Handle control assembly and garment steamer

By designing a built-in switch component and a rotating part linkage control circuit in the garment steamer, the problem that the garment steamer switch is easily affected by the external environment is solved, the safety and service life are improved, and the operation is simplified.

CN223422995UActive Publication Date: 2025-10-10FO SHAN SHI SEN LIN KE JI YOU XIAN GONG SI
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Patent Information

Application Number
CN202422499332.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-15
Publication Date
2025-10-10
Estimated Expiration
2034-10-15

AI Technical Summary

Technical Problem

Existing garment steamer switches are easily affected by the external environment, resulting in poor contact or damage, increasing safety risks and shortening service life.

Method used

A handle control assembly is designed, in which the switch assembly and the rotating part are located in the installation cavity. The circuit is turned on and off through the linkage control of the rotating part and the switch assembly, avoiding accidental touch and poor contact, and improving safety and service life.

Benefits of technology

It effectively avoids accidental touch of switches, reduces wear and aging, improves product safety and appearance quality, and is simple and convenient to operate.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a handle control assembly and a garment steamer, and belongs to the field of garment steamers, and the handle control assembly comprises a supporting assembly, a handle assembly and a control assembly, the switch assembly is arranged on the supporting assembly and located in the mounting cavity; the rotating part is movably arranged on the supporting assembly and located in the mounting cavity, and the rotating part is adjacent to the switch assembly; the handle assembly is arranged on the supporting assembly, the handle assembly is connected with the rotating part, the handle assembly can drive the rotating part to rotate relative to the supporting assembly, the rotating part abuts against the switch assembly when the rotating part is located at the first angle, and the rotating part is separated from the switch assembly when the rotating part is located at the second angle. According to the handle control assembly, the switch assembly and the rotating part are located in the mounting cavity, the switch assembly and the rotating part cooperatively work in a closed environment, the abrasion and aging speed of the switch assembly can be reduced, and the service life of a product is prolonged.
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Description

Technical Field

[0001] The utility model relates to the field of garment steamers, in particular to a handle control component and a garment steamer. Background Art

[0002] A garment steamer is a small household appliance that irons clothes. By generating steam, it can quickly remove wrinkles from clothing, leaving them neater and more attractive. However, existing garment steamers have the following drawbacks: The switch is typically located on the handle or outside the body, making it easy for users to accidentally activate the switch, increasing safety risks. Furthermore, the switch is easily affected by the external environment, resulting in poor contact or damage, which affects the use of the garment steamer. Utility Model Content

[0003] Based on this, it is necessary to provide a handle control assembly and a garment steamer to address the problem that the switch located outside is easily affected by the external environment, resulting in poor contact or damage, which affects the use of the garment steamer.

[0004] A handle control assembly comprises: a support assembly, the support assembly being provided with a mounting cavity; a switch assembly, the switch assembly being arranged on the support assembly and located in the mounting cavity; a rotating member, the rotating member being movably arranged on the support assembly and located in the mounting cavity, the rotating member being arranged adjacent to the switch assembly; a handle assembly, the handle assembly being arranged on the support assembly, the handle assembly being connected to the rotating member, the handle assembly being capable of driving the rotating member to rotate relative to the support assembly, the rotating member rotating relative to the support assembly having at least a first angle and a second angle, the rotating member being against the switch assembly when the rotating member is at the first angle, the rotating member being against the switch assembly, the circuit being connected when the rotating member is against the switch assembly, the rotating member being separated from the switch assembly when the rotating member is at the second angle, the rotating member being separated from the switch assembly, the circuit being disconnected when the rotating member is separated from the switch assembly.

[0005] The first aspect of the present application discloses a handle control assembly. By locating the switch assembly and the rotating member in the installation cavity, the switch assembly and the rotating member work together in a closed environment, which can effectively prevent users from accidentally touching the switch assembly and prevent the product from suddenly connecting the circuit and starting to work, thereby increasing the safety of the product. This design can avoid poor contact of the switch assembly, reduce the wear and aging rate of the switch assembly, and increase the service life of the product. Moreover, the built-in switch assembly can make the appearance of the product more concise and improve the overall appearance quality of the product. By connecting the handle assembly to the rotating member, the rotating member can be offset or separated from the switch assembly. The linkage design of the handle assembly, the rotating member and the switch assembly allows the user to easily hold the handle assembly and control the opening or closing of the product without excessive effort or skill, making the operation of the product simpler and more convenient.

