KR100377662B1 (en
Inventor
박명식
Original Assignee
박명식
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 박명식 filed Critical 박명식
Priority to KR10-2000-0035739A priority Critical patent/KR100377662B1/en
Publication of KR20020001274A publication Critical patent/KR20020001274A/en
Application granted granted Critical
Publication of KR100377662B1 publication Critical patent/KR100377662B1/en

Links

Classifications

    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F30/00Computer-aided design [CAD]

Landscapes

  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Theoretical Computer Science (AREA)
  • Computer Hardware Design (AREA)
  • Evolutionary Computation (AREA)
  • Geometry (AREA)
  • General Engineering & Computer Science (AREA)
  • General Physics & Mathematics (AREA)
  • Moulds For Moulding Plastics Or The Like (AREA)

Abstract

PURPOSE: A method for automatically developing part drawings of an assembly drawing designed by a die cad is provided to automatically develop the part drawings and automatically mark size, material, and developing location of the parts by selecting each part of the assembly drawing designing a mold by using layer and parts number, thereby accurately processing parts. CONSTITUTION: Die structure master registration and revision related to a parts drawing are input(S1). Numbers of parts made by a die master are set up(S2). Various kinds related to part data set up by the die structure master are edited(S3). Location for developing edited parts and figures is adjusted(S4). A balloon and a part list are prepared by using part properties marked at the assembly drawing(S5). A paper and a scale are set up for developing the parts(S6). A title block related to the part is selected so that addition is confirmed(S7). Assembly drawings designed by each part are developed with each property of parts(S8). If the part drawing is revised after developing parts, the revised part drawing is automatically changed, and if the assembly drawing is revised, the related part drawings are automatically revised(S9).

Description

금형캐드에 의해 설계된 조립도의 부품도를 자동으로 전개하는 방법{The method of developing the parts drawings of assembly drawings designed by the metal mold CAD automatically}The method of developing the parts drawings of assembly drawings designed by the metal mold CAD automatically}

본 발명은 금형캐드에 의해 설계된 조립도의 부품도를 자동으로 전개하는 방법에 관한 것으로, 특히 금형캐드에 의해 프레스, 몰드(MOLD:주형), 다이캐스팅등을 설계하는데 있어서 레이어(Layer), Parts번호를 이용해 설계된 조립도의 부품도를 자동으로 전개하는 방법에 관한 것이다.The present invention relates to a method of automatically developing a part drawing of an assembly drawing designed by a mold CAD, and more particularly, in designing a press, a mold, a die casting, etc. by a mold CAD, a layer and a part number. The present invention relates to a method for automatically developing a part drawing of an assembly drawing designed using.

종래에는 금형캐드프로그램을 이용하거나 레이어, Parts번호를 이용하여 각종 설계도면의 조립도를 완성한후 이들 조립도를 구성하고 있는 각종의 부품에 대한 기능을 알고 가공작업을 하기 위해서 필요로 하는 재질, 형상, 치수등을 알고자 할때 이들 부품도를 전개한 도면을 일일히 손으로 설계하여야만 하였던 것이다.Conventionally, after completing the assembly drawing of various design drawings using mold CAD program or using layer and parts number, the material and shape needed to know the function of various parts constituting these assembly drawings and process them. When I wanted to know the dimensions, etc., I had to design the drawings of these parts by hand.

따라서 상기 부품도를 설계하는데 있어서 작업시간이 많이 걸리게 됨은 물론그 설계도면이 수작업에 의해 이루어지기 때문에 부품도에 대한 오차가 발생하여 정확한 형상의 몰드나, 프레스 및 다이케스팅이 이루어지지 못하게 되는 단점이 있었던 것이다. 또한 재료의 낭비로 인한 손실이 크게 발생될 우려로 인해 작업의 능률을 향상시킬 수 없었던 것이다.Therefore, it takes a lot of work time to design the parts drawings, as well as the design drawings are made by hand, there is a disadvantage that the error occurs to the parts drawings, molds, presses and die-casting of the correct shape can not be made will be. In addition, it was not possible to improve the efficiency of the work due to the fear that the loss caused by the waste of the material would be large.

본 발명은 상기와 같은 폐단을 해결하기 위해 창출한 것으로, 금형캐드에 의해 설계된 조립도의 각 부품도를 캐드상에서 자동으로 전개하고자 함을 목적으로 하는 것이다.The present invention was created in order to solve the above-described closed end, and an object of the present invention is to automatically develop each component drawing of the assembly drawing designed by the mold CAD on the CAD.

