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    • 1. 发明公开
    • 데이터 송신 장치 및 데이터 송신 방법
    • 数据发送装置和数据发送方法
    • KR1020170137461A
    • 2017-12-13
    • KR1020160069632
    • 2016-06-03
    • 삼성중공업 주식회사
    • 이근영양진혁원석희허희영
    • H04L12/805H04L12/26
    • 데이터송신방법은, 데이터패킷이송신될통신채널이유휴상태(idle state)인지를확인하는단계상기통신채널이유휴상태가아닌경우, 딜레이횟수를증가시키고제1 기간동안대기하는단계상기제1 기간이경과된후에상기통신채널이유휴상태인지를재확인하는단계상기통신채널이유휴상태인경우, 상기데이터패킷을상기통신채널을통해송신하는단계및 상기데이터패킷에대한확인패킷이수신되지않은경우, 상기딜레이횟수에기초하여상기데이터패킷의사이즈를감소시켜재송신하는단계를포함한다.
    • 一种发送数据的方法,包括以下步骤:确认数据分组要发送到的通信信道是否空闲;如果通信信道不空闲,则增加延迟的数量并等待第一周期; 如果通信信道空闲,则重新确认通信信道是否空闲,如果通信信道空闲,则通过通信信道发送数据分组,并且如果没有收到数据分组的确认分组, 并根据延迟的数量减少数据包的大小并重新传输数据包。
    • 3. 发明公开
    • 캐니스터의 가이드 장치
    • 用于指导CANISTER的装置
    • KR1020140119359A
    • 2014-10-10
    • KR1020130034367
    • 2013-03-29
    • 삼성중공업 주식회사
    • 양인호박영덕윤봉래백정훈허희영이덕훈
    • B63H5/125B63H20/08B63H20/18B63B35/44
    • B63H25/42B63H2025/425B63H5/125B63B35/44
    • The provided is a guide apparatus for a canister for guiding a rack supporter of the canister when an operation mode and a maintenance mode are switched from each other. The guide apparatus comprises: an under-guide unit which is installed in the lower part of a ship block facing the rack supporter and guides the rack supporter downwards against the ship block in the operation mode; an upper guide unit which is installed in the upper part of the ship block facing the rack supporter and guides the rack supporter upwards against the ship block in the maintenance mode; and a jacking unit which is provided between the under guide units to face the rack supporter and moves the rack supporter upwards or downwards according to the mode type.
    • 提供了一种当操作模式和维护模式彼此切换时用于引导罐的支架的罐的引导装置。 引导装置包括:引导单元,其安装在面向机架支撑件的船体的下部,并且在操作模式下将机架支撑件向下引导抵靠船体; 上引导单元,其安装在面向机架支撑件的船体块的上部中,并且在维修模式下向上引导机架支撑件向上抵靠船体; 以及提升单元,其设置在下引导单元之间以面向机架支撑件,并且根据模式类型向上或向下移动支架支撑件。
    • 4. 发明公开
    • 박판의 용접구조와 이를 포함하는 선박 및 이를 이용한 박판 용접방법
    • 薄钢板的增强焊接结构,具有该钢板的焊接结构及其焊接方法
    • KR1020130096490A
    • 2013-08-30
    • KR1020120017987
    • 2012-02-22
    • 삼성중공업 주식회사
    • 허희영김호정
    • B23K31/02B23K9/035B63B9/06
    • PURPOSE: A welding structure of a thin film, a vessel having the same, and a thin film welding method using the same are provided to reduce time required for welding and the deformation due to welding heat, thereby improving the productivity. CONSTITUTION: A welding structure of a thin film includes a first plate-shaped member (10), a second plate-shaped member (20), and a reinforcing member (30). The second plate shaped member is arranged so that edge portions of the first and second plate-shaped members are faced each other. The reinforcing member is arranged on one side of the edge portions of the first and second plate-shaped member respectively and has flange units in which the edge portions of the first and second plate-shaped members are welded and joined respectively. Penetration units of a predetermined angle are formed on both end portions of the flange unit which is in contact with the first and second plate-shaped members.
