A sample surface component for an instrument that measures...

A - Human Necessities – 61 – B

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Details

A61B 10/00 (2006.01) G01N 11/00 (2006.01) G01N 13/02 (2006.01) G01N 33/487 (2006.01)

Patent

CA 2481378

A sample surface component (30) for an instrument (10) that measures viscosity and viscoelasticity. The instrument (10) has a cam (20), a follower arm (22), a flat spring (24), a plate fixture (28), and a removable plate assembly (30). The cam is a rotating circular disk with a spiral slot (34). A cam follower (60) on the follower arm (22) resides in the spiral slot (34) so that the follower arm (22) pivots about its fixed end (56) as the cam (20) rotates. The spring (24) is attached to and collinear with the fixed end (56) of the follower arm (22). The removable plate assembly (30) has a lower plate (102) and an upper plate (104) with mating sample surfaces (114, 128) on which test fluid is placed. The lower plate (102) fits into a lower jaw (86) of the plat fixture (28) that is attached to the instrument base (12). The upper plate (104) fits into an upper jaw (90) of the plate fixture (28) attached to the free end (74) of the spring (24). A fluid is placed on the lower sample surface (114). The cam (20) rotates, pushing the follower arm (22) up, causing the spring (24) to pivot down, and pressing the sample surfaces (114, 128) together. The cam (20) is reversed, causing the spring (24) to impart a separation force to the plates (102, 104). The time it takes for the plates (102, 104) to separate is measured and converted to a viscosity value.

L'invention concerne un composant de surface échantillon (30) pour un instrument (10) mesurant la viscosité et la viscoélasticité. L'instrument (10) comporte une came (20), un fouloir (22), un ressort plat (24), un élément fixe sous forme de plaque (28) et un ensemble plaque amovible (30). La came est un disque circulaire rotatif présentant une rainure spiralée (34). Un galet de came (60) sur le fouloir (22) est logé dans la rainure spiralée (34) de manière que le fouloir (22) tourne autour de son extrémité fixe (56) à mesure que la came (20) tourne. Le ressort (24) est fixé à et colinéaire par rapport à l'extrémité fixe (56) du fouloir (22) de manière que le ressort (24) tourne dans le sens opposé à celui du fouloir (22). L'ensemble plaque amovible (30) présente une plaque inférieure (102) et une plaque supérieure (104) à surfaces d'ajustement d'échantillon (114, 128) sur lesquelles est placé le fluide à tester. La plaque inférieure (102) est reçue dans une mâchoire supérieure (90) de l'élément fixe sous forme de plaque (28) fixé à l'extrémité libre (74) du ressort (24). Un fluide est placé sur la surface d'échantillon inférieure (114). La came (20) tourne, plaquant le poussoir (22) vers le haut, ce qui entraîne la rotation vers le bas du ressort (24) et la compression des surfaces d'échantillon ensemble (114, 128). La came (20) est renversée et le ressort (24) exerce, de ce fait, une force de séparation sur les plaques (102, 104). On mesure alors le temps que les plaques (102, 104) nécessitent pour se séparer et on convertit le résultat en une valeur de viscosité.

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