WIFI module mounting tool for range hood
By designing a WIFI module installation fixture and utilizing the cooperation of a positioning base, push rod, and translation block, the problem of difficult WIFI module installation was solved, achieving a fast and secure installation effect, improving installation efficiency and reducing labor costs.
Patent Information
- Application Number
- CN202520033692.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-07
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2035-01-07
AI Technical Summary
Existing range hood WIFI modules have a small installation range and high precision, resulting in low efficiency and easy misalignment or detachment when manually pasted, making it difficult to meet the installation requirements of ultra-thin smoke collection chambers.
Design a WIFI module installation fixture, including a positioning base, a handle and a push rod. Through the cooperation of the push rod and the sliding block, the WIFI module can be aligned with the installation position without bending over. Pressing and pushing are used to achieve quick and secure installation.
It enables quick and secure installation of the WIFI module, improves installation efficiency, reduces labor costs, and has a simple structure that is easy to operate by hand.
Smart Images

Figure CN223749512U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a tooling, especially a WIFI module installation tooling for a range hood. BACKGROUND
[0002] With the increase of user demand, the existing range hood increasingly needs to have multifunction, thus generating the demand of accessing network, and with the popularity of WIFI, the WIFI module becomes the standard configuration of the medium and high end range hood.
[0003] A kind of intelligent range hood disclosed in Chinese patent with application No.201720226913.4 includes body, panel assembly and WIFI device, WIFI device is arranged at the position close to panel assembly, panel assembly is glass panel, metal plate is arranged between WIFI device and glass panel, WIFI signal hole is opened on metal plate, which is conducive to the transmission of WIFI signal;Glass panel will not hinder the transmission of WIFI signal.
[0004] At present, the installation of WIFI module is generally in the smoke collecting cavity, and the assembly line is manually pasted and installed. Since the existing range hood increasingly pursues ultra-thin smoke collecting cavity, it leads to small WIFI module installation range, and the installation position is not easy to observe due to the folding edge shielding. Because of the insulating property of the electronic control, the WIFI module installation range has high precision, so the manual pasting and installation efficiency is low, and it is easy to cause paste misplacement, resulting in WIFI module and sheet metal overlapping failure. Or paste is not firm, leading to WIFI module vibration and falling during the transportation of range hood. UTILITY MODEL CONTENTS
[0005] The utility model provides a WIFI module installation tooling for a range hood to solve the technical problems of the prior art, which improves the convenience of WIFI module installation and the stability after installation.
[0006] The utility model adopts the technical scheme to solve the above technical problems: a WIFI module installation tooling for a range hood, characterized in that: the installation tooling includes:
[0007] A tooling main body includes a positioning base and a handle, the handle extends along the Y direction from the positioning base to the direction away from the positioning base, and the positioning base is used for placing the WIFI module to be installed and positioning the installation position of the WIFI module.
[0008] A pressing rod penetrates into the tooling main body from the handle and can move into the positioning base along the Y direction when pressed, and the pressing rod has a tendency to move outward to the tooling main body and reset.
[0009] The translation block is arranged adjacent to the WIFI module and can move synchronously, the translation block is directly or indirectly inclinedly matched with the push rod, so that the movement of the push rod along the Y direction is converted into the movement of the translation block along the X direction, and then the WIFI module can be pushed out to be adhesively fixed with the mounting surface of the mounting base, and the X direction and the Y direction are perpendicular to each other.
[0010] By designing the WIFI installation tool, the positioning base can be positioned with the mounting base, the pressing design of the handle and the push rod and the movement direction turning design of the push rod and the translation block enable the user to align the installation position in the smoke hood without bending down to observe when installing the WIFI module, and only one push (positioning) and one press (installation) are needed to realize blind installation, installation in place and firm adhesion, improve efficiency, save labor cost, and the structure is simple, small in size and portable.
[0011] In order to facilitate the WIFI module to be arranged on the positioning base, the positioning base is at least partially in a U shape, so as to form a first installation cavity in the inside of the U-shaped opening to accommodate the WIFI module to be installed; a second installation cavity is formed in the inside of the positioning base and corresponds to the first installation cavity, the second installation cavity is communicated with the first installation cavity, and the translation block is at least partially arranged in the second installation cavity.
[0012] In order to facilitate the relative fixation of the positioning base and the WIFI module during installation, the WIFI module is provided with a lug, one side wall surface of the first installation cavity of the positioning base along the Z direction is formed with a positioning groove, the Z direction is perpendicular to the X direction and the Y direction, and the lug can be at least partially clamped into the positioning groove.