    • 目的:提供一种薄膜的焊接结构,具有该焊接结构的容器和使用该焊接结构的薄膜焊接方法,以减少焊接所需的时间和焊接热引起的变形,从而提高生产率。 构成:薄膜的焊接结构包括第一板状构件(10),第二板状构件(20)和加强构件(30)。 第二板状构件被布置成使得第一和第二板状构件的边缘部分彼此面对。 加强构件分别设置在第一和第二板状构件的边缘部分的一侧上,并且具有法兰单元,其中第一和第二板状构件的边缘部分分别被焊接和接合。 在与第一和第二板状构件接触的凸缘单元的两端部形成预定角度的穿透单元。
    • 6. 发明公开
    • 치수품질 분석 시스템의 치수품질 가시화 방법 및 그에 따른 프로그램이 기록된 기록매체
    • 尺寸质量分析系统的尺寸精度可视化方法和具有程序的记录介质
    • KR1020130052363A
    • 2013-05-22
    • KR1020110117767
    • 2011-11-11
    • 삼성중공업 주식회사
    • 허희영
    • G06F19/00G06F3/14
    • G06F17/5018B63B9/003
    • PURPOSE: A dimension quality visibility method of a dimension quality analysis system and a recording medium with a program are provided to visualize and express a dimension quality error based on a finite element method, thereby easily performing a dimension quality analysis task. CONSTITUTION: A shape model for an object structure is provided, and a finite element network for analyzing the forced displacement is generated in the shape model(S300). The forced displacement of the amount of errors between a formal designed value and a measurement value is assigned to the finite element network(S400). The forced displacement is analyzed and displayed(S500). [Reference numerals] (AA) Start; (BB) End; (S100) Provide a shape model; (S200) Provide a formal designed value and a measured value; (S300) Generate a finite element network in the shape model for analyzing forced displacement; (S400) Apply forced displacement of the amount of errors to the joint of the finite element network corresponding to a formal designed value; (S500) Visually display by analyzing the forced displacement
    • 目的:提供尺寸质量分析系统的维度质量可见度方法和具有程序的记录介质,以基于有限元方法来显示和表达尺寸质量误差,从而轻松执行尺寸质量分析任务。 构成:提供了一种对象结构的形状模型,并在形状模型中生成用于分析强迫位移的有限元网络(S300)。 正规设计值和测量值之间的误差量的强制位移被分配给有限元网络(S400)。 分析并显示强制位移(S500)。 (附图标记)(AA)开始; (BB)结束; (S100)提供形状模型; (S200)提供正式设计值和测量值; (S300)在分析强迫排水的形状模型中生成有限元网络; (S400)对正态设计值对应的有限元网络接头施加强制位移误差量; (S500)通过分析强迫位移来目视显示
    • 9. 发明授权
    • 선박 생산의 정도 품질 비용화 관리방법
    • 船舶建筑尺寸精度质量成本管理方法
    • KR100809536B1
    • 2008-03-04
    • KR1020060101390
    • 2006-10-18
    • 삼성중공업 주식회사
    • 허희영조시훈
    • G06Q50/04G06Q10/06
    • Y02P90/30G06Q50/04G06Q10/06395
    • A method for managing a cost of precision quality in ship construction is provided to extract an index to calculate a cost for modification of each stage by using a monitoring analysis result of bad precision quality and calculate a post-process cost based on bad quality by estimating or calculating unnecessary production output caused by the bad quality. A cutting process, a panel bonding process, a marking process, and a longe welding process are monitored in real-time(S301). Additional manufacturing costs corresponding to each process are calculated from details monitored from each process(S302). Precision quality cost indexes are calculated and quantified from the additional manufacturing costs(S303). The quantified precision quality cost indexes are integrated and managed in a centralized way(S304). Width and length dimension defect, and linearity defect of a single panel are monitored in the cutting process. Process and human error is monitored in the panel bonding process. Longe interval defect is monitored in the marking process. The longe interval defect, longe linearity defect, longe perpendicularity defect, and face-except deformation error are monitored in the longe welding process.
    • 提供船舶建造精度质量管理成本管理方法,通过使用质量差的监测分析结果提取指标,计算各阶段修改成本,并通过估算,计算出质量差的后处理成本 或计算由质量不良引起的不必要的生产输出。 实时监控切割过程,面板粘合工艺,打标过程和长期焊接过程(S301)。 从每个处理监视的细节计算与每个处理相对应的附加制造成本(S302)。 精密质量成本指标由附加制造成本计算和量化(S303)。 量化精度质量成本指标以集中方式集成管理(S304)。 在切割过程中监控单个面板的宽度和长度尺寸缺陷以及线性缺陷。 在面板粘合过程中监控过程和人为错误。 在标记过程中监测长时间间隔缺陷。 在长期焊接过程中监测长期间隔缺陷,长寿线性缺陷,长期垂直性缺陷和面外变形误差。
    • 10. 发明授权
    • 판넬 라인의 실시간 용접 변형 해석 시스템 및 방법
    • 方法和系统焊接变形分析面板线
    • KR100809531B1
    • 2008-03-04
    • KR1020060097871
    • 2006-10-09
    • 삼성중공업 주식회사
    • 박중구조시훈허희영
    • G06Q50/04G06F17/50G06F9/455
    • Y02P90/30G06Q50/04G06F9/455G06F17/5086
    • A method and a system for analyzing welding deformation of panel lines in real-time are provided to quantify a precision error caused by the welding deformation regardless of data accumulation or applicability to a part difficult to be measured, evaluate the deformation of other faces except a formed face quantitatively, and measure effect after a process. A longe welding measuring/storing device(100) measures and stores current, voltage, and speed by each torch. A face-except deformation measuring/storing device(110) measures and stores deformation of other faces except the face of each torch. An equivalent load database(120) calculates and stores equivalent load for an FEM(Finite Element Method) by combining results stored in the measuring/storing devices. An FEN(Finite Element Network) generator(140) generates an FEN by using shape information, and welding order, and panel/longe information. An FEM input file generator(150) generates an input file for the FEM by analyzing the FEN. An FEM result calculator(160) performs the FEM and extracts face-except deformation data by analyzing the input file.
    • 提供用于实时分析面板线的焊接变形的方法和系统,以量化由焊接变形引起的精度误差,而不管数据累积或适用于难以测量的部件,评估其它面的变形,除了 形成面部定量,并测量过程后的效果。 长寿焊接测量/存储装置(100)通过每个手电筒测量和存储电流,电压和速度。 除了变形测量/存储装置(110)之外的面部除了每个割炬的表面之外还测量并存储其它面的变形。 等效负载数据库(120)通过组合存储在测量/存储装置中的结果来计算和存储FEM(有限元方法)的等效负载。 FEN(有限元网络)发生器(140)通过使用形状信息,焊接顺序和面板/长寿信息产生FEN。 FEM输入文件生成器(150)通过分析FEN生成FEM的输入文件。 FEM结果计算器(160)通过分析输入文件来执行FEM并提取面部除外的变形数据。