Warning: RevSliderData::force_to_boolean(): Argument #2 ($b) must be passed by reference, value given in /home2/medimkgp/cablemeasurement.com/wp-content/plugins/revslider/includes/data.class.php on line 197

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Warning: RevSliderData::force_to_boolean(): Argument #2 ($b) must be passed by reference, value given in /home2/medimkgp/cablemeasurement.com/wp-content/plugins/revslider/includes/data.class.php on line 197

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Warning: RevSliderData::force_to_boolean(): Argument #2 ($b) must be passed by reference, value given in /home2/medimkgp/cablemeasurement.com/wp-content/plugins/revslider/includes/data.class.php on line 197

Warning: RevSliderData::force_to_boolean(): Argument #2 ($b) must be passed by reference, value given in /home2/medimkgp/cablemeasurement.com/wp-content/plugins/revslider/includes/data.class.php on line 197

Warning: RevSliderData::force_to_boolean(): Argument #2 ($b) must be passed by reference, value given in /home2/medimkgp/cablemeasurement.com/wp-content/plugins/revslider/includes/data.class.php on line 197

Warning: RevSliderData::force_to_boolean(): Argument #2 ($b) must be passed by reference, value given in /home2/medimkgp/cablemeasurement.com/wp-content/plugins/revslider/includes/data.class.php on line 197

Warning: RevSliderData::force_to_boolean(): Argument #2 ($b) must be passed by reference, value given in /home2/medimkgp/cablemeasurement.com/wp-content/plugins/revslider/includes/data.class.php on line 197

Warning: RevSliderData::force_to_boolean(): Argument #2 ($b) must be passed by reference, value given in /home2/medimkgp/cablemeasurement.com/wp-content/plugins/revslider/includes/data.class.php on line 197

Warning: RevSliderData::force_to_boolean(): Argument #2 ($b) must be passed by reference, value given in /home2/medimkgp/cablemeasurement.com/wp-content/plugins/revslider/includes/data.class.php on line 197

Warning: RevSliderData::force_to_boolean(): Argument #2 ($b) must be passed by reference, value given in /home2/medimkgp/cablemeasurement.com/wp-content/plugins/revslider/includes/data.class.php on line 197

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Warning: RevSliderData::force_to_boolean(): Argument #2 ($b) must be passed by reference, value given in /home2/medimkgp/cablemeasurement.com/wp-content/plugins/revslider/includes/data.class.php on line 197

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Warning: RevSliderData::force_to_boolean(): Argument #2 ($b) must be passed by reference, value given in /home2/medimkgp/cablemeasurement.com/wp-content/plugins/revslider/includes/data.class.php on line 197

Warning: RevSliderData::force_to_boolean(): Argument #2 ($b) must be passed by reference, value given in /home2/medimkgp/cablemeasurement.com/wp-content/plugins/revslider/includes/data.class.php on line 197

Warning: RevSliderData::force_to_boolean(): Argument #2 ($b) must be passed by reference, value given in /home2/medimkgp/cablemeasurement.com/wp-content/plugins/revslider/includes/data.class.php on line 197

Warning: RevSliderData::force_to_boolean(): Argument #2 ($b) must be passed by reference, value given in /home2/medimkgp/cablemeasurement.com/wp-content/plugins/revslider/includes/data.class.php on line 197

Warning: RevSliderData::force_to_boolean(): Argument #2 ($b) must be passed by reference, value given in /home2/medimkgp/cablemeasurement.com/wp-content/plugins/revslider/includes/data.class.php on line 197

Warning: RevSliderData::force_to_boolean(): Argument #2 ($b) must be passed by reference, value given in /home2/medimkgp/cablemeasurement.com/wp-content/plugins/revslider/includes/data.class.php on line 197

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Warning: RevSliderData::force_to_boolean(): Argument #2 ($b) must be passed by reference, value given in /home2/medimkgp/cablemeasurement.com/wp-content/plugins/revslider/includes/data.class.php on line 197