[0013] In order to facilitate the WIFI module to be pushed by the translation block and avoid the WIFI module from being affected by the mounting base, the positioning base of the tool body further comprises a supporting seat for supporting the WIFI module.
[0014] Further, in order to facilitate the cooperation of the push rod and the translation block, the push rod comprises a push rod body penetrating into the handle, a protrusion extending along the Y direction is formed on the outer peripheral wall of the push rod body, a third installation cavity is formed in the positioning base for the extension of the push rod body, the third installation cavity is communicated with the second installation cavity, the first installation cavity, the second installation cavity and the third installation cavity are arranged in sequence along the X direction, and the protrusion can penetrate into the second installation cavity to push the translation block when the protrusion corresponds to the second installation cavity.
[0015] Further, the second installation cavity is provided with a non-return push plate which moves synchronously with the translation block. The non-return push plate is formed with a groove extending along the Y direction on the side away from the translation block. The groove is formed by recessing the surface of the non-return push plate away from the translation block. The bottom surface of the groove is a slope which gradually moves away from the translation block along the direction in which the push rod body is pressed. The non-return push plate keeps the translation block in a tendency to move back to the second installation cavity. The non-return push plate is arranged to cooperate with the slope of the push rod, thereby achieving movement turning and indirectly pushing the translation plate.
[0016] To facilitate the definition of the movement track of the push rod body, the handle comprises a handle body extending from the positioning base. The handle body is a hollow structure. The inner peripheral wall of the handle body is formed with a track groove. The track groove is formed by recessing the inner peripheral wall of the handle body. The protrusion of the push rod also slidably cooperates with the track groove.
[0017] To facilitate the reset of the push rod body after the installation is completed, the inner peripheral wall of the handle body is further formed with a stop portion. The stop portion is an annular structure formed by protruding the inner peripheral wall of the handle body inward. The push rod body is further provided with a stop plate.
[0018] The push rod further comprises a first elastic member. The first elastic member is sleeved on the outer periphery of the push rod body. The two ends of the first elastic member respectively abut against the stop plate on the push rod body and the stop portion of the handle, so that the push rod body keeps a tendency to move back to the handle.
[0019] To further facilitate the reset of the push rod body after the installation is completed, the push rod body comprises opposite first and second end portions. The first end portion is located outside the tool body, and the second end portion is located inside the tool body. The push rod further comprises a second elastic member and a spring seat. The spring seat is arranged at the second end portion of the push rod body and extends into the third installation cavity of the positioning base. The second elastic member is sleeved on the outer periphery of the spring seat. The two ends of the second elastic member respectively abut against the second end portion of the push rod body and the wall of the second installation cavity of the positioning base, so that the push rod body keeps a tendency to move back to the handle.
[0020] To facilitate the reset of the non-return push plate after the installation is completed, the installation tool further comprises a third elastic member. The two ends of the third elastic member respectively abut against the non-return push plate and the wall of the second installation cavity of the positioning base, so that the non-return push plate keeps a tendency to move back to the direction away from the first installation cavity.
[0021] In order to facilitate the user to press the press rod, the press rod includes the press rod body penetrating into the handle, the press rod body includes opposite first end and second end, the first end is located outside the tool body, the second end is located inside the tool body, the first end of the press rod body is provided with the press cap.
[0022] In order to facilitate the installation of the translation block, one side of the positioning base is provided with the installation opening for the translation block along the Z direction, and the Z direction is perpendicular to the X direction and the Y direction.
