IP Library Granted Patent US 6,864,438
Granted Patent B2
US 6,864,438 · App. 10/002,930 · Granted Mar 8, 2005

Load receiver and loading stage for a balance, and mass comparator equipped with the load receiver and loading stage

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Quick Facts
Patent No.
US 6,864,438
App. No.
10/002,930
Granted
Mar 8, 2005
Kind
B2
Abstract

A load receiver ( 10 ) for a balance with arms ( 11 ) is designed to support weights of various shapes and sizes ( 13, 14, 15, 16 ) by cradling the weights in a depression sloped at a variable slope angle towards the middle of the load receiver. A loading stage ( 1 ) arranged to cooperate with the load receiver ( 10 ) has one or more weight-placement devices ( 5 ) designed so that the load receiver ( 10 ) can reach through the weight-placement device ( 5 ) without touching the latter. The loading stage ( 1 ) and the load receiver ( 10 ) are moveable up and down in relation to each other. The weight-placement device ( 5 ) is suitably configured to support the different weights ( 13, 14, 15, 16 ). The load receiver ( 10 ) and loading stage ( 1 ) are used in a mass comparator for testing weight standards with a high degree of precision.

Claims (40)

1. A loading stage ( 1 ) for a balance, wherein the balance comprises a load receiver ( 10 ) with an arrangement of arms ( 11 ) designed to support a weight, and wherein the loading stage ( 1 ) comprises at least one weight-placement device ( 5 ) arranged so that the load receiver ( 10 ) can reach through the weight-placement device ( 5 ) without touching the latter, the loading stage ( 1 ) and the load receiver ( 10 ) being moveable up and down in relation to each other, and wherein further the at least one weight-placement device ( 5 ) has a second depression sloped at a variable second slope angle towards a center ( 23 ) of the weight-placement device ( 5 ), and the at least one weight-placement device ( 5 ) has an open space in an area of the center ( 23 ).

2. The loading stage ( 1 ) of claim 1 , wherein the weight-placement device ( 5 ) has resting points for the weight and a free space ( 26 ) between the resting points, wherein the load receiver ( 10 ) has seating points for the weight, and wherein said resting points and said seating points are close to each other when the weight-placement device ( 5 ) is positioned so that the load receiver ( 10 ) reaches through the weight-placement device ( 5 ).

3. The loading stage ( 1 ) of claim 1 , wherein the load receiver ( 10 ) has a first depression sloped towards a mid-point ( 32 ) of the load receiver, and wherein the first depression and the second depression are slope at substantially equally varying slope angles.

4. The loading stage ( 1 ) of claim 1 , wherein the second depression is sloped at a second slope angle that becomes progressively steeper from the outer end towards said center ( 23 ) of the weight-placement device ( 5 ).

5. The loading stage ( 1 ) of claim 1 , wherein the second depression is interrupted by at least one second step ( 24 ).

6. The loading stage ( 1 ) of claim 1 , wherein the weight-placement device ( 5 ) comprises an arrangement of arcuate, loop-shaped weight-placement members ( 12 ).

7. The loading stage ( 1 ) of claim 2 , wherein the weight-placement device ( 5 ) comprises an arrangement of arcuate, loop-shaped weight-placement members ( 12 ), wherein the free space ( 26 ) is located inside the arcuate loop of the weight-placement members ( 12 ) and the latter have a top surface ( 25 ) that is slanted towards said free space ( 26 ).

8. The loading stage ( 1 ) of claim 7 , wherein the slant of the top ( 25 ) varies along the weight-placement members ( 12 ).

9. The loading stage ( 1 ) of claim 6 , wherein the weight-placement members ( 12 ) have lateral breaks in curvature.

10. The loading stage ( 1 ) of claim 6 , wherein the weight-placement members ( 12 ) have a variable width.

11. The loading stage ( 1 ) of claim 1 , wherein at least one of the loading stage ( 1 ), the weight-placement device ( 5 ) and the load receiver ( 10 ) is made of one of a plastic material and a plastic-coated metal.

