IP Library Granted Patent US 10,265,709
Granted Patent B2
US 10,265,709 · App. 15/132,299 · Granted Apr 23, 2019

Inductive showerhead and multi-waterway switching mechanism

Inventor: Hongxin Lin (Taizhou, CN)
Assignee: Zhejiang Huale Technology Co., Ltd.
B05B1/1636B05B1/169B05B1/1609B05B1/1681B05B1/18B05B1/3006F16K3/267F16K11/044F16K11/18F16K11/24F16K31/0644
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Quick Facts
Patent No.
US 10,265,709
App. No.
15/132,299
Granted
Apr 23, 2019
Kind
B2
Abstract

An inductive shower head, comprising an outer shell which is provided with a water inlet and multiple groups of water outlet holes; a third water outlet cavity and a first water outlet cavity which are independent of each other inside the outer shell can be communicated with the corresponding groups of the water outlet holes respectively, a third water inlet cavity is arranged between the first water inlet cavity and the third water outlet cavity; the first water inlet cavity is communicated with the third water inlet cavity; the position where the third water inlet cavity is communicated with the third water outlet cavity is correspondingly provided with a control assembly which uses an electromagnet to control the two cavities to communicate with or block from each other; the shower head also comprises a first inductor and a power supply unit which is used for supplying power to the electromagnet.

Claims (48)

1. An inductive showerhead, comprising:

an outer shell ( 1 ) with a water inlet ( 1 a ) and multiple groups of water outlet holes ( 1 b ), each group of water outlet holes ( 1 b ) positioned differently;

an inside of the outer shell ( 1 ) with a first water inlet cavity ( 2 ) that communicates with the water inlet ( 1 a );

a third water outlet cavity ( 3 ) and a first water outlet cavity ( 4 ) that are independent of each other, the third water outlet cavity ( 3 ) and the first water outlet cavity ( 4 ) each capable of communicating with corresponding groups of water outlet holes ( 1 b ) respectively;

a third water inlet cavity ( 32 ) arranged between the first water inlet cavity ( 2 ) and the third water outlet cavity ( 3 ), the first water inlet cavity ( 2 ) communicates with the third water inlet cavity ( 32 );

a control assembly comprising a third pressure control cavity ( 5 ) located at a position where the third water inlet cavity ( 32 ) communicates with the third water outlet cavity ( 3 ) located at a position where the third water inlet cavity ( 32 ) communicates with the third water outlet cavity ( 3 ), the control assembly uses an electromagnet to control the third water inlet cavity ( 32 ) and the third water outlet cavity ( 3 ), allowing the third water inlet cavity ( 32 ) and the third water outlet cavity ( 3 ) to communicate with or to be blocked from each other;

a first inductor ( 31 ) and a power supply unit ( 30 ) that is used for supplying power to the electromagnet, the control assembly capable of blocking or connecting the third water inlet cavity ( 32 ) and the third water outlet cavity ( 3 ) based on an inductive signal from the first inductor ( 31 );

a first switching core ( 8 ) located at a position where the first water inlet cavity ( 2 ) communicates with the first water outlet cavity ( 4 ); and

a tabular first stress plate ( 8 b ) and a first seal ( 11 ) arranged on the first switching core ( 8 );

wherein the first stress plate ( 8 b ) is located at a position where the first water inlet cavity ( 2 ) communicates with the third water inlet cavity ( 32 ), and the first seal ( 11 ) is located at a position where the first water inlet cavity ( 2 ) communicates with the first water outlet cavity ( 4 );

wherein when the first water inlet cavity ( 2 ) communicates with the third water outlet cavity ( 3 ) and water flows out, the first switching core ( 8 ) drives the first seal ( 11 ) to block the first water inlet cavity ( 2 ) from the first water outlet cavity ( 4 ) due to water pressure inside the first water inlet cavity ( 2 ); and

wherein when the first water inlet cavity ( 2 ) is blocked from the third water outlet cavity ( 3 ), the first switching core ( 8 ) drives the first seal ( 11 ) to move due to water pressure inside the first water inlet cavity ( 2 ), so that the first water inlet cavity ( 2 ) communicates with the first water outlet cavity ( 4 ).

