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申请号:201910973300.0 公开号:CN110937096A 主分类号:B63H21/32
摘要:【中文】本发明公开了一种船舶烟囱脱硫改装工艺,其操作步骤包括有旧烟囱的拆除、新烟囱总段的预制、脱硫塔的吊装以及新烟囱的组装,将旧烟囱划分成旧烟囱保留段以及旧烟囱拆除段,对旧烟囱拆除段进行拆除;将新烟囱总段划分成若干个分段进行预制,每个分段由若干个片体合拢组成,所述脱硫塔吊装进其中一个或若干个分段内,组成脱硫烟囱总段,最后将脱硫烟囱总段以及剩余分段吊装上船与旧烟囱保留段对接组装成新烟囱。本发明所提供的船舶烟囱脱硫改装工艺,其工艺流程合理,可操作性强,效率高,改装成本低且改装后运营成本低。 【EN】The invention discloses a ship chimney desulfurization modification process, which comprises the operation steps of dismantling an old chimney, prefabricating a new chimney total section, hoisting a desulfurizing tower and assembling the new chimney, dividing the old chimney into an old chimney retaining section and an old chimney dismantling section, and dismantling the old chimney dismantling section; divide into a plurality of segmentation with new chimney total section and prefabricate, every segmentation is foldd by a plurality of lamellar body and is constituteed, the desulfurization tower crane is packed into in one of them or a plurality of segmentation, constitutes desulfurization chimney total section, and at last with desulfurization chimney total section and remaining segmentation hoist and mount on board and remain the section butt joint with old chimney and assemble into new chimney. The ship chimney desulfurization modification process provided by the invention has the advantages of reasonable process flow, strong operability, high efficiency, low modification cost and low operation cost after modification.
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申请号:201911001721.3 公开号:CN110979595A 主分类号:B63B81/00
摘要:【中文】本发明提供一种海损船修复方法包括:确定船体海损区域,获取通过所述船体海损区域的若干肋位以及围绕所述船体海损区域的焊缝线;在每一所述肋位的船体外表面选取若干第一测量点,并且沿所述焊缝线选取若干第二测量点;建立以船体头尾方向、船体宽度方向和船体高度方向为坐标轴的三维坐标系,获取所述第一测量点和所述第二测量点的坐标;通过所述第一测量点的坐标作出第一型线并通过所述第二测量点的坐标的连线作出第二型线,通过若干所述第一型线和所述第二型线作出海损修复型线图并制作修复海损区域的船体替换部分以对船体进行修复。本发明的修复方法能在无需对船体进行拆解的情况下从外部测量船体外部型线,即能保证新旧合拢口光顺又方便测量。 【EN】The invention provides a method for repairing a damaged ship, which comprises the following steps: determining a ship body sea damage area, and acquiring a plurality of rib positions passing through the ship body sea damage area and welding lines surrounding the ship body sea damage area; selecting a plurality of first measuring points on the outer surface of the ship body at each rib position, and selecting a plurality of second measuring points along the welding lines; establishing a three-dimensional coordinate system with the head-tail direction, the width direction and the height direction of the ship body as coordinate axes, and acquiring coordinates of the first measuring point and the second measuring point; through first molded lines is made to the coordinate of first measuring point and is passed through the line of the coordinate of second measuring point makes the second molded lines, through a plurality of first molded lines with the second molded lines are made the sea loss and are restoreed the type chart and are made the hull replacement part of restoreing the sea loss region and restore the hull. The repairing method can measure the external molded line of the hull from the outside without disassembling the hull, and can ensure the smoothness of the new and old closure openings and facilitate measurement.
