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Leading Manufacturer, Supplier & Retailer of Oxygen Index Tester, cone calorimeter, RCPT, Milk Analyzer Essae MA 815 and Single Flame Source Tester.
ASTM D2863 Oxygen Index
Oxygen Index: Measuring the Minimum Oxygen Concentration to Support Candle-Like Combustion of PlasticsThe purpose of ASTM D2863 is to establish the lowest oxygen concentration in an oxygen/nitrogen combination necessary to sustain a flame burn on a plastic specimen. Real end use circumstances are not correlated.
The test sample is placed vertically in a glass chimney, and a flow of oxygen and nitrogen is created there by starting at the bottom of the chimney. The test sample's top edge is lighted, and when the oxygen concentration in the flow falls, the flame eventually goes out.
Specimen dimensions: Depending on the kind of material being tested, there are six requirements for the test specimen.
Features:
A new paramagnetic oxygen cell for measuring oxygen levels precisely (to 0.1%)
A small, effective unit with ventilation for use inside a lab hood
By adjusting a single valve, an automatic flow control system allows adjustment of the oxygen level.
quickly inserting the test sample into the 450 mm 75 mm test chimney
During the test, a digital monitor shows the atmosphere's oxygen content (no calculations needed)
Temperature of the gas mixture entering the test chimney is displayed digitally.
Sample holder supplies are available for both rigid and flexible samples.
reduced gas path for quick reaction
Specification:
Oxygen concentration digital readout: +/- 0.1%
350 (W) x 370 (D) x 280 mm in size (H)
Size of columns (mm): 75 and 95 (dia) 450 (H)
Size: 14 kilogramme
voltage: 110V 60Hz or 230V 50Hz, respectively.
Operating Guide: Provided Additional Service
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Payment Terms : L/C, D/A, D/P, T/T
Delivery Time : 1 Week
cone calorimeter what is it? a cone calorimeter is a device used to measure the thermal behavior of small samples of materials in their condensed phase. its extensive use is in fire safety engineering, where it is employed to study how different materials burn. the calorimeter can measure the heat release rate, smoke generation rate, ignition time, oxygen consumption status, carbon monoxide, carbon dioxide generation, and mass loss rate of the given material sample. a cone calorimeter is a scientific instrument used to measure the heat release rate and smoke production of materials when they are exposed to an external heat source. this information is valuable for evaluating the fire performance of materials and products, and for developing fire safety standards and codes. the cone calorimeter consists of a small, sealed chamber with a cone-shaped opening at the top. a sample of the material to be tested is placed in the chamber, and an external heat source is applied to the material through the cone-shaped opening. the heat release rate and smoke production of the material are measured using sensors within the chamber. heat release rate is a measure of the rate at which a material releases heat as it burns. it is typically expressed in kw/m2, and is an important factor in determining the fire hazard of a material. the higher the heat release rate, the more quickly a fire can spread and the more intense it will become. smoke production is another important factor in fire safety. smoke can obscure visibility and make it difficult for people to escape a burning building. the smoke production of a material is typically measured in terms of the amount of smoke produced per unit area of the material, and is expressed in m2/m2. cone calorimeters are widely used in the construction, transportation, and aerospace industries to evaluate the fire performance of materials and products. they are also used by fire safety researchers to study the mechanisms of fire spread and to develop new fire safety technologies. in addition to measuring heat release rate and smoke production, cone calorimeters can also be used to measure other fire performance characteristics, such as the ignition temperature of a material and the amount of toxic gases produced during combustion. the use of cone calorimeters has greatly improved our understanding of the fire behavior of materials and has led to the development of more effective fire safety measures. for example, the results of cone calorimeter testing have been used to develop fire resistance ratings for building materials, which are used to evaluate the fire safety of buildings. cone calorimeter testing is typically conducted in accordance with standardized test methods, such as the iso 5660 and astm e1354 standards. these standards specify the apparatus, heat source, and test conditions to be used in the testing of materials. the results of cone calorimeter testing can be used to compare the fire performance of different materials and to predict the fire behavior of materials under different conditions. for example, the results of cone calorimeter testing can be used to compare the fire performance of different types of insulation materials or to predict the fire behavior of a material when it is used in a particular application, such as in the walls of a building or as a component of an aircraft. the principle of cone calorimeter numerous test procedures are available to assess a material's capacity to respond to fire, including the small flame source test (iso 11925-2), the oxygen index (loi) test (iso 4589-2, astm d2863), the horizontal and vertical flammability test (ul 94), and the nbs smoke density test (iso 5659-2, astm e662). they generally include small-scale testing of a single material property, only evaluating its performance in a controlled environment. it cannot be used to predict how a material will behave in a big fire. many nations, areas, and international standards organizatio
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Delivery Time : 1 Week
Product Description:
We play a key role in providing a broad range of Rapid Chloride Ion Permeability Test Apparatus to our esteemed clients. This collection, which is well regarded for use in a variety of industries and sectors, is produced using only the highest quality raw materials. Additionally, this range is sent to the customer after passing its quality testing in the allotted time frame and is quality tested in accordance with industry standards and regulations. Additionally, our range is available at affordable costs in a variety of customised alternatives based on customer needs.
