Steam station electric iron
Through the combination of locking parts and locking parts on the base body, the shaking and sliding problem of the split steam iron during ironing and storage is solved, and the iron is reliably fixed and safely handled, simplifying the structure and reducing costs.
Patent Information
- Application Number
- CN202422628908.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-29
- Publication Date
- 2025-08-15
- Estimated Expiration
- 2034-10-29
AI Technical Summary
The existing split steam irons are prone to shake and slide during ironing or during storage, resulting in inconvenience in handling and safety hazards. The existing fixing solutions are poor in safety and reliability.
The first locking member and the second locking member on the base body are used to cooperate, and the locking member is used to realize the reliable fixation of the iron body, restrict the up and down movement of the iron on the base, and the water inlet passage is closed through the seal to prevent water leakage.
It effectively prevents the iron from falling during the moving process, has high structural reliability and convenient operation, reduces costs and simplifies the structure, improves safety and convenience of use.
Smart Images

Figure CN223226358U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of electric irons, in particular to a steam station electric iron. Background Art
[0002] In today's market, split steam irons are typically placed directly on top of their base, whether they're being used or stored. This allows for unrestricted movement, making them prone to shaking and slipping. Therefore, these products can only be moved by lifting the base with both hands, which can be inconvenient and dangerous, such as burns on the iron's soleplate or the iron falling off during transport.
[0003] Chinese invention patent application number 200880017876.X discloses an ironing system comprising an iron and a base having a receiving area for receiving the iron. The base includes a fixing device for securing the iron to the base. The fixing device comprises a first engaging element and a second engaging element disposed on opposite sides of the receiving area. At least one of the engaging elements is movable away from the other engaging element and is biased toward the other engaging element. While this technical solution can secure both ends of the iron to the base, its safety and reliability are poor. Utility Model Content
[0004] In order to overcome the shortcomings and deficiencies in the prior art, the utility model provides a steam station electric iron.
[0005] The utility model is realized through the following technical solutions:
[0006] Steam Station Iron Includes:
[0007] A base body, wherein the base body is provided with an iron placement portion;
[0008] a first locking member, the first locking member being provided at a rear end of the iron placement portion;
[0009] an iron body, the iron body being placed on the iron placement portion, the rear end of the iron body being engaged with the first locking member to restrict the rear end of the iron body from moving up and down;
[0010] a second locking member, the second locking member being disposed on the base body in an upside-down manner, the second locking member having a connection state in which the second locking member abuts against a front end of the base body and presses the front end of the iron body against the base body, and a disconnection state in which the second locking member is separated from the iron body, the second locking member being switchable between the connection state and the disconnection state by being flipped; and
[0011] A locking member is rotatably provided on the base body, and the locking member abuts against the second locking member to limit the second locking member to the connected state.
[0012] The steam station electric iron of the present invention, when the iron body is placed on the iron placement portion, the first locking member cooperates with the rear end of the iron body to restrict the rear end of the iron body from moving up and down relative to the base body, and the second locking member presses the front end of the iron body against the base body. At the same time, the locking member and the second locking member abut against each other, so that the second locking member is restricted to a state of pressing the front end of the iron body, thereby restricting the front end of the iron body from moving up and down relative to the base body, thereby reliably fixing the iron body to the base body, effectively preventing the iron body from falling off during the process of moving the steam station electric iron, and having high structural reliability.
[0013] In one embodiment, the base body has a first avoidance groove and a first limiting portion, the first avoidance groove extends vertically, and the first limiting portion and the lower end opening of the first avoidance groove are arranged in sequence around the rotation direction of the locking member;
[0014] The second locking member has an opening, and the opening passes through the second locking member from top to bottom;
[0015] The locking member passes through the opening, and the upper part of the locking member is provided with a second limiting portion, which abuts against the top of the second locking member, and the lower part of the locking member is provided with a third limiting portion, which can move in and out of the first avoidance groove up and down, and the third limiting portion has a locking state abutting against the first limiting portion to limit the second locking member to the connected state, and the third limiting portion also has an unlocking state located at the lower end opening of the first avoidance groove to enable the second locking member to switch to the non-connected state, and the third limiting portion can switch between the locked state and the unlocked state as the locking member rotates. In this way, the locking piece can be pre-installed on the second locking piece. When locking the front end of the iron body, the second locking piece is flipped upward to abut against the front end of the iron placement part and against the top of the front end of the heat-conducting aluminum plate of the iron body. During this process, the third limiting portion passes downward through the first avoidance groove as the second locking piece flips upward until it is located below the lower end opening of the first avoidance groove. Then, the locking piece is rotated again to drive the third limiting portion to move to abut against the first limiting portion, thereby fixing the locking piece to the base body. At the same time, the second locking piece is locked by the locking piece to fix the front end of the iron body to the base body. When unlocking the front end of the iron body, the above steps can be reversed. The structure is simple and practical, the operation is convenient, and the connection reliability is high.