12. The loading stage ( 1 ) of claim 1 , wherein the loading stage ( 1 ) comprises a substantially circular plate ( 2 ) with a mid-portion ( 39 ), said circular plate ( 2 ) being movably supported for rotation about an axis through the mid-portion ( 39 ) and having at least two loading locations ( 9 ) where weight-placement devices ( 5 ) are installed.

13. The loading stage ( 1 ) of claim 12 , wherein the loading stage is further movable up and down, wherein said rotation is motorized and said up- and down-movement is automated for the purpose of automating a weighing process.

14. The loading stage ( 1 ) of claim 1 , wherein the weight-placement device ( 5 ) is height- and level-adjustable in relation to the loading stage ( 1 ).

15. A combination of a load receiver ( 10 ) and a loading stage ( 1 ); wherein the loading stage ( 1 ) has at least one weight-placement device ( 5 ); wherein the loading stage ( 1 ) and the load receiver ( 10 ) are movable up and down in relation to each other and the load receiver ( 10 ) passes through the weight-placement device ( 5 ) without touching the latter; wherein the load receiver ( 10 ) has a first depression sloped towards a mid-point ( 32 ) of the load receiver ( 10 ), wherein each weight-placement device ( 5 ) has a depression sloped at a variable second slope angle towards said mid-point ( 32 ) of the load receiver ( 10 ) when the weight-placement device is positioned to put the weight on the load receiver, and wherein each weight-placement device has a free break-through space in an area of the mid-point ( 32 ).

16. The combination of claim 15 , wherein the weight-placement device ( 5 ) has resting points for the weight and free spaces ( 26 ) between the resting points, wherein the load receiver ( 10 ) has seating points for the weights, and wherein said resting points are close to said seating points when the weight-placement device is in position to place weights on the load receiver ( 10 ).

17. The combination of claim 15 , wherein the first depression is sloped substantially in conformity with the second depression when the weight-placement device is in position to place weights on the load receiver.

18. The combination of claim 15 , wherein the weight-placement device ( 5 ) has two arcuate, loop-shaped weight-placement members ( 12 ) and the load receiver ( 10 ) has four wing-shaped arms ( 11 ) arranged in two pairs, and wherein a wing ( 11 ) of one pair and an adjacent wing ( 11 ) of the other pair embrace each of the two loop-shaped members ( 12 ) of the weight-placement device ( 5 ) when the latter is in position to place weights on the load receiver.

19. The combination of claim 15 , wherein at least one of the loading stage ( 1 ), the weight-placement device ( 5 ), and the load receiver ( 10 ) is made of one of a plastic material and a plastic-coated metal.

20. A mass comparator comprising a balance with a combination of a load receiver ( 10 ) and a loading stage ( 1 ); wherein the loading stage ( 1 ) has at least one weight-placement device ( 5 ); wherein the loading stage ( 1 ) and the load receiver ( 10 ) are movable up and down in relation to each other and the load receiver ( 10 ) passes through the weight-placement device ( 5 ) without touching the latter; wherein the load receiver ( 10 ) has a first depression sloped towards a mid-point ( 32 ) of the load receiver ( 10 ), wherein each weight-placement device ( 5 ) has a depression sloped at a variable second slope angle towards said mid-point ( 32 ) of the load receiver ( 10 ) when the weight-placement device is positioned to put the weight on the load receiver, and wherein each weight-placement device has a free break-through space in an area of the mid-point ( 32 ).

21. The mass comparator of claim 20 , wherein the weight-placement device ( 5 ) has resting points for the weight and free spaces ( 26 ) between the resting points, wherein the load receiver ( 10 ) has seating points for the weights, and wherein said resting points are close to said seating points when the weight-placement device is in position to place weights on the load receiver ( 10 ).

22. The mass comparator of claim 20 , wherein the first depression is sloped at a variable slope angle.

23. The mass comparator of claim 20 , wherein the first depression is sloped substantially in conformity with the second depression when the weight-placement device is in position to place weights on the load receiver.

