IP Library Granted Patent US 10,168,243
Granted Patent B2
US 10,168,243 · App. 14/430,413 · Granted Jan 1, 2019

Leakage detector, leakage detection method, and pipe network monitoring apparatus

Inventor: Hiroaki Kondou (Kyoto, JP)
Assignee: SEKISUI CHEMICAL CO., LTD.
G01M3/243F17D5/06G01P13/0073
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Quick Facts
Patent No.
US 10,168,243
App. No.
14/430,413
Granted
Jan 1, 2019
Kind
B2
Abstract

Provided is a leakage detector which is capable of exhibiting high sensitivity to vibration-sounds caused by water leakage from a synthetic resin pipe and thus setting an installation span longer to thereby make it possible to more efficiently perform a water leakage inspection for a synthetic resin pipe. The leakage detector ( 6 ) comprises a base ( 21 ), a piezoelectric element ( 9 ) supported by the base ( 21 ) and configured to convert vibration-sounds to an electric signal, and a weight member ( 28 ) loaded against the piezoelectric element ( 9 ). The piezoelectric element ( 9 ) is made of a polymeric piezoelectric material. One end of the piezoelectric element ( 9 ) is supported by an upper end of a support post ( 27 ), and the weight member ( 28 ) is loaded against the other end of the piezoelectric element ( 9 ).

Claims (37)

1. A leakage detector for detecting vibration-sounds caused by fluid leakage from a pipeline, comprising a base, a piezoelectric element supported by the base and configured to convert vibration-sounds to an electric signal, and a weight member loaded against the piezoelectric element,

wherein the piezoelectric element is made of a polymeric piezoelectric material,

wherein the leakage detector is configured to allow a distance between a support point of the piezoelectric element, supported by a support device, and a load point of the piezoelectric element, loaded by the weight member, to be variably changed in a mechanical manner by a slider to thereby allow the resonant frequency of a system comprising the piezoelectric element and the weight member to be variably changed, and

wherein a resonance frequency of the system comprising the piezoelectric element and the weight member is set in a range of 10 Hz to 1000 Hz.

2. The leakage detector as defined in claim 1 , wherein the piezoelectric element is formed as a cantilever, and

wherein a portion of the piezoelectric element is supported by the base, and the weight member is loaded against a remaining portion of the piezoelectric element which is not supported by the base.

3. The leakage detector as defined in claim 1 , wherein the piezoelectric element comprises a stretched polyvinylidene fluoride film.

4. A leakage detection method comprising installing the leakage detector as defined in claim 1 in a vicinity of a pipe member, and detecting vibration caused by fluid leakage from the pipe member, to thereby determine the presence or absence of the fluid leakage.

5. The leakage detector according to claim 1 , wherein the resonant frequency of the system comprising the piezoelectric element and the weight member is set in a range of 10 Hz to 150 Hz or 400 Hz to 1000 Hz.

6. The leakage detector according to claim 1 , wherein the pipeline is constructed of a synthetic resin, and the resonant frequency of the system comprising the piezoelectric element and the weight member is set in a range of 10 Hz to 150 Hz.

7. The leakage detector according to claim 1 , wherein the pipeline is constructed of a metal, and the resonant frequency of the system comprising the piezoelectric element and the weight member is set in a range of 400 Hz to 1000 Hz.

8. The leakage detector as defined in claim 1 , wherein the piezoelectric element is laminated on at least one of upper or lower surfaces of a reinforcement layer.

9. The leakage detector as defined in claim 8 , wherein the piezoelectric element comprises a plurality of film-shaped piezoelectric elements, provided with a thin-film electrode on each of upper and lower sides thereof, that are accordion-folded to form a multi-layered structure comprising three layers.