[0006] In one embodiment, a plurality of first clamping blocks are formed on the rotating member, a first fitting space is formed between the plurality of first clamping blocks, a plurality of second clamping blocks are formed on the handle assembly, a second fitting space is formed between the plurality of second clamping blocks, the first clamping blocks are snapped into the second fitting space, and the second clamping blocks are snapped into the first fitting space. By snapping the first clamping blocks into the second fitting space, and the second clamping blocks into the first fitting space, the rotating member and the handle assembly are engaged with each other, providing a stable mechanical connection, ensuring that they are not easily loosened or separated during use. Moreover, the tight interlocking structure greatly reduces wear and damage between the rotating member and the handle assembly.

[0007] In one embodiment, the rotating member includes a rotating block, a follower contact block and a first clamping block. The rotating block is movably arranged on the support assembly and is located in the mounting cavity. The rotating block can rotate relative to the support assembly. The rotating block rotates relative to the support assembly at least at the first angle and the second angle. The follower contact block is arranged on the rotating block and is located on the side of the rotating block. When the rotating block is at the first angle, the follower contact block abuts against the switch assembly. When the rotating block is at the second angle, the follower contact block is separated from the switch assembly. The first clamping block is arranged on the rotating block and is used to clamp with the handle assembly. Since the follower contact block is arranged on the rotating block, the user only needs to drive the rotating block through the handle assembly to easily achieve the abutment or separation of the follower contact block and the switch assembly. The operation is simple and convenient, providing the user with a better operating experience.

[0008] In one embodiment, a first rib is formed on the rotating block, and a first annular groove is provided on the support assembly. The first rib mates with the first annular groove. This mates with the first rib, allowing for precise and rapid assembly of the rotating block. This design allows the support assembly to provide stable support for the rotating block, reducing shaking during rotation.

[0009] In one embodiment, there are multiple first clamping blocks, all of which are disposed on the rotating block and are engaged with the handle assembly. By engaging the multiple first clamping blocks with the handle assembly, the connection between the rotating member and the handle assembly is more stable, reducing the possibility of loosening.

[0010] In one embodiment, the follower contact block and the rotating block are integrally formed. This design reduces production steps, saves manufacturing time, and reduces manufacturing costs. This design also makes the follower contact block more resistant to bending and breaking.

[0011] In one embodiment, the handle assembly includes a handle body and a connecting column, wherein the handle body is movably arranged on the support assembly, and the handle body can rotate relative to the support assembly, and the connecting column is arranged on the handle body, and the connecting column is passed through the support assembly, and the connecting column extends into the mounting cavity after passing through the support assembly, and the connecting column is connected to the rotating member, and the connecting column can drive the rotating member to rotate relative to the support assembly. By passing the connecting column through the support assembly, the degree of freedom of the connecting column is reduced, and the connecting column is prevented from being offset during use. By connecting the connecting column to the rotating member, the connecting column can effectively transmit the applied torque to the rotating member, so that the rotating member can rotate relative to the support assembly.

[0012] In one embodiment, a second rib is formed on the handle body, and the support assembly is provided with a second annular groove, with the second rib being adapted to mate with the second annular groove. The adaptation of the second rib to the second annular groove allows for precise and rapid assembly of the handle assembly. This design allows the support assembly to provide stable support for the handle assembly, while also reducing the freedom of movement of the handle assembly and minimizing the wobble of the rotating block during rotation.

[0013] In one embodiment, the connecting post is formed with a plurality of second latching blocks, and the plurality of second latching blocks are all engaged with the rotating member. By the plurality of second latching blocks being engaged with the rotating member, the connection between the connecting post and the rotating member is more stable and the possibility of loosening is reduced.

[0014] In one embodiment, the connecting post and the handle body are integrally formed, thereby reducing the number of production steps for the handle assembly, saving manufacturing time, and lowering manufacturing costs.

[0015] In one embodiment, the support assembly includes a first support member, a second support member and a first connecting member, the first support member is provided with the installation cavity, the first support member is provided with a first annular groove that can be adapted to the rotating member, the second support member is engaged with the handle assembly, the second support member is provided with a second annular groove that can be adapted to the handle assembly, and the first connecting member is connected to the first support member and the second support member respectively. The first connecting member is connected to the first support member and the second support member respectively, so that the connection method of the first support member and the second support member is simple and the connection is firm. By engaging the second support member with the handle assembly, the risk of the handle assembly and the second support member being separated due to external force impact can be effectively reduced.

