WO2021259069A1 - 净水器 - Google Patents

净水器 Download PDF

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Publication number
WO2021259069A1
WO2021259069A1 PCT/CN2021/099310 CN2021099310W WO2021259069A1 WO 2021259069 A1 WO2021259069 A1 WO 2021259069A1 CN 2021099310 W CN2021099310 W CN 2021099310W WO 2021259069 A1 WO2021259069 A1 WO 2021259069A1
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WO
WIPO (PCT)
Prior art keywords
water
water inlet
housing
water outlet
pipe
Prior art date
Application number
PCT/CN2021/099310
Other languages
English (en)
French (fr)
Inventor
张剑鸿
皮小春
禤开华
潘景斌
何坤垣
王利仁
Original Assignee
佛山市顺德区阿波罗环保器材有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from CN202010581650.5A external-priority patent/CN111603826A/zh
Priority claimed from CN202021191606.5U external-priority patent/CN212327565U/zh
Application filed by 佛山市顺德区阿波罗环保器材有限公司 filed Critical 佛山市顺德区阿波罗环保器材有限公司
Publication of WO2021259069A1 publication Critical patent/WO2021259069A1/zh

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D29/00Filters with filtering elements stationary during filtration, e.g. pressure or suction filters, not covered by groups B01D24/00 - B01D27/00; Filtering elements therefor
    • B01D29/50Filters with filtering elements stationary during filtration, e.g. pressure or suction filters, not covered by groups B01D24/00 - B01D27/00; Filtering elements therefor with multiple filtering elements, characterised by their mutual disposition
    • B01D29/52Filters with filtering elements stationary during filtration, e.g. pressure or suction filters, not covered by groups B01D24/00 - B01D27/00; Filtering elements therefor with multiple filtering elements, characterised by their mutual disposition in parallel connection
    • B01D29/54Filters with filtering elements stationary during filtration, e.g. pressure or suction filters, not covered by groups B01D24/00 - B01D27/00; Filtering elements therefor with multiple filtering elements, characterised by their mutual disposition in parallel connection arranged concentrically or coaxially
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D35/00Filtering devices having features not specifically covered by groups B01D24/00 - B01D33/00, or for applications not specifically covered by groups B01D24/00 - B01D33/00; Auxiliary devices for filtration; Filter housing constructions
    • B01D35/30Filter housing constructions

Definitions

  • the present disclosure relates to the technical field of water purification equipment, and in particular to a water purifier.
  • the filter element assembly in the water purifier is installed and fixed by snap connection or side insertion. Such an installation will make the filter element assembly very laborious during disassembly, increase the difficulty of replacing or repairing the filter element assembly, and reduce the user experience.
  • the present disclosure aims to solve at least one of the technical problems existing in the prior art. To this end, one aspect of the present disclosure provides a water purifier.
  • the water purifier includes: a filter element assembly having a water inlet connector and a water outlet connector, the water inlet connector and the water outlet connector are sleeved; an installation shell, the installation
  • the housing includes: a first housing and a second housing, the second housing is arranged opposite to the first housing and is detachably mounted on the first housing, the second housing and the second housing
  • the first housing defines a cavity for accommodating the filter element assembly; a filter seat, the filter seat is rotatably arranged in the first housing, and the water inlet connector and the water outlet connector are respectively connected to the filter In the seat, after the second housing is detached from the first housing, the filter seat is rotatable relative to the first housing to install and disassemble the filter element assembly.
  • the water inlet joint and the water outlet joint of the filter element assembly are respectively connected and fixed with the filter seat on the first housing. Since the filter seat can rotate relative to the first housing, the filter element assembly can follow the filter When the seat is rotated to a suitable position, the installation and disassembly of the filter element assembly can be completed more easily and conveniently, and the user experience can be improved.
  • the filter seat includes: a seat body, a water inlet pipe and a water outlet pipe, the water inlet pipe and the water outlet pipe are both arranged on the seat body, the water inlet connector and the water outlet connector They are respectively arranged in the seat body, the water inlet pipe is communicated with the water inlet joint, and the water outlet pipe is communicated with the water outlet joint.
  • the water purifier further includes: a water inlet assembly and a water outlet assembly, the water inlet assembly and the water outlet assembly are both arranged in the mounting shell, the water inlet pipe and the outlet assembly A water pipe extends in the opposite direction on the filter seat, the water inlet pipe is rotatably arranged on the water inlet assembly, and the water outlet pipe is rotatably arranged on the water outlet assembly.
  • the end of the water inlet pipe and the end of the water inlet assembly are sleeved with a water inlet sealing ring therebetween; the end of the water outlet pipe and the water outlet assembly The ends of the tube are sleeved and arranged with a water outlet sealing ring between them.
  • the water inlet sealing ring and the water outlet sealing ring each include: a first annular portion, a second annular portion, and a connecting portion, and the first annular portion and the second annular portion are spaced apart Is provided, the connecting portion is multiple and is respectively connected between the first annular portion and the second annular portion, the water inlet sealing ring is sleeved on the end of the water inlet pipe as a whole, and the water outlet The sealing ring is integrally sleeved on the end of the water outlet pipe.
  • the end of the water inlet pipe and the end of the water outlet pipe are both provided with grooves, and at least a part of the first annular portion, the connecting portion and the second annular portion Contained in the groove.
  • the water inlet pipe is disconnected from the water path of the water inlet assembly, and the water outlet pipe is disconnected from the water path of the water outlet assembly. open.
  • the water inlet assembly and the water outlet assembly both include: a connecting pipe section and a butt joint, the butt joint is connected to one end of the connecting pipe section, and the water inlet pipe or the water outlet pipe has A docking hole for docking with the connecting pipe section is rotatably provided on the butting joint, so as to be disconnected from the connecting pipe section after the water inlet pipe or the water outlet pipe is rotated relative to the butting joint.
  • the connecting pipe section includes a first pipe section, a second pipe section, and a third pipe section.
  • the first pipe section and the second pipe section are vertically arranged and communicated with each other.
  • the second pipe section is vertically arranged and communicated, the butt joint is communicated with the third pipe section, and the water inlet pipe or the water outlet pipe has a butting hole for butting with the third pipe section and is rotatably arranged at the third pipe section.
  • the butt joint is to be disconnected from the third pipe section after the water inlet pipe rotates relative to the butt joint.
  • the water purifier further includes a base, the base is disposed in the first housing, the filter seat is disposed in the base, and the base is formed to support the inlet The supporting groove of the water pipe and the water outlet pipe, the water inlet pipe and the water outlet pipe are rotatable relative to the supporting groove.
  • the base is provided with a first limiting groove that opens toward the second housing
  • the seat body is provided with a second limiting groove that opens toward the bottom
  • the filter element assembly further includes : A limit post, the limit post is arranged on at least one side of the water inlet joint, and the limit post is fitted in the first limit slot and the second limit slot.
  • a limiting groove is provided on the second housing, the filter element assembly further includes: a limiting column, the limiting column is arranged on at least one side of the water inlet joint, the The limit post and the limit slot are in limit fit.
  • the bottom of the first housing abuts against the bottom of the filter element assembly.
  • the bottom of the first housing is provided with an abutment platform protruding toward the bottom of the filter element assembly.
  • the first housing is provided with a first limiting portion
  • the filter element assembly is provided with a second limiting portion
  • the first limiting portion and the second limiting portion are limited Bit fit.
  • one of the first limiting portion and the second limiting portion is a buckle and the other is a card slot, and the buckle and the card slot are snap-fitted; or
  • One of the first limiting portion and the second limiting portion is a protrusion and the other is a recessed portion, and the protrusion and the recessed portion are in a position-limiting fit.
  • a partition plate is provided on the first housing, and the partition plate partitions the mounting shell into a first chamber and a second chamber, and the first chamber is used for To accommodate the main structure of the filter element assembly, the second chamber is used to accommodate the filter seat, the water inlet connector and the water outlet connector.
  • a part of the partition plate is configured as a limit plate portion to limit and cooperate with the limit plate portion after the filter element assembly is rotated by a predetermined angle relative to the first housing.
  • a connecting plate is provided between the first housing and the partition plate, and the connecting plate divides the second chamber into a first accommodating area, a second accommodating area, and a second accommodating area.
  • the water inlet assembly is arranged in the first containing area
  • the water outlet assembly is arranged in the second containing area
  • the filter seat, the water inlet connector and the water outlet connector are arranged in the The third containment area.
  • the filter element assembly includes: a filter cartridge and a plurality of filter elements, the filter cartridge defines a plurality of accommodating cavities, the axial direction of the plurality of accommodating cavities is a first direction and the spacing direction is a second In two directions, the first direction and the second direction are arranged perpendicularly, and the plurality of filter elements are respectively arranged in the plurality of accommodating cavities.
  • Figure 1 is an exploded view of a water purifier according to an embodiment of the present disclosure
  • FIG. 2 is a cross-sectional view of the water purifier according to an embodiment of the present disclosure after removing the filter element assembly;
  • Figure 3 is a cross-sectional view of the third pipe section when it is normally connected to the water inlet pipe or the water outlet pipe;
  • Figure 4 is a cross-sectional view when the third pipe section is disconnected from the water inlet pipe or the water outlet pipe;
  • Figure 5 is a schematic diagram of the first housing
  • Figure 6 is a schematic diagram of the filter element assembly mounted on the first housing
  • Figure 7 is a cross-sectional view of the filter element assembly installed on the first housing
  • Figure 8 is a schematic diagram of the filter element assembly rotating relative to the first housing
  • Figure 9 is a cross-sectional view of the filter element assembly rotating relative to the first housing
  • Figure 10 is an exploded view of the filter element assembly.
  • the water purifier 100 according to an embodiment of the present disclosure will be described below with reference to FIGS. 1-10.
  • a water purifier 100 may include: a filter element assembly 10, a mounting shell 20, and a filter seat 30.
  • the filter element assembly 10 and the filter seat 30 are installed in the mounting shell 20, and the filter element assembly 10 and the filter The seats 30 are connected to each other for water inlet and outlet.