따라서 이들 전개된 각 부품도에 대하여는 부품의 번호, 부품의 명칭, 도형정보등이 자동으로 작성되도록 되어 있기때문에 각 부품을 가공하는데 있어서 정밀도를 유지할 수 있는 것이다.Therefore, the parts number, part name, figure information, and the like are automatically generated for each of the developed parts drawings, so that the precision in machining each part can be maintained.

도 1은 레이어, Parts번호에 의해 설계된 조립도에 대하여 부품을 전개하기 위해 나타내는 플로차트이다1 is a flowchart showing the development of parts with respect to the assembly drawing designed by the layer and the part number.

상기와 같은 목적을 달성하기 위한 본 발명의 구성을 첨부된 도면에 의거하여 설명하면 다음과 같다.Referring to the configuration of the present invention for achieving the above object based on the accompanying drawings as follows.

금형캐드의 레이어, Parts번호에 의해 설계된 조립도의 부품도를 전개하는 방법에 있어서,In the method of developing the parts drawing of the assembly drawing designed by the layer of the mold CAD and the part number,

상기 부품도에 대한 형구조마스터등록과 수정을 입력하는 단계와(S 1),Inputting a mold structure master registration and correction for the parts drawing (S 1);

상기 형구조마스터에 의해 작성된 부품번호를 설정하는 단계와(S 2),Setting a part number created by the mold structure master (S 2),

상기 설정된 부품데이터에 관계된 여러종류의 편집처리하는 단계와(S 3),Performing various types of editing processing related to the set part data (S 3);

상기 편집처리된 부품 및 도형에 대하여 전개할 위치를 조정하는 단계와(S4),Adjusting positions to be developed with respect to the edited parts and figures (S4);

상기 조립도에 표시되어 있는 부품속성을 이용하여 풍선(부품번호) 및 부품표를 작성하는 단계와(S 5),Creating a balloon (part number) and a parts table using the parts properties shown in the assembly drawing (S 5),

상기 부품을 전개하기 위한 용지 및 척도를 설정하는 단계와(S 6),Setting a sheet and a scale for developing the part (S 6);

상기 부품에 대한 표재란을 선택하여 부가여부를 확인하는 단계와(S 7),Selecting the surface sheet for the component to confirm the addition (S 7),

상기 각 부품별로 설계된 조립도를 각각의 부품속성을 가지고 부품전개 하는 단계와(S 8),(S 8), wherein the assembly drawing designed for each component is carried out with each component property;

상기 부품전개후 부품도를 수정하면 수정된 부품도가 자동 변경되고, 조립도를 수정하면 관련부품도가 자동으로 수정되는 부품연계수정단계(S 9)를 갖추어서 이루어진 것을 특징으로 하는 금형캐드에 의해 설계된 조립도의 부품도를 자동으로 전개하는 방법을 제공하는 것이다.After modifying the part drawings after the development of the parts, the modified part drawings are automatically changed, and when the assembly drawing is modified, the component CAD module comprising a part connection correction step (S 9) which is automatically modified. It is to provide a method for automatically unfolding the parts of the assembly drawing designed by.

상기와 같은 단계로 이루어진 본 발명에 의해 금형캐드에 의해 조립된 조립도를 자동으로 전개하는 과정을 설명하면 다음과 같다.Referring to the process of automatically deploying the assembly assembled by the mold CAD by the present invention made of the steps as described above are as follows.

본 발명은 금형캐드에 의해 레이어, Parts번호를 이용하여 각 부품도를 작성하여 조립도를 완성한다.The present invention completes the assembly drawing by creating each part drawing by using a layer and a part number by a mold CAD.

상기 완성된 조립도의 부품을 전개하기 위해서는 필요에 따라서 형구조마스터등록과 수정을 입력한다(S 1). 즉, 형구조마스터에 신규로 등록할 경우에는 신규로 등록할 형마스터구조의 명칭을 입력하여 그 부품의 명칭을 입력한다. 단 등록이 완료된 부품의 데이터에 수정을 할 경우에는 그 명칭부분을 지시하여 입력한다.In order to develop the parts of the completed assembly drawing, the mold structure master registration and correction are inputted as necessary (S 1). That is, in the case of newly registering to the mold structure master, the name of the mold master structure to be newly registered is input and the name of the part is input. However, when modifying the data of the registered parts, indicate the name and input it.