[0016] In one embodiment, a protrusion is formed on the first support member, and the protrusion is provided with the first annular groove, or the protrusion and the cavity wall of the mounting cavity form the first annular groove. The provision of the protrusion can prevent the rotating member from falling out of the first annular groove, thereby improving the reliability of the rotating member and enabling more stable rotation of the rotating member.

[0017] In one embodiment, the second support member includes a first fixed block, a second fixed block, and a second connecting member, wherein the first fixed block is connected to the second support member, the second fixed block is arranged on the first fixed block, and the second connecting member is used to connect the first fixed block and the second fixed block, and the first fixed block and the second fixed block together form a second annular groove. The arrangement of the first fixed block and the second fixed block provides stable support for the handle assembly. The second annular groove formed by the first fixed block and the second fixed block can prevent the handle assembly from falling out of the second annular groove, and the handle assembly has good reliability.

[0018] In one embodiment, the first support member is provided with a second through-hole, the second through-hole communicating with the mounting cavity, the second support member is provided with a first through-hole, and the handle assembly is provided with a connecting post, which sequentially passes through the first through-hole and the second through-hole before extending into the mounting cavity and connecting to the rotating member. By sequentially passing through the first through-hole and the second through-hole before connecting to the rotating member, the connecting post has reduced degrees of freedom, thereby preventing the connecting post from shifting during use.

[0019] In one embodiment, there are multiple first connectors, each of which is connected to the first support member and the second support member. This ensures the securement and stability of the overall connection between the first and second supports. It also disperses stress, thereby enhancing stress resistance and preventing breakage of the first connectors.

[0020] In one embodiment, a third clamping block is provided on one of the rotating member and the handle assembly, and a third fitting space is provided on the other of the rotating member and the handle assembly, with the third clamping block fitting into the third fitting space. The fitting of the third clamping block into the third fitting space simplifies the connection between the rotating member and the handle assembly, providing a secure connection.

[0021] A garment steamer comprises: a garment steamer body; and the above-mentioned handle control assembly, wherein the handle control assembly is arranged on the garment steamer body and can control the garment steamer body to start or stop working.

[0022] A second aspect of the present application discloses a garment steamer. A handle control assembly allows a user to turn the garment steamer on and off by rotating the handle assembly, simplifying operation. Furthermore, the switch assembly of the handle control assembly is integrated within the handle assembly, resulting in a more compact structure and space-saving assembly. This design enhances user comfort when gripping the handle control assembly, providing a superior user experience. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 is a perspective view of the handle control assembly;

[0024] Figure 2 It is a cross-sectional view of the handle control assembly;

[0025] Figure 3 for Figure 2 Enlarged view of point A in the middle;

[0026] Figure 4 is a first exploded view of the handle control assembly;

[0027] Figure 5 is a second exploded view of the handle control assembly;

[0028] Figure 6 is a three-dimensional diagram of a rotating part;

[0029] Figure 7 is a perspective view of the handle assembly;

[0030] Figure 8 is a three-dimensional diagram of the second support member;

[0031] Figure 9 This is a three-dimensional diagram of a garment steamer.

[0032] The corresponding relationship between the reference numerals and component names is as follows:

[0033] 1 support assembly, 11 first support member, 12 second support member, 121 first fixing block, 122 second fixing block, 123 second connecting member, 13 first connecting member, 101 mounting cavity, 102 first annular groove, 103 second annular groove, 104 first through hole, 105 second through hole;

[0034] 2 switch components;

[0035] 3 rotating member, 31 rotating block, 311 first rib, 32 follower contact block, 33 first clamping block, 301 first adapting space;

[0036] 4 handle assembly, 41 handle body, 411 second rib, 42 connecting column, 421 second clamping block, 401 second adapting space;

[0037] 100 Garment Steamer Body;

[0038] 200 handle control assembly. DETAILED DESCRIPTION

[0039] In order to more clearly understand the above-mentioned objectives, features and advantages of the present invention, the present invention is further described in detail below in conjunction with the accompanying drawings and specific embodiments. It should be noted that the embodiments of the present application and the features therein can be combined with each other without conflict.