  • the filter element assembly 10 is provided with a water inlet connector 11 and a water outlet connector 12 on the side facing the filter seat 30.
  • the water inlet connector 11 and the water outlet connector 12 are cylindrical, and the water inlet connector 11 and the water outlet connector 12 It is arranged protrudingly toward the side of the filter seat 30, and the water inlet connector 11 and the water outlet connector 12 are sleeved.
  • the diameter of the water inlet connector 11 is larger than the diameter of the water outlet connector 12, and the inside of the water inlet connector 11 and the water outlet connector 12 are hollow And it is connected, so the water outlet connector 12 can be sleeved and installed in the internal space of the water inlet connector 11.
  • This arrangement not only makes the structure more compact, but also designs the water inlet and outlet positions at the same place to avoid leakage at the water inlet and outlet positions. , Resulting in multiple leaks in the filter element assembly 10, which facilitates the maintenance and management of the water purifier 100, can optimize the process design, and can improve the user's adaptive experience.
  • the mounting shell 20 may include: a first shell 21 and a second shell 22.
  • the second shell 22 is disposed opposite to the first shell 21, and the second shell 22 is detachably mounted on the first shell.
  • the mounting housing 20 is a rectangular parallelepiped as a whole.
  • the rectangular parallelepiped includes but is not limited to a cube.
  • the second housing 22 and the first housing 21 define a cavity 23 for accommodating the filter element assembly 10.
  • the mounting shell 20 may mainly include: a first shell 21 and a second shell 22.
  • the first shell 21 and the second shell 22 are arranged oppositely.
  • the cuboid includes but is not limited to In the cube, the second housing 22 is detachably installed on the first housing 21.
  • the installation housing 20 is in the shape of a rectangular parallelepiped as a whole, and is installed in the internal space of the housing 20
  • a relatively closed chamber 23 can be formed, and the filter element assembly 10 can be installed in the relatively closed chamber 23 inside the second housing 22 and the first housing 21.
  • This arrangement not only facilitates the maintenance and replacement of the filter element assembly 10, but also Improve the user experience and prevent foreign matter from entering the cavity 23 and damaging the filter element assembly 10.
  • the relatively hard mounting shell 20 can also protect the filter element when the water purifier 100 is impacted by external forces. The function of the component 10 prevents damage to the filter element component 10 and can increase the service life of the water purifier 100.
  • the rectangular parallelepiped mounting shell 20 may be suitable for mounting the filter element assembly 10, which can make the filter element assembly 10 and the mounting shell 20 have a small overall structure and a small volume, and further reduce the space occupied by the water purifier 100.
  • the two sides of the first housing 21 and the second housing 22 in the width direction of the mounting shell 20 are arcs that match each other, so that the corners of the rectangular parallelepiped mounting shell 20 All corners are rounded.
  • This setting can not only reduce the wear of the corners of the mounting shell 20, but also increase the service life of the water purifier 100.
  • the blunt rounded corners can prevent the mounting shell 20 from being punctured or scratched in the event of an emergency. It hurts the user and can improve the user experience.
  • the filter seat 30 is rotatably disposed in the first housing 21, the water inlet connector 11 and the water outlet connector 12 are respectively connected to the filter seat 30, and the second housing 22 is opposite to the first housing
  • the filter seat 30 is rotatable relative to the first housing 21 to install and disassemble the filter element assembly 10. That is to say, the filter seat 30 is installed on the first housing 21, and the filter seat 30 is rotatable relative to the first housing 21, and the filter element assembly 10 is protrudingly provided on the side of the filter seat 30 and the water inlet connector 11 and The outlet connectors 12 are respectively installed and connected in the filter seat 30, so as to realize the connection and fixation of the entire filter element assembly 10 and the filter seat 30.
  • the second housing 22 can be opposed to each other.
  • the first housing 21 is disassembled, and then an outward force is applied to the side of the filter element assembly 10 away from the first housing 21, so that the filter element assembly 10 drives the filter seat 30 to rotate relative to the first housing 21.
  • the filter seat 30 rotates
  • the filter element assembly 10 can be directly taken out to complete the disassembly of the filter element assembly 10.
  • This setting not only makes it easier and more convenient for the user to install and remove the filter element assembly 10, but also ensures the structural stability of the water purifier 100 This prevents users from having too much difficulty in installing or disassembling the filter element assembly 10, and avoids damage to the structure of the water purifier 100 caused by excessive force by the user, thereby improving the user experience.
  • the current stress points of the filter element assembly 10 are mainly concentrated on the head of the filter element assembly 10, that is, the water inlet joint 11 and the water outlet joint 12.
  • the way of the assembly 10 cleverly resolves this frictional force.
  • the filter element assembly 10 can be easily replaced.
  • the installation and disassembly of the filter element assembly 10 can be facilitated, the difficulty of replacing the filter element assembly 10 can be reduced, and the user's experience can be improved. Use experience.
  • the filter seat 30 includes a seat body 31, a water inlet pipe 32, and a water outlet pipe 33.
  • the water inlet pipe 32 and the water outlet pipe 33 are both provided on the seat body 31, and the water inlet connector 11 and the water outlet connector 12 are respectively provided In the base 31, the water inlet pipe 32 is communicated with the water inlet connector 11, and the water outlet pipe 33 is communicated with the water outlet connector 12.
  • the filter seat 30 may mainly include: a seat body 31, a water inlet pipe 32, and a water outlet pipe 33.
  • the water inlet pipe 32 and the water outlet pipe 33 may be installed on the side of the seat body 31 away from the filter element assembly 10, and the water inlet connector 11 and The outlet connector 12 is installed in the base 31 respectively, and the inlet pipe 32 is connected to the inlet connector 11, and the outlet pipe 33 communicates with the outlet connector 12.
  • This arrangement not only ensures the independence of the filter seat 30, but also prevents filtering.
  • the seat 30 touches other components during the rotation, which causes the rotation of the carton or damage to other components, and can avoid the water purifier 100 at the connection port of the water inlet pipe 32 and the water inlet joint 11 or the water outlet pipe 33 and the water outlet joint 12 If leakage occurs, the reliability of the structure can be increased, and the user experience can be improved.
  • the water inlet pipe 32 and the water outlet pipe 33 can be made integrally with the base 31 but are not limited to this. In this way, the airtightness of the structure can be further ensured, leakage can be prevented, process difficulty can be reduced, and production can be simplified.
  • the water purifier 100 further includes: a water inlet assembly 40 and a water outlet assembly 41.
  • the water inlet assembly 40 and the water outlet assembly 41 are both arranged in the mounting shell 20, and the water inlet pipe 32 and the water outlet pipe 33 are in the filter
  • the seat 30 extends in the opposite direction, the water inlet pipe 32 is rotatably disposed on the water inlet assembly 40, and the water outlet pipe 33 is rotatably disposed on the water outlet assembly 41.
  • the water purifier 100 may also mainly include: a water inlet assembly 40 and a water outlet assembly 41.
  • Both the water inlet assembly 40 and the water outlet assembly 41 are installed in the inner space of the mounting shell 20, and the water inlet pipe 32 and the water outlet pipe 33 One end is installed on the seat body 31, and the other ends of the water inlet pipe 32 and the water outlet pipe 33 extend in two opposite directions along the width direction of the mounting shell 20. Further, the water inlet pipe 32 extends outward from the seat body 31 One end is connected to the water inlet assembly 40, and the water inlet pipe 32 is rotatable relative to the water inlet assembly 40. The end of the water outlet pipe 33 that extends outward from the base 31 is connected to the water outlet assembly 41, and the water outlet pipe 33 is opposite to the water outlet assembly 41.
  • Rotating in this way can not only make full use of the available space inside the installation shell 20, make the structure design more reasonable, but also ensure that the water inlet process and the water outlet process of the water purifier 100 do not interfere with each other, and the reliability of the structure of the water purifier 100 can be improved.
  • the filter seat 30 has an initial position relative to the installation housing 20.
  • the filter seat 30 When the filter seat 30 is in the initial position, the water inlet channel is in communication with the water inlet pipe 32 and the outlet water channel is connected to the outlet pipe. 33 is connected. After the filter seat 30 rotates relative to the installation housing 20, the water inlet channel is disconnected from the water inlet pipe 32 and the water outlet channel is disconnected from the water outlet pipe 33.
  • the filter seat 30 has an initial position relative to the installation housing 20.
  • the water purifier 100 When the filter seat 30 is in the initial position, the water purifier 100 is in a normal working state, and the water inlet channel and the water inlet pipe 32 are in a communication state at this time, and The outlet waterway and the outlet pipe 33 are in a connected state at this time. At this time, the entire waterway in the water purifier 100 is in a state of normal circulation.
  • the filter seat 30 is rotated relative to the mounting housing 20, that is, the filter seat When 30 leaves the initial position relative to the installation housing 20, the water inlet channel and the water inlet pipe 32 are in a disconnected state, and the outlet water channel is in a disconnected state from the outlet pipe 33. At this time, the entire water channel of the water purifier 100 is blocked. And the water purifier 100 stops working normally.
  • the filter seat 30 leaving the initial position may be because the filter element assembly 10 connected to the filter seat 30 needs to be taken out for replacement and maintenance.
  • This configuration can make the filter element assembly 10 rotate to a suitable angle and can be easily taken out.
  • the waterway of the water purifier 100 has been blocked to prevent the water flow of the water purifier 100 from leaking at the connection position of the filter base 30 and the filter element assembly 10 when the filter element assembly 10 is taken out. This can optimize the process design and enhance the user experience.
  • the end of the water inlet pipe 32 and the end of the water inlet assembly 40 are sleeved with a water inlet sealing ring 50 therebetween, the end of the water outlet pipe 33 and the end of the water outlet assembly 41 are sleeved.
  • the parts are sleeved, and there is a water outlet sealing ring 51 therebetween.
  • the end of the water inlet pipe 32 that extends outward is slightly smaller than the end of the water inlet assembly 40 near the end of the water inlet pipe 32, it can be sleeved between the end of the water inlet pipe 32 and the water inlet assembly 40.
  • a water inlet sealing ring 50 is provided.