[0023] Compared with the prior art, the WIFI installation tool has the advantages that: the positioning base can be positioned with the installation base, the pressing design of the handle and the press rod and the motion direction turning design of the press rod and the translation block make the user realize the installation position in the interior of the smoke hood without bending down to observe, and the WIFI module can be aligned and installed in place by pushing and pressing, the efficiency is improved, the labor cost is saved, the structure is simple, the volume is small, and the WIFI module installation tool can be handheld. BRIEF DESCRIPTION OF DRAWINGS
[0024] Figure 1 It is a schematic view of the WIFI module installation tool and part of the smoke hood of the extractor hood of the utility model embodiment;
[0025] Figure 2 It is Figure 1 the local I enlarged schematic view;
[0026] Figure 3 It is a local sectional view (not pressed state) of the WIFI module installation tool and part of the smoke hood of the extractor hood of the utility model embodiment;
[0027] Figure 4 It is a local sectional view (pressed state) of the WIFI module installation tool and part of the smoke hood of the extractor hood of the utility model embodiment;
[0028] Figure 5 It is a schematic view of the WIFI module installation tool of the utility model embodiment;
[0029] Figure 6 It is an exploded structural schematic view of the WIFI module installation tool of the utility model embodiment;
[0030] Figure 7 It is a sectional view (hidden WIFI module) of the WIFI module installation tool of the utility model embodiment;
[0031] Figure 8 It is a sectional view of the tool body of the WIFI module installation tool of the utility model embodiment;
[0032] Figure 9 Figure 2 is a schematic view of a pressing rod, a non-return push plate and a third elastic member of a WIFI module installation tool according to an embodiment of the present application;
[0033] Figure 10 Figure 3 is an exploded structural schematic view of a pressing rod, a non-return push plate and a third elastic member of a WIFI module installation tool according to an embodiment of the present application. DETAILED DESCRIPTION
[0034] Embodiments of the present application will be described in detail below, examples of which are shown in the drawings, wherein the same or similar reference numerals represent the same or similar elements or elements having the same or similar functions.
[0035] In the description of the present application, it should be understood that the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation. Since the embodiments disclosed in the present application can be arranged in different directions, these terms indicating the direction are only as an illustration and should not be regarded as a limitation. For example, "upper", "lower" are not necessarily limited to the direction opposite or consistent with the direction of gravity. In addition, the features defined as "first", "second" can explicitly or implicitly include one or more of the features.
[0036] Referring to Figures 5 to 10 A WIFI module installation tool for a range hood, comprising a tool main body 1, a pressing rod 2, a translation block 3 and a non-return push plate 4.
[0037] The tool main body 1 comprises a positioning base 11, a handle 12 and a first installation cavity 13. The positioning base 11 is used for positioning with an installation position (to be described in detail below) on the range hood. The handle 12 can facilitate the user to hold the entire tool, which comprises a handle main body 121 extending from the positioning base 11. The handle main body 121 is of a hollow structure, and the end portion close to the positioning base 11 and the end portion away from the positioning base 11 are both open. An orbit groove 122 is formed on the inner circumferential wall of the handle main body 121, which is formed by the inner circumferential wall of the handle main body 121 being outwardly recessed. In addition, a stop portion 123 is also formed on the inner circumferential wall of the handle main body 121, which is formed by the inner circumferential wall of the handle main body 121 being inwardly protruded, and the stop portion 123 is annular. An XYZ coordinate system is established (see Figure 5The X-axis, Y-axis and Z-axis are perpendicular to each other. The handle 12 extends along the Y direction (the direction in which the Y-axis extends), and the track groove 122 also extends along the Y direction. The positioning base 11 is in a bent shape, and at least part of it is in a U shape, thereby forming a first mounting cavity 13 inside the opening of the U shape for accommodating the WIFI module 100 to be mounted. The WIFI module 100 can be provided with a lug 101, and one of the side walls of the first mounting cavity 13 formed by the positioning base 11 (the side wall extending along the Z-axis, i.e. the side wall in the Z direction) is provided with a positioning groove 131. The lug 101 can be semicircular, and when mounted, the lug 101 can be partially clamped into the positioning groove 131, thereby relatively fixing the positions of the WIFI module 100 and the tool body 1 when no external force is applied. The second mounting cavity 111 is formed in the positioning base 11 inside the position corresponding to the first mounting cavity 13, and the second mounting cavity 111 is in communication with the first mounting cavity 13.
[0038] The press rod 2 penetrates into the inside of the positioning base 11 from the handle 12. The press rod 2 includes a press rod body 21 and a press cap 22 provided on the press rod body 21. The outer peripheral wall of the press rod body 21 is provided with a protrusion 23 extending along the Y direction, which cooperates with the track groove 122 of the handle 12, thereby limiting the movement track of the press rod 2 to linear movement along the Y direction. The press rod body 21 is further provided with a stop plate 24 for cooperating with the stop portion 123 of the handle 12. The press rod body 21 has opposite first and second end portions, wherein the first end portion is located outside the handle 12, and the second end portion is located inside the handle 12 and can extend into the positioning base 11 when pressed. The third mounting cavity 112 is formed in the positioning base 11 inside the position corresponding to the press rod body 21. The press cap 22 is provided on the first end portion of the press rod body 21. The provision of the press cap 22 can make the hand of the user have a larger contact area with the press rod 2, so as to facilitate the pressing operation.
