G01B11/2408

Terahertz measuring device and terahertz measuring method for measuring objects to be inspected

The invention relates to a terahertz measuring apparatus (1) for run-time measurements of test objects (8), in particular, for layer thickness measurements and distance measurements of the test objects (8), whereby the terahertz measuring apparatus (1) comprises: a transmitter and receiver unit (2) for emitting a terahertz radiation (10) along an optical axis (A) and for receiving reflected terahertz radiation, a controller and evaluation unit (3) for driving the transmitter and receiver unit (2) and evaluating measuring signals (M) of the transmitter and receiver unit (2). Hereby, it is provided that a beam splitter (4) is provided to split up the emitted terahertz radiation (10) into at least one first partial terahertz radiation (10a) and one second partial terahertz radiation (10b) along different optical partial axes (A1, A2), a reflection device (5) for reflecting the second partial terahertz radiation (10b) along a second optical partial axis (A2) different from the first optical partial axis (A1) of the first partial terahertz radiation (10a, 10b) and reflecting back the second partial terahertz radiation (10b), reflected from the test object (8), towards the beam splitter (4) and/or the transmitter and receiver unit (2), whereby the transmitter and receiver unit (2) generates a common measuring signal from the partial beams (10a, 10b) reflected on the test object (8) and puts it out to the controller and evaluation unit (3) for determining at least one layer thickness and/or one distance of the test object (8).

Method of measuring optical fiber preform
11274917 · 2022-03-15 · ·

A method of measuring a diameter of a core portion of an optical fiber preform including the core portion having a relatively high refractive index and a clad portion having a relatively low refractive index. The method includes applying parallel light to the optical fiber preform, and measuring the diameter of the core portion from an image captured by receiving the light having transmitted through the optical fiber preform.

Water-immersed high precision laser focus spot size measurement apparatus

A measurement apparatus for measuring a laser focus spot size, which includes a two-dimensional image detector and an imaging system which forms a magnified image of a focus spot located an object plane onto the image detector. The imaging system includes at least an objective lens. A sealed liquid container is secured over a part of the objective lens such as the optical surface of the objective lens is immersed in the liquid (e.g. water) within the container. The liquid container has a window through which the laser beam enters. An image processing method is also disclosed which processes the image obtained by the image detector to obtain the focus spot size while implementing an algorithm that corrects for the effect of ambient vibration.

Image-measuring apparatus without axial alignment and image-measuring method without axial alignment
11105618 · 2021-08-31 ·

An image-measuring apparatus without axial alignment is configured to measure a workpiece. The image-measuring apparatus without axial alignment includes a rotating plate, a lighting unit, an image capturing unit, a central control unit and a rotary driving member. The workpiece is disposed on the rotating plate. The lighting unit is configured to generate a light beam to illuminate the workpiece to form a first workpiece blocking shadow area on the image capturing unit. The rotating plate and the workpiece are rotated through a rotational angle by the central control unit to form a second workpiece blocking shadow area on the image capturing unit. The central control unit calculates the first workpiece blocking shadow area and the second workpiece blocking shadow area to generate an axial position of the workpiece. There is a distance between an axial position of the rotating plate and the axial position of the workpiece.

360 DEGREE OPTICAL MEASURING DEVICE
20210239461 · 2021-08-05 · ·

Methods and systems for measuring a component of a drug delivery or storage device are described. The method comprises providing a light source in an opposing relationship with an optical imaging sensor; positioning a sample component on a positioning stage located between the at least one light source and at least one opposing optical imaging sensor; and illuminating, with the at least one light source, the sample component. The controller is operable to capture an image of the component, determine the location of a first outer edge point PI of the captured image; rotate the sample component relative to the optical image sensor, and collect n images separated from each other by x degrees of rotation, wherein n*x is ≥360 degrees. The controller may compare a measured position of the at least one outer edge point PI between the captured images to determine a degree or circular runout.

MEASUREMENT DEVICE FOR GRINDING WHEEL

The present invention provides a measurement device for grinding wheel. One or more thickness measurement device is disposed slidably on a platform. A spinning device is disposed on the platform. A grinding wheel is fixed on the spinning device. The spinning shaft spins the grinding wheel. The one or more thickness measurement device measures the flatness condition of the grinding wheel. Furthermore, according to the present invention, a diameter measurement device is disposed inside the platform and measures the roundness of the outer periphery of the grinding wheel. Since the structure can be disassembled easily, the whole measurement device for grinding wheel can be carried conveniently. In addition, measurements can be performed by users on the site where the grinding wheel is located for real-timely understanding the real size and wear condition of grinding wheel.

DEVICE AND METHOD FOR DETERMINING A MEASUREMENT OF A STRAND-SHAPED OBJECT
20210172727 · 2021-06-10 · ·

A device for performing a measurement of a strand-shaped object comprises at least one transmission apparatus configured to emit measuring radiation onto the strand-shaped object, which reflects the measuring radiation. At least one receiving apparatus is configured to receive the measuring radiation reflected by the strand-shaped object. An evaluation apparatus is configured to determine at least one of (1) the diameter and (2) the outer contour of the strand-shaped object based on the measuring radiation received by the at least one receiving apparatus. At least one retroreflector is configured to surround at least a portion of the strand-shaped object and retroreflect at least some of the measuring radiation reflected by the strand-shaped object.

Method and apparatus for inspection of spherical surfaces
11047675 · 2021-06-29 ·

Disclosed are a method and an apparatus for inspection of workpieces and products having curved and, in particular, spherical surfaces. The method is based on scanning inspected objects with a narrow probing beam of electromagnetic radiation and concurrently measuring the radiation scattered on the surface. The method and apparatus improve the detectability of features and imperfections on inspected surfaces by providing invariable parameters and conditions of scanning, robust mechanical stability of scanning systems, high positioning accuracy of the probing electromagnetic beam and efficient collection of the scattered radiation. The apparatus allows surface defect classification, determining defect dimensions and convenient automation of inspection.

Manufacturing system

A manufacturing system for producing airplane structural components, including a drilling unit for producing bores in a material assembly made of at least two material plies for the purposes of inserting fastening elements and having a measuring unit for ascertaining geometry parameters for a previously produced bore. The measuring unit includes measuring electronics with an optical sensor element, a measuring optical unit and a measuring lance. The measuring unit produces an optical measurement beam that emerges from the measuring lance via the measuring optical unit and that is incident on a measurement point on the respective bore inner surface. A measurement movement between measuring lance and material assembly is provided in a measurement cycle and the measuring unit cyclically ascertains distance values to various measurement points at a scanning rate during the measurement movement and ascertains at least one geometry parameter for the respective bore from the distance values.

STATION FOR CHECKING TYRES FOR VEHICLE WHEELS
20210108913 · 2021-04-15 ·

A station for checking a tyre for vehicle wheels. The checking station includes a background with a support surface lying on a plane perpendicular to a reference axis, an image acquisition apparatus to acquire an image of the tyre arranged with a first outer lateral surface in contact with the support surface and a second outer lateral surface facing the image acquisition apparatus, an illumination system and a computer for generating a working image from the acquired image. The image acquisition apparatus, the illumination system and of the background are arranged to generate a contrast, in the working image, between the entire second outer lateral surface of the tyre and an area circumferentially surrounding the tyre.