Thermal Decomposition Process of APT

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Thermal decomposition process of APT is the thermal decomposition process of ammonium paratungstate. The researchers have proposed a detailed and systematic decomposition mechanism of ammonium paratungstate under inert gas on the basis of summarizing previous research results.

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Microwave Heating Ammonium Paratungstate to Prepare Tungsten Trioxide

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It is a new process to obtain tungsten trioxide by microwave heating ammonium paratungstate. The process requires a short calcination time (only 4min, while the traditional method takes about 2h), and the prepared yellow WO3 powder product is of good quality so that it is worth applying in industry.

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Wet Ammonium Paratungstate Preparing Tungsten Trioxide

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The researchers proposed a method for preparing tungsten trioxide by using wet ammonium paratungstate as raw material.

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Thermal Decomposition Process of Ammonium Paratungstate

thermal decomposition process of ammonium paratungstate picture

Thermal decomposition process of ammonium paratungstate has attracted much attention of researchers as it is an important raw material for preparing tungsten oxide (by calcining APT), and tungsten oxide is an important raw material for preparing tungsten powder by hydrogen reduction, and tungsten powder is an important raw material for preparing tungsten electrode by powder metallurgy.

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How to Prepare High Purity Ammonium Paratungstate?

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How to prepare high purity ammonium paratungstate? The researchers proposed an economical method for preparing high purity ammonium paratungstate with high yield and simple process.

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Tungsten Heavy Alloy Shield

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Tungsten heavy alloy shield is made with high tungsten content and low amounts of Ni, Fe or Ni, Cu. Some tungsten alloy shields are added Co, Mo or Cr, etc. The density of tungsten heavy alloy could be as high as 16.8-18.8g/cm3.

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Tungsten Alloy Syringe Shield with Lead Glass Window

tungsten alloy syringe shield with lead glass window picture

Tungsten alloy syringe shield with lead glass window is thin, lightweight and easy to use. Such a high quality syringe is designed to attenuate FDG F-18 or Tc-99, thereby reducing hand exposure for clinicians during preparation and administration of radiopharmaceuticals. It fits most disposable syringes. And it is easily sanitized with alcohol wipes.

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Gamma Camera Tungsten Alloy Collimator

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Tungsten alloy collimator is a key component that affects the imaging quality of gamma camera (γ camera). Tungsten alloy collimator on a gamma camera is to realize spatial positioning, so that rays from different spatial parts irradiate a specific position of the scintillator. Studies have shown that under the principle of taking into account both geometric resolution (or angular resolution) and detection sensitivity, reducing the transmission effect as much as possible is the core goal of γ camera collimator design.

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Tungsten Alloy Post-patient Collimator Applied for CT Machine

tungsten alloy post-patient collimator applied for CT machine picture

Tungsten alloy post-patient collimator is present between the patient and the detector on a CT machine, which serves to ensure good image quality, minimize the interference of scattered rays from other directions, and to reduce unnecessary radiation doses for the patients. Tungsten alloy post-patient collimator improves the slice sensitivity profile by giving a more rectangular shape.

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Tungsten Alloy Pre-patient Collimator Applied for CT Machine

tungsten alloy pre-patient collimator applied for CT machine picture

Tungsten alloy pre-patient collimator is the tungsten alloy collimator located in front of the X-ray tube on a CT machine, with characteristics of high density, smooth surface and good dimensional accuracy. Tungsten alloy pre-patient collimator is the first component through which X-rays pass, and is mainly used to control the thickness of the scanning layer by controlling the width of the X-ray beam in the direction parallel to the long axis of the human body. The X-rays emitted from the X-ray tube are tapered, and becomes a thin beam after passing through the slit-shaped tungsten collimator.

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