[0016] In one embodiment, the base body has a water storage cavity and a water inlet channel, the water outlet end of the water inlet channel is connected to the water storage cavity, the water inlet end of the water inlet channel extends to the front end of the iron placement portion, and the first avoidance groove and the first limit portion are provided on the wall surface of the water inlet channel;
[0017] When the second locking member is in the connected state, the second locking member covers a portion of the water inlet end of the water inlet channel, and the locking member covers the remaining portion of the water inlet channel. In this manner, the second locking member and the locking member can be used to both limit the front end of the iron body in the upper and lower positions and to seal the water inlet end of the water inlet channel. This improves the utilization of the second locking member and the locking member, eliminates the need for an additional water blocking structure to seal the water inlet end of the water inlet channel, and simplifies the structure of the steam station iron, thereby reducing the cost of the steam station iron and facilitating its widespread application.
[0018] In one embodiment, the second locking member is provided with a sealing member. When the second locking member is in the connected state, the sealing member is clamped between the second locking member and the base body, and the sealing member is arranged around the water inlet end of the water inlet channel to seal the water inlet end of the water inlet channel, thereby preventing water leakage during the movement of the steam station electric iron, and having higher structural reliability.
[0019] In one embodiment, the second locking member has an opening and a second avoidance groove, the opening passes through the second locking member from top to bottom, and the second avoidance groove is located on the hole wall of the opening and extends vertically;
[0020] The locking member passes through the opening, and the locking member is provided with a limiting protrusion, and the limiting protrusion can move in and out of the second avoidance groove up and down, and the limiting protrusion has a locking state that is misaligned with the second avoidance groove and abuts against the top of the second locking member to limit the second locking member to the connected state, and the limiting protrusion also has an unlocking state located directly above the second avoidance groove so that the second locking member can be switched to the non-connected state, and the limiting protrusion can switch between the locked state and the unlocked state as the locking member rotates. In this way, the locking piece can be pre-installed on the base body. When locking the front end of the iron body, the second locking piece is flipped upward to abut against the front end of the iron placement portion and against the top of the front end of the heat-conducting aluminum plate of the iron body. During this process, the second avoidance groove passes through the limiting protrusion, so that the locking piece is located above the second locking piece. Then, the locking piece is rotated again to make the limiting protrusion and the second avoidance groove misaligned and able to abut against the top of the second locking piece, thereby fixing the locking piece to the base body. At the same time, the second locking piece is locked by the locking piece to fix the front end of the iron body to the base body. When unlocking the front end of the iron body, the above steps can be reversed. The structure is simple and practical, the operation is convenient, and the connection reliability is high.
[0021] In one embodiment, the base body has a water storage cavity and a water inlet channel, the water outlet end of the water inlet channel is connected to the water storage cavity, and the water inlet end of the water inlet channel extends to the front end of the iron placement portion;
[0022] When the second locking member is in the connected state, the locking member covers the water inlet end of the water inlet channel. Thus, the second locking member and the locking member can be used to limit the front end of the iron body up and down, while also being used to seal the water inlet end of the water inlet channel. This improves the utilization rate of the locking member and eliminates the need for an additional water blocking structure to seal the water inlet end of the water inlet channel. This simplifies the structure of the steam station iron, thereby reducing the cost of the steam station iron and facilitating its widespread application.
[0023] In one embodiment, the second locking member is provided with a sealing member. When the second locking member is in the connected state, the sealing member is clamped between the second locking member and the base body, and the sealing member is arranged around the water inlet end of the water inlet channel to seal the water inlet end of the water inlet channel, thereby preventing water leakage during the movement of the steam station electric iron, and having higher structural reliability.