Features:
SMART CL1 has the ability to run tests on three samples simultaneously. The power supply unit for this model delivers a constant voltage of 60 V DC while showing the current in milliamperes in each channel on a large, bright digital readout on the front of the unit. The Operator Must Manually Record These Every 30 Meters. This is the model that universities and other institutions choose when simplicity and economy are needed.
Testing Procedure:
How Are The Concrete Cylindrical Specimens - 50 Mm Thk. Prepared First By Coating The Dry Side Surface With A Special Sealer And Then Vacuum Conditioning It For 22 Hrs? in accordance with ASTM Procedure. After mounting the saturated specimens in the Plexiglass cells, applying the sealant, and filling the reservoirs with the appropriate amounts of nacl and naoh solutions. Then, using the provided cables, the cell terminals are connected to the power supply unit: One for each channel, and the test began with SMART CL1. The current is manually recorded every half-hour for six hours from the digital readouts of the power supply unit. The associated spreadsheet programme receives the recorded values for the specimen's diameter and current to produce the final RCPT value.
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Payment Terms : L/C, D/A, D/P, T/T
Delivery Time : 1 Week
Milk Analyzer
The Ultrasonic Milk Analyzer Machine by Essae, which was industrially designed in Germany and manufactured in a state-of-the-art manufacturing plant in India, makes it simple to analyse milk's density, water content, fat, and SNF concentration in double-quick time. Superior performance is guaranteed with manual record cleaning and maintenance, configurable data formats for integrating with any dairy software, calibration records for service, time stamps, etc. The instrument's integrated design and modular construction make effective use of available space. Essae Milk analyzer features a minimal amount of downtime, a low cost of ownership, and quick assistance for all of its users.
The MA-815 is establishing a new benchmark for milk analysis. The device, which uses ultrasonic technology, is designed for greater performance. It has a user-friendly interface and a vivid green LCD screen display. It is currently available in two variants, both in durable mouldedABS(plastic) Housing and SS304, which is designed to be compact. Both manual and automatic cleaning are available.
Salient Features
Manual Cleaning for Superior Performance
Faster Measurements
DATA Format : Selectable DATA format for easy interface with any DPU & Dairy software
High Precision for High Fat Milk
Memory : Cleaning & Calibration records for service with Time stamp
Technical Specifications
Model | MA-815 | MA-815SS | ||||||||||||||||||
Technology | Ultrasonic Sensor | |||||||||||||||||||
Measuring Time | 38 sec @30C Milk Temperature | |||||||||||||||||||
Milk Acidity |
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L/C, D/A, D/P, T/T Delivery Time : 1 Week Product Description: Single-flame source test, commonly known as the ignitability test.Test equipment complies with standard EN ISO 11925-2. Building structure test findings can be categorised using standard 13501-1. The test specimens' measurements must be (250) mm length by (90) mm broad.The burner is moved horizontally at a 45 angle until the flame, which has a 20 mm length, touches the test specimen at the predetermined position. Testing may be required for edge exposure, surface exposure, or both. As determined by the sponsor, the flame application time is either 15 or 30 seconds. The following information is noted during the test: whether ignition happens; whether or not, and when, the flame tip rises 150 mm above the flame application point; whether the filter ignites Standards: EN ISO 11925-2, DIN 4102 Technical parameters: This apparatus made up of two parts burning chamber and control device Power supply AC220V10%, 50Hz Burner diameter 0.17mm burner with regulator; four 4mm air suction inlet Gas source >95% propane gas;(user should provide for themselves) Gas pressure 10kpa50kpa Flue air velocity 0.7m/s only on condition of burner burning and draught hood open Time adjustment of continuous flame 0 99minutes99seconds Time adjustment of afterflame 0 99minutes99seconds Timer accuracy 1s/h Anemometer accuracy 0.1m/s Burner angle 45 Material stainless steel Observing window two big viewing windows on the front and right side Additional Information: Payment Terms :
L/C, D/A, D/P Delivery Time : 1 Week Flammability Chamber Plastic materials can be categorised according to their capacity to survive combustion using the UL 94 flammability criteria. A plastic material's flammability rating is determined by how it reacts to heat and flame under controlled laboratory settings. The test findings will provide a good indicator of the material's suitability for a certain application in terms of flammability. The size, shape, and intended purpose of the product, as well as elements in the final application such as ease of ignition, burning rate, flame spread, fuel addition, and intensity of burning, will all affect the thermoplastic's behaviour when exposed to heat and flame. Key Features: Minimum Order Quantity 1 Piece Material Mild Steel Model Name/Number ATE/mask flame Usage/Application Laboratory Type Of Testing Machines Fire test Color Blue Packaging Type Wooden Box Display Type Digital Brand KDM Additional Information: Payment Terms :
