IP Library Granted Patent US 10,942,050
Granted Patent B2
US 10,942,050 · App. 16/092,644 · Granted Mar 9, 2021

Thermal flowmeter

Inventors: Kazunori Suzuki (Hitachinaka, JP); Akira Uenodan (Hitachinaka, JP); Junichi Horie (Hitachinaka, JP)
Assignee: Hitachi Automotive Systems, Ltd.
G01F1/684G01M15/042
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Quick Facts
Patent No.
US 10,942,050
App. No.
16/092,644
Granted
Mar 9, 2021
Kind
B2
Abstract

The present invention is directed to a thermal flowmeter that prevents erroneous detection of backflow by suppressing circulation of air flow from a flow detection unit side to a back side or from the back side to the flow detection unit side and measures a gas flow rate with high accuracy. A thermal flowmeter of the present invention includes a bypass passage through which a gas to be measured passes; a dividing portion which divides the inside of the bypass passage into a first passage portion and a second passage portion; and a flow detection unit which is provided on a surface of the dividing portion on the first passage portion side and detects a flow rate of the gas to be measured. Further, the first passage portion has a detection surface on which the flow detection unit is exposed, an opposing surface which opposes the flow detection unit on the detection surface, and non-opposing surfaces and which are disposed at positions deviating from the opposing surface in a bypass passage width direction of the first passage portion and do not oppose the flow detection unit, and the non-opposing surface is separated from the detection surface farther than the opposing surface.

Claims (34)

1. A thermal flowmeter comprising:

a bypass passage through which a gas to be measured passes;

a dividing portion which divides an inside of the bypass passage into a first passage portion and a second passage portion; and

a flow detection unit which is provided in the first passage portion and detects a flow rate of the gas to be measured, wherein

the first passage portion has a detection surface on which the flow detection unit is exposed, an opposing surface which opposes the flow detection unit on the detection surface, and a non-opposing surface which is disposed at a position deviating from the opposing surface in a bypass passage width direction of the first passage portion and does not oppose the flow detection unit, the non-opposing surface separated from the detection surface farther than the opposing surface, and

wherein the bypass passage has a relationship between a sectional area S 1 of a narrowest portion of the first passage portion and a sectional area S 2 of a narrowest portion of the second passage portion satisfying a condition of 0.25≤S 1 /(S 1 +S 2 )≤0.75.

2. The thermal flowmeter according to claim 1 , wherein

the first passage portion has a protrusion which protrudes toward the flow detection unit and is narrower than a bypass passage width of the first passage portion,

the opposing surface is formed at a distal end of the protrusion, and

the non-opposing surface is formed at a position deviating in the bypass passage width direction with respect to the protrusion.

3. The thermal flowmeter according to claim 1 , wherein

the non-opposing surface is disposed at at least one of a position on one side and a position on another side in the bypass passage width direction of the first passage portion with respect to the opposing surface.

4. The thermal flowmeter according to claim 1 , wherein

the opposing surface and the non-opposing surface are disposed to be parallel to each other with a step therebetween.

5. The thermal flowmeter according to claim 1 , wherein

the non-opposing surface is inclined in a direction of separating from the detection surface as separating from the opposing surface in the bypass passage width direction of the first passage portion.

6. A thermal flowmeter comprising:

a bypass passage through which a gas to be measured passes;

a dividing portion which divides an inside of the bypass passage into a first passage portion and a second passage portion; and

a flow detection unit which is provided in the first passage portion and detects a flow rate of the gas to be measured,

wherein the bypass passage has a relationship between a sectional area S 1 of a narrowest portion of the first passage portion and a sectional area S 2 of a narrowest portion of the second passage portion satisfying a condition of 0.25≤S 1 /(S 1 +S 2 )≤0.75.

7. The thermal flowmeter according to claim 6 , wherein

the relationship between the sectional area S 1 of the narrowest portion of the first passage portion and the sectional area S 2 of the narrowest portion of the second passage portion satisfies a condition of 0.25≤S 1 /(S 1 +S 2 )≤0.5.

8. The thermal flowmeter according to claim 6 , wherein

the relationship between the sectional area S 1 of the narrowest portion of the first passage portion and the sectional area S 2 of the narrowest portion of the second passage portion satisfies a condition of 0.25≤S 1 /(S 1 +S 2 )≤0.35.

9. A thermal flowmeter comprising:

a bypass passage through which a gas to be measured passes;

a dividing portion which divides an inside of the bypass passage into a first passage portion and a second passage portion; and

a flow detection unit which is provided in the first passage portion and detects a flow rate of the gas to be measured,

wherein the bypass passage has one branch path branching on a bypass passage inlet side of the flow detection unit and communicating with the flow detection unit with an opening area A 1 and another branch path communicating with a discharge port with an opening area A 2 , and has a relationship between a sectional area S 1 of a narrowest portion of the first passage portion and a sectional area S 2 of a narrowest portion of the second passage portion satisfying a condition of 0.25≤S 1 /(S 1 +S 2 )*A 1 /(A 1 +A 2 )≤0.75.

10. The thermal flowmeter according to claim 9 , wherein

the relationship between the sectional area S 1 of the narrowest portion of the first passage portion and the sectional area S 2 of the narrowest portion of the second passage portion satisfies a condition of 0.25≤S 1 /(S 1 +S 2 )*A 1 /(A 1 +A 2 )≤0.5.

11. The thermal flowmeter according to claim 9 , wherein

the relationship between the sectional area S 1 of the narrowest portion of the first passage portion and the sectional area S 2 of the narrowest portion of the second passage portion satisfies a condition of 0.25≤S 1 /(S 1 +S 2 )*A 1 /(A 1 +A 2 )≤0.35.

Assignments (2)
CHANGE OF NAME Recorded Nov 30, 2021
From: HITACHI AUTOMOTIVE SYSTEMS, LTD.
To: HITACHI ASTEMO, LTD.
Reel/Frame 058481/0935 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 10, 2018
From: SUZUKI, KAZUNORI; UENODAN, AKIRA; HORIE, JUNICHI
To: HITACHI AUTOMOTIVE SYSTEMS, LTD.
Reel/Frame 047124/0726 →