[0024] In one embodiment, the second locking member includes a first handle portion. The lower end of the first handle portion is hingedly connected to a side of the base body located near the front end of the iron placement portion, allowing the second locking member to be flipped up and down. The first handle portion is designed to be grasped by a person. In this manner, when the iron body is locked to the base body, the steam station iron can be lifted by holding the first handle portion, making moving the steam station iron more labor-efficient and improving the utilization of the second locking member. There is no need to provide additional handles elsewhere on the base body.
[0025] In one embodiment, a second handle portion is provided on a side of the base body located near the front end of the iron placement portion. The upper end of the second handle portion is hingedly connected to the lower end of the first handle portion. When the second locking member is in the connected state, the second handle portion and the first handle are stacked from bottom to top. This facilitates installation of the second locking member on the base body. Furthermore, the stacking of the second handle portion and the first handle from bottom to top creates a longer handle structure, providing a larger gripping space for the user and facilitating a stable grip.
[0026] In one embodiment, when the second locking member is in the connected state, the first handle portion and the second handle portion are spaced apart from the base body to form an escape space, and the escape space is used for human hands to pass through to grasp the first handle portion and the second handle portion, so as to provide the user with a larger gripping space and facilitate the user to grasp stably.
[0027] Beneficial effects of the utility model:
[0028] The steam station electric iron of the present invention, when the iron body is placed on the iron placement portion, the first locking member cooperates with the rear end of the iron body to restrict the rear end of the iron body from moving up and down relative to the base body, and the second locking member presses the front end of the iron body against the base body. At the same time, the locking member and the second locking member abut against each other, so that the second locking member is restricted to a state of pressing the front end of the iron body, thereby restricting the front end of the iron body from moving up and down relative to the base body, thereby reliably fixing the iron body to the base body, effectively preventing the iron body from falling off during the process of moving the steam station electric iron, and having high structural reliability. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] Figure 1 This is a schematic diagram of the three-dimensional structure of the steam station electric iron of the present invention from a first perspective;
[0030] Figure 2 This is a schematic diagram of the three-dimensional structure of the steam station iron of the present invention from a second viewing angle;
[0031] Figure 3 This is a schematic diagram of the three-dimensional structure of the steam station iron of the present invention from a second viewing angle;
[0032] Figure 4 It is an exploded view of the steam station iron of the present utility model;
[0033] Figure 5 It is a cross-sectional view of the steam station iron of the present invention;
[0034] Figure 6 yes Figure 5 A local enlarged view of point A in FIG;
[0035] Figure 7 It is a cross-sectional view of the steam station iron of the present invention;
[0036] Figure 8 yes Figure 7 A local enlarged view of point B in FIG;
[0037] Figure 9 yes Figure 7 A partial enlarged view of point C in the figure.
[0038] Reference numerals
[0039] 1. Base body; 11. Iron placement part; 12. First avoidance groove; 13. First limiting part; 14. Water storage chamber; 15. Water inlet channel; 16. Second handle part; 17. Avoidance space; 2. First locking member; 3. Iron body; 31. Groove; 4. Second locking member; 41. Opening; 42. First handle part; 5. Locking member; 51. Second limiting part; 52. Third limiting part; 53. Water injection hole; 6. Sealing member. DETAILED DESCRIPTION
[0040] The directional terms such as up, down, left, right, front, back, front, back, top, and bottom mentioned or possibly mentioned in this specification are defined relative to the structures shown in the drawings. They are relative concepts and may vary depending on the location and usage of the device. Therefore, these or other directional terms should not be interpreted as restrictive.
[0041] See also Figures 1-9 , shows a steam station electric iron in a preferred embodiment of the present invention, comprising:
[0042] The base body 1 is provided with an iron placement portion 11;
[0043] A first locking member 2 is provided at the rear end of the iron placement portion 11;
[0044] The iron body 3 is placed on the iron placement portion 11, and the rear end of the iron body 3 cooperates with the first locking member 2 to limit the rear end of the iron body 3 from moving up and down;
[0045] a second locking member 4, which is disposed on the base body 1 in an upside-down manner, and has a connection state in which the second locking member 4 abuts against the front end of the base body 1 and presses the front end of the iron body 3 against the base body 1, and a disconnection state in which the second locking member 4 is separated from the iron body 3. The second locking member 4 is flipped to switch between the connection state and the disconnection state; and
[0046] The locking member 5 is rotatably provided on the base body 1 , and the locking member 5 and the second locking member 4 abut against each other to limit the second locking member 4 to a connected state.