상기 지시에 의해 부품번호, 부품명칭, 부품종별, 재질, 판두께등을 입력하여 설정한다. 이때 설정될 형구조마스터를 복사하고자 할 경우 복사할 곳의 형구조마스터를 지시하면 복사가 가능하다.The part number, part name, part type, material, plate thickness, etc. are inputted and set by the said instruction. At this time, if you want to copy the mold master to be set, you can copy it by instructing the mold master.

또 명칭을 변경하고자 할 경우 명칭변경파일을 지지하여 명칭변경할 형구조마스터를 선택하여 신규명칭을 입력하면 된다. 반면 삭제할 경우에는 삭제할 형주조마스터를 선택하여 삭제하면 된다.If you want to change the name, support the name change file, select the type structure master to be renamed, and enter the new name. On the other hand, when deleting, select the mold casting master to be deleted and delete it.

상기와 같은 형구조마스터에 의해 작성된 부품번호를 설정하게 된다(S 2).The part number created by the mold structure master as described above is set (S 2).

이와같이 형마스터구조에 의해 설정된 부품데이터에 관계된 여러종류를 편집처리하여 이루어지게 된다(S 3).In this way, a plurality of types related to the part data set by the mold master structure are edited and processed (S 3).

즉, 부품의 속성변경, 도형의 소속부품변경, 부품원점변경, 부품속성삭제, 형구조 조작등을 작성하여 입력하면 편집처리가 이루어지게 되는 것이다.In other words, the editing process is performed by creating and inputting a property change of a part, a change of a part belonging to a figure, a change of an origin of a part, a deletion of a part property, a manipulation of a mold structure, and the like.

그리고 상기 편집처리된 부품 및 도형에 대하여 전개할 위치를 조정한다(S 4). 즉, 위치조정은 각 투영면의 거리와 사용자가 설정한 투영면 간격을 고려하여 조정하면 되는 것이다.Then, the position to be developed with respect to the edited parts and figures is adjusted (S 4). In other words, the position adjustment may be performed in consideration of the distance between each projection surface and the projection surface interval set by the user.

이와같이 위치조정이 끝나면 상기 조립도에 표시되어 있는 부품속성을 이용하여 풍선(부품번호) 및 부품표를 작성하면 된다(S 5).When the position adjustment is completed in this manner, a balloon (part number) and a parts table may be prepared using the parts properties shown in the assembly drawing (S 5).

즉, 부품번호를 기입하기 위해 이를 지시한 경우에는 풍선을 작성할 형상, 풍선의 표시위치, 풍선의 인출위치를 지시하여 작성하고, 또 라인업을 지시한 경우에는 높이를 설정할 풍선, 풍선의 표시높이를 작성하고, 또 확인을 지시한 경우에는 확인할 대상을 선택하여 작성하고, 또 설정을 지시한 경우에는 상단 행수 하단행수를 작성하면 된다.In other words, when instructing this to fill in the part number, it is created by instructing the shape to create the balloon, the display position of the balloon, and the withdrawal position of the balloon. When the instruction is to be created and the confirmation is instructed, the object to be checked is selected and created, and when the setting is instructed, the upper row and the lower row are created.

그리고 부품표를 작성하기 위해서 화면표시와 도면표시 및 마스터등록을 지시하여 부품표를 작성하면 된다.In order to create the parts list, the parts list can be created by instructing screen display, drawing display and master registration.

또 상기 부품을 전개하기 위한 용지 및 척도를 설정하면 되는 것이다(S 6). 이때 용지의 크기는 표준 사이즈로 자동설정이 가능하며 사용자가 각각의 용지크기를 설정하면 되는 것이다.What is necessary is just to set the paper and the scale for spreading the said components (S6). At this time, the paper size can be automatically set to the standard size, and the user needs to set the respective paper size.

상기 상기 용지의 설정이 이루어진 후에 부품전개시 필요로 하는 표재란을 선택하여 용지에 부가여부를 확인하여 표재란을 선택할 수 있다(S 7).After the setting of the paper is made, the cover sheet may be selected by selecting the cover sheet required for the development of the part (S 7).

이때 미리 작성해 놓은 데이터를 선택하여 부가여부를 확인한후 지정하면 되는 것이다.At this time, select the data created in advance and confirm the addition before specifying.

그리고 나서 상기 각 부품별로 설계된 조립도를 각각의 부품속성을 가지고 부품전개 하면 된다(S 8). 이때 부품전개와 동시에 표재란이 합성됨과 동시에 자동치수기입 이루어지면서 부품에 대한 전개가 이루어지게 되는 것이다.Then, the assembly drawing designed for each component may be carried out with each component property (S 8). At this time, the surface area is synthesized at the same time as the development of the parts, and the automatic dimension writing is performed, and the development of the parts is made.

