AERB/NABL/BARC/ILAC Registered license holder
AERB/NABL/BARC/ILAC Registered license holder


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A testing analysis is a technique used for examining the material in the laboratory. Certified laboratory professionals carry out the testing analysis in the domain of fuel, oils and aviation hydraulic fluids. The specialized laboratory team provides test reports to MRO’s, Aircraft Delivery centre and Airlines.
testing & analysis service
A testing analysis is a technique used for examining the material in the laboratory. Certified laboratory professionals carry out the testing analysis in the domain of fuel, oils and aviation hydraulic fluids. The specialized laboratory team provides test reports to MRO’s, Aircraft Delivery centre and Airlines.
testing & analysis service in india
Why We?
We at YORKSHIRE offers a comprehensive range of in-house and on-site services to our clients. As our expertise work according to PART 145 and FAR 145 international and AERB protocols. We are well- recognized as a prominent testing & analysis service provider in India. Our analytic team has excelled in the arena of Industrial Radiography also.
Our process:
NORM:
NORM (Naturally Occurring Radioactive Materials) is the radioactive elements present naturally in the earth’s crust, comparatively low in concentration. The particles that comprise a naturally occurring radionuclide, for example, potassium, thorium, uranium, radium and naturally occurring decaying products.
Sources:
Burning of charcoal
Oil & gas production
Fertilizer
Non-Destructive Testing Service:
Non-destructive Testing (NDT) is a method of quality control of materials without impairing their aimed use. The material under inspection does not undergo any changes in its physical and chemical properties. The shape, size, density, colour and its internal component remains absolutely undisturbed after and before doing this kind of inspection.
Gamma or X-rays are utilized by our expertise while performing this process. Henceforth, YORKSHIRE superiority in the field of Industrial Radiography is known universally. Our sole aim is to provide radiation shielding worldwide.
TENORM:
Technologically Enhanced Naturally Occurring Radioactive Materials (TENORM), when the naturally occurring radioactive elements are exposed in the earth’s surface through the human activities interference via mining, extraction, and others. Then the ecological balance is disturbed and the concentration of radionuclide level rises up drastically in the atmosphere, which is extremely severe for health and atmosphere.
Our RSOs combined their experience with quality assurance equipment’s and serve finest testing & analysis services to mining and extraction industries, aviation industries, radiation industries etc.
Experts Scanning Facility:
Weld joint scanning in an ultrasonic machine
Casting
Forging
Our advanced testing & analysis service helps in detecting Lack of penetration, Lack of fusion, cracks, slag, etc. for the aid of our clients.
YORKSHIRE TRADE LINK CORP Service towards the Clients!
Eddy Current Inspection
Ultrasonic Inspection
Magnetic Particle Testing
Liquid Penetrant Testing
Visual Testing
Leak Testing
Radiography Testing