  • the outlet pipe 33 can be sleeved and connected to the outlet assembly 41.
  • a water outlet sealing ring 51 is sleeved between the ends of the. Both the water inlet sealing ring 50 and the water outlet sealing ring 51 can be made of rubber material with good oxidation resistance and acid and alkali resistance.
  • This arrangement can not only further Improve the firmness and stability of the sleeve connection between the water inlet pipe 32 and the water inlet assembly 40 or the outlet pipe 33 and the water outlet assembly 41, prevent the sleeve connection from falling off, can improve the reliability of the structure, and can improve the water inlet pipe 32 and The airtightness between the water inlet component 40 or the water outlet pipe 33 and the water outlet component 41 prevents water leakage during water inlet or outlet, and can improve the user experience.
  • the water inlet sealing ring 50 and the water outlet sealing ring 51 both include: a first annular portion 52, a second annular portion 53 and a connecting portion 54.
  • the first annular portion 52 and the second annular portion 53 are separated from each other.
  • the connecting portion 54 is multiple and connected between the first ring portion 52 and the second ring portion 53, respectively, the water inlet sealing ring 50 is integrally sleeved on the end of the water inlet pipe 32, and the outlet water sealing ring 51 is integrally sleeved on The end of the outlet pipe 33.
  • both the water inlet sealing ring 50 and the outlet water sealing ring 51 may mainly include: a first annular portion 52, a second annular portion 53 and a connecting portion 54.
  • the first annular portion 52 and the second annular portion 53 have the same size, and The first ring portion 52 and the second ring portion 53 are spaced apart, the connecting portion 54 can connect the first ring portion 52 and the second ring portion 53, and the length of the connecting portion 54 is the length of the first ring portion 52 and the second ring portion 53 Further, there are multiple connecting parts 54.
  • This arrangement can not only improve the sealing performance of the sealing ring, but also can further improve the sheathing between the water inlet pipe 32 and the water inlet assembly 40 or the water outlet pipe 33 and the water outlet assembly 41 The firmness and stability of the connection.
  • the end of the water inlet pipe 32 and the end of the water outlet pipe 33 are both provided with grooves 34, and at least a part of the first annular portion 52, the connecting portion 54 and the second annular portion 53 are accommodated in the groove 34 Inside. That is, the ends of the water inlet pipe 32 and the water outlet pipe 33 extending outward are provided with grooves 34, and at least a part of the first annular portion 52, the connecting portion 54 and the second annular portion 53 are installed in the grooves.
  • the sealing ring can be more stably sleeved on the water inlet pipe 32 or the water outlet pipe 33, preventing the sealing ring from being displaced on the water inlet pipe 32 or the water outlet pipe 33 in a humid environment, and can increase the stability of the structure.
  • the water path of the water tank 100 is blocked. This setting can not only prevent the water leakage due to the unblocked water path when the filter element assembly 10 is taken out, which affects the user experience, but also has a certain degree of foolproofness.
  • the seat 30 rotates to an appropriate angle relative to the first housing 21. Before the filter element assembly 10 can be directly taken out, the water path is automatically disconnected. No other operations are required to disconnect the water path. This can improve the process design and reduce the user’s burden. Operation steps can improve the user experience.
  • the rotation of the filter seat 30 not only facilitates the installation and disassembly of the filter element assembly 10, but also cuts off the water path before the installation and disassembly, which can avoid water leakage, and also Reducing the user's operation steps can improve the user's experience.
  • the water inlet assembly 40 and the water outlet assembly 41 both include a connecting pipe section and a butt joint 45.
  • the water inlet or outlet water path is formed in the connecting pipe section.
  • the butt joint 45 is connected to one end of the connecting pipe section.
  • the water pipe 32 or the water outlet pipe 33 has a docking hole 46 for docking with the connecting pipe section and is rotatably disposed on the butting joint 45 so as to be disconnected from the connecting pipe section after the water inlet pipe 32 rotates relative to the butting joint 45.
  • both the water inlet component 40 and the water outlet component 41 may mainly include: a connecting pipe section and a butt joint 45.
  • the water inlet or outlet water path is formed and circulates in the connecting pipe section.
  • the butt joint is connected and installed at one end of the connecting pipe section, and One end of the joint corresponds to the water inlet pipe 32 or the water outlet pipe 33.
  • the water inlet pipe 32 or the water outlet pipe 33 is designed with a docking hole 46, which can be used to connect and install the end corresponding to the connecting pipe section, and the water inlet pipe 32 or the water outlet pipe 33
  • the relative butt joint 45 can be rotated. After the water inlet pipe 32 or the water outlet pipe 33 rotates relative to the butt joint 45, the connection between the water inlet pipe 32 or the water outlet pipe 33 and the connecting pipe section is disconnected, and the water path of the water purifier 100 is blocked.
  • the structural design can be optimized, the water stop of the water purifier 100 can be made more reliable and not prone to errors, and the user experience can be improved.
  • the connecting pipe section includes: a first pipe section 42, a second pipe section 43, and a third pipe section 44.
  • the first pipe section 42 and the second pipe section 43 are vertically arranged and communicated
  • the third pipe section 44 and the second pipe section 43 are vertically arranged and communicated.
  • the butt joint 45 is in communication with the third pipe section 44
  • the water inlet pipe 32 or the water outlet pipe 33 has a butting hole 46 for butting with the third pipe section 44, so as to be disconnected from the third pipe section 44 after the water inlet pipe 32 rotates relative to the butt joint 45 .
  • the connecting pipe section may mainly include: the first pipe section 42, the second pipe section 43, and the third pipe section 44
  • the water inlet assembly 40 and the water outlet assembly 41 may both mainly include: the first pipe section 42, the second pipe section 43, The third pipe section 44 and the butt joint 45
  • the first pipe section 42 is vertically installed on the second pipe section 43
  • the end of the second pipe section 43 close to the filter seat 30 is installed and connected with the third pipe section 44.
  • the third pipe section 44 is connected to the second pipe section 43.
  • the pipe sections 43 are perpendicular to each other, that is, the second pipe section 43 is parallel to the water inlet pipe 32 or the water outlet pipe 33, and the first pipe section 42 and the third pipe section 44 are perpendicular to the water inlet pipe 32 or the water outlet pipe 33, and are close to the water inlet pipe 32 or The outlet pipe 33 is the third pipe section 44, and the far away from the water inlet pipe 32 or the water outlet pipe 33 is the first pipe section 42.
  • the first pipe section 42 and the second pipe section 43 communicate with each other, and the second pipe section 43 and the third pipe section 44 communicate with each other.
  • Complete the water circulation work of the water purifier 100 This arrangement can not only make full use of the internal space of the mounting shell 20, but also avoid over-designing the size of the mounting shell 20.
  • the water flow channel is relatively simple and compact to ensure the pressure of the water flow. Traffic can improve the user experience.
  • the butt joint 45 and the third pipe section 44 communicate with each other, and the butt joint 45 and the water inlet pipe 32 or the water outlet pipe 33 are flush with each other at the same height, which can facilitate the joint 45 and the water inlet pipe 32.
  • the sleeve connection of the water outlet pipe 33 can facilitate the joint 45 and the water inlet pipe 32.
  • the sleeve connection of the water outlet pipe 33 can facilitate the joint 45 and the water inlet pipe 32.
  • the sleeve connection of the water outlet pipe 33 is provided with a docking hole 46.
  • the docking hole 46 can be docked with the third pipe section 44, and the docking hole 46 can follow the water inlet pipe 32 or the water outlet pipe 33. It rotates relative to the rotation of the counter joint 45.
  • the counter hole 46 is in the counter joint 45 and is in communication with the third pipe section 44, and exits from the third pipe section 44
  • the water enters the water inlet pipe 32 or the water outlet pipe 33 through the docking hole 46, so that the entire waterway is unobstructed.
  • the water purifier 100 may further include: a base 60, the base 60 is arranged in the first housing 21, the filter seat 30 is arranged in the base 60, and the base 60 is formed with a supporting water inlet pipe 32 The supporting groove 61 of the water outlet pipe 33 and the water inlet pipe 32 and the water outlet pipe 33 are rotatable relative to the supporting groove 61.
  • the water purifier 100 may also mainly include a base 60. The installation position of the base 60 is on the first housing 21, the installation position of the filter seat 30 is in the inner space of the base 60, and the base 60 is opposite to the first housing 21.
  • a support groove 61 is designed on each of the two sides of a housing 21 to support the water inlet pipe 32 and the water outlet pipe 33, and the water inlet pipe 32 and the water outlet pipe 33 can rotate relative to the support groove 61.
  • This arrangement makes the base 60 not only It can effectively protect the filter seat 30 and increase the service life of the filter seat 30, and the internal space of the base 60 can ensure that the filter seat 30 is not affected or even interrupted by other components during the rotation process, which can ensure the independence and rationality of the structure, and can optimize the process structure.
  • the base 60 is provided with a first limiting groove 62 that opens toward the second housing 22, and the base 31 is provided with a second limiting groove 63 that opens toward the bottom.
  • the filter element assembly 10 further includes: The limiting column 13 is arranged on at least one side of the water inlet joint 11, and the limiting column 13 is fitted in the first limiting slot 62 and the second limiting slot 63.
  • the base 60 is provided with a first limiting groove 62 on two sides opposite to the first housing 21, and the two first limiting grooves 62 are open toward the second housing 22, and the seat of the filter seat 30
  • the body 31 is provided with a second limiting groove 63 on the two sides opposite to the first housing 21.
  • the filter element assembly 10 may also mainly include: a limiting post 13, which is installed in the inlet of the filter element assembly 10. On the water connector 11, and the limiting post 13 can be engaged with the first limiting groove 62 and the second limiting groove 63 in cooperation.
  • the limit post 13 and the first limit slot 62 and the second limit The position groove 63 is snap-fitted.
  • the first limit groove 62 can limit the freedom of movement of the limit post 13 in the up and down direction, so that the filter element assembly 10 is fixed in the up and down direction.