[0047] In the steam station electric iron of the present invention, when the iron body 3 is placed on the iron placement portion 11, the first locking member 2 cooperates with the rear end of the iron body 3 to restrict the rear end of the iron body 3 from moving up and down relative to the base body 1, and the front end of the iron body 3 is pressed against the base body 1 by the second locking member 4. At the same time, the locking member 5 and the second locking member 4 abut against each other, so that the second locking member 4 is restricted in a state of pressing the front end of the iron body 3, thereby restricting the front end of the iron body 3 from moving up and down relative to the base body 1, thereby reliably fixing the iron body 3 to the base body 1, effectively preventing the iron body 3 from falling during the movement of the steam station electric iron, and having high structural reliability.
[0048] In one embodiment, the iron placement portion 11 includes a placement groove, which is adapted to the bottom of the iron body 3 to limit the left and right movement of the iron body 3, thereby further improving the connection reliability between the iron body 3 and the base body 1.
[0049] See also Figure 9 In one embodiment, the rear end of the iron body 3 has a groove 31, the opening of the groove 31 is located on the side of the iron body 3, and at least a portion of the first locking member 2 is inserted into the groove 31 to limit the rear end of the iron body 3 from moving up and down relative to the base body 1.
[0050] See also Figure 9 In one embodiment, the groove 31 is formed between the upper body and the lower heat-conducting aluminum plate of the iron body 3 , so that it is unnecessary to form additional grooves 31 in other parts of the iron body 3 .
[0051] See also Figure 4-Figure 8 In one embodiment, the base body 1 has a first avoidance groove 12 and a first limiting portion 13. The first avoidance groove 12 extends vertically. The first limiting portion 13 and the lower end opening of the first avoidance groove 12 are arranged in sequence around the rotation direction of the locking member 5.
[0052] The second locking member 4 has an opening 41, and the opening 41 passes through the second locking member 4 from top to bottom;
[0053] The locking member 5 passes through the opening 41, and a second limiting portion 51 is provided on the upper part of the locking member 5, and the second limiting portion 51 abuts against the top of the second locking member 4. A third limiting portion 52 is provided on the lower part of the locking member 5, and the third limiting portion 52 can move in and out of the first avoidance groove 12 up and down, and the third limiting portion 52 has a locking state abutting against the first limiting portion 13 to limit the second locking member 4 to a connected state, and the third limiting portion 52 also has an unlocking state located at the lower end opening of the first avoidance groove 12, so that the second locking member 4 can be switched to a non-connected state, and the third limiting portion 52 can switch between a locked state and an unlocked state as the locking member 5 rotates. In this way, the locking piece 5 can be pre-installed on the second locking piece 4 first. When the front end of the iron body 3 is locked, the second locking piece 4 is flipped upward to abut against the front end of the iron placement portion 11 and the top of the front end of the heat-conducting aluminum plate of the iron body 3. In this process, the third limiting portion 52 passes through the first avoidance groove 12 downward as the second locking piece 4 flips upward until it is located below the lower end opening of the first avoidance groove 12. Then, the locking piece 5 is rotated again to rotate the locking piece 5 and drive the third limiting portion 52 to move to abut against the first limiting portion 13, thereby fixing the locking piece 5 on the base body 1. At the same time, the second locking piece 4 is locked by the locking piece 5 to fix the front end of the iron body 3 on the base body 1. When the front end of the iron body 3 is unlocked, the above steps can be reversed. The structure is simple and practical, the operation is convenient, and the connection reliability is high.
[0054] See also Figure 5-Figure 8 In one embodiment, the base body 1 has a water storage chamber 14 and a water inlet channel 15. The water outlet end of the water inlet channel 15 is connected to the water storage chamber 14. The water inlet end of the water inlet channel 15 extends to the front end of the iron placement portion 11. The first avoidance groove 12 and the first limit portion 13 are provided on the wall surface of the water inlet channel 15.