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Warning: RevSliderData::force_to_boolean(): Argument #2 ($b) must be passed by reference, value given in /home2/medimkgp/cablemeasurement.com/wp-content/plugins/revslider/includes/data.class.php on line 197

Warning: RevSliderData::force_to_boolean(): Argument #2 ($b) must be passed by reference, value given in /home2/medimkgp/cablemeasurement.com/wp-content/plugins/revslider/includes/data.class.php on line 197

Warning: RevSliderData::force_to_boolean(): Argument #2 ($b) must be passed by reference, value given in /home2/medimkgp/cablemeasurement.com/wp-content/plugins/revslider/includes/data.class.php on line 197

Warning: RevSliderData::force_to_boolean(): Argument #2 ($b) must be passed by reference, value given in /home2/medimkgp/cablemeasurement.com/wp-content/plugins/revslider/includes/data.class.php on line 197

Warning: RevSliderData::force_to_boolean(): Argument #2 ($b) must be passed by reference, value given in /home2/medimkgp/cablemeasurement.com/wp-content/plugins/revslider/includes/data.class.php on line 197

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Warning: RevSliderData::force_to_boolean(): Argument #2 ($b) must be passed by reference, value given in /home2/medimkgp/cablemeasurement.com/wp-content/plugins/revslider/includes/data.class.php on line 197

Warning: RevSliderData::force_to_boolean(): Argument #2 ($b) must be passed by reference, value given in /home2/medimkgp/cablemeasurement.com/wp-content/plugins/revslider/includes/data.class.php on line 197

Warning: RevSliderData::force_to_boolean(): Argument #2 ($b) must be passed by reference, value given in /home2/medimkgp/cablemeasurement.com/wp-content/plugins/revslider/includes/data.class.php on line 197

Warning: RevSliderData::force_to_boolean(): Argument #2 ($b) must be passed by reference, value given in /home2/medimkgp/cablemeasurement.com/wp-content/plugins/revslider/includes/data.class.php on line 197

Warning: RevSliderData::force_to_boolean(): Argument #2 ($b) must be passed by reference, value given in /home2/medimkgp/cablemeasurement.com/wp-content/plugins/revslider/includes/data.class.php on line 197

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Cable – Cable Measurement | Sipcon https://cablemeasurement.com Measurement Solutions for Cable Manufacturers Sat, 04 Mar 2023 09:26:25 +0000 en-US hourly 1 https://wordpress.org/?v=6.5.3 https://cablemeasurement.com/wp-content/uploads/2020/08/cropped-android-chrome-512x512-1-32x32.png Cable – Cable Measurement | Sipcon https://cablemeasurement.com 32 32 Cable Slicing and Insulation Thickness Measurement https://cablemeasurement.com/cable-slicing-and-insulation-thickness-measurement/ Wed, 01 Mar 2023 10:38:52 +0000 https://cablemeasurement.com/?p=4093

Cable Slicing and Insulation Thickness Measurement

The measurement of insulation thickness is a crucial aspect of quality control in the cable manufacturing process. Accurate measurements ensure the cables meet industry standards and specifications and provide valuable information for research and development purposes.  This makes cable slicing important for obtaining precise measurement of insulation thickness.

Why Proper Cutting Matters

Manual cutting with blades often leads to uneven thickness and non-parallel surfaces, which can result in incorrect measurements. This is because the blades can introduce variations in the cut, such as uneven pressure, inconsistent angles, and wavy edges. These variations can affect the accuracy of the insulation thickness measurement. In turn, this can result in incorrect product specifications, reduce the reliability of the cable, and compromise overall quality.

 

 

Benefits of Slicing Machines

To overcome these challenges, it is recommended to use a slicing machine for cutting cable slices. Slicing machines offer several advantages over manual cutting with blades. Firstly, they provide uniform and parallel sections, ensuring accurate and consistent measurements. Secondly, they can produce uniform slices with consistent thickness, reducing the variability in measurement results. Thirdly, they can be programmed to produce slices with specific dimensions, making the measurement process more efficient and consistent.