  • the groove 63 can limit the freedom of movement of the limit post 13 in the left and right directions, so that the filter element assembly 10 is fixed in the left and right directions. This can ensure the stability of the filter element assembly 10 and prevent the water purifier 100 from being impacted by external forces.
  • the position of the filter element assembly 10 is shifted, causing structural damage to the water purifier 100, causing the water purifier 100 to fail to work normally, which can improve the reliability of the structure.
  • the mounting shell 20 is a rectangular parallelepiped
  • the height direction of the rectangular parallelepiped is the vertical direction
  • the width direction of the rectangular parallelepiped is the left-right direction.
  • the filter element assembly 10 can be easily taken out.
  • Such a setting can not only make the structural design of the water purifier 100 more ingenious, but also make the filter element assembly 10 easier and more convenient during maintenance and replacement, which can improve the user experience, and it can also prevent the user from using excessive force when removing the filter element assembly 10 As a result, the structure of the water purifier 100 is damaged, and the process structure can be optimized.
  • the second housing 22 is provided with a limiting groove
  • the filter element assembly 10 further includes: a limiting column 13, which is arranged on at least one side of the water inlet connector 11, and the limiting column 13 and the limiting column 13 Position slot limit coordination. That is to say, the second housing 22 is installed with a limiting groove, the filter element assembly 10 may also include: a limiting column 13, which is installed on one side of the water inlet connector 11, and the limiting column 13 can be connected with The position-limiting cooperation of the limit slot can further make the installation of the filter element assembly 10 firmer, make the force of the filter element assembly 10 more uniform, and optimize the process structure.
  • the bottom of the first housing 21 and the bottom of the filter element assembly 10 are arranged to abut against each other.
  • an abutment portion is installed on the bottom of the first housing 21, so that the bottom of the filter element assembly 10 can be abutted against the bottom of the first housing 21, and the filter element assembly 10 can be prevented from being subjected to external force, and the limiting post 13 can be When the external force pulls down, the abutment position can provide an upward interaction force to the filter element assembly 10, which in turn counteracts the downward force and avoids damage to the limit column 13, which can increase the reliability of the structure and improve the net The service life of the water tank 100.
  • the bottom of the first housing 21 is provided with an abutment platform 70 protruding toward the bottom of the filter element assembly 10.
  • the abutment part installed at the bottom of the first housing 21 is the abutment platform 70
  • the abutment platform 70 is installed at the bottom of the first housing 21 and protrudes toward the side of the filter element assembly 10 to resist
  • the filter element assembly 10 can make the installation and setting of the filter element assembly 10 firmer, and the abutment platform 70 can make the force of the filter element assembly 10 more even, and can make the filter element assembly 10 and the bottom of the first housing 21 have a certain distance. Put your fingers into the spaced position and move the filter element assembly 10 outwards to rotate it to a suitable position, which can facilitate the user to exert force and improve the user's experience.
  • the first housing 21 is provided with a first limiting portion 71
  • the filter element assembly 10 is provided with a second limiting portion
  • the first limiting portion 71 and the second limiting portion are in position-limiting cooperation.
  • the first housing 21 is designed with a first limiting portion 71
  • the first limiting portions 71 are multiple and the first limiting portions 71 are evenly distributed on the first housing 21, and the filter element assembly 10 is corresponding to the first
  • a second limiting portion is designed at the position of a limiting portion 71.
  • There are multiple second limiting portions and the second limiting portions are evenly distributed on the second housing 22.
  • the multiple first limiting portions 71 and the multiple The one-to-one matching of the second limiting parts can further make the installation of the filter element assembly 10 inside the mounting shell 20 more firm and stable.
  • one of the first limiting portion 71 and the second limiting portion is a buckle
  • the other of the first limiting portion 71 and the second limiting portion is a slot.
  • one of the first limiting portion 71 and the second limiting portion is a protrusion
  • the other of the first limiting portion 71 and the second limiting portion is a concave portion
  • the concave portion is a limiting groove.
  • At least one of the first housing 21 and the second housing 22 is provided with a limiting portion for limiting the position of the filter element assembly 10.
  • at least one of the first housing 21 and the second housing 22 is installed with a restricting portion for restricting the filter element assembly 10. This arrangement can further increase the installation of the filter element assembly 10 in the mounting housing 20. The firmness can further prevent the water purifier 100 from being unable to work normally due to the movement of the filter element assembly 10 in the mounting shell 20, and the service life of the water purifier 100 can be improved.
  • the first limiting portion 71 is a limiting plate, and the limiting plates are distributed at both ends in the width direction of the first housing 21 to limit the two ends in the width direction of the filter element assembly 10. That is, the first limiting portion 71 may be designed as a limiting plate, and the limiting plate is installed at both ends in the width direction of the first housing 21, and at both ends in the width direction of the first housing 21. Symmetrically distributed, used to limit the widthwise ends of the filter element assembly 10, and can further limit the two sides in the width direction of the filter element assembly 10 on the basis that the bottom and top of the filter element assembly 10 have been limited. Therefore, the filter element assembly 10 can be further restricted in all directions to avoid displacement of the filter element assembly 10 in the mounting housing 20, affecting the normal operation of the water purifier 100, and improving the service life of the water purifier 100.
  • a partition plate 73 is provided on the first housing 21.
  • the partition plate 73 separates the mounting shell 20 into a first chamber 24 and a second chamber 25.
  • the first chamber 24 is used for
  • the second cavity 25 is used to accommodate the filter seat 30, the water inlet connector 11 and the water outlet connector 12.
  • a partition plate 73 is installed on the first housing 21, and the partition plate 73 can divide the cavity 23 of the inner space of the mounting housing 20 into a first cavity 24 and a second cavity 25.
  • the first cavity 24 can be used to accommodate the main structure of the filter element assembly 10
  • the second chamber 25 can be used to accommodate the filter seat 30, the water inlet connector 11 and the water outlet connector 12.
  • a part of the partition plate 73 is configured as a limiting plate portion 74, and the limiting plate portion 74 can be limited to the limiting plate portion 74 after the filter element assembly 10 is rotated by a predetermined angle relative to the first housing 21 Bit fit.
  • a part of the partition plate 73 is the limiting plate portion 74.
  • the rotation angle at this time is just enough to easily move the filter element
  • the proper angle for the removal of the component 10 can prevent the filter element assembly 10 from being too small or too large to be able to be taken out, and the user does not need to observe the rotation angle to adjust the amount of force applied and the time when the force is stopped to achieve the purpose of removing the filter element assembly. 10
  • the purpose of turning to a suitable angle can improve the user experience.
  • the predetermined angle may be 30°-75°, and further, the predetermined angle may be 45°-48°.
  • the mounting shell 20 may also mainly include: a top cover 76.
  • the first shell 21 is integrally formed with the bottom of the first shell 21, and the top of the first shell 21 is in an open state.
  • the top cover 76 is covered and fixed on the top of the first housing 21, and the components in the second chamber 25 are damaged.
  • the top cover 76 can be directly opened to replace the components in the second chamber 25 With this arrangement, the components in the second chamber 25 can be replaced without disassembling the first housing 21 and the second housing 22, the process flow can be optimized, and the user experience can be improved.
  • a connecting plate 75 is designed between the first housing 21 and the partition plate 73, and the connecting plate 75 can connect the first housing 21 and the partition plate 73, and the connecting plate 75
  • the second chamber 25 is divided into a first accommodating area, a second accommodating area, and a third accommodating area.
  • the first accommodating area is equipped with a water inlet assembly 40
  • the second accommodating area is equipped with a water outlet assembly 41
  • the third accommodating area is equipped with a filter seat 30
  • the water inlet connector 11 and the water outlet connector 12 are arranged in this way to not only make the connection between the partition plate 73 and the first housing 21 more stable and firm, but also to further increase the independence of the work of the components in the second chamber 25, so that The work of the various components does not affect each other, so that the reliability of the structure of the water purifier 100 can be further increased.
  • the filter element assembly 10 includes: a filter cartridge 14 and a plurality of filter elements 15.
  • the filter cartridge 14 defines a plurality of accommodating cavities 16, the axial direction of the plurality of accommodating cavities 16 is the first direction, and the spacing direction is the second The first direction is perpendicular to the second direction, and the plurality of filter elements 15 are respectively arranged in the plurality of accommodating cavities 16.
  • the filter element assembly 10 may mainly include: a filter cartridge 14 and a plurality of filter elements 15.
  • the spacing direction of the accommodating cavity 16 is the second direction, and the first direction and the second direction are perpendicular to each other.
  • the multiple filter elements 15 and the multiple accommodating cavities 16 are installed in one-to-one correspondence. This arrangement can further isolate the filter element 15 from the outside world.
  • the filter element assembly 10 can be designed to separate multiple filter elements 15 with different filtering effects.
  • the first direction is the height direction of the installation shell 20, that is, the vertical direction
  • the second direction is the length direction of the installation shell 20.
  • the filter element assembly 10 thus arranged is a rectangular parallelepiped, a flat structure, small in size, convenient for installation and arrangement, and can better correspond to the installation shell 20.