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申请号:202510552194.4 公开号:CN120294890A 主分类号:G02B5/20
申请人:合肥鑫晟光电科技有限公司;京东方科技集团股份有限公司 申请日:2025.04.28 公开日:2025.07.11
摘要:本公开的实施例提供了一种彩色滤光片的制备方法、曝光装置、电子设备、非瞬态计算机可读存储介质及计算机程序产品,涉及显示技术领域,用于减小颜色光阻尺寸与预设尺寸之间的差异。所述制备方法包括:以第一预设曝光量在衬底的第一区域制备第一颜色光阻;第一预设曝光量根据第一颜色光阻在第一预设方向上的预设尺寸而定,第一预设方向为平行于衬底的任一方向。获取第一区域的第一颜色光阻在第一预设方向上的第一实际尺寸。根据第一实际尺寸、预设尺寸和第一预设曝光量,确定第一修正曝光量。以第一修正曝光量在衬底的第二区域制备第一颜色光阻。上述制备方法用于制备显示面板的彩色滤光片。
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申请号:202510058026.X 公开号:CN119878948A 主分类号:F16L27/04
申请人:上海凯泉泵业(集团)有限公司 申请日:2025.01.14 公开日:2025.04.25
摘要:本发明涉及一种适用于高温装置内的管路连接结构,包括:罐体、桥接管、筒体,桥接管为罐体和筒体之间的连接件,桥接管的两端均位于罐体和筒体内;筒体的球面安装入口处与桥接管的球面安装进口处之间为过盈配合,筒体和桥接管之间为球面接触,两球面为间隙配合,两球面能实现各向转动;桥接管与罐体之间为球面与直孔间隙配合的结构形式;其中,桥接管上设置球面、罐体上设置直孔。本发明筒体与桥接管之间为球面接触,为间隙配合,球面可以实现各向转动;桥接管与罐体之间为球面与直孔间隙配合,可实现径向和轴向的移动。当筒体和罐体之间热膨胀时,桥接管可以适应该变化,避免筒体和罐体在高温下产生额外的应力及变形。
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申请号:202311422714.7 公开号:CN117605497A 主分类号:E21D11/10
申请人:中建五局土木工程有限公司;中国建筑第五工程局有限公司 申请日:2023.10.30 公开日:2024.02.27
摘要:本发明提供了一种基于超声波和深度学习的盾构隧道同步注浆的效果检测及施工方法,包括如下步骤:S1、管片拼装完成后,安装超声波检测装置;S2、根据地层条件确定的注浆参数对盾构隧道进行同步注浆施工;S3、同步注浆结束后,通过超声波检测装置检测获得不同探测深度下的注浆体超声波信号;S4、将步骤S3获得的不同探测深度下的注浆体超声波信号输入训练好的隧道同步注浆层空洞预测模型,预测获得盾构隧道同步注浆层的空洞数据;S5、利用步骤S4获得的空洞数据,及时调整步骤S2中同步注浆各注浆管的注浆参数。本发明解决了盾构隧道同步注浆效果检测存在人工解译技术效率低、主观性强,以及盾构隧道同步注浆施工时质量难以控制的问题。
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申请号:201610694701.9 公开号:CN106112248A 主分类号:B23K11/36(2006.01)I
申请人:重庆市全盛汽车部件有限公司 申请日:2016.08.19 公开日:2016.11.16
摘要:本发明属于一种焊接设备,具体涉及一种点焊连续作业生产装置,包括机架、工作台、控制器、机柜、点焊机和点焊工装,点焊工装包括初步定位装置、位置探测装置、复位装置和紧固限位装置,初步定位装置包括电磁铁A、电磁铁B和滑槽,滑槽设于点焊工装用于支撑焊接件的支撑台上,滑槽沿支撑台的轴线方向设置,电磁铁A和电磁铁B均与滑槽滑动配合,电磁铁A上还设有将电磁铁A的吸附信息传输给控制器的反馈触点,电磁铁B与控制器连接接收启动信号;位置探测装置包括用于探测焊接件位置并将位置信息传输给控制器的红外线探头;采用本发明技术方案的点焊
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申请号:202510924652.2 公开号:CN120713054A 主分类号:A01G31/02
摘要:本发明涉及蔬菜种植技术领域,且公开了一种大棚有机蔬菜种植装置及其使用方法,包括支撑架,还包括:主体部,所述主体部安装在支撑架上;过滤部,所述过滤部设置在支撑架上;混合部,所述混合部设置在支撑架上;注药部,所述注药部安装在支撑架上;所述过滤部包括除渣组件,所述除渣组件安装在支撑架上;以及安装组件,所述安装组件设置在支撑架上;所述除渣组件包括设置在支撑架前侧的输入管,所述输入管上连通设置有分离桶,所述分离桶的底部连通设置有输出管。本发明通过设置过滤部,解决了多数采用固定滤网结构,堵塞后需停机拆卸整个过滤模块,操作繁琐且耗时,严重影响水培系统的连续性,导致营养液循环中断问题。
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申请号:202510924650.3 公开号:CN120753251A 主分类号:A01M29/16
摘要:本发明涉及驱虫装置技术领域,且公开了一种蔬菜大棚驱赶蔬菜虫装置及其使用方法,包括空心杆和设置在空心杆上方的防护罩,所述空心杆的上方设置有声波驱虫器,还包括:安装部,所述安装部安装在空心杆上;以及升降部,所述升降部设置在空心杆上;所述安装部包括动力组件,所述动力组件安装在空心杆上;以及限位组件,所述限位组件设置在动力组件上;所述动力组件包括固定连接在空心杆外壁的接触板,所述接触板的底部固定连接有限位盒。本发明通过设置安装部,解决了现有的驱虫装置在使用时,难以在不同工况下提供持续可靠的固定效果,易出现固定不牢、松动位移,不便于满足现代农业对设备安装稳定性的要求。
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申请号:202010164367.2 公开号:CN111238775A 主分类号:G01M11/00