Radiation is the process in which energy is emitted and travels in invisible waves or rays. When an emission of energy occurs as electromagnetic waves or as atomic energy, the energy is conveyed in the form of waves or streams of particles
A testing analysis is a technique used for examining the material in the laboratory. Certified labora
Radiation is the process in which energy is emitted and travels in invisible waves or rays. When an emission of energy occurs as electromagnetic waves or as atomic energy, the energy is conveyed in the form of waves or streams of particles
A testing analysis is a technique used for examining the material in the laboratory. Certified laboratory professionals carry out the testing analysis in the domain of fuel, oils and aviation hydraulic fluids. The specialized laboratory team provides test reports to MRO’s, Aircraft Delivery centre and Airlines.
testing & analysis service in india
Why We?
We at YORKSHIRE offers a comprehensive range of in-house and on-site services to our clients. As our expertise work according to PART 145 and FAR 145 international and AERB protocols. We are well- recognized as a prominent testing & analysis service provider in India. Our analytic team has excelled in the arena of Industrial Radiography also.
Our process:
NORM:
NORM (Naturally Occurring Radioactive Materials) is the radioactive elements present naturally in the earth’s crust, comparatively low in concentration. The particles that comprise a naturally occurring radionuclide, for example, potassium, thorium, uranium, radium and naturally occurring decaying products.
Sources:
Burning of charcoal
Oil & gas production
Fertilizer
Non-Destructive Testing Service:
Non-destructive Testing (NDT) is a method of quality control of materials without impairing their aimed use. The material under inspection does not undergo any changes in its physical and chemical properties. The shape, size, density, colour and its internal component remains absolutely undisturbed after and before doing this kind of inspection.
Gamma or X-rays are utilized by our expertise while performing this process. Henceforth, YORKSHIRE superiority in the field of Industrial Radiography is known universally. Our sole aim is to provide radiation shielding worldwide.
TENORM:
Technologically Enhanced Naturally Occurring Radioactive Materials (TENORM), when the naturally occurring radioactive elements are exposed in the earth’s surface through the human activities interference via mining, extraction, and others. Then the ecological balance is disturbed and the concentration of radionuclide level rises up drastically in the atmosphere, which is extremely severe for health and atmosphere.
Our RSOs combined their experience with quality assurance equipment’s and serve finest testing & analysis services to mining and extraction industries, aviation industries, radiation industries etc.
Experts Scanning Facility:
Weld joint scanning in an ultrasonic machine
Casting
Forging
Our advanced testing & analysis service helps in detecting Lack of penetration, Lack of fusion, cracks, slag, etc. for the aid of our clients.
YORKSHIRE TRADE LINK CORP Service towards the Clients!
Eddy Current Inspection
Ultrasonic Inspection
Magnetic Particle Testing
Liquid Penetrant Testing
Visual Testing
Leak Testing
Radiography Testing

BORESCOPE INSPECTIONA borescope allows the examiner to examine the places that are otherwise inaccessible by the naked eyes. A borescope is a valuable optical tool and especially designed
A borescope allows the examiner to examine the places that are otherwise inaccessible by the naked eyes. A borescope is a valuable opti
BORESCOPE INSPECTIONA borescope allows the examiner to examine the places that are otherwise inaccessible by the naked eyes. A borescope is a valuable optical tool and especially designed
A borescope allows the examiner to examine the places that are otherwise inaccessible by the naked eyes. A borescope is a valuable optical tool and especially designed for non-destructive testing.

Rigid Borescope:
This kind of borescope depicts crystal clear images to the viewer. It provides by far the finest quality of the image and works effortlessly in the inspecting field of hydraulic manifold bodies, gunsmithing, fuel injectors, and automotive cylinders.
Flexible Borescope:
It is a twistable rod that is attached to the camera to the eyepiece on one end. This type of borescope is used for varieties of purpose such as for peeking into curvy pipes, vents, chimney, ducts etc.
Video Borescope:
It is popularly also known as inspection camera. A video camera is linked at the end of this device, the ability to capture the still images or video of this equipment is exclusive.
Quality Assurance Device used by Our Specialized team!
SPACEXGLOBAL CORP. professionals uses advanced and upgraded borescope for inspecting the medium. Our inspecting device comprises of rod lens system, a reliable lens system, fibre optic image guides a CMOS camera or CCD. Our borescope is introduced into the element being assessed, without disturbing the subject of interest.


Elements as titanium, manganese, chromium, which are found in abundance in the earth's crust, are also considered to be rare metals. This is because manganese and chromium have been essential elements for the industrial world since its early days,

Elements as titanium, manganese, chromium, which are found in abundance in the earth's crust, are also considered to be rare metals. This is because manganese and chromium have been essential elements for the industrial world since its early days,


Atomic Number: 21
Symbol: Sc
History: It got its name from Latin Scandia (Scandinavia), where the first rare earth ore was discovered.
Applications/Uses: Light aluminium-scandium alloy for aerospace components, additive in Mercury-vapor lamps.

Atomic Number: 39
Symbol: Y
History: It has been named after the village of Ytterby, Sweden, where the first rare earth ore was discovered.
Applications/Uses: Yttrium-aluminium garnet (YAG) laser, yttrium vanadate (YVO4) as host for europium in TV red phosphor, YBCO high-temperature superconductors, yttrium iron garnet (YIG) microwave filters.