In conclusion, proper cable slicing is essential in the insulation thickness measurement process. While manual cutting with blades may seem convenient, it can lead to incorrect results due to variations in thickness and non-parallel surfaces. To obtain accurate and consistent measurements, it is recommended to use a slicing machine for uniform and parallel sections. This will help ensure the cables meet industry standards and specifications and provide valuable information for research and development purposes. To know other important benefits read the article Importance of Cable Insulation Thickness Measurement.

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Carbon black dispersion measurement https://cablemeasurement.com/carbon-black-dispersion-measurement/ Wed, 01 Mar 2023 10:38:52 +0000 https://cablemeasurement.com/cable-slicing-and-insulation-thickness-measurement-2/

Carbon black dispersion measurement

Carbon black dispersion measurement is a crucial aspect of cable manufacturing as it affects the mechanical and electrical properties of the cable. Carbon black is used as a filler in cable insulation and sheathing to improve its toughness, electrical conductivity, and resistance to heat and chemicals. The uniform dispersion of carbon black particles in the polymer matrix is essential to ensure consistent and optimal cable performance.

Carbon black dispersion in cables can be measured using several methods, including light scattering, microscopy, and conductivity testing. Light scattering involves shining a light on the cable and measuring the amount of light scattered in different directions, indicating the degree of dispersion of the carbon black particles. Microscopy involves looking at a sample of the cable under a microscope to visually inspect the dispersion of the carbon black particles. Conductivity testing involves measuring the electrical conductivity of the cable, which can also indicate the degree of dispersion of the carbon black particles.

The Microscope measurement method is advantageous over other ways, such as light scattering or electrical conductivity measurements, as it provides a more direct and accurate measure of the carbon black dispersion. Light scattering methods provide only indirect information about the dispersion and can be influenced by other factors, such as the refractive index of the polymer matrix. Electrical conductivity measurements only provide information about the material's conductivity and do not directly measure the dispersion of the carbon black particles.

The Microscope measurement method is considered to be the best method to measure carbon black dispersion as it provides direct and visual observation of the carbon black particles in the polymer matrix. This method involves observing a sample of the cable material under a microscope and analyzing the distribution of the carbon black particles. The microscope provides a magnified sample image, allowing a more detailed analysis of the dispersion pattern.

 

Carbon black dispersion in cables using a Microscope

When using microscopy to measure carbon black dispersion in cables, a sample of the cable is taken and prepared for examination. This typically involves cutting the cable at a specific angle to expose the cross-section and then mounting the sample on a slide for observation.

Under a microscope, the degree of dispersion of the carbon black particles can be evaluated by analyzing the distribution and size of the particles in the cross-section. A well-dispersed sample will have small and evenly distributed carbon black particles throughout the cable, while a poorly dispersed sample will have larger clusters of carbon black particles.

The method of measuring carbon black dispersion in cables using microscopy can be a precise and accurate way to evaluate the cable's quality and optimize the manufacturing process.

In addition to carbon black dispersion measurement the quality control labs of cable manufacturing plants also need to precisely measure cable insulation and sheath thickness. To learn more about this topic please read the article 'Why Cable Insulation Thickness is important?'

In conclusion, carbon black dispersion measurement is important in cables as it affects the mechanical and electrical properties of the cable. The Microscope measurement method is considered to be the best method to measure carbon black dispersion as it provides a direct and visual observation of the carbon black particles in the polymer matrix, providing a more accurate and detailed analysis of the dispersion pattern.