2. The inductive showerhead of claim 1 , further comprising:

a protruding annular first retaining shoulder ( 10 ) inside the outer shell ( 1 ) at a position where the first water inlet cavity ( 2 ) communicates with the first water outlet cavity ( 4 );

wherein the first switching core ( 8 ) is arranged in the first retaining shoulder ( 10 ) in a penetrating mode;

wherein an inner end and an outer end of the first switching core ( 8 ) are positioned in the first water inlet cavity ( 2 ) and the first water outlet cavity ( 4 ) respectively;

the inner end of the first switching core ( 8 ) is provided with a tabular first stress plate ( 8 b ) that protrudes out of an outer side wall of the inner end;

the outer end of the first switching core ( 8 ) is fixedly connected with the first sealing part ( 11 ), which is capable of abutting against the first retaining shoulder ( 10 ) to achieve a sealing effect.

3. The inductive showerhead of claim 2 , wherein the inside of the outer shell ( 1 ) is further provided with a first elastic part ( 9 ) with two ends that abut against the first stress plate ( 8 b ) and the first retaining shoulder ( 10 ) respectively; and

wherein under elasticity of the first elastic part ( 9 ), the first switching core ( 8 ) is capable of driving the first sealing part ( 11 ) to abut against the first retaining shoulder ( 10 ) to achieve the sealing effect.

4. The inductive showerhead of claim 3 , wherein the first switching core ( 8 ) includes a rod-shaped first connecting rod ( 8 a ) that is arranged in the first retaining shoulder ( 10 ) in the penetrating mode;

wherein the first stress plate ( 8 b ) is in a shape of a ring or a disk, and is coaxially arranged at an inner end of the first connecting rod ( 8 a ); and

wherein the first sealing part ( 11 ) is fixedly connected with an outer side wall at an outer end of the first connecting rod ( 8 a ).

5. The inductive showerhead of claim 4 , wherein an annular groove is formed in the outer side wall at the outer end of the first connecting rod ( 8 a ) surrounding an axis of the first connecting rod ( 8 a ); and

wherein the first sealing part ( 11 ) is in a shape of a ring and is arranged inside the annular groove.

6. The inductive showerhead of claim 1 , wherein the control assembly comprises, a third sealing gasket ( 6 ) that is connected to the third pressure control cavity ( 5 ), a third driving part ( 7 ), and a third pressure-relieving tube ( 12 );

wherein the third pressure-relieving tube ( 12 ) is arranged in a middle of the third sealing gasket ( 6 ) in the penetrating mode, and an inner side wall of the third sealing gasket ( 6 ) is closely abutted against an outer side wall of the third pressure-relieving tube ( 12 );

wherein an inner side of the third pressure-relieving tube ( 12 ) is a third pressure-relieving hole ( 12 a ) that is capable of being used for communicating the third pressure control cavity ( 5 ) with the third water outlet cavity ( 3 );

wherein the third driving part ( 7 ) is capable of blocking an opening positioned at a side near the third pressure control cavity ( 5 ) on the third pressure-relieving hole ( 12 a );

wherein a third water inlet channel ( 14 ) is formed in the third sealing gasket ( 6 ) in the penetrating mode, the third water inlet channel ( 14 ) capable of being used for communicating the first water inlet cavity ( 2 ) with the third pressure control cavity ( 5 ); and

wherein a cross-sectional area of the third water inlet channel ( 14 ) is less than that of the third pressure-relieving hole ( 12 a ).

