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    • 4. 发明授权
    • Method of and a system for measuring a stress or a stress distribution, using a stress luminescent material
    • 使用应力发光材料测量应力或应力分布的方法和系统
    • US06628375B2
    • 2003-09-30
    • US09749948
    • 2000-12-29
    • Chao-Nan XuMorito AkiyamaKazuhiro NonakaTadahiko Watanabe
    • Chao-Nan XuMorito AkiyamaKazuhiro NonakaTadahiko Watanabe
    • G01B1116
    • G01L1/24
    • This invention is to provide a method and a system which, by making use of a stress luminescent material, renders it possible to directly observe a stress distribution on the base of a real time without electrical contacts, and to easily measure a stress or a stress distribution and a stress image. Essentially, the invention comprises the steps of adding a stress to a tested body containing a stress luminescent material whose light emission is proportional to the stress, making visually observable a stress distribution over the tested body in accordance with a luminous intensity of the stress luminescent material contained in the tested body, measuring the luminous intensity of the luminescent material of the tested body, comparing the measured value of the luminous intensity with certain correlation data indicating a relationship between the luminous intensity of the stress luminescent material and a stress, thereby obtaining a stress value or a stress distribution over the tested body.
    • 本发明提供一种通过利用应力发光材料使得可以在没有电接触的情况下直接观察基底上的应力分布并且容易地测量应力或应力的方法和系统 分布和压力图像。 实质上,本发明包括以下步骤:将包含发光与应力成比例的应力发光材料的被测体施加应力,使视觉上观察到根据应力发光材料的发光强度在被测体上的应力分布 测量被测体的发光材料的发光强度,将发光强度的测定值与表示应力发光材料的发光强度与应力之间的关系的一定的相关数据进行比较,从而得到 应力值或应力分布在被测体上。
    • 7. 发明申请
    • METHOD AND MEMBER FOR MEASURING STRESS DISTRIBUTION OF NATURAL BONE, SYNTHETIC BONE, OR MEMBER ATTACHED TO THEM
    • 用于测量自然骨,合成骨或与其结合的成员的应力分布的方法和成员
    • US20090012431A1
    • 2009-01-08
    • US11814450
    • 2006-01-11
    • Koji HyodoChao-Nan Xu
    • Koji HyodoChao-Nan Xu
    • A61B5/103A61B19/00A61H33/00
    • A61F2/4657A61B5/4504A61B5/4528A61F2/36A61F2/3662A61F2002/3631A61F2002/4632A61F2002/4666G01L1/241G09B23/30G09B23/32
    • When visualizing the stress distribution of natural bone, synthetic bone, or a member attached to either thereof without omitted points, in order to measure accurately in a variety of modes using an inexpensive system, a mechanoluminescence material thin film 6 is formed in advance on a bone material peripheral surface 5 in an appropriate area thereof including the portion where an insertion support portion 4 of an artificial hip prosthesis 2 is inserted into a hollow inside 3 of a damaged femur 1 or a synthetic bone simulating the damaged femur. The mechanoluminescence material thin film 6 portion is photographed over its entire circumference with an IICCD camera 7 from the external peripheral side thereof as or after the artificial hip prosthesis 2 is inserted. The obtained image is fed to a computer 11 to obtain a luminescence image 8. The computer 11 outputs the intensities of the received light in the form of an image as is, so that the luminescence image 8 can be obtained easily. Particularly, the data about the intensities of the received light can be used as stress/strain data virtually as is. Such method is also suitable for dynamic analysis.