[0040] In the following description, many specific details are set forth to facilitate a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Therefore, the scope of protection of the present invention is not limited to the specific embodiments disclosed below.

[0041] Example 1

[0042] like Figure 1-5 As shown, this embodiment discloses a handle control assembly, including: a support assembly 1, wherein the support assembly 1 is provided with a mounting cavity 101; a switch assembly 2, wherein the switch assembly 2 is arranged on the support assembly 1 and located in the mounting cavity 101; a rotating member 3, wherein the rotating member 3 is movably arranged on the support assembly 1 and located in the mounting cavity 101, and the rotating member 3 is arranged adjacent to the switch assembly 2; a handle assembly 4, wherein the handle assembly 4 is arranged on the support assembly 1, the handle assembly 4 is connected to the rotating member 3, and the handle assembly 4 can drive the rotating member 3 to rotate relative to the support assembly 1, and the rotating member 3 rotates relative to the support assembly 1 at least at a first angle and a second angle, when the rotating member 3 is at the first angle, the rotating member 3 is against the switch assembly 2, and the circuit is connected when the rotating member 3 is against the switch assembly 2, and when the rotating member 3 is at the second angle, the rotating member 3 is separated from the switch assembly 2, and the circuit is disconnected when the rotating member 3 is separated from the switch assembly 2.

[0043] The first aspect of the present application discloses a handle control assembly, in which the switch assembly 2 and the rotating member 3 are located in the installation cavity 101, and the switch assembly 2 and the rotating member 3 work together in a closed environment, which can effectively prevent the user from accidentally touching the switch assembly 2, and prevent the product from suddenly connecting the circuit and starting to work, thereby increasing the safety of the product. This design can avoid poor contact of the switch assembly 2, reduce the wear and aging speed of the switch assembly 2, and increase the service life of the product. Moreover, the built-in switch assembly 2 can make the appearance of the product more concise and improve the overall appearance quality of the product. The handle assembly 4 is connected to the rotating member 3, and the rotating member 3 can be offset or separated from the switch assembly 2. The linkage design of the handle assembly 4, the rotating member 3 and the switch assembly 2 allows the user to easily hold the handle assembly 4 and control the opening or closing of the product without too much effort or skills, making the operation of the product simpler and more convenient.

[0044] like Figure 2-5 and Figure 8 As shown, in addition to the features of the above embodiment, this embodiment is further defined as follows: a plurality of first clamping blocks 33 are formed on the rotating member 3, a first adapting space 301 is formed between the plurality of first clamping blocks 33, a plurality of second clamping blocks 421 are formed on the handle assembly 4, a second adapting space 401 is formed between the plurality of second clamping blocks 421, the first clamping blocks 33 are snapped into the second adapting space 401, and the second clamping blocks 421 are snapped into the first adapting space 301. By snapping the first clamping blocks 33 into the second adapting space 401 and the second clamping blocks 421 into the first adapting space 301, the rotating member 3 and the handle assembly 4 are interlocked with each other, providing a stable mechanical connection, ensuring that they are not easily loosened or separated during use. Moreover, the tight interlocking structure greatly reduces wear and damage between the rotating member 3 and the handle assembly 4.

[0045] like Figure 6As shown in the drawings, in addition to the features of the above embodiments, the present embodiment is further defined as: the rotating member 3 comprises a rotating block 31, a following contact block 32 and a first clamping block 33, the rotating block 31 is movably arranged on the support assembly 1 and located in the mounting cavity 101, the rotating block 31 can rotate relative to the support assembly 1, the rotating block 31 has at least the first angle and the second angle relative to the support assembly 1, the following contact block 32 is arranged on the rotating block 31 and located at the side of the rotating block 31, the following contact block 32 abuts against the switch assembly 2 when the rotating block 31 is located at the first angle, the following contact block 32 is separated from the switch assembly 2 when the rotating block 31 is located at the second angle, and the first clamping block 33 is arranged on the rotating block 31 and used for clamping with the handle assembly 4. By arranging the following contact block 32 on the rotating block 31, the user only needs to drive the rotating block 31 through the handle assembly 4, and the abutting or separating of the following contact block 32 and the switch assembly 2 can be easily realized, which is simple and convenient to operate and provides a better operation experience for the user.