[0039] The pressing rod 2 further comprises a first elastic member 251 and a second elastic member 252, both of which are preferably springs. The first elastic member 251 is sleeved on the outer periphery of the pressing rod body 21, and the two ends thereof abut against the stop plate 24 on the pressing rod body 21 and the stop portion 123 of the handle 12 respectively, so that the pressing rod body 21 is kept to have a tendency to return to the outside of the handle 12. In the installed state, the stop plate 24 is closer to the stop portion 123 than the pressing cap 22. The pressing rod 2 further comprises a spring seat 253, which is arranged at the second end of the pressing rod body 21 and extends into the third installation cavity 112 of the positioning base 11. The second elastic member 252 is arranged in the third installation cavity 112 and sleeved on the outer periphery of the spring seat 253, and the two ends thereof abut against the second end of the pressing rod body 21 (the outer diameter of the spring seat 253 is smaller than the pressing rod body 21) and the wall surface of the positioning base 11 constituting the second installation cavity 111 (the wall surface is the side opposite to the second end of the pressing rod body 21 along the Y direction), so that the pressing rod body 21 is further kept to have a tendency to return to the outside of the handle 12.
[0040] The pressing rod 2 can further comprise a cover 26 for blocking the end of the handle body 121 away from the positioning base 11, and the pressing rod body 21 mentioned above passes through the cover 26.
[0041] The second installation cavity 111 and the third installation cavity 112 of the positioning base 11 are also communicated, which can be communicated by means of the opening 113. The first installation cavity 13, the second installation cavity 111 and the third installation cavity 112 are arranged in sequence along the X direction (the direction in which the X axis extends). The opening 113 can be matched with the protrusion 23 on the pressing rod body 21, and when the protrusion 23 moves to at least partially abut against the opening 113, the portion corresponding to the opening 113 of the protrusion 23 can pass through the opening 113 and protrude into the second installation cavity 111.
[0042] The stop push plate 4 is arranged in the second mounting cavity 111, and the translation block 3 is partially arranged in the second mounting cavity 111 and partially arranged in the first mounting cavity 13, the WIFI module 100 abuts against the translation block 3, and the WIFI module 100 is located on the side, away from the stop push plate 4, of the translation block 3. When the press rod body 21 is pressed in the Y direction into the positioning base 11, the stop push plate 4 can be moved in the X direction by cooperation of the protrusion 23 and the stop push plate 4, so that the translation block 3 is pushed in the first mounting cavity 13, and the WIFI module 100 is further pushed out of the first mounting cavity 13. Therefore, a groove 41 is formed on the side, away from the translation block 3, of the stop push plate 4, the groove 41 extends in the Y direction and is recessed from the surface of the stop push plate 4, away from the translation block 3, to the direction of the translation block 3. The bottom surface 411 of the groove 41 is a slope, and the bottom surface 411 is a wall surface of the groove 41 close to the translation block 3. And the bottom surface 411 gradually moves away from the translation block 3 along the direction in which the press rod body 21 is pressed (usually from top to bottom). The protrusion 23 is preferably a cuboid, so that when the protrusion 23 passes through the opening 113 of the positioning base 11 and enters the second mounting cavity 111, the protrusion 23 can be inserted into the groove 41 of the stop push plate 4, and the protrusion 23 and the slope of the bottom surface 411 of the groove 41 can push the stop push plate 4 to move in the X direction as the press rod body 21 is further pressed. Alternatively, the surface of the protrusion 23 cooperating with the bottom surface 411 of the groove 41 can also not be limited to extending strictly in the Y direction, and can also be a slope. In addition, the translation block 3 and the stop push plate 4 can be integrated.
[0043] The mounting tool further comprises a third elastic member 5, which is preferably a spring, and the two ends of the third elastic member 5 abut against the wall surface of the second mounting cavity 111 of the positioning base 11 and the stop push plate 4, respectively, and the wall surface is the wall surface close to the first mounting cavity 13. Therefore, the stop push plate 4 can keep a tendency to move away from the first mounting cavity 13 and reset.
[0044] The translation block 3 and the stop push plate 4 can be detachably connected by a screw, and the side of the positioning base 11 corresponding to the second mounting cavity 111, that is, the side in the Z direction, can be provided with a mounting opening 114, so that the translation block 3 can be pushed into the second mounting cavity 111 in the Z direction from the mounting opening 114.