7. The inductive showerhead of claim 6 , wherein a third water inlet hole ( 6 a ) is formed in the third sealing gasket ( 6 ) in the penetrating mode, the third water inlet hole ( 6 a ) capable of being used for communicating the third water inlet cavity ( 32 ) with the third pressure control cavity ( 5 );

wherein the outer shell ( 1 ) is provided with a protruding third current-limiting column ( 15 ) that is arranged in the third water inlet hole ( 6 a ) in the penetrating mode; and

wherein the third water inlet channel ( 14 ) is formed between an outer side wall of the third current-limiting column ( 15 ) and a side wall of the third water inlet hole ( 6 a ).

8. The inductive showerhead of claim 1 , wherein the fifth water outlet cavity ( 17 ) is further arranged in the outer shell ( 1 );

wherein the fifth water outlet cavity ( 17 ) is communicated with the corresponding group of the water outlet holes ( 1 b );

wherein the fifth water inlet cavity ( 34 ) is arranged between the first water inlet cavity ( 2 ) and the fifth water outlet cavity ( 17 );

wherein the first water inlet cavity ( 2 ) is communicated with the fifth water inlet cavity ( 34 ); the position where the fifth water inlet cavity ( 34 ) is communicated with the fifth water outlet cavity ( 17 ) is provided with the control assembly;

wherein the fifth water inlet cavity ( 34 ) can be communicated with or blocked from the fifth water outlet cavity ( 17 ) by the control assembly based on the inductive signal from the first inductor ( 31 );

wherein when the first water inlet cavity ( 2 ) is communicated with the third water outlet cavity ( 3 ) or the fifth water outlet cavity ( 17 ) and the water flows out, the first switching core ( 8 ) can block the communication between the first water inlet cavity ( 2 ) and the first water outlet cavity ( 4 ); and

wherein when the third water inlet cavity ( 32 ) is blocked from the third water outlet cavity ( 3 ), and the fifth water inlet cavity ( 34 ) is blocked from the fifth water outlet cavity ( 17 ), then the first switching core ( 8 ) can communicate the first water inlet cavity ( 2 ) with the first water outlet cavity ( 4 ) due to the water pressure inside the first water inlet cavity ( 2 ).

9. The inductive showerhead of claim 1 , wherein the second water inlet cavity ( 22 ), the fourth water outlet cavity ( 23 ) and the second water outlet cavity ( 24 ) are further arranged in the outer shell ( 1 );

wherein the fourth water outlet cavity ( 23 ) and the second water outlet cavity ( 24 ) are independent of each other;

wherein the water outlet end of the third water outlet cavity ( 3 ) or the first water outlet cavity ( 4 ) is communicated with the second water inlet cavity ( 22 );

wherein the fourth water outlet cavity ( 23 ) and the second water outlet cavity ( 24 ) can be communicated with the corresponding groups of the water outlet holes ( 1 b ) respectively; the second water outlet cavity ( 33 ) is arranged between the second water inlet cavity ( 22 ) and the fourth water inlet cavity ( 23 );

wherein the second water inlet cavity ( 22 ) is communicated with the fourth water inlet cavity ( 33 );

wherein the position where the fourth water inlet cavity ( 33 ) is communicated with the fourth water outlet cavity ( 23 ) is provided with the control assembly, the fourth water inlet cavity ( 33 ) can be communicated with or blocked from the fourth water outlet cavity ( 23 ) by the control assembly based on the inductive signal from the first inductor ( 31 ); and

wherein the position where the second water inlet cavity ( 22 ) is communicated with the second water outlet cavity ( 24 ) is further provided with the second switching core ( 28 ).

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 17, 2018
From: LIN, HONGXIN
To: ZHEJIANG HUALE TECHNOLOGY CO., LTD.
Reel/Frame 046110/0826 →
Priority Claims (3)
CN 2015 1 0624424 · Sep 25, 2015 · national
CN 2016 1 0177061 · Mar 24, 2016 · national
CN 2016 1 0178824 · Mar 24, 2016 · national
Continuity (1)
Related Publication 20170087563A1 · Mar 30, 2017
Cited By (1)
US 12,404,948