IP Library Granted Patent US 8,887,578
Granted Patent B2
US 8,887,578 · App. 13/768,366 · Granted Nov 18, 2014

Coriolis mass flow rate sensor

Inventors: Alan M. Young (Los Gatos, CA); Jianren Lin (San Jose, CA); Claus W. Knudsen (Fremont, CA)
Assignee: Malema Engineering Coproration
G01F1/8477B29C67/004G01F1/8427G01F1/8431G01F1/8436G01F1/8404G01F1/8418G01F25/0007B29K2021/00
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Quick Facts
Patent No.
US 8,887,578
App. No.
13/768,366
Granted
Nov 18, 2014
Kind
B2
Abstract

A subassembly of a Coriolis flowmeter is fabricated from a single monolithic piece of elastic polymeric material. The subassembly includes two flow-sensitive members and a base integrally connected to the two flow-sensitive members. The two flow-sensitive members include straight sections, and are substantially similar and parallel to each other. Flow passages are drilled along the straight sections of the two flow-sensitive members, and drilled entrances are sealed using the elastic polymeric material. A temperature sensor is fixedly attached to a flow-sensitive member for measuring a temperature of the flow-sensitive member and communicating the temperature to a metering electronics. The metering electronics determines a calibrated flow rate of fluid flowing through the Coriolis flowmeter that accounts for the temperature.

Claims (17)

1. A Coriolis flowmeter, comprising:

a base comprising openings configured to allow fluid to flow through the Coriolis flowmeter;

two flow-sensitive members, each of which consists of two or more entirely straight sections, the two or more straight sections comprising flow passageways fabricated along centerlines of the straight sections for the fluid to flow through, and wherein the two flow-sensitive members are integrally connected to the base, and the two flow-sensitive members and the base are all fabricated from an elastic polymeric material, wherein each of the two flow-sensitive members comprises a component configured to allow independent manual adjustment of a moment of inertia of the flow-sensitive member for minimizing a magnitude of a zero flow offset;

two motion-responsive sensors each of which is fixedly attached to the two flow-sensitive members and configured to generate signals responsive to relative motions generated by the two flow-sensitive members due to Coriolis force induced by the fluid flowing through the Coriolis flowmeter; and

electronics communicatively connected to the two sensors and configured to receive the signals and generate output information indicative of the flow rate of the fluid that flows through the Coriolis flowmeter.

2. The Coriolis flowmeter of claim 1 , wherein each of the two flow-sensitive members comprises a rectangular U-shape member, each of the rectangular U-shape members comprises a straight end-section parallel to the base and two straight side-legs integrally connecting the end section to the base.

3. The Coriolis flowmeter of claim 1 , further comprising at least one isolation plate configured to establish a boundary condition for vibration of the two flow-sensitive members, wherein the two flow-sensitive members are integrally connected to the base and the at least one isolation plate, and the two flow-sensitive members, the base, and the at least one isolation plate are all fabricated from a single monolithic piece of the elastic polymeric material.

4. The Coriolis flowmeter of claim 1 , wherein the two motion-responsive sensors comprise magnetic inductive sensors fixedly attached to the two flow-sensitive members.

5. The Coriolis flowmeter of claim 1 , wherein the component comprises a screw.

6. The Coriolis flowmeter of claim 1 , wherein each of the two flow-sensitive members comprises a threaded rod with an attached weight to allow independent manual adjustment for balancing the two flow-sensitive members.

7. The Coriolis flowmeter of claim 1 , wherein the connection between the flow-sensitive members connected to the base is free of an adhesive or a mechanical joint.

8. The Coriolis flow meter of claim 1 , wherein at least one flow passageway is fabricated completely through its corresponding straight section to form a first opening for connection to an opening of the base and a second opening opposite the first opening not connectable to the base.

9. A Coriolis flowmeter, comprising:

a base comprising openings configured to allow fluid to flow through the Coriolis flowmeter;

two flow-sensitive members, each of which comprises of two or more straight sections, the two or more straight sections comprising flow passageways fabricated along centerlines of the straight sections for the fluid to flow through, at least one flow passageway fabricated completely through its corresponding straight section to form a first opening for connection to an opening of the base and a second opening opposite the first opening not connectable to the base, and wherein the two flow-sensitive members are integrally connected to the base, and the two flow-sensitive members and the base are all fabricated from an elastic polymeric material, wherein each of the two flow-sensitive members comprises a component configured to allow independent manual adjustment of a moment of inertia of the flow-sensitive member for minimizing a magnitude of a zero flow offset;

two motion-responsive sensors each of which is fixedly attached to the two flow-sensitive members and configured to generate signals responsive to relative motions generated by the two flow-sensitive members due to Coriolis force induced by the fluid flowing through the Coriolis flowmeter; and

electronics communicatively connected to the two sensors and configured to receive the signals and generate output information indicative of the flow rate of the fluid that flows through the Coriolis flowmeter.

Assignments (2)
SECURITY INTEREST Recorded Feb 5, 2015
From: MALEMA ENGINEERING CORPORATION
To: CERTUSBANK, N.A.
Reel/Frame 034897/0082 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 29, 2014
From: YOUNG, ALAN M.; LIN, JIANREN; KNUDSEN, CLAUS W.
To: MALEMA ENGINEERING CORPORATION
Reel/Frame 033411/0355 →
Continuity (3)
Division 12779151 · May 13, 2010
Provisional Application 61304228 · Feb 12, 2010
Related Publication 20130174670A1 · Jul 11, 2013