• Xnd-1 Paint-4 Viscometer/ Lab Testing Equipment
  • Xnd-1 Paint-4 Viscometer/ Lab Testing Equipment
  • Xnd-1 Paint-4 Viscometer/ Lab Testing Equipment
  • Xnd-1 Paint-4 Viscometer/ Lab Testing Equipment
  • Xnd-1 Paint-4 Viscometer/ Lab Testing Equipment
  • Xnd-1 Paint-4 Viscometer/ Lab Testing Equipment

Xnd-1 Paint-4 Viscometer/ Lab Testing Equipment

After-sales Service: 24/Hrs Reply
Warranty: 1 Year, 1 Year
Customized: Customized, Customized
Structure: Portable, Samyon, Portable
After-Sales Service: 24/Hrs Reply
The Instrument: 100 Ml
Customization:
Diamond Member Since 2015

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Rating: 5.0/5
Manufacturer/Factory, Trading Company

Basic Info.

Model NO.
XND-1
Product Name
Xnd-1 Paint-4 Viscometer/ Lab Testing Equipment
Model
Xnd-1
Transport Package
Carton Case
Specification
SGS
Trademark
SAMYON
Origin
Cn
HS Code
903180
Production Capacity
100sets Per Month

Product Description

I. Summary
The instrument is suitable to measure viscosity of paints under 150 s. The instrument is designed and made as per the National Standard GB/T1723 "Test Methods for Viscosity of Paints". It is a portable instrument. It is used to measure specific viscosity of paints. The specific viscosity of paint is expressed as the elapse time of sample flowing out from a standard effuse hole after you fill the sample to be determined to the specific container. The unit is second.
II. Main technical features
1. The instrument is made of copper and it is about 100 ml. Its specification and the roughness of its inner wall can meet the stipulations of GB/T1723. Its bottom is a stainless steel effuse hole.
2. Correction coefficient K: Multiply the measured viscosity of the instrument with the correction coefficient K to get the specific viscosity of the instrument. The correction coefficient K should be in the range of 1±0.03, or you should replace the instrument. You should calibrate the instrument as per the operation frequency.
3. For standard liquid with known kinematic viscosity, the difference between the measured value and calculation value of flowing time should be within ±3% of the calculation value.

1. The instrument is made of copper and it is about 100 ml. Its specification and the roughness of its inner wall can meet the stipulations of GB/T1723. Its bottom is a stainless steel effuse hole.
2. Correction coefficient K: Multiply the measured viscosity of the instrument with the correction coefficient K to get the specific viscosity of the instrument. The correction coefficient K should be in the range of 1±0.03, or you should replace the instrument. You should calibrate the instrument as per the operation frequency.
3. For standard liquid with known kinematic viscosity, the difference between the measured value and calculation value of flowing time should be within ±3% of the calculation value.
III. Principle and calculation
The viscosity measured by the instrument is specific viscosity. The specific viscosity is expressed as the elapse time of a certain quantity of sample flowing out from an effuse hole of stipulated diameter under a specific temperature. It is indicated by second. You can use the following equations to convert the flowing time of sample (s) into kinematic viscosity (mm2/s).
   t<23 s, t=0.154μ+11
   23s≤t≤150 s, t=0.223μ+6.0
Where:
t= flowing time, s
μ= kinematic viscosity, mm2/s
Xnd-1 Paint-4 Viscometer/ Lab Testing EquipmentXnd-1 Paint-4 Viscometer/ Lab Testing EquipmentXnd-1 Paint-4 Viscometer/ Lab Testing EquipmentXnd-1 Paint-4 Viscometer/ Lab Testing EquipmentXnd-1 Paint-4 Viscometer/ Lab Testing EquipmentXnd-1 Paint-4 Viscometer/ Lab Testing EquipmentXnd-1 Paint-4 Viscometer/ Lab Testing EquipmentXnd-1 Paint-4 Viscometer/ Lab Testing EquipmentXnd-1 Paint-4 Viscometer/ Lab Testing Equipment

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