10. A pipe network monitoring apparatus comprising:

a plurality of leakage detectors each mounted, respectively, at a plurality of locations of a pipe network comprised of pipes and joints, and configured to convert a pressure fluctuation along with movement of a fluid through a pipeline to an electric charge signal;

a plurality of communication devices each configured to transmit the electric charge signal obtained by a respective one of the leakage detectors; and

a display device configured to receive and display information transmitted from the communication devices, at a remote location,

wherein each of the leakage detectors comprises a base, a piezoelectric element supported by the base and configured to convert vibration-sounds to an electric signal, and a weight member loaded against the piezoelectric element, wherein the piezoelectric element is made of a polymeric piezoelectric material, and wherein each of the leakage detectors are configured to allow a distance between a support point of the piezoelectric element, supported by a support device, and a load point of the piezoelectric element, loaded by the weight member, to be variably changed in a mechanical manner by a slider to thereby allow the resonant frequency of a system comprising the piezoelectric element and the weight member to be variably changed,

wherein further,

a resonant frequency of a system comprising the piezoelectric element and the weight member is set in a range of 10 Hz to 1000 Hz.

11. A leakage detector for detecting vibration-sounds caused by fluid leakage from a pipeline, comprising a base, a piezoelectric element supported by the base and configured to convert vibration-sounds to an electric signal, and a weight member loaded against the piezoelectric element,

wherein the piezoelectric element is made of a polymeric piezoelectric material,

wherein a resonance frequency of a system comprising the piezoelectric element and the weight member is set in a range of 10 Hz to 1000 Hz,

wherein the piezoelectric element is laminated on at least one of upper or lower surfaces of a reinforcement layer, and

wherein the piezoelectric element comprises a plurality of film-shaped piezoelectric elements, provided with a thin-film electrode on each of upper and lower sides thereof, that are accordion-folded to form a multi-layered structure comprising three layers.

12. A pipe network monitoring apparatus comprising:

a plurality of leakage detectors according to claim 11 , the plurality of leakage detectors each mounted, respectively, at a plurality of locations of a pipe network comprised of pipes and joints, and configured to convert a pressure fluctuation along with movement of a fluid through a pipeline to an electric charge signal;

a plurality of communication devices each configured to transmit the electric charge signal obtained by a respective one of the leakage detectors; and

a display device configured to receive and display information transmitted from the communication devices, at a remote location.

13. The leakage detector as defined in claim 11 ,

wherein the piezoelectric element is formed as a cantilever, and

wherein a portion of the piezoelectric element is supported by the base, and the weight member is loaded against a remaining portion of the piezoelectric element which is not supported by the base.

14. The leakage detector as defined in claim 11 , wherein the piezoelectric element comprises a stretched polyvinylidene fluoride film.

15. A leakage detection method comprising installing the leakage detector as defined in claim 11 in a vicinity of a pipe member, and detecting vibration caused by fluid leakage from the pipe member, to thereby determine the presence or absence of the fluid leakage.

16. The leakage detector according to claim 11 , wherein the resonant frequency of the system comprising the piezoelectric element and the weight member is set in a range of 10 Hz to 150 Hz or 400 Hz to 1000 Hz.

17. The leakage detector according to claim 11 , wherein the pipeline is constructed of a synthetic resin, and the resonant frequency of the system comprising the piezoelectric element and the weight member is set in a range of 10 Hz to 150 Hz.

18. The leakage detector according to claim 11 , wherein the pipeline is constructed of a metal, and the resonant frequency of the system comprising the piezoelectric element and the weight member is set in a range of 400 Hz to 1000 Hz.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 23, 2015
From: KONDOU, HIROAKI
To: SEKISUI CHEMICAL CO., LTD.
Reel/Frame 035233/0073 →
Priority Claims (4)
JP 2012-209316 · Sep 24, 2012 · national
JP 2013-041449 · Mar 4, 2013 · national
JP 2013-099943 · May 10, 2013 · national
JP 2013-099949 · May 10, 2013 · national
Continuity (1)
Related Publication 20150247777A1 · Sep 3, 2015