    • 当可视化天然骨骼,合成骨骼或附着于其中的部件的应力分布而不省略时,为了使用廉价的系统以各种模式精确地测量,机械发光材料薄膜6预先形成在 骨材料周边表面5在其适当的区域中,包括将人造髋假体2的插入支撑部分4插入损伤股骨1的中空内侧3中的部分或模拟受损股骨的合成骨。 机械发光材料薄膜6部分在其人造髋假体2插入之后或之后,利用来自其外周侧的IICCD照相机7在其整个圆周上进行拍照。 所获得的图像被馈送到计算机11以获得发光图像8.计算机11原样输出图像形式的接收光的强度,使得可以容易地获得发光图像8。 特别地,关于接收光的强度的数据可以被虚拟地用作应力/应变数据。 这种方法也适用于动态分析。
    • 9. 发明授权
    • High-luminosity stress-stimulated luminescent material, manufacturing method thereof, and use thereof
    • 高亮度应力刺激发光材料及其制造方法及其应用
    • US08128839B2
    • 2012-03-06
    • US11547660
    • 2005-04-08
    • Chao-Nan Xu
    • Chao-Nan Xu
    • C09K11/64
    • F21K2/04C09K11/643
    • The present invention provide a high-luminosity stress-stimulated luminescent material which emits visible light even in daylight, a manufacturing method thereof, and a typical example of the use thereof. The stress-stimulated luminescent material of the present invention satisfies conditions for light emission by at least one of: a luminescence mechanism using static electricity caused by friction; a luminescence mechanism using micro plasma caused by friction; a luminescence mechanism using a piezoelectric effect caused by strain; a luminescence mechanism using lattice defect; and a luminescence mechanism using thermal generation. For example, in case where a base material made of at least one type of aluminate is includes as the stress-stimulated luminescent material, the base material includes a crystal structure with spontaneous polarization, e.g. α-SrAl2O4, in order to realize the luminescence mechanism using the piezoelectric effect caused by strain.
    • 本发明提供即使在日光下发出可见光的高亮度应力刺激发光材料及其制造方法,也是其典型应用例。 本发明的应力刺激发光材料通过以下中的至少一种满足发光条件:使用由摩擦引起的静电的发光机构; 使用由摩擦引起的微血浆的发光机制; 使用由应变引起的压电效应的发光机构; 使用晶格缺陷的发光机制; 以及使用热产生的发光机构。 例如,在由至少一种类型的铝酸盐制成的基材作为应力刺激的发光材料的情况下,基材包括具有自发极化的晶体结构,例如, α-SrAl2O4,以实现应变引起的压电效应的发光机理。
    • 10. 发明申请
    • High-Luminosity Stress-Stimulated Luminescent Material, Manufacturing Method Thereof, and Use Thereof
    • 高亮度应力刺激发光材料,其制造方法及其用途
    • US20080232083A1
    • 2008-09-25
    • US11547660
    • 2005-04-08
    • Chao-Nan Xu
    • Chao-Nan Xu
    • F21V9/16C09K11/54
    • F21K2/04C09K11/643
    • The present invention provide a high-luminosity stress-stimulated luminescent material which emits visible light even in daylight, a manufacturing method thereof, and a typical example of the use thereof. The stress-stimulated luminescent material of the present invention satisfies conditions for light emission by at least one of: a luminescence mechanism using static electricity caused by friction; a luminescence mechanism using micro plasma caused by friction; a luminescence mechanism using a piezoelectric effect caused by strain; a luminescence mechanism using lattice defect; and a luminescence mechanism using thermal generation. For example, in case where a base material made of at least one type of aluminate is includes as the stress-stimulated luminescent material, the base material includes a crystal structure with spontaneous polarization, e.g. α-SrAl2O4, in order to realize the luminescence mechanism using the piezoelectric effect caused by strain.
    • 本发明提供即使在日光下发出可见光的高亮度应力刺激发光材料及其制造方法,也是其典型应用例。 本发明的应力刺激发光材料通过以下中的至少一种满足发光条件:使用由摩擦引起的静电的发光机构; 使用由摩擦引起的微血浆的发光机制; 使用由应变引起的压电效应的发光机构; 使用晶格缺陷的发光机制; 以及使用热产生的发光机构。 例如,在由至少一种类型的铝酸盐制成的基材作为应力刺激的发光材料的情况下,基材包括具有自发极化的晶体结构,例如, α-SrAl 2 O 4,以实现使用由应变引起的压电效应的发光机理。