L/C, D/A, D/P, T/T Delivery Time : 1 Week The NCD 1409 Toxicity Chamber consists of a about 1 m3 enclosure. The inside wall is lined with polypropylene to prevent the gaseous mixture from adhering and to make cleaning easier. Forced air extraction is installed in the chamber, and it can be opened or shut using the control panel as needed. A sampling port that is airtight is installed in the chamber. For proper mixing of the gaseous product inside the test chamber, an axial mixing fan is included. This fan is adjustable via the control panel that comes with the equipment. Features: The burner must be able to produce a flame that is around 100 mm in height.There is a provision for starting and stopping the burner from outside the chamber. For the purpose of measuring the temperature of the burner's flame, a digital temperature indicator is also installed. The equipment includes wire mesh of the appropriate size. The instrument has two flow metres installed to regulate the supply of air and natural gas. Product Description: 1 m3 is the chamber's volume. Flow Meter: 20 LPM for air and 15 LPM for natural gas Temperature gauge: thermocouple of the K-type in a digital type. Timer: Digital, 4 digits Additional Information: Payment Terms :
L/C, D/A, D/P, T/T Delivery Time : 1 Week tester for the fire propagation index with a calcium silicate board combustion chamber and a stainless steel support frame introducing the product the test technique described in bs 476 part 6 provides a comparative measurement of the contribution to the spread of fire made by an essentially flat material, composite, or assembly. the test result is reported as a fire propagation index. its main purpose is to evaluate the effectiveness of internal wall and ceiling linings. technical specifications 1. the stainless steel box support frame. 2. 1000w quartz radiator devices that provide thermal radiation to the sample. 3.stainless steel sample holders, a combustion chamber made of calcium silicate board, a t-type burner, and an open flame combustion mode are all included. 4. the power output is automatically controlled, and the output power is automatically changed in accordance with the test duration; 6. the thermocouple continually records the difference between the temperature and the room temperature in the chimney; 7. 5. the computer may print test reports and automatically handle the data. product specification and use 1. three alternative types of sample containers for specimens with varying thicknesses 2.assembly of a chimney and cowl made of mild steel with a low reflecting black finish and mounting points for thermocouples 3. gas burner made of compliant stainless steel. 4.two thermocouples of the k type with mineral insulation and ceramic insulators. 5. the combustion chamber is equipped with two 1000-watt pencil-style heaters. 6. instrumentation for controlling gas flow, such as a manometer, a flow metre, and an electronic gas on/off valve. 7. smart single phase power controller for precise regulation of electric heating elements 8.during the course of the test, the daq will automatically record the mv output from the flue gas thermocouples. 9. automatically change the output power in accordance with the test duration. application: it is mostly used to assess how well wall and ceiling linings resist fire. product information the bs 476-6 test method is a technique for figuring out a material's flame propagation characteristics. it is mostly used to assess how well wall and ceiling linings function in a fire. flame propagation index is used to express the results. the test object was exposed to a tube torch during which time the lamp released 530 j/m of heat. the two electric heaters' combined wattage was set to 1800 watts at the end of the test's 2 minutes and 45 seconds. the power was decreased to 1500 watts after the first five minutes of the test and stayed there until the test was finished. the test took 20 minutes to complete. interface for software prompted by data acquisition system temperature of the cowl is recorded and displayed against time. temperature data are recorded and displayed against time. an indication of power in kw calibration technique output increase and calibration value calculation standard: bs:bs 476-6 dimension: dimensions: device dimensions are 400mm (w) x 600mm (h) x 300mm (d) 400 mm (w) x 500 mm (h) x 400 mm control module (d) installation requirements weight: 46 kg power supply: 230 volts 10 nominal amps operating range of ambient temperature: 10 to 35 c gas resources: standard test gas g112, as described in bs 4947, is the gas supply that is mentioned in the standard. gas flow for the burner is variable and ranges from 0 to 5 nl/min. 1 kpa of pressure Additional Information: Payment Terms :
L/C, D/A, D/P, T/T Delivery Time : 1 Week smoke visibility tester: smoke detection the test device is comprised of a plywood chamber with an inner side painted with heat-resistant paint and a hole in the ceiling that allows a light metre cell to be held while being tested. the chamber's bottom has a hole that lines up with the hole in the ceiling. the bottom hole has a clear glass bulb installed in it. a hole is present on the chamber's left side, and an exhaust fan has been mounted there. a hole on the right side allows air to circulate when smoke is being expelled into the chamber. a hinged door with a transparent glass pane is on the front of the chamber. the right-side and left-side holes of the chamber each have shutters. an electronics regulator installed in the instrument panel is used to control the lux of the bulb. the black drape covered the front glass window and the hole in the ceiling. on the section stand, the chamber was mounted. the device comes with a lux metre for measuring the lux of the light. the device also comes with a stainless steel plate and an aluminium silicate plate. a stainless steel specimen frame with provisions to hold the specimen and slide the specimen frame is slanted at a 20 angle to the vertical. on the chamber's bottom, a burner is fixed at a 45-degree angle. for the purpose of adjusting the gas supply, a flow metre, pressure gauge, and pressure regulator are installed on the section frame. for long-lasting corrosion resistance, all the pieces have been coated or polished. no gas will be included with the instrument from our end. specifications: bulb: 100 w, 220v ac lux meter: more than 100 lux pressure gauge: 2 kg/cm (2 bars) Additional Information: Payment Terms :
D/A Delivery Time : 1 Week |