摘要:【中文】本发明涉及一种光子晶体光纤的散射功率三维分布测量装置包括:光源、待测光纤、透光圆筒、旋转台、光电探测器以及与光电探测器电连接的锁相放大器;光源的调制频率与锁相放大器的调制频率相同;待测光纤一端固定在第一旋转轴承上,待测光纤的另一端穿过透光圆筒固定在第二旋转轴承上,以使第一旋转轴承和第二旋转轴承工作时待测光纤绕自身轴线旋转;透光圆筒内装有匹配液,且位于透光圆筒内部的待测光纤为剥掉涂覆层的光纤;光电探测器安装在旋转台上,以使光电探测器绕着透光圆筒内部的待测光纤的中心旋转。本发明能够得到各方位角下散射信号角分布,实现测量的三维化。 【EN】The invention relates to a three-dimensional distribution measuring device for scattering power of a photonic crystal fiber, which comprises: the device comprises a light source, an optical fiber to be detected, a light-transmitting cylinder, a rotary table, a photoelectric detector and a phase-locked amplifier electrically connected with the photoelectric detector; the modulation frequency of the light source is the same as that of the phase-locked amplifier; one end of the optical fiber to be detected is fixed on the first rotating bearing, and the other end of the optical fiber to be detected penetrates through the light-transmitting cylinder and is fixed on the second rotating bearing, so that the optical fiber to be detected rotates around the axis of the optical fiber to be detected when the first rotating bearing and the second rotating bearing work; matching fluid is filled in the light-transmitting cylinder, and the optical fiber to be detected positioned in the light-transmitting cylinder is the optical fiber with the coating layer stripped; the photoelectric detector is arranged on the rotating table so as to rotate around the center of the optical fiber to be detected in the light-transmitting cylinder. The invention can obtain the angle distribution of the scattering signals under each azimuth angle and realize the three-dimension measurement.
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申请号:201911421275.1 公开号:CN110950941A 主分类号:C07K14/405
摘要:【中文】本发明涉及ssl2084基因在合成中长链脂肪酸中的应用。一种在集胞藻中促进合成中长链脂肪酸的蛋白ssl2084,氨基酸序列如SEQ ID NO.2所示。本发明还涉及ssl2084基因在合成集胞藻中长链饱和脂肪酸中的应用。本发明首次公开了集胞藻PCC 6803的ssl2084基因在低温下对合成中长链饱和脂肪酸合成的重要作用,通过在集胞藻PCC 6803中利用过表达方法增加ssl2084基因的表达,突变株中C12:0、C16:0和18:0的含量显著增加,同时经低温处理后,突变株中C12:0,C16:0,C18:0的含量进一步增加;这改变了本领域通常认为低温容易合成不饱和脂肪酸的认识。 【EN】The invention relates to application of a ssl2084 gene in synthesis of medium-long chain fatty acids. A protein ssl2084 for promoting the synthesis of medium-long chain fatty acid in synechocystis has an amino acid sequence shown in SEQ ID NO. 2. The invention also relates to application of the ssl2084 gene in synthesis of long-chain saturated fatty acids in synechocystis. The invention discloses the important function of ssl2084 gene of synechocystis PCC6803 on the synthesis of medium-long chain saturated fatty acid at low temperature for the first time, the expression of the ssl2084 gene is increased by using an overexpression method in the synechocystis PCC6803, the contents of C12:0, C16:0 and C3518: 0 in the mutant strain are obviously increased, and the contents of C12:0, C16:0 and C18:0 in the mutant strain are further increased after low-temperature treatment; this changes the recognition in the art that unsaturated fatty acids are generally considered to be readily synthesized at low temperatures.
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