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Void and Contamination Test for Electrical Cables https://cablemeasurement.com/void-and-contamination-test-for-electrical-cables/ Wed, 01 Mar 2023 10:38:52 +0000 https://cablemeasurement.com/carbon-black-dispersion-measurement-2/

Void and Contamination Test for Electrical Cables

Importance and Microscopy Method

Electrical cables are critical components of various electrical systems, and their proper functioning is crucial for ensuring a safe and efficient electrical supply. To ensure the quality and reliability of electrical cables, it is essential to perform various tests, including void and contamination tests.

Void and contamination testing of electrical cables are crucial to ensure the absence of any defects that could lead to electrical failure or cause harm to the end-user. A void in a cable refers to an absence of material or empty space within the insulation, while contamination refers to the presence of foreign materials that can reduce the insulation's quality. These voids and contaminants can cause electrical failure by providing a path for electrical currents to leak out, leading to insulation breakdown and electrical hazards.

The voids present in the cable insulation and the presence of contaminants can cause several problems such as reducing the electrical insulation resistance and increasing the risk of electrical arcing and short-circuits. Void and contamination testing helps identify and measure these voids and contaminants, which are critical factors in determining the cable's ability to perform its intended function.

 

Microscopy Method: The Best Option for Void and Contamination Testing

Several methods are used to test electrical cables for voids and contaminants, but the most reliable and accurate method is the microscopy method. This method involves using a microscope to examine the cross-section of the cable and inspect it for any voids or contaminants. This method provides a high-resolution image that precisely identifies any voids or contaminants present in the cable.

The microscopy method is considered the best option for void and contamination testing as it provides a non-destructive, highly accurate, and reliable measurement of the cable's quality. The method can detect even the most minor voids or contaminants that other testing methods might miss, making it ideal for quality control purposes.

 

Why Microscopy Method is Best for this Measurement:

The microscopy method is considered the best method for conducting void and contamination testing. This method involves the use of a microscope to examine a cross-section of the cable and measure the voids and contaminants present.

The microscopy method offers several advantages over other testing methods, including:

  1. High Precision: Microscopy provides high-resolution images of the cable cross-section, allowing for precise measurement of the voids and contaminants.
  2. Non-Destructive: The microscopy method is non-destructive, meaning the cable is not damaged during the testing process. This makes it ideal for quality control purposes, as the cable can be re-tested later if necessary.
  3. Repeatable Results: The microscopy method is highly repeatable, providing consistent results every time the test is conducted. This is important for quality control and ensuring that the cable meets industry standards.

In conclusion, the void and contamination test of electrical cables is crucial for ensuring the safety and reliability of electrical systems. The microscopy method is considered the best option for this testing as it provides highly accurate and reliable results that can help identify any potential issues before they become significant problems. By performing regular void and contamination tests, organizations can ensure that their electrical systems are safe and reliable and that their customers are protected.

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What are the Disadvantages of using Optical Profile Projector or Measuring Microscopes for Measuring Cable Insulation and Sheath Thickness? https://cablemeasurement.com/what-are-the-disadvantages-of-using-optical-profile-projector-or-measuring-microscopes-for-measuring-cable-insulation-and-sheath-thickness/ Mon, 03 Aug 2020 09:37:44 +0000 http://cable.sipconinstrument.com/?p=2051

Traditionally, measuring microscopes or Profile projectors were used to measure cable insulation and sheath thickness. For quite a long time , quality control personnel of cable manufacturing units had to rely on these systems to ensure that the finished product matched the minimum set standards for a particular voltage rated cable. However with the coming of Filed-of-view based systems which overcomes many disadvantages of the traditional systems, quality professionals can not only be assured of the accuracy of the results but also can perform their job more efficiently.