24. The mass comparator of claim 20 , wherein the weight-placement device ( 5 ) comprises an arrangement of arcuate, loop-shaped weight-placement members ( 12 ).

25. The mass comparator of claim 20 , wherein the load receiver comprise wing-shaped arms ( 11 ) that are grouped around the mid-point ( 32 ), and have a common root portion ( 31 ).

26. The mass comparator of claim 25 , wherein the load receiver ( 10 ) comprises four arms ( 11 ) arranged mirror-symmetrically in relation to a vertical plane through the mid-point ( 32 ).

27. The mass comparator of claim 26 , wherein the four arms ( 11 ) are arranged in two pairs of arms, the arms of a pair enclosing an angle of less than 90°.

28. The mass comparator of claim 24 , wherein the four arms are arranged in two pairs of arms, the arms of a pair enclosing an angle of less than 90°, and wherein an arm ( 11 ) of one pair and an adjacent arm ( 11 ) of the other pair embrace each of the two loop-shaped members ( 12 ) of the weight-placement device ( 5 ) when the latter is in position to place weights on the load receiver.

29. The mass comparator of claim 20 , wherein the load receiver ( 10 ) has arms ( 11 ) with a top surface ( 33 ) that is slanted perpendicular to a direction pointing towards the midpoint ( 32 ) of the load receiver.

30. The mass comparator of claim 20 , wherein at least one of the first depression and the second depression has at least one step.

31. The mass comparator of claim 20 , wherein the load receiver ( 10 ) has wing-shaped arms ( 11 ) with at least one first horizontal surface portion ( 34 ) for disc-shaped weights ( 15 ).

32. The mass comparator of claim 24 , wherein a free space ( 26 ) is located inside the arcuate loop of the weight-placement members ( 12 ) and the latter have a top surface ( 25 ) that is slanted towards said free space ( 26 ).

33. The mass comparator of claim 32 , wherein the slant of the top surface ( 25 ) varies along the weight-placement members ( 12 ).

34. The mass comparator of claim 24 , wherein the weight-placement members ( 12 ) and the arms ( 11 ) have lateral breaks in curvature.

35. The mass comparator of claim 24 , wherein the weight-placement members ( 12 ) and the arms ( 11 ) have variable width from an outer area to the mid-point ( 32 ).

36. The mass comparator of claim 20 , wherein at least one of the loading stage ( 1 ), the weight-placement device ( 5 ), and the load receiver ( 10 ) is made of one of a plastic material and a plastic-coated metal.

37. The mass comparator of claim 20 , wherein the loading stage ( 1 ) comprises a substantially circular plate ( 2 ) with a mid-portion ( 39 ), said circular plate ( 2 ) being movably supported for rotation about an axis through the mid-portion ( 39 ) and having at least two loading locations ( 9 ) where weight-placement devices ( 5 ) are installed.

38. The mass comparator of claim 20 , wherein the loading stage is further movable up and down, wherein said rotation is motorized and said up- and down-movement is automated for the purpose of automating a weighing process.

39. The mass comparator of claim 20 , wherein the weight-placement device ( 5 ) is height- and level-adjustable in relation to the loading stage ( 1 ).

40. The mass comparator of claim 20 , wherein the load receiver is mounted on a load-receiver frame ( 17 ) and the load-receiver frame ( 17 ) is freely suspended.

Assignments (3)
CHANGE OF NAME Recorded Jan 8, 2016
From: METTLER-TOLEDO AG
To: METTLER-TOLEDO GMBH
Reel/Frame 037459/0811 →
CHANGE OF NAME Recorded Dec 21, 2006
From: METTLER-TOLEDO GMBH
To: METTLER-TOLEDO AG
Reel/Frame 018654/0585 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 15, 2001
From: WEBER, RENE
To: METTLER-TOLEDO GMBH
Reel/Frame 012353/0479 →