[0055] When the second locking member 4 is in the connected state, the second locking member 4 covers the water inlet end of the water inlet channel 15, and the locking member 5 covers the remaining portion of the water inlet channel 15. In this way, the second locking member 4 and the locking member 5 can be used to not only limit the front end of the iron body 3 in the upper and lower positions, but also to seal the water inlet end of the water inlet channel 15. This improves the utilization of the second locking member 4 and the locking member 5, eliminates the need for an additional water-blocking structure to seal the water inlet end of the water inlet channel 15, simplifies the structure of the steam station iron, and thus helps reduce the cost of the steam station iron and facilitates its widespread application.
[0056] See also Figure 4-Figure 6In one embodiment, the locking member 5 has a water injection hole 53, which is connected to the water inlet end of the water inlet channel 15. The locking member 5 is provided with a water sealing cover (not shown) that can be opened and closed, and the water sealing cover covers the water injection hole 53. In this way, when water needs to be added, the water sealing cover is opened and water is injected into the water storage chamber 14 through the water injection hole 53. After the water is added, the water sealing cover is closed, without having to operate the locking member 5, making the operation simpler and more convenient.
[0057] See also Figure 8 In one embodiment, the second locking member 4 is provided with a sealing member 6. When the second locking member 4 is in a connected state, the sealing member 6 is clamped between the second locking member 4 and the base body 1, and the sealing member 6 is arranged around the water inlet end of the water inlet channel 15 to achieve sealing of the water inlet end of the water inlet channel 15, thereby preventing water leakage during the movement of the steam station electric iron, and the structural reliability is higher.
[0058] See also Figure 8 In one embodiment, the sealing member 6 is sleeved on the outer peripheral wall of the locking member 5. When the second locking member 4 is in a connected state, the lower end surface of the sealing member 6 abuts against the base body 1, and the upper end surface of the sealing member 6 abuts against the second locking member 4 and the locking member 5, so as to reliably seal the gap between the base body 1 and the locking member 5 and the gap between the second locking member 4 and the locking member 5, thereby increasing the reliability of water leakage prevention.
[0059] Of course, in other embodiments, the water inlet end of the water inlet channel 15 may be sealed by means of a bone-position interference fit.
[0060] In one embodiment, the second locking member 4 has an opening 41 and a second avoidance groove (not shown in the figure), the opening 41 passes through the second locking member 4 from top to bottom, and the second avoidance groove is located on the hole wall of the opening 41 and extends vertically;
[0061] The locking member 5 passes through the opening 41, and the locking member 5 is provided with a limiting protrusion (not shown in the figure). The limiting protrusion can move in and out of the second avoidance groove up and down. The limiting protrusion has a locking state that is misaligned with the second avoidance groove and abuts against the top of the second locking member 4 to limit the second locking member 4 to a connected state. The limiting protrusion also has an unlocking state located directly above the second avoidance groove so that the second locking member 4 can be switched to a non-connected state. The limiting protrusion can switch between the locked state and the unlocked state as the locking member 5 rotates. In this way, the locking piece 5 can be pre-installed on the base body 1. When the front end of the iron body 3 is locked, the second locking piece 4 is flipped upward to abut against the front end of the iron placement portion 11 and against the top of the front end of the heat-conducting aluminum plate of the iron body 3. In this process, the locking piece 5 passes through the opening 41 and the second avoidance groove passes through the limiting protrusion, so that the locking piece 5 is located above the second locking piece 4. Then the locking piece 5 is rotated again to make the limiting protrusion misaligned with the second avoidance groove and able to abut against the top of the second locking piece 4, thereby fixing the locking piece 5 on the base body 1. At the same time, the second locking piece 4 is locked by the locking piece 5 to fix the front end of the iron body 3 on the base body 1. When the front end of the iron body 3 is unlocked, the above steps can be reversed. The structure is simple and practical, the operation is convenient, and the connection reliability is high.
[0062] See also Figure 5-Figure 8 In one embodiment, the base body 1 has a water storage cavity 14 and a water inlet channel 15. The water outlet end of the water inlet channel 15 is connected to the water storage cavity 14, and the water inlet end of the water inlet channel 15 extends to the front end of the iron placement portion 11;
[0063] When the second locking member 4 is in the connected state, the locking member 5 covers the water inlet end of the water inlet channel 15. In this way, the second locking member 4 and the locking member 5 can be used to limit the front end of the iron body 3 up and down, and the locking member 5 can also be used to seal the water inlet end of the water inlet channel 15. This improves the utilization rate of the locking member 5 and eliminates the need for an additional water blocking structure to seal the water inlet end of the water inlet channel 15. This simplifies the structure of the steam station iron, thereby reducing the cost of the steam station iron and promoting its widespread application.