[0046] As shown in the drawings, Figure 2 and Figure 3 As shown in the drawings, in addition to the features of the above embodiments, the present embodiment is further defined as: a first convex rib 311 is formed on the rotating block 31, the support assembly 1 is provided with a first annular groove 102, and the first convex rib 311 is matched with the first annular groove 102. By matching the first convex rib 311 with the first annular groove 102, the rotating block 31 can be accurately and quickly assembled. This design enables the support assembly 1 to provide stable support for the rotating block 31 and reduces the shaking of the rotating block 31 during rotation.

[0047] As shown in the drawings, Figure 6 As shown in the drawings, in addition to the features of the above embodiments, the present embodiment is further defined as: the number of the first clamping blocks 33 is plural, the plural first clamping blocks 33 are arranged on the rotating block 31, and the plural first clamping blocks 33 are clamped with the handle assembly 4. By clamping the plural first clamping blocks 33 with the handle assembly 4, the connection between the rotating member 3 and the handle assembly 4 is more stable, and the possibility of loosening is reduced.

[0048] As shown in the drawings, Figure 6 As shown in the drawings, in addition to the features of the above embodiments, the present embodiment is further defined as: the following contact block 32 and the rotating block 31 are integrally formed. By integrally forming the following contact block 32 and the rotating block 31, the production steps can be reduced, the manufacturing time can be saved, and the manufacturing cost can be reduced. This design makes the following contact block 32 have stronger resistance to bending and breaking.

[0049] As shown in the drawings, Figure 7As shown, in addition to the features of the above-mentioned embodiment, this embodiment is further defined as follows: the handle assembly 4 includes a handle body 41 and a connecting column 42, the handle body 41 is movably arranged on the support assembly 1, the handle body 41 can rotate relative to the support assembly 1, the connecting column 42 is arranged on the handle body 41, the connecting column 42 is passed through the support assembly 1, and the connecting column 42 extends into the mounting cavity 101 after passing through the support assembly 1, the connecting column 42 is connected to the rotating member 3, and the connecting column 42 can drive the rotating member 3 to rotate relative to the support assembly 1. By passing the connecting column 42 through the support assembly 1, the degree of freedom of movement of the connecting column 42 is reduced, and the connecting column 42 is prevented from being offset during use. By connecting the connecting column 42 to the rotating member 3, the connecting column 42 can effectively transmit the applied torque to the rotating member 3, so that the rotating member 3 can rotate relative to the support assembly 1.

[0050] like Figure 2 and Figure 3 As shown, in addition to the features of the above-described embodiment, this embodiment further defines: a second rib 411 is formed on the handle body 41, and the support assembly 1 is provided with a second annular groove 103, with the second rib 411 being adapted to mate with the second annular groove 103. The adaptation of the second rib 411 to the second annular groove 103 enables precise and rapid assembly of the handle assembly 4. This design allows the support assembly 1 to provide stable support for the handle assembly 4, while also reducing the freedom of movement of the handle assembly 4 and minimizing the shaking of the rotating block 31 during rotation.

[0051] like Figure 7 As shown, in addition to the features of the above embodiment, this embodiment further defines: a plurality of second latching blocks 421 are formed on the connecting post 42, and the plurality of second latching blocks 421 are all engaged with the rotating member 3. By the plurality of second latching blocks 421 being all engaged with the rotating member 3, the connection between the connecting post 42 and the rotating member 3 is more stable, and the possibility of loosening is reduced.

[0052] like Figure 2 As shown, in addition to the features of the above embodiment, this embodiment further defines that: the connecting post 42 and the handle body 41 are integrally formed. By integrally forming the connecting post 42 and the handle body 41, the production steps of the handle assembly 4 can be reduced, manufacturing time can be saved, and manufacturing costs can be reduced.

[0053] like Figure 4As shown, in addition to the features of the above embodiment, this embodiment further defines that: the support assembly 1 includes a first support member 11, a second support member 12 and a first connecting member 13, the first support member 11 is provided with the installation cavity 101, the first support member 11 is provided with a first annular groove 102 that can be adapted to the rotating member 3, the second support member 12 is engaged with the handle assembly 4, the second support member 12 is provided with a second annular groove 103 that can be adapted to the handle assembly 4, and the first connecting member 13 is connected to the first support member 11 and the second support member 12 respectively. By connecting the first connecting member 13 to the first support member 11 and the second support member 12 respectively, the connection method of the first support member 11 and the second support member 12 is simple and the connection is firm. By engaging the second support member 12 with the handle assembly 4, the risk of the handle assembly 4 and the second support member 12 being separated due to external force impact can be effectively reduced.