상기와 같이 부품전개후에 부품도를 수정하게 되면 수정된 부품도에 의거하여 자동으로 조립도가 변경되고, 또 조립도를 수정하면 관련부품도가 자동으로 수정되도록 연개되도록 되어 있는 것이다(S 9).As described above, when the parts drawing is modified after the development of the parts, the assembly drawing is automatically changed based on the modified parts drawing, and when the assembly drawing is modified, the related parts drawing is automatically modified to be modified (S 9). .

상기와 같이 본 발명은 레이어, Parts번호에 의해 설계된 조립도의 부품도를 선택하게 되면 자동으로 부품도를 전개할 수 있음은 물론 필요에 따라서 사용자가 부품도에 대한 속성을 변경하고자 할때에도 각 부품에 대한 속성을 입력하여 수정하게 되면 부품도에 대한 수정이 조립도에도 수정이 연계하여 이루어질 수 있도록하고 이와는 반대로 조립도에 대하여 수정이 이루어지더라도 그에 관계되는 부품도에도 자동으로 수정이 이루어지도록 연계되어 있어 작업시간의 단축이 이루어 질 수 있다.As described above, in the present invention, when selecting a part drawing of an assembly drawing designed by a layer and a part number, the part drawing can be automatically developed as well as each part even when a user wants to change properties of the part drawing as needed. If the modification is made by entering the properties for the parts drawing, the modifications can be made in conjunction with the assembly drawing. On the contrary, even if the assembly drawing is modified, the related parts drawing is automatically modified. The work time can be shortened.

또한 각 부품도에 대하여 수정이 정확하게 이루어지게 되므로 가공시 오차의 발생이 없어 정확히 부품을 가공할 수 있는 것이다.In addition, since the correction is made precisely for each component diagram, there is no occurrence of errors in machining, so that the components can be precisely machined.

이와같이 본 발명은 금형캐드에 의한 레이어, Parts번호를 이용하여 주형등을 설계한 조립도의 각 부품을 선택하게 되면 자동으로 전개가 되는 것이다. 이때 부품의 치수, 재질, 전개위치등이 자동으로 표시되게 되므로 사용자는 이들 부품도를 보고 정확히 가공할 수 있게 되는 것이다.As described above, the present invention is automatically developed when each part of the assembly drawing for designing the mold and the like using the layer and the part number by the mold CAD is selected. At this time, the dimensions, materials, and deployment positions of the parts are automatically displayed, so that the user can accurately view these parts drawings.

Claims (1)

금형캐드의 레이어, Parts번호에 의해 설계된 조립도의 부품도를 전개하는 방법에 있어서,In the method of developing the parts drawing of the assembly drawing designed by the layer of the mold CAD and the part number, 상기 부품도에 대한 형구조마스터등록과 수정을 입력하는 단계와(S 1),Inputting a mold structure master registration and correction for the parts drawing (S 1); 상기 형구조마스터에 의해 작성된 부품번호를 설정하는 단계와(S 2),Setting a part number created by the mold structure master (S 2), 상기 설정된 부품데이터에 관계된 여러종류의 편집처리하는 단계와(S 3),Performing various types of editing processing related to the set part data (S 3); 상기 편집처리된 부품 및 도형에 대하여 전개할 위치를 조정하는 단계와(S 4),Adjusting positions to be developed with respect to the edited parts and figures (S 4), 상기 조립도에 표시되어 있는 부품속성을 이용하여 풍선(부품번호) 및 부품표를 작성하는 단계와(S 5),Creating a balloon (part number) and a parts table using the parts properties shown in the assembly drawing (S 5), 상기 부품을 전개하기 위한 용지 및 척도를 설정하는 단계와(S 6),Setting a sheet and a scale for developing the part (S 6); 상기 부품에 대한 표재란을 선택하여 부가여부를 확인하는 단계와(S 7),Selecting the surface sheet for the component to confirm the addition (S 7), 상기 각 부품별로 설계된 조립도를 각각의 부품속성을 가지고 부품전개 하는 단계와(S 8),(S 8), wherein the assembly drawing designed for each component is carried out with each component property; 상기 부품전개후 부품도를 수정하면 수정된 부품도가 자동 변경되고, 조립도를 수정하면 관련부품도가 자동으로 수정되는 부품연계수정단계(S 9)를 갖추어서 이루어진 것을 특징으로 하는 금형캐드에 의해 설계된 조립도의 부품도를 자동으로 전개하는 방법.After modifying the part drawings after the development of the parts, the modified part drawings are automatically changed, and when the assembly drawing is modified, the component CAD module comprising a part connection correction step (S 9) which is automatically modified. How to automatically develop a part drawing of the assembly drawing designed by.
KR10-2000-0035739A 2000-06-27 2000-06-27 The method of developing the parts drawings of assembly drawings designed by the metal mold CAD automatically KR100377662B1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
KR10-2000-0035739A KR100377662B1 (en) 2000-06-27 2000-06-27 The method of developing the parts drawings of assembly drawings designed by the metal mold CAD automatically