[0045] When the mounting tool is assembled, the third elastic member 5 can be first pushed into the second mounting cavity 111 in the X direction from the outside of the positioning base 11, and then the translation block 3 is turned into the positioning base 11 from the mounting opening 114 of the positioning base 11. The first elastic member 251 and the second elastic member 252 are mounted on the press rod body 21, and then mounted into the handle 12, the fixed cover 26 is fixed, and the press cap 22 is screwed.
[0046] Referring to Figures 1 to 4, when installing, the Y direction is the vertical direction from top to bottom, and the handle 12 extends upward from the upper surface of the positioning base 11. Therefore, in combination with Figures 5 to 8 The positioning base 11 of the tool main body 1 further comprises a supporting seat 115 which supports the bottom of the WIFI module 100 so as to support the WIFI module 100, avoiding the WIFI module 100 from being directly in contact with the smoke hood 200 (installation base) and being affected by the surface of the smoke hood 200 to cause the problem of being difficult to push.
[0047] The following steps are taken:
[0048] 1) The release film on the double-sided adhesive tape on the WIFI module 100 is torn off, and the side without the adhesive faces the first installation cavity 13 of the tool main body 1 and is thus inserted into the first installation cavity 13 and fixed in place in contact with or close to the translation block 3;
[0049] 2) Hold the handle 12, place the tool main body 1 into the smoke hood 200 of the range hood (mainly the smoke hood of a top suction type range hood, especially suitable for a super-thin smoke hood), and move in the Z direction so that the positioning base 11 is in abutment with the switch bracket 201 in the Z direction to achieve positioning, and at the same time, since the positioning base 11 is made on the bottom surface of the smoke hood 200, the positioning of the WIFI module 100 in the Y direction is naturally completed, as shown in Figure 3 ;
[0050] 3) The thumb of the hand of the user holding the handle 12 presses the press cap 22, thereby pressing the main rod 21 in the direction of the positioning base 11, as shown in Figure 4 , and further pushing the side of the WIFI module 100 with the double-sided adhesive tape (the side away from the translation block 3) toward the installation surface 202 in the smoke hood 200 and adhering and fixing after contact, and in this process, the elastic members are compressed, the installation is completed, and after the press cap 22 is released, the handle 12 and the check push plate 4 are reset.
[0051] Therefore, by using the WIFI module installation tool of the utility model, the problem of difficult installation of the WIFI module is solved, the installation position inside the smoke hood can be aligned without bending over to observe, and the effect of blind installation, installation in place and firm adhesion can be achieved by only pushing and pressing, thereby improving the efficiency and saving labor cost.
Claims
1. A WIFI module mounting tool for a range hood, characterized by: The mounting tool comprises: a tool body (1) comprising a positioning base (11) and a handle (12), the handle (12) extending in a Y direction away from the positioning base (11), the positioning base (11) being used for placing a WIFI module (100) to be installed and positioning with an installation position of the WIFI module (100); a press bar (2) penetrating into the tool body (1) from the handle (12) and being capable of moving into the positioning base (11) in the Y direction when being pressed, the press bar (2) having a tendency to move out of the tool body (1) and reset; and a translation block (3) being arranged adjacent to the WIFI module (100) and capable of synchronous movement, the translation block (3) being directly or indirectly inclinedly matched with the press bar (2), so that movement of the press bar (2) in the Y direction is converted into movement of the translation block (3) in an X direction, and in turn the WIFI module (100) can be pushed out to be adhesively fixed with a mounting surface (202) of an installation base, the X direction and the Y direction being perpendicular to each other.
2. The WIFI module mounting tool for the range hood according to claim 1, characterized in that: The positioning base (11) is at least partially in a U shape, thereby forming a first installation cavity (13) inside an opening of the U shape to accommodate the WIFI module (100) to be installed; a second installation cavity (111) is formed in a position inside the positioning base (11) corresponding to the first installation cavity (13), the second installation cavity (111) being in communication with the first installation cavity (13), and the translation block (3) being at least partially placed in the second installation cavity (111).
3. The WIFI module mounting tool for the range hood according to claim 2, characterized in that: The WIFI module (100) is provided with a lug (101), one side wall surface of the first installation cavity (13) formed by the positioning base (11) in a Z direction is formed with a positioning groove (131), the Z direction being perpendicular to the X direction and the Y direction respectively, and the lug (101) being capable of being at least partially clamped into the positioning groove (131).
