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工作原泡水平仪的玻璃管内壁是一个具有一定曲率半径的曲面。当电子水平仪倾斜时,气泡会移动到电子水平仪上升的一端。水平气泡内壁曲率半径越大,分辨率越高,曲率半径越小,分辨率越低。因此,水平气泡的曲率半径决定了产品的精度。
产品电子水平仪主要用于检测各种机床和工件的平整度、平直度、垂直度和设备安装水平等。
产品规格电子水平仪根据不同的用途制造成框式水平仪、条式水平仪和两种方法。
第四,仪器结构电子水平仪主要由身体、水平气泡系统和调节机构组成。身体可以测量基面,水平气泡可以作为读数反映身体测量基面的真实数据,调节机构可以作为调节电子水平仪,m5可以选择×0.5细螺纹和多齿弹簧圈,确保零位的稳定性和可特性。
用法测量时,使电子水平仪工作面与被测表面紧密相连,待气泡静止后主可读数。
电子水平仪的分度值是主水平气泡移动一个刻度形成的倾斜比,以一米为基础。如果需要测量长度为L的具体倾斜值,可以通过下面的公式计算:
实际倾斜值=标称分度值×L×误差格数如:标称分度值为0.02mm//mm/m,L=200mm,误差格数为2格,则实际倾斜值为0.02/1000。×200×=0.008mm为防止电子水平仪零位不准造成的测量误差,所以在使用前必须对电子水平仪零位进行检查或改变。架构电子水平仪的工作原理及使用方法
,工作原泡水平仪的玻璃管内壁是一个具有一定曲率半径的曲面。当电子水平仪倾斜时,气泡会移动到电子水平仪上升的一端。水平气泡内壁曲率半径越大,分辨率越高,曲率半径越小,分辨率越低。因此,水平气泡的曲率半径决定了产品的精度。
产品电子水平仪主要用于检测各种机床和工件的平整度、平直度、垂直度和设备安装水平等。
产品规格电子水平仪根据不同的用途制造成框式水平仪、条式水平仪和两种方法。
第四,仪器结构电子水平仪主要由身体、水平气泡系统和调节机构组成。身体可以测量基面,水平气泡可以作为读数反映身体测量基面的真实数据,调节机构可以作为调节电子水平仪,m5可以选择×0.5细螺纹和多齿弹簧圈,确保零位的稳定性和可特性。
用法测量时,使电子水平仪工作面与被测表面紧密相连,待气泡静止后主可读数。
电子水平仪的分度值是主水平气泡移动一个刻度形成的倾斜比,以一米为基础。如果需要测量长度为L的具体倾斜值,可以通过下面的公式计算:
实际倾斜值=标称分度值×L×误差格数如:标称分度值为0.02mm//mm/m,L=200mm,误差格数为2格,则实际倾斜值为0.02/1000。×200×=0.008mm为防止电子水平仪零位不准造成的测量误差,所以在使用前必须对电子水平仪零位进行检查或改变。
The inner wall of the glass tube of the working bubble level is a curved surface with a certain radius of curvature. When the electronic level is tilted, the bubble will move to the rising end of the electronic level. The larger the curvature radius of the inner wall of a horizontal bubble, the higher the resolution, and the smaller the curvature radius, the lower the resolution. Therefore, the curvature radius of the horizontal bubble determines the accuracy of the product. The product electronic level is mainly used to detect the flatness, straightness, perpendicularity, and equipment installation level of various machine tools and workpieces. Product specifications: Electronic level gauges are manufactured into frame level gauges, strip level gauges, and two methods according to different purposes. Fourthly, the electronic level mainly consists of a body, a horizontal bubble system, and a regulating mechanism. The body can measure the basal plane, and horizontal bubbles can be used as readings to reflect the true data of the body measurement basal plane. The adjustment mechanism can be used as an electronic level regulator, and the m5 can be selected with x 0.5 fine threads and multi tooth spring coils to ensure the stability and characteristics of the zero position. When measuring, ensure that the working surface of the electronic level is tightly connected to the surface being measured, and wait for the bubble to come to a complete stop before taking the main reading. The division value of an electronic level is the inclination ratio formed by the movement of the main horizontal bubble by one scale, based on one meter. If it is necessary to measure the specific tilt value of length L, it can be calculated using the following formula: Actual tilt value=nominal division value x L x number of error grids. For example, if the nominal division value is 0.02mm/mm/mm/m, L=200mm, and the number of error grids is 2, then the actual tilt value is 0.02/1000. To prevent measurement errors caused by inaccurate zero position of the electronic level, it is necessary to check or change the zero position of the electronic level before use. The working principle and usage method of the architecture electronic level The inner wall of the glass tube of the working bubble level is a curved surface with a certain radius of curvature. When the electronic level is tilted, the bubble will move to the rising end of the electronic level. The larger the curvature radius of the inner wall of a horizontal bubble, the higher the resolution, and the smaller the curvature radius, the lower the resolution. Therefore, the curvature radius of the horizontal bubble determines the accuracy of the product. The product electronic level is mainly used to detect the flatness, straightness, perpendicularity, and equipment installation level of various machine tools and workpieces. Product specifications: Electronic level gauges are manufactured into frame level gauges, strip level gauges, and two methods according to different purposes. Fourthly, the electronic level mainly consists of a body, a horizontal bubble system, and a regulating mechanism. The body can measure the basal plane, and horizontal bubbles can be used as readings to reflect the true data of the body measurement basal plane. The adjustment mechanism can be used as an electronic level regulator, and the m5 can be selected with x 0.5 fine threads and multi tooth spring coils to ensure the stability and characteristics of the zero position. When measuring, ensure that the working surface of the electronic level is tightly connected to the surface being measured, and wait for the bubble to come to a complete stop before taking the main reading.
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