The traditional systems had the following disadvantages:

  1. Selection of minimum thickness point:  In traditional systems the operator used to visually probe the sample to find the minimum thickness point. This practice was prone to errors because of its dependence on operator skill and alertness. However in a FOV systems, the minimum thickness is automatically calculated using image capture and computer algorithms.
  2. Sixty degree thickness measurements: Once the minimum thickness is detected, the measuring standard requires to measure five different measurements at 60 degree each which is a time consuming procedure. With an FOV system, these measurements are done automatically in no time.
  3. Diameter Measurements: Traditional measurement methods probed diameter at two points and then calculated the average value of diameter. On the other hand an FOV system, especially a Cable Quickie, probes 10,000 point on the cable cross-section to find out the average diameter and thus gives more accurate results.
  4. Eccentricity Measurements: Cable eccentricity measurements with measuring microscopes and profile projectors used to time consuming and error prone but with FOV systems the calculation is automatic.

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Why are Cable Insulation Tensile Strength and Breaking Point Elongation Important? https://cablemeasurement.com/cable-insulation-tensile-strength/ Fri, 31 Jul 2020 09:32:12 +0000 http://cable.sipconinstrument.com/?p=2010

Why are Cable Insulation Tensile Strength and Breaking Elongation important and how are they determined?

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Cable Insulation Tensile Strength and Elongation are key indicators of the life of the cable, its ability to bear physical stresses during installation, work-life, service etc. The standard values are specified for different types of insulation materials and cable manufacturers need to perform these tests in-house or from third party to ensure that their finished product matches the standard values.  Below are some standard values for the two most commonly used insulation materials; PVC and XLPE.

Material Density g/cm3 Tensile Strength N/mm2 Breaking Elongation %
PVC 1.35 15 250
PVC Heat Resistant 1.35 18 200
XLPE 0.92 22 300

 

Test Equipment & Procedure

Both Tensile Strength and Elongation at Break Point are performed on a Force Testing Machines which apply the load mechanically by a screw and gears, or hydraulically with a pump and motor. The purpose of the machine is to test the materials in tension, compression or bending. The main objective is to create a stress strain curve i.e plot of tensile force vs tensile elongation with respect to the known specimen dimensions.

Test procedures are generally in accordance with an internationally recognized standard procedure like the one mentioned in ASTM D638-14 so that results are consistent between labs. But all standards like ASTM E8 (metals) and D638 (plastics) more or less follow the following steps:

Step 1 : Note the specimen dimensions including length, thickness and cross sectional area.

Step 2: Insert a sample of a material between two fixtures or grips.

Step3: Select speed and load parameters in accordance to the standard

Step 4: Apply force to the material through the use of a universal test machine (UTM) or force testing machine.

Step 5:  Increase the force while measuring the change in length of the sample

 

 

 

 

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How Can You Save Thousands of Dollars in Insulation Material Costs? https://cablemeasurement.com/how-can-you-save-thousands-of-dollars-in-insulation-material-costs/ Sat, 18 Jul 2020 10:49:55 +0000 http://cable.sipconinstrument.com/?p=942 Each rated voltage cable needs to have a certain insulation thickness as specified in the standards. The thickness can be set in an extruder and we can assume that we have the exact thickness required.. However this thickness can vary over a small or wide range. Online X-ray and Ultrasound based thickness measurement systems can precisely measure that thickness and the extruder can be adjusted accordingly.

However there is a need for an offline system to re-check and calibrate online systems to make sure that they are correctly measuring the thickness. Even a 0.1 mm reduction in thickness can translate to savings of thousands of dollars each year.

Cable Quickie is an offline insulation thickness measurement solution based on Field of View Optics that can measure quickly and precisely.

Moreover small to medium cable manufacturers cannot invest in online measurement solutions owing to their high costs that can run into 100k to 150k USD. For them an offline measurement which costs 10k-15k can provider much faster ROI with nearly equivalent results.

Also, it is mandatory for cable manufacturers to get the insulation thickness verified by a government regulatory authority for safety compliance. This makes it necessary to have an offline measurement solution which can measure the sample in-house before sending it to the testing labs.