Atomic Number: 57
Symbol: La
History: It got its name from the Greek �lanthanein�, meaning to be hidden.
Applications/Uses: High refractive index glass, flint, hydrogen storage, battery-electrodes, camera lenses, fluid catalytic cracking catalyst for oil refineries

Atomic Number: 58
Symbol: Ce
History: It has been named after the dwarf planet Ceres, named after the Roman goddess of agriculture.
Applications/Uses: Chemical oxidizing agent, polishing powder, yellow colors in glass and ceramics, catalyst for self-cleaning ovens, fluid catalytic cracking catalyst for oil refineries, ferrocerium flints for lighters

Atomic Number: 59
Symbol: Pr
History: It got its name from the Greek �prasios�, meaning leek-green, and �didymos�, meaning twin.
Applications/Uses: Rare-earth magnets, lasers, core material for carbon arc lighting, colorant in glasses and enamels, additive in didymium glass used in welding goggles,[4] ferrocerium firesteel (flint) products.

Atomic Number: 60
Symbol: Nd
History: It got its name from the Greek �neos�, meaning new, and �didymos�, meaning twin.
Applications/Uses: Rare-earth magnets, lasers, violet colors in glass and ceramics, ceramic capacitors

Atomic Number: 61
Symbol: Pm
History: It has been named after the Titan Prometheus, who brought fire to mortals.
Applications/Uses: Nuclear batteries

Atomic Number: 62
Symbol: Sm
History: It has been named after Vasili Samarsky-Bykhovets, who discovered the rare earth ore samarskite.
Applications/Uses: Rare-earth magnets, lasers, neutron capture, masers

Atomic Number: 63
Symbol: Eu
History: It has been named after the continent of Europe.
Applications/Uses: Red and blue phosphors, lasers, mercury-vapor lamps, NMR relaxation agent.

Atomic Number: 64
Symbol: Gd
History: It has been named after Johan Gadolin (1760�1852), to honor his investigation of rare earths.
Applications/Uses: Rare-earth magnets, high refractive index glass or garnets, lasers, X-ray tubes, computer memories, neutron capture, MRI contrast agent, NMR relaxation agent.

Atomic Number: 65
Symbol: Tb
History: It has been named after the village of Ytterby, Sweden.
Applications/Uses: Green phosphors, lasers, fluorescent lamps

Atomic Number: 66
Symbol: Dy
History: It got its name from the Greek �dysprositos�, meaning hard to get.
Applications/Uses: Rare-earth magnets, lasers

Atomic Number: 67
Symbol: Ho
History: It has been named after Stockholm (in Latin, �Holmia�), native city of one of its discoverers.
Applications/Uses: Lasers

Atomic Number: 68
Symbol: Er
History: It has been named after the village of Ytterby, Sweden.
Applications/Uses: Lasers, vanadium steel

Atomic Number: 69
Symbol: Tm
History: It has been named after the mythological northern land of Thule.
Applications/Uses: Portable X-ray machines

Atomic Number: 70
Symbol: Yb
History: It has been named after the village of Ytterby, Sweden.
Applications/Uses: Infrared lasers, chemical reducing agent

Atomic Number: 71
Symbol: Lu
History: It has been named after Lutetia, the city which later became Paris.
Applications/Uses: PET Scan detectors, high refractive index glass.

Atomic Number: 75
Symbol: Re
Rarity: 0.7 ppb
History: Discovered in 1925, rhenium was the last stable element to be discovered. It was named after the river Rhine in Europe.
Applications/Uses: Rhenium is added to high-temperature super alloys that are used to make jet engine parts, using 70% of the worldwide rhenium production. Another major application is in platinum-rhenium catalysts, which are primarily used in making lead-free, high-octane gasoline.

Atomic Number: 77
Symbol: Ir
Rarity: 1 ppb
History: Iridium was discovered in 1803 among insoluble impurities in natural platinum. Smithson Tennant, the primary discoverer, named the iridium for the goddess Iris.
Applications/Uses: electronics-related; iridium crucibles are commonly used for growing large high-quality single crystals; spark plugs; electrodes for the chloralkali process; and chemical catalysts.

Atomic Number: 45
Symbol: Rh
Rarity: 1 ppb
History: Rhodium was discovered in 1803 by William Hyde Wollaston in an ore of platinum or nickel, and was named for the rose color of one of its chlorine compounds, produced after it reacted with the powerful acid mixture aqua regia.
Applications/Uses: catalytic converter; glass industry, mostly for production of fiberglass and flat-panel glass; Rhodium detectors are used in nuclear reactors to measure the neutron flux level.