[0064] See also Figure 8 In one embodiment, the second locking member 4 is provided with a sealing member 6. When the second locking member 4 is in a connected state, the sealing member 6 is clamped between the second locking member 4 and the base body 1, and the sealing member 6 is arranged around the water inlet end of the water inlet channel 15 to achieve sealing of the water inlet end of the water inlet channel 15, thereby preventing water leakage during the movement of the steam station electric iron, and the structural reliability is higher.
[0065] See also Figure 8In one embodiment, the sealing member 6 is sleeved on the outer peripheral wall of the locking member 5. When the second locking member 4 is in a connected state, the lower end surface of the sealing member 6 abuts against the base body 1, and the upper end surface of the sealing member 6 abuts against the second locking member 4 and the locking member 5, so as to reliably seal the gap between the base body 1 and the locking member 5 and the gap between the second locking member 4 and the locking member 5, thereby increasing the reliability of water leakage prevention.
[0066] See also Figure 7 In one embodiment, the second locking member 4 is provided with a first handle portion 42, and the lower end of the first handle portion 42 is hinged to the side of the base body 1 located near the front end of the iron placement portion 11, so that the second locking member 4 can be flipped up and down, and the first handle portion 42 is used for being held by a hand. In this way, when the iron body 3 is locked to the base body 1, the steam station electric iron can be lifted by holding the first handle portion 42, which makes moving the steam station electric iron more labor-saving, improves the utilization rate of the second locking member 4, and does not need to be provided with additional handles on other parts of the base body 1.
[0067] Of course, in other embodiments, a handle may also be provided on the base body 1, which can also make moving the steam station iron more labor-saving.
[0068] In one embodiment, a second handle portion 16 is provided on the side of the base body 1 located near the front end of the iron placement portion 11. The upper end of the second handle portion 16 is hingedly connected to the lower end of the first handle portion 42. When the second locking member 4 is in the connected state, the second handle portion 16 and the first handle are stacked from bottom to top. This facilitates installation of the second locking member 4 on the base body 1. Furthermore, the stacking of the second handle portion 16 and the first handle from bottom to top creates a longer handle structure, providing the user with more grip space and facilitating a stable grip.
[0069] See also Figure 7 In one embodiment, when the second locking member 4 is in a connected state, the first handle portion 42 and the second handle portion 16 are spaced apart from the base body 1 to form an escape space 17. The escape space 17 is used for human hands to pass through to grasp the first handle portion 42 and the second handle portion 16, so as to provide the user with a larger gripping space and facilitate the user to grasp stably.
[0070] The present invention is not limited to the above-mentioned embodiments. If various changes or modifications to the present invention do not depart from the spirit and scope of the present invention, and if these changes and modifications fall within the scope of the claims and equivalent technologies of the present invention, the present invention is also intended to include these changes and modifications.
Claims
1. Steam station iron, characterized in that, include: A base body (1), wherein the base body (1) is provided with an iron placement portion (11); A first locking member (2), the first locking member (2) being arranged at the rear end of the iron placement portion (11); An iron body (3), the iron body (3) being placed on the iron placement portion (11), the rear end of the iron body (3) cooperating with the first locking member (2) to restrict the rear end of the iron body (3) from moving up and down; a second locking member (4), the second locking member (4) being disposed on the base body (1) in a manner that can be turned upside down, the second locking member (4) having a connection state in which it abuts against the front end of the base body (1) and presses the front end of the iron body (3) against the base body (1), and a non-connection state in which it is separated from the iron body (3), and the second locking member (4) is turned over to switch between the connection state and the non-connection state; as well as A locking member (5) is rotatably provided on the base body (1), and the locking member (5) and the second locking member (4) abut against each other to limit the second locking member (4) to the connected state.