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Online vs Offline Insulation Thickness Measurement Solutions https://cablemeasurement.com/online-vs-offline-insulation-thickness-measurement-solutions/ Fri, 10 Jul 2020 09:11:51 +0000 http://cable.sipconinstrument.com/?p=828

Online vs Offline Insulation Thickness Measurement Solutions

Both online and offline measurement solutions are necessary in a cable manufacturing process and one cannot replace the other as each of the two serves a specific need. Infact, the offline system is used to calibrate the online systems. Whereas the online systems are placed right next to the extruder where they help in controlling the wall thickness. On the other hand Offline Systems are placed in quality controls labs and are used to re-confirm the wall thickness. More importantly they are used to perform measurements as per the set standards of that country to ensure that the cable meets the minimum thickness requirement from a safety view-point.

The table below compares the two systems.

[table id=3 /]

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Why cable insulation thickness is important and what are its industry standards? https://cablemeasurement.com/why-cable-insulation-thickness-is-important-and-what-are-the-industry-standards/ Fri, 10 Jul 2020 08:27:00 +0000 http://cable.sipconinstrument.com/?p=809

Cable Insulation not only prevents current leakages from the wire that can lead to disastrous consequences but also protects the cable from weather elements, oils, chemical solvents, cuts, abrasions thereby increasing its working life.

In a single voltage rating, three insulation levels are used; 100%, 133% and 173% . These insulation levels are based on the speed at which the protective relay is designed to de-energize the system. The following table details the classification:

[table id=1 /]

Insulation thickness absorbs voltage stresses for a given time. Consequently, the higher the voltage capacity of a cable more thickness will be required. For Low Voltage Cables, from 0 to 2000V , the voltage stresses are negligible and usually these cables are over-insulated from voltage stress view-point, however for High Voltage cables, these stresses are huge and therefore insulation thickness becomes more important. An industry wide standard is followed for Specific Insulation Thickness for voltage ratings upto 46kV. Below is table listing these values.

[table id=2 /]

 

 

 

 

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Profile Projectors vs Cable Quickie https://cablemeasurement.com/measuring-cable-insulation-thickness-profile-projectors-vs-cable-quickie/ Mon, 06 Jul 2020 07:26:19 +0000 http://cable.sipconinstrument.com/?p=722

Cable Insulation Thickness has been traditionally measured on Profile Projectors or Measuring Microscopes, however the method gives inaccurate results and is time consuming. On the other hand Cable Quickie, a Field of View based measurement system provides accurate results in just 1-2 seconds. Below is a comparison of the measuring systems.

Profile Projector / Measuring Microscope Cable Quickie Inferences / Remarks
With a minimum magnification of 7X/ 10X set on system, a slice of the cable sample is kept on the worktable and then the operator has to visually locate the minimum thickness point either on projector screen or through the microscope eyepiece and then measure the thickness at that point and 5 subsequent points approximately equidistance from each other. The results are recorded in the Digital Read Out (D.R.O.) or directly in the software from it the same can be exported to the PDF or excel format. If the D.R.O is used instead of software then the operator has to manually note the results and make the spreadsheet later. A slice of the cable sample is kept on the work platform and with a click of a button the software automatically measures the thickness at 10,000 points & from those results, it calculates the minimum thickness point and then locates other points equidistance from each other. Thus the requirement for visually locating the minimum thickness point is left to an advanced computer algorithm. Finding the minimum thickness point based on users discretion can result in loss of thousands of dollars as excess material.
Operator to Operator Variation in measurements, data entry errors No operator to operator to variation, automatic data transfer Human errors can result in wrong calculation of insulation thickness leading to losses
Setting up the System, Manual Point Probing and Calculations lead to 15-20 minutes to generate reports No set-up time, Immediate Reports in seconds More samples can be measured in a given time leading to better control over the process
Skilled operator is required No operator skills are required Costs of keeping a skilled operator are not incurred.
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Reducing Manufacturing Costs in Cable Industry https://cablemeasurement.com/reducing-manufacturing-costs-in-cable-industry/ Fri, 03 Jul 2020 04:48:16 +0000 http://cable.sipconinstrument.com/?p=689

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