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  • Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Water Treatment By Sorption (AREA)

Abstract

一种净水器(100),净水器(100)包括:滤芯组件(10),滤芯组件(10)具有进水接头(11)和出水接头(12);安装壳(20),安装壳(20)包括:第一壳体(21)和第二壳体(22),第二壳体(21)与第一壳体(22)相对设置且可拆卸地安装于第一壳体(21),第二壳体(22)和第一壳体(21)限定出容纳滤芯组件(10)的腔室(23);滤座(30),滤座(30)可转动地设置于第一壳体(21)内,在第二壳体(22)相对第一壳体(21)拆卸后,滤座(30)相对第一壳体(21)可转动,以进行滤芯组件(10)的安装拆卸。

Description

净水器 技术领域
本公开涉及净水设备技术领域,尤其是涉及一种净水器。
背景技术
随着科技的发展和人们生活水平的提高,净水器以它可以净化用户用水,提高用户用水的纯净度,可以使用户用水更加健康的优势得到人们地认可,实现了广泛地推广与应用。
相关技术中,净水器中滤芯组件通过卡接或侧插的方式完成安装固定,如此安装设置会使滤芯组件在拆卸时非常费力,增加更换或维修滤芯组件的难度,降低用户的使用体验。
发明内容
本公开旨在至少解决现有技术中存在的技术问题之一。为此,本公开一方面提供了一种净水器。
根据本公开的净水器,所述净水器包括:滤芯组件,所述滤芯组件具有进水接头和出水接头,所述进水接头和所述出水接头套设设置;安装壳,所述安装壳包括:第一壳体和第二壳体,所述第二壳体与所述第一壳体相对设置且可拆卸地安装于所述第一壳体,所述第二壳体和所述第一壳体限定出容纳所述滤芯组件的腔室;滤座,所述滤座可转动地设置于所述第一壳体内,所述进水接头和所述出水接头分别连接于所述滤座内,在所述第二壳体相对所述第一壳体拆卸后,所述滤座相对所述第一壳体可转动,以进行所述滤芯组件的安装拆卸。
根据本公开的净水器,将滤芯组件的进水接头和出水接头分别与第一壳体上的滤座进行连接固定,由于滤座可以相对第一壳体进行转动,所以滤芯组件可以跟随滤座的转动,当转动到合适位置时,便可以更加轻松便捷地完成滤芯组件的安装与拆卸,可以提高用户的使用体验。
根据本公开的一个实施例,所述滤座包括:座体、进水管和出水管,所述进水管和所述出水管均设置于所述座体,所述进水接头和所述出水接头分别设置于所述座体内,所述进水管和所述进水接头相连通,所述出水管和所述出水接头相连通。
根据本公开的一个实施例,所述净水器还包括:进水组件和出水组件,所述进水组件和所述出水组件均设置于所述安装壳内,所述进水管和所述出水管在所述滤座上向相反方向延伸,所述进水管可转动地设置于所述进水组件,所述出水管可转动地设置于所述出水组件。
根据本公开的一个实施例,所述进水管的端部和所述进水组件的端部之间套设设置且之间具有进水密封圈;所述出水管的端部和所述出水组件的端部之间套设设置且之间具有出水密封圈。
根据本公开的一个实施例,所述进水密封圈和所述出水密封圈均包括:第一环形部、第二环形部和连接部,所述第一环形部和所述第二环形部间隔设置,所述连接部为多个且分别连 接于所述第一环形部和所述第二环形部之间,所述进水密封圈整体套设于所述进水管的端部,所述出水密封圈整体套设于所述出水管的端部。
根据本公开的一个实施例,所述进水管的端部和所述出水管的端部均设置有凹槽,所述第一环形部、所述连接部和所述第二环形部的至少一部分容置于所述凹槽内。
根据本公开的一个实施例,在所述滤座相对所述第一壳体转动后,所述进水管与所述进水组件的水路断开,所述出水管与所述出水组件的水路断开。
根据本公开的一个实施例,所述进水组件和所述出水组件均包括:连接管段和对接头,所述对接头连接于所述连接管段的一端,所述进水管或所述出水管具有用于与所述连接管段对接的对接孔且可转动地设置于所述对接头,以在所述进水管或所述出水管相对所述对接头转动后与所述连接管段断开。
根据本公开的一个实施例,所述连接管段包括:第一管段、第二管段和第三管段,所述第一管段与所述第二管段垂直设置且连通,所述第三管段和所述第二管段垂直设置且连通,所述对接头与所述第三管段相连通,所述进水管或所述出水管具有用于与所述第三管段对接的对接孔且可转动地设置于所述对接头,以在所述进水管相对所述对接头转动后与所述第三管段断开。
根据本公开的一个实施例,所述净水器还包括:底座,所述底座设置于所述第一壳体,所述滤座设置于所述底座内,所述底座形成有支撑所述进水管和所述出水管的支撑槽,所述进水管和所述出水管相对所述支撑槽可转动。
根据本公开的一个实施例,所述底座设置有朝向所述第二壳体敞开的第一限位槽,所述座体设置有朝向底部敞开的第二限位槽,所述滤芯组件还包括:限位柱,所述限位柱设置于所述进水接头的至少一侧,所述限位柱配合于所述第一限位槽和所述第二限位槽内。
根据本公开的一个实施例,所述第二壳体上设置有限位槽,所述滤芯组件还包括:限位柱,所述限位柱设置于所述进水接头的至少一侧,所述限位柱与所述限位槽限位配合。
根据本公开的一个实施例,所述第一壳体的底部与所述滤芯组件的底部抵接设置。
根据本公开的一个实施例,所述第一壳体的底部设置有朝向所述滤芯组件的底部凸出的抵接台。
根据本公开的一个实施例,所述第一壳体设置有第一限位部,所述滤芯组件设置有第二限位部,所述第一限位部和所述第二限位部限位配合。
根据本公开的一个实施例,所述第一限位部和所述第二限位部中的一个为卡扣且另一个为卡槽,所述卡扣和所述卡槽卡接配合;或所述第一限位部和所述第二限位部中的一个为凸起且另一个为凹部,所述凸起和所述凹部限位配合。
根据本公开的一个实施例,所述第一壳体上设置有分隔板,所述分隔板将所述安装壳分隔成第一腔室和第二腔室,所述第一腔室用于容纳所述滤芯组件的主体结构,所述第二腔室用于容纳所述滤座、所述进水接头和所述出水接头。
根据本公开的一个实施例,所述分隔板的一部分构造为限位板部以在所述滤芯组件相对所述第一壳体转动预定角度后与所述限位板部限位配合。
根据本公开的一个实施例,所述第一壳体与所述分隔板之间设置有连接板,所述连接板将所述第二腔室分成第一容纳区域、第二容纳区域和第三容纳区域,所述进水组件设置于所述第一容纳区域,所述出水组件设置于所述第二容纳区域,所述滤座、所述进水接头和所述出水接头设置于所述第三容纳区域。
根据本公开的一个实施例,所述滤芯组件包括:滤筒和多个滤芯,所述滤筒限定出多个容纳腔,多个所述容纳腔的轴向为第一方向且间隔方向为第二方向,所述第一方向与所述第二方向垂直设置,多个所述滤芯分别设置于多个所述容纳腔内。
本公开的附加方面和优点将在下面的描述中部分给出,部分将从下面的描述中变得明显,或通过本公开的实践了解到。
附图说明
本公开的上述和/或附加的方面和优点从结合下面附图对实施例的描述中将变得明显和容易理解,其中:
图1是根据本公开实施例的净水器的爆炸图;
图2是根据本公开实施例的净水器除去滤芯组件后的剖视图;
图3是第三管段与进水管或出水管正常对接时的剖视图;
图4是第三管段与进水管或出水管断开连接时的剖视图;
图5是第一壳体的示意图;
图6是滤芯组件安装在第一壳体上的示意图;
图7是滤芯组件安装在第一壳体上的剖视图;
图8是滤芯组件相对第一壳体转动的示意图;
图9是滤芯组件相对第一壳体转动的剖视图;
图10是滤芯组件的爆炸图。
具体实施方式
下面详细描述本公开的实施例,参考附图描述的实施例是示例性的,下面详细描述本公开的实施例。
下面参考图1-图10描述根据本公开实施例的净水器100。
如图1所示,根据本公开实施例的净水器100可以包括:滤芯组件10、安装壳20和滤座30,滤芯组件10和滤座30安装在安装壳20内,滤芯组件10和滤座30之间相连通,以进行进水和出水。
如图1所示,滤芯组件10朝向滤座30的一侧上设置有进水接头11和出水接头12,进水 接头11和出水接头12呈圆柱体状,并且进水接头11与出水接头12朝向滤座30一侧凸出设置,进水接头11和出水接头12套设设置,例如,由于进水接头11的直径大于出水接头12的直径,而且进水接头11和出水接头12的内部空心且导通,所以出水接头12可以套设安装在进水接头11的内部空间中,如此设置,不仅可以使结构更加紧凑,而且将进出水的位置设计在同一处,可以避免进出水位置发生泄漏,导致滤芯组件10出现多处泄漏的情况,便于维修管理净水器100,可以优化工艺设计,可以提高用户的适应使用体验。
如图1所示,安装壳20可以包括:第一壳体21和第二壳体22,第二壳体22与第一壳体21相对设置,并且第二壳体22可拆卸地安装于第一壳体21,安装壳20整体呈长方体状,长方体包括但不限制于正方体,第二壳体22和第一壳体21限定出容纳滤芯组件10的腔室23。也就是说,安装壳20可以主要包括:第一壳体21和第二壳体22,第一壳体21与第二壳体22为相对设置,需要说明的是,所述长方体包括但不限制于正方体,第二壳体22可拆卸地安装设置在第一壳体21上,在第二壳体22和第一壳体21安装后安装壳20整体呈长方体状,并且安装壳20内部空间中可以形成相对密闭的腔室23,滤芯组件10可以安装设置于第二壳体22和第一壳体21内部相对密闭的腔室23中,如此设置,不仅可以方便滤芯组件10的维修更换,可以提升用户的使用体验,也可以防止外界异物进入腔室23中并且损坏滤芯组件10,另外,质地相对较硬的安装壳20也可以在净水器100在受到外力的冲击时,起到保护滤芯组件10的作用,避免造成滤芯组件10损坏,可以增加净水器100的使用寿命。还有,长方体的安装壳20可以适于安装滤芯组件10,可以使得滤芯组件10和安装壳20整体结构小巧,体积小,进一步地可以减小占用净水器100的空间。