[0054] like Figure 3 As shown, in addition to the features of the above embodiment, this embodiment further provides that: a protrusion is formed on the first support member 11, and the protrusion is provided with the first annular groove 102, or the protrusion and the cavity wall of the mounting cavity 101 form the first annular groove 102. The provision of the protrusion can prevent the rotating member 3 from falling out of the first annular groove 102, thereby improving the reliability of the rotating member 3 and enabling more stable rotation of the rotating member 3.

[0055] like Figure 8 As shown, in addition to the features of the above embodiment, this embodiment further defines that: the second support member 12 includes a first fixing block 121, a second fixing block 122 and a second connecting member 123, the first fixing block 121 is connected to the second support member 12, the second fixing block 122 is arranged on the first fixing block 121, the second connecting member 123 is used to connect the first fixing block 121 and the second fixing block 122, and the first fixing block 121 and the second fixing block 122 enclose to form the second annular groove 103. The arrangement of the first fixing block 121 and the second fixing block 122 provides stable support for the handle assembly 4. The formation of the second annular groove 103 by the first fixing block 121 and the second fixing block 122 can prevent the handle assembly 4 from falling out of the second annular groove 103, and the handle assembly 4 has good reliability.

[0056] like Figure 2 and Figure 3As shown, in addition to the features of the above embodiment, this embodiment further defines: the first support member 11 is provided with a second through-hole 105, which is in communication with the mounting cavity 101; the second support member 12 is provided with a first through-hole 104; and a connecting post 42 is formed on the handle assembly 4. The connecting post 42 sequentially passes through the first through-hole 104 and the second through-hole 105, then extends into the mounting cavity 101 and connects to the rotating member 3. By sequentially passing through the first through-hole 104 and the second through-hole 105, the connecting post 42 is connected to the rotating member 3, thereby reducing the degree of freedom of the connecting post 42, thereby preventing the connecting post 42 from deflecting during use.

[0057] like Figure 4 and Figure 5 As shown, in addition to the features of the above embodiment, this embodiment further provides that: there are multiple first connecting members 13, and the multiple first connecting members 13 are connected to the first support member 11 and the second support member 12 respectively. By having multiple first connecting members 13 connected to the first support member 11 and the second support member 12 respectively, the overall connection between the first support member 11 and the second support member 12 is improved in terms of strength and stability. It also disperses stress, thereby enhancing stress resistance and preventing the first connecting members 13 from breaking.

[0058] Example 2

[0059] One of the rotating member 3 and the handle assembly 4 is provided with a third clamping block, and the other of the rotating member 3 and the handle assembly 4 is provided with a third fitting space, with the third clamping block fitting into the third fitting space. The fitting of the third clamping block into the third fitting space allows for a simple and secure connection between the rotating member 3 and the handle assembly 4.

[0060] Example 3

[0061] like Figure 9 As shown, this embodiment discloses a garment steamer, comprising: a garment steamer body 100; the above-mentioned handle control component 200, wherein the handle control component 200 is arranged on the garment steamer body 100, and the handle control component 200 can control the garment steamer body 100 to start or stop working.

[0062] In a second aspect, the present application discloses a garment steamer. The handle control assembly 200 allows the user to turn the garment steamer on and off by rotating the handle assembly 4 of the handle control assembly 200, resulting in simple operation. Furthermore, the switch assembly 2 of the handle control assembly 200 is integrated within the handle assembly 4, resulting in a more compact structure and space-saving assembly. This design provides a more comfortable grip on the handle control assembly 200, providing a superior user experience.

[0063] The above embodiments merely illustrate several implementations of the present invention. While the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the utility model patent. It should be noted that a person skilled in the art would be able to make numerous variations and improvements without departing from the concept of the present invention, and these variations and improvements fall within the scope of protection of the present invention. Therefore, the scope of protection of the present utility model patent shall be determined by the appended claims.

