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    • 41. 发明申请
    • Method For Attaching Toys To Each Other Using Retrofitted Accessory
    • 使用改装配件将玩具相互连接的方法
    • US20150321114A1
    • 2015-11-12
    • US14705408
    • 2015-05-06
    • Eric BroylesStephen MorrisMirella BroylesLaura H. Morris
    • Eric BroylesStephen MorrisMirella BroylesLaura H. Morris
    • A63H33/06
    • A63H33/086A63H33/06A63H33/14
    • A method is provided for attaching two objects, generally toys such as building blocks, to each other. The attachment is enabled by a first attachment means to a planar surface of a first object and a second attachment means to a planar surface of a second object. The first attachment means and second attachment means can be bonded to the corresponding object by an adhesive material such as glue, by traversing a corresponding insert into the object (resulting in an interference fit), and ultimately by any means applied by a manufacturer. The first attachment means serves as a male interface that can be engaged with a female interface of the second attachment means. By engaging the first male interface with the female interface, two objects can be attached to each other. An object can be provided with both a male interface and female interface in order to attach multiple objects.
    • 提供了一种用于将两个物体(通常是玩具如建筑物块)相互连接的方法。 附件通过第一附接装置到第一物体的平面表面和第二附接装置到第二物体的平面表面。 第一附接装置和第二附接装置可以通过诸如胶水之类的粘合剂材料,通过将相应的插入物穿过物体(导致过盈配合),并且最终通过制造商施加的任何方式,将其粘合到相应的物体上。 第一附接装置用作可与第二附接装置的母接口接合的阳接口。 通过将第一公接口与母接口接合,可以将两个对象彼此附接。 一个对象可以同时提供一个公接口和母接口,以便附加多个对象。
    • 42. 发明授权
    • Apparatus and method for compensating for sample misalignment
    • 用于补偿样品未对准的装置和方法
    • US09041939B2
    • 2015-05-26
    • US13699888
    • 2011-05-26
    • Stephen Morris
    • Stephen Morris
    • G01B11/24G01N21/21
    • G01N21/21
    • A method of compensating for sample misalignment in an optical measurement apparatus (40), comprises the steps of: determining an expected response from a detector (58) in said optical measurement apparatus given a particular set of parameters defining a path that light can take through the optical measurement apparatus from a source (42), via a sample (50), to the detector (58); measuring a response from the detector for the sample under test; and refining the set of parameters until the expected response and the measured response converge so as to determine the set of parameters giving rise to the measured response.
    • 一种在光学测量装置(40)中补偿样品未对准的方法包括以下步骤:在给定给定光束可以穿过的路径的特定参数集合的情况下,确定来自所述光学测量装置中的检测器(58)的预期响应 来自源(42)的光学测量装置经由样品(50)到检测器(58); 测量被检样品的检测器的响应; 并且改善参数集,直到预期响应和测量响应收敛,以便确定产生测量响应的参数集合。
    • 44. 发明申请
    • APPARATUS AND METHOD FOR COMPENSATING FOR SAMPLE MISALIGNMENT
    • 用于补充样品误差的装置和方法
    • US20130070245A1
    • 2013-03-21
    • US13699888
    • 2011-05-26
    • Stephen Morris
    • Stephen Morris
    • G01N21/21
    • G01N21/21
    • A method of compensating for sample misalignment in an optical measurement apparatus (40), comprises the steps of: determining an expected response from a detector (58) in said optical measurement apparatus given a particular set of parameters defining a path that light can take through the optical measurement apparatus from a source (42), via a sample (50), to the detector (58); measuring a response from the detector for the sample under test; and refining the set of parameters until the expected response and the measured response converge so as to determine the set of parameters giving rise to the measured response.
    • 一种在光学测量装置(40)中补偿样品未对准的方法包括以下步骤:在给定给定光束可以穿过的路径的特定参数集合的情况下,确定来自所述光学测量装置中的检测器(58)的预期响应 来自源(42)的光学测量装置经由样品(50)到检测器(58); 测量被检样品的检测器的响应; 并且改善参数集,直到预期响应和测量响应收敛,以便确定产生测量响应的参数集合。
    • 45. 发明申请
    • APPARATUS AND METHOD FOR LOCATING THE CENTRE OF A BEAM PROFILE
    • 用于定位光束轮廓中心的装置和方法
    • US20130063719A1
    • 2013-03-14
    • US13699886
    • 2011-05-26
    • Stephen Morris
    • Stephen Morris
    • G01J1/02G01N21/21
    • G01N21/211G01J1/4257
    • A method for locating the centre of a beam profile, comprises the steps of: providing a beam profile; selecting one or more strips through the beam profile; identifying distinct regions of intensity along the one or more strips and labelling them consistently; calculating a combined average intensity for each labelled region, using data from the one or more strips; plotting the average intensity against the labelled regions and comparing the results with a plot of the actual intensity obtained by taking a cross-section through the centre of at least one of the one or more strips; and optimising the location of the centre of at least one of the one or more strips so as to obtain the best fit between the average intensity plot and the actual intensity plot to thereby identify the centre of the beam profile.