进一步地,如图1所示,第一壳体21与第二壳体22在安装壳20宽度方向上的两个侧面均为相互适配的弧形,如此可以使长方体状安装壳20的角均为圆角,如此设置,不仅可以减少安装壳20各个角的磨损,可以提高净水器100的使用寿命,而且较钝的圆角可以防止发生突发状况时,安装壳20刺伤或划伤用户,可以提高用户的使用体验。
结合图1和图8所示,滤座30可转动地设置于第一壳体21内,进水接头11和出水接头12分别连接于滤座30内,在第二壳体22相对第一壳体21拆卸后,滤座30相对第一壳体21可转动,以进行滤芯组件10的安装拆卸。也就是说,滤座30安装设置在第一壳体21上,并且滤座30相对于第一壳体21可以转动,滤芯组件10朝向滤座30一侧上凸出设置的进水接头11与出水接头12分别安装连接在滤座30内,从而实现整个滤芯组件10与滤座30的连接固定,进一步地,当滤芯组件10需要拆卸进行维修或更换时,可以先将第二壳体22相对第一壳体21进行拆卸,然后向滤芯组件10远离第一壳体21一侧施加一个向外的力,使滤芯组件10带动滤座30相对第一壳体21进行转动,当滤座30转动到合适角度时,便可以将滤芯组件直接10取出,从而完成滤芯组件10的拆卸,如此设置不仅可以使用户在安装拆卸滤芯组件10时更加轻松便捷,并且也可以保证净水器100结构的稳定性,防止用户在安装或拆卸滤芯组件10时过于困难,避免用户用力过大导致净水器100结构的损坏,从而可以提升用户 的使用体验。
另外,目前滤芯组件10的受力点主要集中在滤芯组件10的头部,即进水接头11和出水接头12处,此处受到的支撑力越大,相应的摩擦力也越大,转动拆卸滤芯组件10的方式巧妙地化解了这股摩擦力,当用户更换滤芯组件10时,在较长的力臂作用下,只需从滤芯组件10的底部提供一个较轻的力即可,所以施加力远小于摩擦力,可以轻松更换滤芯组件10。
由此,根据本公开的净水器100,通过设置可转动地滤座30和可拆卸的安装壳20,可以方便滤芯组件10的安装拆卸,可以降低滤芯组件10的更换难度,可以提升用户的使用体验。
结合图1-图10所示,滤座30包括:座体31、进水管32和出水管33,进水管32和出水管33均设置于座体31,进水接头11和出水接头12分别设置于座体31内,进水管32和进水接头11相连通,出水管33和出水接头12相连通。也就是说,滤座30可以主要包括:座体31、进水管32和出水管33,进水管32和出水管33可以安装设置于座体31远离滤芯组件10的一侧,进水接头11和出水接头12分别安装设置于座体31内,并且进水管32和进水接头11相连通,出水管33和与出水接头12相连通,如此设置不仅可以保证滤座30工作的独立性,防止滤座30在转动的过程中接触到其他部件导致转动的卡顿或其他部件的损坏,而且可以避免净水器100在进水管32和进水接头11或出水管33和出水接头12的连接端口处发生泄漏,可以增加结构的可靠性,可以提升用户的使用体验。其中,进水管32和出水管33可以与座体31为一体制成但不限于此,如此不仅可以进一步地保证结构的密闭性,防止发生泄漏,也可以降低工艺难度,简化生产。
结合图1和图2所示,净水器100还包括:进水组件40和出水组件41,进水组件40和出水组件41均设置于安装壳20内,进水管32和出水管33在滤座30上向相反方向延伸,进水管32可转动地设置于进水组件40,出水管33可转动地设置于出水组件41。也就是说,净水器100还可以主要包括:进水组件40和出水组件41,进水组件40和出水组件41均安装设置在安装壳20的内部空间中,进水管32和出水管33的一端安装设置在座体31上,并且进水管32和出水管33的另一端沿着安装壳20的宽度方向向相反的两个方向延伸,进一步地,进水管32从座体31上向外延伸的一端与进水组件40连接设置,并且进水管32相对进水组件40可以转动,出水管33从座体31上向外延伸的一端与出水组件41连接设置,并且出水管33相对出水组件41可以转动,如此不仅可以充分利用安装壳20内部的可用空间,使结构设计地更加合理,而且可以保证净水器100进水过程与出水过程互不干涉,可以提高净水器100结构的可靠性。
结合图1、图2、图3和图4所示,滤座30具有相对安装壳20的初始位置,在滤座30处于初始位置时,进水水路与进水管32连通且出水水路与出水管33连通,在滤座30相对安装壳20转动后,进水水路与进水管32断开且出水水路与出水管33断开。具体地,滤座30具有相对安装壳20的初始位置,当滤座30处于初始位置时,净水器100处在正常工作的状态下,进水水路与进水管32此时处于连通状态,并且出水水路与出水管33此时处于连通状 态,此时净水器100中整个水路处于正常流通工作的状态,相对应地,在滤座30相对安装壳20进行转动后,也就是说,滤座30离开了相对安装壳20的初始位置时,进水水路与进水管32处于断开状态,并且出水水路与出水管33处于断开状态,此时,净水器100的整个水路处在被阻断的状态,并且净水器100停止正常工作。
其中,滤座30离开初始位置可以是由于与滤座30相连接的滤芯组件10需要被取出来进行更换维修,如此设置,可以使滤芯组件10在转动到合适角度并且可以被轻松取出时,净水器100水路已被阻断,防止在取出滤芯组件10时,净水器100的水流在滤座30与滤芯组件10的连接位置发生漏水,可以优化工艺设计,可以提升用户的使用体验。
如图1所示,进一步地,进水管32的端部和进水组件40的端部之间套设设置且之间具有进水密封圈50,出水管33的端部和出水组件41的端部之间套设设置,并且之间具有出水密封圈51。例如,由于进水管32向外延伸的端部比进水组件40靠近进水管32一端的端部直径略小,所以可以在进水管32与进水组件40套设连接的端部之间套设设置有进水密封圈50,同样的,由于出水管33向外延伸的端部比出水组件41靠近出水管33一端的端部直径略小,所以可以在出水管33与出水组件41套设连接的端部之间套设设置有出水密封圈51,进水密封圈50与出水密封圈51均可以是由抗氧化性能好,耐酸碱性的橡胶材质制成,如此设置,不仅可以进一步地提高进水管32和进水组件40或出水管33和出水组件41之间套设连接的牢固性和稳定性,防止套设连接发生脱落,可以提升结构的可靠性,而且可以提高进水管32和进水组件40或出水管33和出水组件41之间的密闭性,防止在进水或出水时发生水的泄露,可以提升用户的使用体验。
进一步地,如图1所示,进水密封圈50和出水密封圈51均包括:第一环形部52、第二环形部53和连接部54,第一环形部52和第二环形部53间隔设置,连接部54为多个且分别连接于第一环形部52和第二环形部53之间,进水密封圈50整体套设于进水管32的端部,出水密封圈51整体套设于出水管33的端部。也就是说,进水密封圈50和出水密封圈51均可以主要包括:第一环形部52、第二环形部53和连接部54,第一环形部52与第二环形部53大小相同,并且第一环形部52与第二环形部53间隔设置,连接部54可以连接第一环形部52和第二环形部53,并且连接部54的长度为第一环形部52与第二环形部53的间隔距离,进一步地,连接部54为多个,如此设置不仅可以提高密封圈的密封性能,而且还可以进一步地提高进水管32和进水组件40或出水管33和出水组件41之间套设连接的牢固性和稳定性。
结合图1所示,进水管32的端部和出水管33的端部均设置有凹槽34,第一环形部52、连接部54和第二环形部53的至少一部分容置于凹槽34内。也就是说,进水管32和出水管33向外延伸的一端的端部上均设置有凹槽34,第一环形部52、连接部54和第二环形部53的至少一部分安装设置在凹槽34内,如此可以使密封圈更加稳固地套设在进水管32或出水管33上,防止密封圈在潮湿的环境下在进水管32或出水管33上发生位移,可以增加结构的稳定性。
结合图2-图4所示,在滤座30相对第一壳体21转动后,进水管32与进水组件40的水路断开,出水管33与出水组件41的水路断开。也就是说,在进行滤芯15的更换维修时,向滤芯组件10远离第一壳体21一侧施加向外的力,使滤芯组件10带动滤座30相对第一壳体21进行转动,当滤座30相对第一壳体21转动到合适的角度,滤芯组件10可以被直接取出时,进水管32与进水组件40的水路断开,出水管33与出水组件41的水路断开,整个净水器100的水路被阻断,如此设置,不仅可以防止在取出滤芯组件10时,由于水路依然畅通导致水的泄露,影响用户的使用体验,而且如此设置还具有一定的防呆性,在滤座30相对第一壳体21转动到合适的角度,滤芯组件10可以被直接取出前,水路便已被自动断开,无需再经过其他操作来断开水路,可以提高工艺设计,可以减少用户的操作步骤,可以提升用户的使用体验。
由此,根据本公开的净水器100,通过滤座30转动的方式,不仅可以方便滤芯组件10的安装拆卸,还可以在其安装拆卸之前进行水路的切断,可以避免水的泄漏,也可以减少用户的操作步骤,可以提升用户的使用体验。
结合图1-图4所示,进水组件40和出水组件41均包括:连接管段和对接头45,进水水路或出水水路形成于连接管段内,对接头45连接于连接管段的一端,进水管32或出水管33具有用于与连接管段对接的对接孔46且可转动地设置于对接头45,以在进水管32相对对接头45转动后与连接管段断开。也就是说,进水组件40和出水组件41均可以主要包括:连接管段和对接头45,进水水路或出水水路在连接管段内形成且流通,对接头连接安装在连接管段的一端,并且对接头的一端与进水管32或出水管33相对应,进水管32或出水管33设计有对接孔46,可以用于与连接管段相对应的一端进行连接安装设置,并且进水管32或出水管33相对对接头45可以转动,在进水管32或出水管33相对对接头45转动后,进水管32或出水管33与连接管段的连接断开,净水器100的水路被阻断,如此设置,可以优化结构设计,可以使净水器100的止水更加可靠且不易出现失误,可以提升用户的使用体验。