2. The steam station iron according to claim 1, characterized in that: The base body (1) has a first avoidance groove (12) and a first limiting portion (13), the first avoidance groove (12) extends vertically, and the lower end openings of the first limiting portion (13) and the first avoidance groove (12) are arranged in sequence around the rotation direction of the locking member (5); The second locking member (4) has an opening (41), and the opening (41) passes through the second locking member (4) both vertically and horizontally; The locking member (5) passes through the opening (41), and the upper part of the locking member (5) is provided with a second limiting portion (51), and the second limiting portion (51) abuts against the top of the second locking member (4). The lower part of the locking member (5) is provided with a third limiting portion (52), and the third limiting portion (52) can move in and out of the first avoidance groove (12) up and down, and the third limiting portion (52) has a locking state abutting against the first limiting portion (13) to limit the second locking member (4) to the connected state. The third limiting portion (52) also has an unlocking state located at the lower end opening of the first avoidance groove (12) to enable the second locking member (4) to switch to the non-connected state. The third limiting portion (52) can switch between the locked state and the unlocked state as the locking member (5) rotates.
3. The steam station iron according to claim 2, characterized in that: The base body (1) has a water storage cavity (14) and a water inlet channel (15); the water outlet end of the water inlet channel (15) is connected to the water storage cavity (14); the water inlet end of the water inlet channel (15) extends to the front end of the iron placement portion (11); the first avoidance groove (12) and the first limiting portion (13) are provided on the wall surface of the water inlet channel (15); When the second locking member (4) is in the connected state, the second locking member (4) covers a portion of the water inlet end of the water inlet channel (15), and the locking member (5) covers the remaining portion of the water inlet channel (15).
4. The steam station iron according to claim 3, characterized in that: The second locking member (4) is provided with a sealing member (6). When the second locking member (4) is in the connected state, the sealing member (6) is sandwiched between the second locking member (4) and the base body (1), and the sealing member (6) is arranged around the water inlet end of the water inlet channel (15).
5. The steam station iron according to claim 1, characterized in that: The second locking member (4) has an opening (41) and a second avoidance groove, the opening (41) passes through the second locking member (4) from top to bottom, and the second avoidance groove is located on the hole wall of the opening (41) and extends vertically; The locking member (5) passes through the opening (41), and the locking member (5) is provided with a limiting protrusion, and the limiting protrusion can move in and out of the second avoidance groove up and down, and the limiting protrusion has a locking state that is misaligned with the second avoidance groove and abuts against the top of the second locking member (4) to limit the second locking member (4) to the connected state, and the limiting protrusion also has an unlocking state located directly above the second avoidance groove to enable the second locking member (4) to switch to the non-connected state, and the limiting protrusion can switch between the locked state and the unlocked state as the locking member (5) rotates.
6. The steam station iron according to claim 5, characterized in that: The base body (1) has a water storage cavity (14) and a water inlet channel (15), the water outlet end of the water inlet channel (15) is connected to the water storage cavity (14), and the water inlet end of the water inlet channel (15) extends to the front end of the iron placement portion (11); When the second locking member (4) is in the connected state, the locking member (5) covers the water inlet end of the water inlet channel (15).
7. The steam station iron according to claim 6, characterized in that: The second locking member (4) is provided with a sealing member (6). When the second locking member (4) is in the connected state, the sealing member (6) is sandwiched between the second locking member (4) and the base body (1), and the sealing member (6) is arranged around the water inlet end of the water inlet channel (15).
8. The steam station iron according to claim 1, characterized in that: The second locking member (4) is provided with a first handle portion (42), the lower end of the first handle portion (42) being hinged to a side of the base body (1) located near the front end of the iron placement portion (11), so that the second locking member (4) can be turned upside down, and the first handle portion (42) is used for being held by a hand.
9. The steam station iron according to claim 8, characterized in that: The base body (1) is provided with a second handle portion (16) on one side of the front end of the iron placement portion (11), the upper end of the second handle portion (16) is hinged to the lower end of the first handle portion (42), and when the second locking member (4) is in the connected state, the second handle portion (16) and the first handle are stacked from bottom to top.
10. The steam station iron according to claim 9, characterized in that: When the second locking member (4) is in the connected state, the first handle portion (42) and the second handle portion (16) are spaced apart from the base body (1) to form an escape space (17), and the escape space (17) is used for a human hand to pass through to grasp the first handle portion (42) and the second handle portion (16).
Citation Information
Patent Citations
Fastening device for system irons
CN101680157A