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            絕緣體積表面電阻率測試儀

            型 號121

            更新時間2025-09-23

            廠商性質生產廠家

            報價

            產品描述:絕緣體積表面電阻率測試儀使用前務必詳閱此說明書,并遵照指示步驟,依次操作。

            產品概述

            可測試材料:

            固體巖石、塑料、橡膠、云母帶、云母、石棉、大理石、瓷器、玻璃、硫黃等,主要用作電機、電器的繞組絕緣、開關的底板和絕緣子等。有機絕緣材料有:蟲膠、樹脂、橡膠、棉紗、紙、麻、人造絲等,大多用以制造絕緣漆,繞組導線的被覆絕緣物等。

            絕緣體積表面電阻率測試儀主要測試標準:

            GB/T 1410-2006 固體絕緣材料 體積電阻率和表面電阻率試驗方法

            GB1672-8液體增塑劑體積電阻率的測定

            GB 12014 防靜電工作服

            GB/T 20991-2007 個體防護裝備 鞋的測試方法

            GB 4385-1995 防靜電鞋、導電鞋技術要求

            GB 12158-2006 防止靜電事故通用導則

            GB 4655-2003 橡膠工業靜電安全規程

            GB/T  1692-2008 硫化橡膠絕緣電阻的測定

            GB/T 12703.6-2010 紡織品 靜電性能的評定 第6部分 纖維泄漏電阻

            GB 13348-2009 液體石油產品靜電安全規程

            GB/T 15738-2008 導電和抗靜電纖維增強塑料電阻率試驗方法

            GB/T 18044-2008 地毯 靜電習性評價法 行走試驗

            GB/T 18864-2002 硫化橡膠 工業用抗靜電和導電產品電阻極限范圍

            GB/T 22042-2008 服裝 防靜電性能 表面電阻率試驗方法

            GB/T 22043-2008 服裝 防靜電性能 通過材料的電阻(垂直電阻)試驗方法

            GB/T 24249-2009 防靜電潔凈織物

            GB 26539-2011 防靜電陶瓷磚 Antistatic ceramic tile

            GB/T 26825-2011 抗靜電防腐膠

            GB 50515-2010 導(防)靜電地面設計規范

            GB 50611-2010 電子工程防靜電設計規范

            GJB 105-1998-Z 電子產品防靜電放電控制手冊

            GJB 3007A-2009 防靜電工作區技術要求

            GJB 5104-2004 無線電引信風帽用防靜電涂料及風帽靜電性能通用要求

             

            絕緣體積表面電阻率測試儀技術參數

            測試電壓 (V)  10  50   100  250  500  1000

             u    電阻測量范圍 10KΩ(4次方) ~100T Ω(14次方);(直接得出電阻不用計算)超出需要計算zui大到18次方(需要計算 電阻)

             

            安全注意事項

            4.1 使用前務必詳閱此說明書,并遵照指示步驟,依次操作。

            4.2 請勿使用非原廠提供之附件,以免發生危險。

            4.3 進行測試時,本儀器測量端高壓輸出端上有直流高壓輸出,嚴禁人體接觸 ,以免觸電。

            4.4 為避免測試棒本身絕緣泄漏造成誤差,接儀器測量端輸入的測試棒應盡可 能懸空,不與外界物體相碰。

            4.5 當被測物絕緣電阻值高,且測量出現指針不穩現象時,可將儀器測量線屏 蔽端夾子接上。 例如:對電纜測纜芯與纜殼的絕緣時,除將被測物兩 端分 別接于輸入端與高壓 端,再將電纜殼 ,芯之間的內層絕緣物接儀器 “G”,以消 除因 表面漏電而 引起的測量誤差。也可用加屏蔽盒的方法, 即將被測物置于金屬屏蔽盒內,接上測量線。

             

             

            使用條件

            ①環境溫度: 0~40℃

            ②相對溫度:≤70%

            ③供電電流:交流 220V±10PHz

             

             

            ①直流高壓電流輸出 10,50,100,500,1000V 五檔

            ②根據試樣的電阻值及直流高壓值選擇合適的量程倍率。

            ③高輸入阻抗直流放大器(輸入阻抗>1015Ω)

            ④指示儀表,指示被測絕緣電阻。

            ⑤電源供給儀器各部分工作電源。

             

             

             