具体地,连接管段包括:第一管段42、第二管段43和第三管段44,第一管段42与第二管段43垂直设置且连通,第三管段44和第二管段43垂直设置且连通,对接头45与第三管段44相连通,进水管32或出水管33具有用于与第三管段44对接的对接孔46,以在进水管32相对对接头45转动后与第三管段44断开。也就是说,由于连接管段可以主要包括:第一管段42、第二管段43、第三管段44,所以进水组件40和出水组件41均可以主要包括:第一管段42、第二管段43、第三管段44和对接头45,第一管段42垂直安装设置在第二管段43上,并且第二管段43靠近滤座30的一端上安装连接有第三管段44,第三管段44与第二管段43相互垂直,也就是说,第二管段43与进水管32或出水管33平行,第一管段42与第三管段44与进水管32或出水管33相互垂直,并且其中靠近进水管32或出水管33的为第三管段44,远离进水管32或出水管33的为第一管段42,第一管段42与第二管段43相互连通,第二管段43与第三管段44相互连通,共同完成净水器100水路的流通工作,如此设置不仅可以充分利用安装壳20的内部空间,避免将安装壳20的尺寸设计地过大,并且如此设置水流 通道比较简单紧凑,可以保证水流的压力与流量,可以提升用户的使用体验。
其中,结合图1和图3所示,对接头45与第三管段44相互连通,对接头45与进水管32或出水管33在同一高度上相互齐平,可以方便对接头45与进水管32或出水管33的套设连接,另外,进水管32或出水管33上设置有对接孔46,对接孔46可以与第三管段44对接,并且对接孔46可以随着进水管32或出水管33相对对接头45的转动而转动,具体地,当净水器100处在正常工作的状态时,对接孔46处在对接头45中且与第三管段44导通,从第三管段44中出来的水通过对接孔46进入进水管32或出水管33,从而使整个水路通畅。
结合图1和图4所示,当净水器100的滤芯组件10需要更换维修时,将滤芯组件10旋转至合适角度,滤座30跟随滤芯组件10的转动而转动,从而导致滤座30上的进水管32或出水管33进行转动,进而将进水管32或出水管33上的对接孔46转动至无法与第三管段44对接导通的位置,以此阻断第三管段44的向外出水,最后达到关闭水路的目的,整个过程只需要通过转动滤芯组件10,便能够实现水路关闭和可以轻松取出滤芯组件10这两个目的,可以优化结构设计,可以提升用户的使用体验。
一种可选地,结合图1所示,净水器100还可以包括:底座60,底座60设置于第一壳体21,滤座30设置于底座60内,底座60形成有支撑进水管32和出水管33的支撑槽61,进水管32和出水管33相对支撑槽61可转动。具体地,净水器100还可以主要包括:底座60,底座60的安装设置位置处在第一壳体21上,滤座30的安装设置位置处在底座60的内部空间中,底座60相对第一壳体21的两个侧面上各设计有一个支撑槽61,用以支撑进水管32和出水管33,并且进水管32和出水管33可以相对支撑槽61进行转动,如此设置,底座60不仅可以有效保护滤座30,提升滤座30寿命,而且底座60的内部空间可以保证滤座30在旋转的过程中不被其他部件影响甚至中断,可以保证结构的独立性与合理性,可以优化工艺结构。
结合图1-图2所示,底座60设置有朝向第二壳体22敞开的第一限位槽62,座体31设置有朝向底部敞开的第二限位槽63,滤芯组件10还包括:限位柱13,限位柱13设置于进水接头11的至少一侧,限位柱13配合于第一限位槽62和第二限位槽63内。进一步地,底座60在相对第一壳体21的两个侧面上各设计有一个第一限位槽62,并且两个第一限位槽62朝向第二壳体22敞开,滤座30的座体31在相对第一壳体21的两个侧面的下方上设计有第二限位槽63,滤芯组件10还可以主要包括:限位柱13,限位柱13安装设置在滤芯组件10的进水接头11上,并且限位柱13可以与第一限位槽62和第二限位槽63相配合卡接。
具体地,结合图1、图6、图7、图8和图9所示,结合当净水器100处在正常的工作状态时,限位柱13与第一限位槽62和第二限位槽63相卡接配合,可以理解的是,第一限位槽62可以限制限位柱13在上下方向上的移动自由度,从而使滤芯组件10在上下方向上被固定,第二限位槽63可以限制限位柱13在左右方向上的移动自由度,从而使滤芯组件10在左右方向上被固定,这样可以保证滤芯组件10工作的稳定,防止净水器100在受到外力冲击时,滤芯组件10的位置发生移动,导致净水器100结构损坏,造成净水器100不能正常工作,可以 提高结构的可靠性。其中,由于安装壳20为长方体,长方体高度方向上为上下方向,长方体的宽度方向为左右方向。
相对应地,结合图5-图9所示,当净水器100的滤芯组件10需要维修更换时,需要先将滤芯组件10从安装壳20内取出,此时由于第一限位槽62与第二限位槽63并不能限制限位柱13的转动自由度,所以可以向滤芯组件10施加力使滤芯组件10与滤座30整体向外转动,使滤芯组件10脱离第一限位槽的限制,此时第二限位槽63随着角度的转动,变成可以限制限位柱13上下方向上的移动自由度,而限位柱13在左右方向上的移动自由度将无法被限制,所以向滤芯组件10施加一个相对向右的力便可以将滤芯组件10轻松取出。如此设置,不仅可以使净水器100结构设计的更加巧妙,可以使滤芯组件10在维修更换时更加轻松便捷,可以提高用户的使用体验,而且也可以防止在用户取出滤芯组件10时用力过大导致净水器100结构的损坏,可以优化工艺结构。
另一种可选地,第二壳体22上设置有限位槽,滤芯组件10还包括:限位柱13,限位柱13设置于进水接头11的至少一侧,限位柱13与限位槽限位配合。也就是说,第二壳体22上安装设置有限位槽,滤芯组件10还可以包括:限位柱13,限位柱13安装设置在进水接头11的一侧,并且限位柱13可以与限位槽限位配合,可以进一步地使滤芯组件10的安装更加牢固,使滤芯组件10的受力更加均匀,可以优化工艺结构。
再一种可选地,第一壳体21的底部与滤芯组件10的底部抵接设置。具体地,第一壳体21的底部安装设置有抵接部,可以使滤芯组件10的底部与第一壳体21的底部相抵接,可以防止滤芯组件10在受到外力作用,限位柱13被外力向下拉拽时,抵接位置可以提供给滤芯组件10一个向上的相互作用力,依次来抵消向下的作用力,避免限位柱13遭到损坏,可以增加结构的可靠性,可以提高净水器100的使用寿命。
结合图1和图5所示,第一壳体21的底部设置有朝向滤芯组件10的底部凸出的抵接台70。具体的,第一壳体21的底部安装设置的抵接部为抵接台70,抵接台70安装设置在第一壳体21的底部并且朝向滤芯组件10一侧凸出,用以抵住滤芯组件10,可以使滤芯组件10的安装设置更加牢固,抵接台70可以使滤芯组件10的受力更加均匀,而且可以使滤芯组件10与第一壳体21的底部产生一定的间隔,用户将手指伸入间隔位置,向外掰动滤芯组件10,使其转动到合适位置,可以方便用户发力,可以提升用户的使用体验。
再一种可选地,第一壳体21设置有第一限位部71,滤芯组件10设置有第二限位部,第一限位部71和第二限位部限位配合。具体地,第一壳体21上设计有第一限位部71,第一限位部71为多个且第一限位部71在第一壳体21上均匀分布,滤芯组件10在对应第一限位部71的位置上设计有第二限位部,第二限位部为多个且第二限位部在第二壳体22上均匀分布,多个第一限位部71与多个第二限位部一一对应配合,可以进一步地使滤芯组件10在安装壳20内部安装的更加牢固稳定。
其中,第一限位部71和第二限位部中的一个为卡扣,并且第一限位部71和第二限位部 中的另一个为卡槽,当将滤芯组件10安装至安装壳20内部时,卡扣与卡槽相互卡接,从而完成第一限位部71和第二限位部的相互配合,使滤芯组件10更加牢固地安装到第一壳体21上,如此设置,可以在避免增加操作步骤的前提下,进一步地增加结构的可靠性。
或者,第一限位部71和第二限位部中的一个为凸起,并且第一限位部71和第二限位部中的另一个为凹部,凹部即为限位凹槽,当将滤芯组件10安装至安装壳20内部时,凸起伸入凹部,从而完成第一限位部71和第二限位部的相互配合,使滤芯组件10更加牢固地安装到第一壳体21上,如此设置,可以在避免增加操作步骤的前提下,进一步地增加结构的可靠性,另外,设计多个配合方式可以在安装或拆卸滤芯组件20时产生不同的手感,可以使产品更加多样化,可以满足不同用户的喜好,可以促进净水器100的推广。
另外,第一壳体21和第二壳体22中的至少一个设置有用于对滤芯组件10限位的限位部。也就是说,第一壳体21与第二壳体22中的至少一个安装设置有用于限位滤芯组件10的限位部,如此设置,可以进一步地增加滤芯组件10在安装壳20内安装的牢固性,可以进一步避免滤芯组件10在安装壳20内发生移动导致净水器100无法正常工作,可以提高净水器100的使用寿命。
其中,第一限位部71为限位板,限位板分布在第一壳体21的宽度方向两端,以对滤芯组件10的宽度方向两端限位。也就是说,第一限位部71可以设计成限位板,限位板安装设置在第一壳体21的宽度方向上的两端,并且在第一壳体21的宽度方向上的两端对称分布,用以对滤芯组件10的宽度方向两端进行限位,可以在滤芯组件10底部和顶部已被限位的基础上,进一步地对滤芯组件10宽度方向上的两个侧面进行限位,从而可以进一步地对滤芯组件10进行全方位的限位,避免滤芯组件10在安装壳20内发生位移,影响净水器100的正常工作,可以提升净水器100的使用寿命。