    • 一种用于定位梁型材中心的方法,包括以下步骤:提供梁型材; 通过光束轮廓选择一个或多个条带; 识别沿着一个或多个条带的不同强度区域并一致地标记它们; 使用来自所述一个或多个条带的数据计算每个标记区域的组合平均强度; 绘制与标记区域的平均强度,并将结果与​​通过将横截面穿过一个或多个条带中的至少一个的中心而获得的实际强度的图进行比较; 并且优化所述一个或多个条带中的至少一个条带的中心的位置,以便获得平均强度图和实际强度图之间的最佳拟合,从而识别光束轮廓的中心。
    • 46. 发明授权
    • Blind rivet
    • 盲铆钉
    • US08328483B2
    • 2012-12-11
    • US10430742
    • 2003-05-06
    • Steven V. JonesStephen MorrisJames Hughes
    • Steven V. JonesStephen MorrisJames Hughes
    • F16B13/04
    • F16B19/1054Y10T29/4992Y10T29/49943Y10T29/49956
    • There is provided a blind rivet (10) comprising an axially extending hollow tubular body (18) having a tail end face (22) at one end and a pre-formed radially enlarged flange (20) at the other end, together with a mandrel (30) having a stem (32) which extends co-axially though the body (18) and having enlarged head adjacent the tail end (22) of the body, the stem having a weakened region immediately adjacent the head, whereby the mandrel head having an outer diameter greater than an outer diameter of the body, usually by between 4% and 9%, and which has a uniform conical shoulder (38) extending between the outer diameter of the head and the stem (32), so as to exert a setting force having an axial component for compressing the rivet body axially and an angular component effecting conical deformation of the tail end radially.
    • 提供了一种盲铆钉(10),其包括轴向延伸的中空管状体(18),所述中空管状体(18)在一端具有尾端面(22),在另一端具有预成形的径向扩大的凸缘(20),以及心轴 (30)具有杆(32),所述杆(32)通过所述主体(18)同轴地延伸并且具有与所述主体的尾端(22)相邻的扩大的头部,所述杆具有紧邻所述头部的弱化区域,由此所述心轴头 具有大于所述主体的外径的外径,通常在4%和9%之间,并且具有在所述头部的外径和所述杆(32)之间延伸的均匀的锥形肩部(38),从而 施加具有用于轴向压缩铆钉体的轴向分量的设定力,并且角部分径向地影响尾端的锥形变形。
    • 47. 发明授权
    • Collapsible bone screw apparatus
    • 可折叠骨螺钉装置
    • US08308783B2
    • 2012-11-13
    • US12538629
    • 2009-08-10
    • Stephen MorrisTom WeiselRoger Pisarnwongs
    • Stephen MorrisTom WeiselRoger Pisarnwongs
    • A61B17/04A61B17/84A61F2/08
    • A61B17/702A61B17/72A61B17/742A61B17/864A61B17/8685
    • A collapsible bone screw for healing bone fragments across a bone fracture includes an externally threaded inner screw member and an externally threaded outer screw member. The inner screw member is initially screwed into an inner bone portion. An unthreaded portion of the outer screw member is movably joined to the inner screw member. The outer screw member is screwed until it gains purchase in an outer bone portion. As impaction occurs over time, the collapsible bone screw apparatus may shorten in length as the two screw members slide, telescope or otherwise axially move toward each other to shorten the overall length, thereby preventing any portion of the screw apparatus from protruding out of the bone. A bone screw kit of multiple inner and outer screw members are provided as well as a method of surgically fastening bone fragments.
    • 用于愈合骨折骨折的可折叠骨螺钉包括外螺纹内螺纹构件和外螺纹外螺纹构件。 内螺纹构件最初拧入内骨部分。 外螺纹构件的无螺纹部分可移动地连接到内螺纹构件。 外螺纹部件被拧紧直到其在外骨部分中获得购买。 随着随时间的冲击,随着两个螺钉构件滑动,伸缩或以其它方式轴向移动以缩短整个长度,可折叠骨螺钉装置的长度可缩短,从而防止螺钉装置的任何部分从骨中突出 。 提供了多个内螺纹和外螺纹构件的骨螺钉套件以及手术紧固骨碎片的方法。