            Testable materials:
            Solid rock, plastic, rubber, mica, mica, asbestos, marble, porcelain, glass, sulfur, mainly used for winding motor, electrical insulation, switch plate and insulator etc.. Organic insulating materials: shellac, resin, rubber, paper, cotton, linen, rayon, mostly used in the manufacture of insulating paint, winding insulation coating etc.
            Standard description of the surface resistivity tester for insulation volume
            1. subject content and scope of application
            This standard specifies the method for measuring the volume resistivity of liquid plasticizer.
            This standard is applicable to the measurement of the volume resistivity of the liquid plasticizer. Other liquid additives can also be referred to this method.
            Definition of 2. volume resistivity
            The ratio of the DC electric field intensity to the current density in the direction of the volume current of the sample is expressed in Omega? M.
            3. sample
            3.1 the sample of liquid plasticizer is about 40ml each time.
            3.2 samples should be free of bubbles and impurities.
            The 3.3 sample should be placed above 2H under the condition of temperature 23 + 2 C and relative humidity 60-70%.
            4. test instrument and electrode
            The main test standard of the measuring instrument for the resistivity of the insulation volume surface:
            Test method for volume resistivity and surface resistivity of GB/T 1410-2006 solid insulating materials
            Measurement of volume resistivity of GB1672-8 liquid plasticizer
            GB 12014 anti static work clothes
            Test method of GB/T 20991-2007 individual protective equipment shoes
            GB 4385-1995 antistatic shoes and conductive shoes technical requirements
            GB 12158-2006 general guide for preventing electrostatic accidents
            GB 4655-2003 electrostatic safety regulations for rubber industry
            Determination of insulation resistance of GB/T 1692-2008 vulcanized rubber
            Evaluation of electrostatic properties of GB/T 12703.6-2010 textiles sixth part fiber leakage resistance
            GB 13348-2009 electrostatic safety regulations for liquid petroleum products
            Test method for electrical resistivity of GB/T 15738-2008 conductive and antistatic fiber reinforced plastics
            Walking test of GB/T 18044-2008 carpet static evaluation method
            Resistance limit range of antistatic and conductive products for GB/T 18864-2002 vulcanized rubber industry
            Surface resistivity test method for anti static properties of GB/T 22042-2008 clothing
            Resistance (vertical resistance) test method for anti static performance of GB/T 22043-2008 clothing through material
            GB/T 24249-2009 anti static clean fabric
            GB 26539-2011 anti static ceramic tile Antistatic ceramic tile
            GB/T 26825-2011 antistatic antiseptic adhesive
            GB 50515-2010 Guide (anti) static ground design specification
            GB 50611-2010 code for anti static design of Electronic Engineering
            GJB 105-1998-Z electronic product anti static discharge control manual
            Technical requirements of GJB 3007A-2009 anti static working area
            General requirements for anti electrostatic coating and hood electrostatic performance using GJB 5104-2004 radio fuze cap
            Technical parameters of the surface resistivity tester for insulation volume
            Test voltage (V) 10501002505001000
            U resistance measurement range 10K ohm (4 power) to 100T 100T (14 Power); (directly draw resistance not to calculate) exceed the need to calculate the maximum to the 18 time (need to calculate resistance).
            Safety precautions for the insulation volume surface resistivity tester
            4.1 read the instructions before use, and follow the instructions step in operation.
            4.2 do not use the accessories provided by the non original factory in order to avoid the danger.
            4.3 when the test is carried out, the high voltage output of the high voltage output end of the instrument is on the end of the instrument, and the human contact is strictly forbidden, so as to avoid the electric shock.
            4.4 in order to avoid the error caused by the insulation leakage test bar itself, the instrument for measuring input test bar should be suspended, do not collide with the external object.
            4.5 when the insulation resistance of the measured object is high and the indicator is unstable, the clamp of the instrument measurement line can be attached. For example, for the insulation of cable core and cable shell, the two ends of the tested object are connected to the input terminal and the high voltage terminal respectively. Then the inner insulation of the cable core and the core is connected to the instrument "G" to eliminate the measurement error caused by the leakage of the surface. It can also be used with a shielding box, which is placed in a metal shield box and attached to the measuring line.
            Conditions for the use of an insulating volume surface resistivity tester
            Ambient temperature: 0~40 degrees centigrade
            The relative temperature is less than 70%.
            Power supply current: AC 220V + 10PHz
            The high voltage DC current output 10, 5 501005001000V
            Select the appropriate range ratio according to the resistance value of the sample and the high voltage value of the direct current.
            High input impedance DC amplifier (input impedance >1015 omega)
            (4) indicating the instrument to indicate the insulation resistance measured.
            The power supply is supplied to each part of the instrument.

             

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