结合图1-图10所示,第一壳体21上设置有分隔板73,分隔板73将安装壳20分隔成第一腔室24和第二腔室25,第一腔室24用于容纳滤芯组件10的主体结构,第二腔室25用于容纳滤座30、进水接头11和出水接头12。也就是说,第一壳体21上安装设置有分隔板73,分隔板73可以将安装壳20内部空间的腔室23分成第一腔室24和第二腔室25,第一腔室24中可以用来容纳滤芯组件10的主体结构,第二腔室25可以用来容纳滤座30,进水接头11和出水接头12,如此设置,不仅可以保证净水器100各部件之间的独立性,避免净水器100各部件在工作时相互影响,可以增加净水器100的结构可靠性。
进一步地,如图1所示,分隔板73的一部分构造为限位板部74,限位板部74可以在滤芯组件10相对第一壳体21转动预定角度后与限位板部74限位配合。也就是说,分隔板73的其中一部分为限位板部74,具体地,滤芯组件10在相对第一壳体21转动至可以直接将滤芯组件10取出的合适角度后,限位板部74可以限制滤芯组件10进一步转动,如此设置,具有一定的防呆效果,当用户将滤芯组件10转动至可以与限位板部74限位配合的位置,此时的转动角度正好是可以轻松将滤芯组件10取出的合适角度,可以避免滤芯组件10转动角度 过小或过大导致滤芯组件10无法被取出,并且用户无需观察转动的角度来调节施加力的大小与力停止的时间来达到将滤芯组件10转动至合适角度的目的,可以提高用户的使用体验。预定的角度可以为30°-75°,进一步地,预定的角度可以为45°-48°。
结合图1-图10所示,安装壳20还可以主要包括:顶盖76,第一壳体21与第一壳体21的底部一体成型,而第一壳体21的顶部为敞开状态,将顶盖76盖设固定在第一壳体21的顶部,在第二腔室25内的部件发生损坏,需要维修更换时,可以直接打开顶盖76,对第二腔室25内的部件进行更换,如此设置,可以在不拆卸第一壳体21与第二壳体22的情况下对第二腔室25内的部件进行更换,可以优化工艺流程,可以提升用户的使用体验。
进一步地,结合图1-图10所示,第一壳体21与分隔板73之间设计有连接板75,连接板75可以连接第一壳体21和分隔板73,并且连接板75将第二腔室25分成第一容纳区域、第二容纳区域和第三容纳区域,第一容纳区域安装进水组件40,第二容纳区域安装出水组件41,第三容纳区域安装滤座30、进水接头11和出水接头12,如此设置,不仅可以使分隔板73与第一壳体21的连接更加稳定牢固,而且可以进一步地增加第二腔室25内各部件工作的独立性,使各部件之间的的工作互不影响,从而可以进一步地增加净水器100结构的可靠性。
结合图10所示,滤芯组件10包括:滤筒14和多个滤芯15,滤筒14限定出多个容纳腔16,多个容纳腔16的轴向为第一方向,并且间隔方向为第二方向,第一方向与第二方向垂直设置,多个滤芯15分别设置于多个容纳腔16内。也就是说,滤芯组件10可以主要包括:滤筒14和多个滤芯15,滤筒14的内部限定出多个容纳腔16,多个容纳腔16的轴向方向为第一方向,并且多个容纳腔16的间隔方向为第二方向,第一方向与第二方向相互垂直,多个滤芯15与多个容纳腔16一一对应安装设置,如此设置,可以进一步地将滤芯15与外界隔离开,防止外界异物进入并且损坏滤芯15,另外,设计多个容纳腔16可以将过滤效果不同的多个滤芯15分开放置,在某一滤芯15需要更换时,可以只更换需要更换的滤芯15,避免整体更换造成不必要的浪费。其中,在滤芯组件10安装至安装壳20的内部后,第一方向为安装壳20高度方向,即上下方向,第二方向为安装壳20的长度方向。如此设置的滤芯组件10呈长方体,为一个扁平状结构,体积小,方便安装布置,也可以较好地与安装壳20相对应。
在本说明书的描述中,参考术语“一个实施例”、“一些实施例”、“示意性实施例”、“示例”、“具体示例”、或“一些示例”等的描述意指结合该实施例或示例描述的具体特征、结构、材料或者特点包含于本公开的至少一个实施例或示例中。在本说明书中,对上述术语的示意性表述不一定指的是相同的实施例或示例。
尽管已经示出和描述了本公开的实施例,本领域的普通技术人员可以理解:在不脱离本公开的原理和宗旨的情况下可以对这些实施例进行多种变化、修改、替换和变型,本公开的范围由权利要求及其等同物限定。

Claims (20)

  1. 一种净水器,其特征在于,包括:
    滤芯组件,所述滤芯组件具有进水接头和出水接头,所述进水接头和所述出水接头套设设置;
    安装壳,所述安装壳包括:第一壳体和第二壳体,所述第二壳体与所述第一壳体相对设置且可拆卸地安装于所述第一壳体,所述第二壳体和所述第一壳体限定出容纳所述滤芯组件的腔室;
    滤座,所述滤座可转动地设置于所述第一壳体内,所述进水接头和所述出水接头分别连接于所述滤座内,在所述第二壳体相对所述第一壳体拆卸后,所述滤座相对所述第一壳体可转动,以进行所述滤芯组件的安装拆卸。
  2. 根据权利要求1所述的净水器,其特征在于,所述滤座包括:座体、进水管和出水管,所述进水管和所述出水管均设置于所述座体,所述进水接头和所述出水接头分别设置于所述座体内,所述进水管和所述进水接头相连通,所述出水管和所述出水接头相连通。
  3. 根据权利要求2所述的净水器,其特征在于,还包括:进水组件和出水组件,所述进水组件和所述出水组件均设置于所述安装壳内,所述进水管和所述出水管在所述滤座上向相反方向延伸,所述进水管可转动地设置于所述进水组件,所述出水管可转动地设置于所述出水组件。
  4. 根据权利要求3所述的净水器,其特征在于,所述进水管的端部和所述进水组件的端部之间套设设置且之间具有进水密封圈;
    所述出水管的端部和所述出水组件的端部之间套设设置且之间具有出水密封圈。
  5. 根据权利要求4所述的净水器,其特征在于,所述进水密封圈和所述出水密封圈均包括:第一环形部、第二环形部和连接部,所述第一环形部和所述第二环形部间隔设置,所述连接部为多个且分别连接于所述第一环形部和所述第二环形部之间,所述进水密封圈整体套设于所述进水管的端部,所述出水密封圈整体套设于所述出水管的端部。
  6. 根据权利要求5所述的净水器,其特征在于,所述进水管的端部和所述出水管的端部均设置有凹槽,所述第一环形部、所述连接部和所述第二环形部的至少一部分容置于所述凹槽内。
  7. 根据权利要求3所述的净水器,其特征在于,在所述滤座相对所述第一壳体转动后,所述进水管与所述进水组件的水路断开,所述出水管与所述出水组件的水路断开。
  8. 根据权利要求7所述的净水器,其特征在于,所述进水组件和所述出水组件均包括:连接管段和对接头,所述对接头连接于所述连接管段的一端,所述进水管或所述出水管具有用于与所述连接管段对接的对接孔且可转动地设置于所述对接头,以在所述进水管或所述出水管相对所述对接头转动后与所述连接管段断开。
  9. 根据权利要求8所述的净水器,其特征在于,所述连接管段包括:第一管段、第二管段和第三管段,所述第一管段与所述第二管段垂直设置且连通,所述第三管段和所述第二管段垂直设置且连通,所述对接头与所述第三管段相连通,所述进水管或所述出水管具有用于与所述第三管段对接的对接孔且可转动地设置于所述对接头,以在所述进水管相对所述对接头转动后与所述第三管段断开。
  10. 根据权利要求2所述的净水器,其特征在于,还包括:底座,所述底座设置于所述第一壳体,所述滤座设置于所述底座内,所述底座形成有支撑所述进水管和所述出水管的支撑槽,所述进水管和所述出水管相对所述支撑槽可转动。
  11. 根据权利要求10所述的净水器,其特征在于,所述底座设置有朝向所述第二壳体敞开的第一限位槽,所述座体设置有朝向底部敞开的第二限位槽,所述滤芯组件还包括:限位柱,所述限位柱设置于所述进水接头的至少一侧,所述限位柱配合于所述第一限位槽和所述第二限位槽内。
  12. 根据权利要求2所述的净水器,其特征在于,所述第二壳体上设置有限位槽,所述滤芯组件还包括:限位柱,所述限位柱设置于所述进水接头的至少一侧,所述限位柱与所述限位槽限位配合。
  13. 根据权利要求1所述的净水器,其特征在于,所述第一壳体的底部与所述滤芯组件的底部抵接设置。
  14. 根据权利要求13所述的净水器,其特征在于,所述第一壳体的底部设置有朝向所述滤芯组件的底部凸出的抵接台。
  15. 根据权利要求1所述的净水器,其特征在于,所述第一壳体设置有第一限位部,所述滤芯组件设置有第二限位部,所述第一限位部和所述第二限位部限位配合。
  16. 根据权利要求15所述的净水器,其特征在于,所述第一限位部和所述第二限位部中的一个为卡扣且另一个为卡槽,所述卡扣和所述卡槽卡接配合;或
    所述第一限位部和所述第二限位部中的一个为凸起且另一个为凹部,所述凸起和所述凹部限位配合。
  17. 根据权利要求2所述的净水器,其特征在于,所述第一壳体上设置有分隔板,所述分隔板将所述安装壳分隔成第一腔室和第二腔室,所述第一腔室用于容纳所述滤芯组件的主体结构,所述第二腔室用于容纳所述滤座、所述进水接头和所述出水接头。
  18. 根据权利要求17所述的净水器,其特征在于,所述分隔板的一部分构造为限位板部以在所述滤芯组件相对所述第一壳体转动预定角度后与所述限位板部限位配合。
  19. 根据权利要求17所述的净水器,其特征在于,所述第一壳体与所述分隔板之间设置有连接板,所述连接板将所述第二腔室分成第一容纳区域、第二容纳区域和第三容纳区域,所述进水组件设置于所述第一容纳区域,所述出水组件设置于所述第二容纳区域,所述滤座、所述进水接头和所述出水接头均设置于所述第三容纳区域。
  20. 根据权利要求1所述的净水器,其特征在于,所述滤芯组件包括:滤筒和多个滤芯,所述滤筒限定出多个容纳腔,多个所述容纳腔的轴向为第一方向且间隔方向为第二方向,所述第一方向与所述第二方向垂直设置,多个所述滤芯分别设置于多个所述容纳腔内。
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