Atomic Number: 44
Symbol: Ru
Rarity: 1 ppb
History: Russian scientist, Karl Ernst Claus, discovered the element in 1844 and named it after Ruthenia, the Latin word for Rus� (ancient Russia).
Applications/Uses: used for wear-resistant electrical contacts and the production of thick-film resistors; platinum alloys.

Atomic Number: 52
Symbol: Te
Rarity: 1 ppb
History: Tellurium was discovered in Transylvania (today part of Romania) in 1782 by Franz-Joseph M�ller von Reichenstein in a mineral containing tellurium and gold. Martin Heinrich Klaproth named the new element in 1798 after the Latin word for �earth�, tellus
Applications/Uses: it is used in iron, copper and lead alloys; it makes stainless steel and copper more machinable; it improves strength and durability of lead; it decreases the corrosive action of sulfuric acid.

Atomic Number: 76
Symbol: Os
Rarity: 1.5 ppb
History: Osmium (from Greek �osme� meaning �smell�) was discovered in 1803 by Smithson Tennant and William Hyde Wollaston in London, England.
Applications/Uses: Its alloys with platinum, iridium, and other platinum group metals are employed in fountain pen tips, electrical contacts, and other applications where extreme durability and hardness are needed.

Atomic Number: 79
Symbol: Au
Rarity: 4 ppb
History: Gold has been a valuable and highly sought-after precious metal for coinage, jewelry, and other arts since long before the beginning of recorded history.
Applications/Uses: Monetary exchange; Investment; Jewelry; Medicine; Food and drink; Industry; Electronics; Commercial chemistry.

Atomic Number: 78
Symbol: Pt
Rarity: 5 ppb
History: Its name is derived from the Spanish term platina, which is literally translated into �little silver�. The first European reference to platinum appears in 1557 in the writings of the Italian humanist Julius Caesar Scaliger as a description of an unknown noble metal found between Dari�n and Mexico, �which no fire nor any Spanish artifice has yet been able to liquefy.�
Applications/Uses: Platinum is used in catalytic converters, laboratory equipment, electrical contacts and electrodes, platinum resistance thermometers, dentistry equipment, and jewelry.

Atomic Number: 83
Symbol: Bi
Rarity: 8.5 ppb
History: Bismuth metal has been known from ancient times, but its name possibly comes from Arabic �bi ismid�, meaning having the properties of antimony or German words �weisse masse or wismuth� (white mass), translated in the mid sixteenth century to New Latin �bisemutum�.
Applications/Uses: pharmaceuticals, pigments, cosmetics, metallurgical additives for casting and galvanizing, bismuth alloys, solders and ammunition.

Atomic Number: 46
Symbol: Pd
Rarity: 15 ppb
History: It is a rare and lustrous silvery-white metal discovered in 1803 by William Hyde Wollaston. He named it after the asteroid Pallas, which was itself named after the epithet of the Greek goddess Athena, acquired by her when she slew Pallas.
Applications/Uses: catalytic converters, electronics, dentistry, medicine, hydrogen purification, chemical applications, and groundwater treatment

Atomic Number: 47
Symbol: Ag
Rarity: 75 ppb
History: Silver has been known since ancient times. The chemical symbol �Ag� is from the Latin for silver, argentum, from the Indo-European root *arg- meaning �white� or �shining�.
Applications/Uses: investment, to make ornaments, jewelry, high-value tableware, utensils, currency coins, electrical contacts and conductors, in mirrors and in catalysis of chemical reactions.

Atomic Number: 80
Symbol: Hg
Rarity: 85 ppb
History: Mercury was found in Egyptian tombs that date from 1500 BC.
Applications/Uses: Mercury is used primarily for the manufacture of industrial chemicals or for electrical and electronic applications. It is used in some thermometers, especially ones which are used to measure high temperatures. A still increasing amount is used as gaseous mercury in fluorescent lamps.