4. The WIFI module mounting tool for the range hood according to claim 2, characterized in that: The positioning base (11) of the tool body (1) further comprises a support seat (115) for supporting the WIFI module (100).
5. The WIFI module mounting tool for the range hood according to claim 2, characterized in that: The press bar (2) comprises a press bar body (21) penetrating into the handle (12), a protrusion (23) extending in the Y direction is formed on an outer peripheral wall of the press bar body (21), a third installation cavity (112) is formed in the positioning base (11) for the press bar body (21) to extend into, the third installation cavity (112) being in communication with the second installation cavity (111), the first installation cavity (13), the second installation cavity (111) and the third installation cavity (112) being arranged in sequence in the X direction, and the protrusion (23) being capable of penetrating into the second installation cavity (111) and pushing the translation block (3) when corresponding to the second installation cavity (111).
6. The WIFI module mounting tool for the range hood according to claim 5, characterized in that: The second installation cavity (111) is further provided with a non-return push plate (4) which moves synchronously with the translation block (3), the side of the non-return push plate (4) away from the translation block (3) is formed with a groove (41) extending along the Y direction, the groove (41) is formed by the surface of the non-return push plate (4) away from the translation block (3) being recessed towards the translation block (3), the bottom surface (411) of the groove (41) is a slope, along the direction when the push rod body (21) is pressed, the bottom surface (411) gradually moves away from the translation block (3), the non-return push plate (4) keeps the tendency of the translation block (3) moving towards the second installation cavity (111) to reset.
7. The WIFI module mounting tool for the range hood according to claim 5, characterized in that: The handle (12) comprises a handle body (121) extending from the positioning base (11), the handle body (121) is a hollow structure, the inner peripheral wall of the handle body (121) is formed with a track groove (122), the track groove (122) is formed by the inner peripheral wall of the handle body (121) being recessed outward, the protrusion (23) of the push rod (2) further slidably fits with the track groove (122).
8. The WIFI module mounting tool for the range hood according to claim 7, characterized in that: The inner peripheral wall of the handle body (121) is further formed with a stop portion (123), the stop portion (123) is an annular structure formed by the inner peripheral wall of the handle body (121) being protruded inward, the push rod body (21) is further provided with a stop plate (24). The push rod (2) further comprises a first elastic member (251), the first elastic member (251) is sleeved on the outer periphery of the push rod body (21), the two ends of the first elastic member (251) respectively abut against the stop plate (24) on the push rod body (21) and the stop portion (123) of the handle (12), so that the push rod body (21) keeps the tendency of moving outward to the handle (12) to reset.
9. The WIFI module mounting tool for the range hood according to claim 8, characterized in that: The push rod body (21) comprises opposite first and second end portions, the first end portion is located outside the tool body (1), and the second end portion is located inside the tool body (1), the push rod (2) further comprises a second elastic member (252) and a spring seat (253), the spring seat (253) is arranged at the second end portion of the push rod body (21) and extends into the third installation cavity (112) of the positioning base (11), the second elastic member (252) is sleeved on the outer periphery of the spring seat (253), and the two ends of the second elastic member (252) respectively abut against the second end portion of the push rod body (21) and the wall surface of the second installation cavity (111) of the positioning base (11), so that the push rod body (21) keeps the tendency of moving outward to the handle (12) to reset.
10. The WIFI module mounting tool for the range hood according to claim 6, characterized in that: The installation tool further comprises a third elastic member (5), the two ends of the third elastic member (5) respectively abut against the non-return push plate (4) and the wall surface of the second installation cavity (111) of the positioning base (11), so that the non-return push plate (4) keeps the tendency of moving away from the first installation cavity (13) to reset.
11. The WIFI module mounting tool for the range hood according to claim 1, characterized in that: The push rod (2) comprises a push rod body (21) penetrating into a handle (12), the push rod body (21) comprises opposite first and second end portions, the first end portion is located outside the tool body (1), and the second end portion is located inside the tool body (1), and the first end portion of the push rod body (21) is provided with a push cap (22).
12. The WIFI module mounting tool for a range hood according to claim 1, characterized in that: Along the Z direction, one side of the positioning base (11) is provided with a mounting opening (114) for accommodating the translation block (3), and the Z direction is perpendicular to the X direction and the Y direction, respectively.
Citation Information
Patent Citations
Range hood
CN206563340U