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Home > P4 protective clothing

P4 protective clothing

Shanghai Sunland Industrial Co., Ltd is the top manufacturer of Personal Protect Equipment in China, with 20 years’experience. We are the Chinese government appointed manufacturer for government power,personal protection equipment , medical instruments,construction industry, etc. All the products get the CE, ANSI and related Industry Certificates. All our safety helmets use the top-quality raw material without any recycling material.

Why choose us

Solutions to meet different needs

Solutions to meet different needs

We provide exclusive customization of the products logo, using advanced printing technology and technology, not suitable for fading, solid and firm, scratch-proof and anti-smashing, and suitable for various scenes such as construction, mining, warehouse, inspection, etc. Our goal is to satisfy your needs. Demand, do your best.

Highly specialized team and products

Highly specialized team and products

Professional team work and production line which can make nice quality in short time.

We trade with an open mind

We trade with an open mind

We abide by the privacy policy and human rights, follow the business order, do our utmost to provide you with a fair and secure trading environment, and look forward to your customers coming to cooperate with us, openly mind and trade with customers, promote common development, and work together for a win-win situation.

24 / 7 guaranteed service

24 / 7 guaranteed service

The professional team provides 24 * 7 after-sales service for you, which can help you solve any problems

Certificate of honor


CONTACT USCustomer satisfaction is our first goal!

Consultation hotline:0086-15900663312

Address:No. 3888, Hutai Road, Baoshan District, Shanghai, China

P4 protective clothing

Lead Garments (Aprons Gloves etc.)

Lead Garments (Aprons Gloves etc.)

First, consider the amount of material needed to provide the same amount of ,protection, as 0.5 mm of ,lead,, which is ,protection, provided by many leaded aprons. At 60 keV (6.0 × 10-2 MeV), the mass attenuation coefficient, µ/ρ, of ,lead, is 5.021 cm 2 g-1. Multiplying by the thickness of 0.05 cm and the density of ,lead,, 11.35 g cm-3, gives 2.85.

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A guide to the use of lead for radiation shielding

A guide to the use of lead for radiation shielding

Lead, has long been recognized as a highly effective material in pro-viding ,protection, from various sources of radiation, and as such, has become a standard in the design of radiation ,protection, systems. ,Lead, for Radiation ,Protection, has been written to familiarize architects, designers, specifiers, users and engineering students with

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Evaluation of the effectiveness of X-ray protective aprons ...

Evaluation of the effectiveness of X-ray protective aprons ...

Few practical evaluation studies have been conducted on X-ray ,protective, aprons in workplaces. We examined the effects of exchanging the ,protective, apron type with regard to exposure reduction in experimental and practical fields, and discuss the effectiveness of X-ray ,protective, aprons. Experimental field evaluations were performed by the measurement of the X-ray transmission rates of ...

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NEA | Ionising Radiation

NEA | Ionising Radiation

Lead, gloves, ,lead, aprons and ,lead, screens must be available for the ,protection, of staff and patients. The field size should be limited to the area of interest and, unless inappropriate for the technique employed, fast films and intensifying screens must be used so that the irradiation of the patient is not more than is necessary to produce a satisfactory diagnostic result.

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The Use and Care of Lead protective equipment

The Use and Care of Lead protective equipment

The Use and Care of ,Lead Protective, Equipment All the staff in a radiographic room during X-ray exposures must stand behind a ,protective, barrier or use ,protective, aprons or whole body ,protective, barriers of not less than 0.25 mm of ,lead, equivalent. Gonadal shielding should be used for all patients, of not less than 0.25 mm of ,lead, equivalent.

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Personal Protective Equipment (PPE) in a Radiation ...

Personal Protective Equipment (PPE) in a Radiation ...

Other respiratory ,protective, equipment (e.g., a simple surgical facemask, N-95 respirators), non-fit tested respirators, or ad hoc respiratory ,protection, do not deliver appropriate or sufficient respiratory ,protection,; environmental testing and hazard assessment by a safety professional can help identify hazards and risk levels and direct choices of permissible PPE.

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Aprons for protection against X-rays | ARPANSA

Aprons for protection against X-rays | ARPANSA

For staff working in environments which have X-ray producing equipment, one of the main means of ,protection, is the ,lead, apron. It is recommended that all aprons should comply with Australian Standard AS/NZS 4543.3:2000 for light and heavy aprons depending on the ,application,.

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[PDF] Implementation of an X-ray radiation protective ...

[PDF] Implementation of an X-ray radiation protective ...

In order to comply with the requirements established by healthcare organization accrediting agencies, radiation ,protective, equipment (e.g., ,lead, aprons, gloves, and collars) utilized by x-ray workers must be periodically evaluated for damage. The objective of such evaluations is to identify and remove from service equipment bearing large holes, tears, etc., that could compromise the safety of ...

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NEA | Ionising Radiation

NEA | Ionising Radiation

Lead, gloves, ,lead, aprons and ,lead, screens must be available for the ,protection, of staff and patients. The field size should be limited to the area of interest and, unless inappropriate for the technique employed, fast films and intensifying screens must be used so that the irradiation of the patient is not more than is necessary to produce a satisfactory diagnostic result.

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Radiation Protection for the Fluoroscopy Operator and ...

Radiation Protection for the Fluoroscopy Operator and ...

Non–,lead,-based aprons and thyroid shields—Manufacturers have addressed the ergonomic issues by incorporating ,lead, alternatives to make lighter ,protective, aprons. ,Lead, composite shielding materials (combined with cadmium, tin, iodine, barium, antimony, or tungsten) may decrease garment weight compared with the use of ,lead, alone but have mixed attenuation efficiencies [ 29 , 30 ] ( Fig. 4A ).

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