Atomic Number: 49
Symbol: In
Rarity: 250 ppb
History: German chemists Ferdinand Reich and Hieronymous Theodor Richter discovered it in 1863 while doing spectroscopy and named the element with the blue spectral line indium, from the indigo color seen in its spectrum.
Applications/Uses: coating for bearings in high-performance aircraft engines, fusible alloys, solders, and electronics, semiconductors, liquid crystal displays (LCD).

Atomic Number: 32
Symbol: Ge
Rarity: 1500 ppb
History: In 1886, Clemens Winkler found the new element along with silver and sulfur, in a rare mineral called argyrodite and named the element after his country, Germany.
Applications/Uses: Germanium �metal� (isolated germanium) is used as semiconductor in transistors and various other electronic devices. PET bottles.


A true antique is an item perceived as having value because of its aesthetic or historical significance, and often defined as at least 100 years old, although the term is often used loosely to describe any object that is old.

What is Antiques?
The common definition of antique is a collectible object such as a piece of furniture or
A true antique is an item perceived as having value because of its aesthetic or historical significance, and often defined as at least 100 years old, although the term is often used loosely to describe any object that is old.

What is Antiques?
The common definition of antique is a collectible object such as a piece of furniture or work of art that has a high value because of its considerable age, but it varies depending on the item, its source, the year of its creation etc. The customary definition of antique requires that an item should be at least 100 years old and in original condition (Motor vehicles are an exception to this rule, with some definitions requiring an automobile to be as little as 25 years old to qualify as an antique.)
In the United States, the 1930 Smoot-Hawley Tariff Act defined antiques as, “…works of art (except rugs and carpets made after the year 1700), collections in illustration of the progress of the arts, works in bronze, marble, terra cotta, parian, pottery, or porcelain, artistic antiquities and objects of ornamental character or educational value which shall have been produced prior to the year 1830.”[citation needed] 1830 was the approximate beginning of mass production in the United States. These definitions were intended to allow people of that time to distinguish between genuine antique pieces, vintage items, and collectible objects.
The alternative term, antiquities, commonly refers to the remains of ancient art and everyday items from antiquity, which themselves are often archaeological artifacts. An antiquarian is a person who collects and studies antiquities or things of the past.








LAND REMEDIATION taking care of our environment today is the sustainable act for the generations of tomorrow. Land remediation deals with an exclusive process of removing contaminant materials or particles from surface water, terrestrial ground, and sediments.

An environment is the inimitable creation of mother nature.
Our Expert build a
LAND REMEDIATION taking care of our environment today is the sustainable act for the generations of tomorrow. Land remediation deals with an exclusive process of removing contaminant materials or particles from surface water, terrestrial ground, and sediments.

An environment is the inimitable creation of mother nature.
Our Expert build a shield to safeguard you from contamination.
Taking care of our environment today is the sustainable act for the generations of tomorrow. Land remediation service deals with an exclusive process of removing contaminant materials or particles from surface water, terrestrial, and sediments. This technique is performed for keeping the atmosphere pollution and radiation safe.
The solemn criterion of our land remediation service in India is to protect all living beings and the mother nature from the damaging effects of land radiation.
We are The Change You Wish to see In the Environment
It is our priority, whether public or private to provide full-fledged safety and security to the employees at the workplace. The employees working in the field of radiation exposure, during or after the remediation of contamination, the risk of health hazards is comparatively high. They are easily prone to life taking diseases like cancer, tumors, posterior subcapsular cataracts, hampers reproductive system, permanent hormonal disbalance and others.
At SPACEXGLOBAL CORP., our expertise performs their crucial responsibilities as per AERB/BARC norms. Our well- certified and years experienced engineers, geologists and technician team serves you cost-effective services in India.
The prime motto of our exclusive environmental or land remediation service in India is to minimize and detect the malicious source of ionizing radiation.
We love our customers, so feel free to visit during normal business hours.
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Mon | 10:00 am – 05:00 pm | |
Tue | 10:00 am – 05:00 pm | |
Wed | 10:00 am – 05:00 pm | |
Thu | 10:00 am – 05:00 pm | |
Fri | 10:00 am – 05:00 pm | |
Sat | 10:00 am – 05:00 pm | |
Sun | Closed |