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
KR10-2000-0035739A KR100377662B1 (en) 2000-06-27 2000-06-27 The method of developing the parts drawings of assembly drawings designed by the metal mold CAD automatically

Publications (2)

Publication Number Publication Date
KR20020001274A true KR20020001274A (en) 2002-01-09
KR100377662B1 KR100377662B1 (en) 2003-03-29

Family

ID=19674256

Family Applications (1)

Application Number Title Priority Date Filing Date
KR10-2000-0035739A KR100377662B1 (en) 2000-06-27 2000-06-27 The method of developing the parts drawings of assembly drawings designed by the metal mold CAD automatically

Country Status (1)

Country Link
KR (1) KR100377662B1 (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR100664722B1 (en) * 2005-08-22 2007-01-04 정효상 Automatic design system for hemming dies
CN117150815A (en) * 2023-10-26 2023-12-01 玛斯特轻量化科技(天津)有限公司 Method and device for automatically assembling parts, storage medium and electronic equipment

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR100664722B1 (en) * 2005-08-22 2007-01-04 정효상 Automatic design system for hemming dies
CN117150815A (en) * 2023-10-26 2023-12-01 玛斯特轻量化科技(天津)有限公司 Method and device for automatically assembling parts, storage medium and electronic equipment
CN117150815B (en) * 2023-10-26 2024-03-08 玛斯特轻量化科技(天津)有限公司 Method and device for automatically assembling parts, storage medium and electronic equipment

Also Published As

Publication number Publication date
KR100377662B1 (en) 2003-03-29

Similar Documents

Publication Publication Date Title
US5933350A (en) Semiconductor device development information integrating system
US7716019B2 (en) Computer-aided progressive die design system and method
CN102470610A (en) Cad data processing device and cad data processing method
CN109894531B (en) Intelligent module integration method
CN100585584C (en) A kind of form quick-speed generation system and method based on moulding plate node
TW200300890A (en) Method and system for backing up the design of parts of mold
KR101604315B1 (en) The automatic method about CAM work of multi layer board
US6735489B1 (en) Horizontally structured manufacturing process modeling
US6985793B2 (en) Horizontally structured CAD/CAM coordinate system for manufacturing design
KR20020001274A (en) The method of developing the parts drawings of assembly drawings designed by the metal mold CAD automatically
CN114386200B (en) Engineering drawing generation method and equipment based on parameterized template technology
JP2005044016A (en) Circuit design support method and circuit design support system for product
JP2002351861A (en) Automatic typesetting system
JP2000126988A (en) Large number taking work hole programming method and device
US7415674B1 (en) Method and system for editing an electronic drawing
JPH10198557A (en) System for supporting screen design and medium for recording tool for supporting screen design
JP2682013B2 (en) CAD / CAM equipment
JP2006351724A (en) Device, method, and program for generating masking gerber data for solder print mask
JP3225106B2 (en) Printed circuit board component mounting information output method and component mounting information output device
JP2000163111A (en) Blanking graphic compiling method, cnc device with graphic compiling function and storage medium storing program of blaking graphic compiling method
JPH05333907A (en) Back-up system for design of sequence ladder circuit
Markkinen Global Mechanical Drawing Instructions
JPS63191276A (en) Production system for assembly diagram of press die system
JPH09269893A (en) Design support device for human interface screen
JPH07182018A (en) Graphic entry system for sheet metal parts

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
FPAY Annual fee payment

Payment date: 20130410

Year of fee payment: 11

FPAY Annual fee payment

Payment date: 20140310

Year of fee payment: 12

FPAY Annual fee payment

Payment date: 20150310

Year of fee payment: 13

FPAY Annual fee payment

Payment date: 20160321

Year of fee payment: 14

FPAY Annual fee payment

Payment date: 20170313

Year of fee payment: 15

FPAY Annual fee payment

Payment date: 20180313

Year of fee payment: 16

LAPS Lapse due to unpaid annual fee