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Radiation is nothing but a process in which Energy is emitted as waves or particles. The complete process in which energy is emitting from one body, transmitted through a medium or space and absorbed by another body.
Radiation exists at every corner of the earth. The intensity of the radiation verifies from one place to another. Due to low level of radiation, we are unable to feel its impact. It is produced naturally and artificially also. Medical equipment’s like x-ray machines, microwaves, radio frequency, ultraviolet rays, gamma, and others are source of radiation.
Depends upon the type of radiation and the ability to penetrate other materials or medium. Alpha and beta radioactive particles can’t travel too far at all, and they are easily blocked due to less penetrating ability. But gamma rays, x-rays, and neutrons travel a notable distance and are difficult to block naturally (particularly for large radioactive sources).
Alpha (α) radiation consists of a fast-moving helium-4 (4 he) nucleus and is stopped by a sheet of paper.
Beta (β) radiation, consisting of electrons, is halted by an aluminium plate.
Gamma (γ)radiation, consisting of energetic photons, is eventually absorbed as it penetrates a dense material.
Neutron (n) radiation consists of free neutrons that are blocked by light elements, like hydrogen, which slow and/or capture them. Not shown : galactix cosmic rays that consist of energetic charged nuclei such as protons, helium nuclei, and high charged unclei called HZE ions.
The exact effect depends upon the specific type and intensity of the radiation exposure.
Potassium Iodide (KI) protects people from thyroid cancer caused by radioactive iodine. One type of radioactive material that can be released in nuclear explosions. KI should only be taken in a radiation emergency that involves the release of KI. Since the use or release of radioactive iodine from a “dirty bomb” is highly unlikely, KI pills would not be useful.
Our Country has a long-term plan of wide applications of nuclear radiations and radioactive sources for peaceful applications for mankind. Like in; medicine, industry, agriculture and research. Already having several places in the country where such sources are being used. These places are mostly outside of the Department of Atomic Energy (DAE) installations. DAE supplies such sources. The most important application of nuclear energy in DAE is in electricity generation through nuclear power plants. Around 22 such nuclear reactors are operating now. In view of the above mentioned wide spread applications, Indian parliament through an Act, called Atomic Energy Act, 1962 created an autonomous body called Atomic Energy Regulatory Board (AERB) with authority and powers. This Board issues licenses, codes, guides, manuals, etc., to regulate such installations to ensure safe use of such sources and crews engaged in such installations and environment, receives radiation exposures within the maximum limit prescribed by them. Periodic reports are submitted to AERB to demonstrate compliance of its directives. Health, Safety and Environment (HSE) Group of Bhabha Atomic Research Centre (BARC), Mumbai and various regional offices carry out necessary surveillance and monitoring of all installations of the DAE on a routine basis and periodic inspections of other installations using radiation sources. Some of the nuclear fuel cycle plants like nuclear power plants and fuel reprocessing involve large radioactive source inventories and have potential of accidental release of radioactivity into the environment. The data is provided to AERB and is available to members of the public. In addition, a multi-tier system of AERB permissions is in place to ensure that all aspects of safety have been considered before permission to operate is granted. The stages where permission of AERB is essential are site selection, design data, and several stages during construction and operation. The details required by AERB include provision for treatment and storage of radioactive waste, de-commissioning procedures and provision of costs. In addition to AERB, nuclear power plants must comply with the requirements of Ministry of Environment and Forests and get their clearance. This is given based on Environmental Impact Assessment Report which should satisfy the authorities that no ecological damage will be caused, and the facility will not have adverse effect on the environment. In addition, the State Pollution Control Board where the facility is to be located must permit the site of the plant for its proposed discharges into the environment. It is largely due to the above comprehensive regulatory controls that none of the plants in India had any accident during the last 34 decades of operation. The type of measurements carried out by the ESL’s and results from a few typical ESL’s will be presented.
Law and order never allows us to keep a radioactive source without proper shielding. If even that is kept like as said, leakage shall be there and that unexpectedly dangerous for the mankind. Being a professional, we never suggest keeping a radioactive source like that.
Radioactive sources should be “sealed” as per the law and act. Usually they are very small, their size can vary from tiny seeds; used in cancer treatment, to the size of the tip of a ballpoint pen or may up to several inches in length, depending on the material and its configuration.
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