Claims

1. A handle control assembly, characterized in that: include: A support assembly (1), wherein the support assembly (1) is provided with a mounting cavity (101); a switch assembly (2), the switch assembly (2) being arranged on the support assembly (1) and located in the mounting cavity (101); a rotating member (3), the rotating member (3) being movably arranged on the supporting assembly (1) and located in the mounting cavity (101), the rotating member (3) being arranged adjacent to the switch assembly (2); A handle assembly (4), wherein the handle assembly (4) is arranged on the support assembly (1), the handle assembly (4) is connected to the rotating member (3), the handle assembly (4) can drive the rotating member (3) to rotate relative to the support assembly (1), the rotating member (3) rotates relative to the support assembly (1) at least at a first angle and a second angle, when the rotating member (3) is at the first angle, the rotating member (3) abuts against the switch assembly (2), and when the rotating member (3) abuts against the switch assembly (2), the circuit is connected, when the rotating member (3) is at the second angle, the rotating member (3) is separated from the switch assembly (2), and when the rotating member (3) is separated from the switch assembly (2), the circuit is disconnected; The handle assembly (4) includes a handle body (41) and a connecting column (42), wherein the handle body (41) is movably arranged on the support assembly (1), and the handle body (41) can rotate relative to the support assembly (1), and the connecting column (42) is arranged on the handle body (41), and the connecting column (42) is passed through the support assembly (1), and the connecting column (42) extends into the installation cavity (101) after passing through the support assembly (1), and the connecting column (42) is connected to the rotating member (3), and the connecting column (42) can drive the rotating member (3) to rotate relative to the support assembly (1).

2. The handle control assembly according to claim 1, characterized in that: A plurality of first clamping blocks (33) are formed on the rotating member (3), a first adapting space (301) is formed between the plurality of first clamping blocks (33), a plurality of second clamping blocks (421) are formed on the handle assembly (4), a second adapting space (401) is formed between the plurality of second clamping blocks (421), the first clamping blocks (33) are clamped into the second adapting space (401), and the second clamping blocks (421) are clamped into the first adapting space (301); Or one of the rotating member (3) and the handle assembly (4) is provided with a third clamping block, and the other of the rotating member (3) and the handle assembly (4) is provided with a third adaptation space, and the third clamping block is adapted to the third adaptation space.

3. The handle control assembly according to claim 1, characterized in that The rotating member (3) comprises a rotating block (31), a follower contact block (32) and a first clamping block (33); the rotating block (31) is movably arranged on the supporting assembly (1) and located in the mounting cavity (101); the rotating block (31) can rotate relative to the supporting assembly (1); the rotating block (31) rotates relative to the supporting assembly (1) at least at the first angle and the second angle; the follower contact block (32) is arranged on the rotating block (31) and located on the side of the rotating block (31); when the rotating block (31) is located at the first angle, the follower contact block (32) abuts against the switch assembly (2); when the rotating block (31) is located at the second angle, the follower contact block (32) is separated from the switch assembly (2); the first clamping block (33) is arranged on the rotating block (31); and the first clamping block (33) is used to clamp with the handle assembly (4).

4. The handle control assembly according to claim 3, characterized in that: A first rib (311) is formed on the rotating block (31), and a first annular groove (102) is provided on the supporting assembly (1), and the first rib (311) is adapted to the first annular groove (102); and / or the number of the first clamping blocks (33) is plural, the plurality of the first clamping blocks (33) are all arranged on the rotating block (31), and the plurality of the first clamping blocks (33) are all clamped with the handle assembly (4); And / or the follower contact block (32) and the rotating block (31) are integrally formed.

5. The handle control assembly according to claim 1, characterized in that: A second rib (411) is formed on the handle body (41), and the support assembly (1) is provided with a second annular groove (103), and the second rib (411) is adapted to the second annular groove (103); and / or a plurality of second clamping blocks (421) are formed on the connecting column (42), and the plurality of second clamping blocks (421) are all clamped with the rotating member (3); And / or the connecting column (42) and the handle body (41) are integrally formed.

6. The handle control assembly according to claim 1, characterized in that The support assembly (1) comprises a first support member (11), a second support member (12) and a first connecting member (13); the first support member (11) is provided with the mounting cavity (101); the first support member (11) is provided with a first annular groove (102) capable of matching with the rotating member (3); the second support member (12) is engaged with the handle assembly (4); the second support member (12) is provided with a second annular groove (103) capable of matching with the handle assembly (4); and the first connecting member (13) is connected to the first support member (11) and the second support member (12) respectively.

7. The handle control assembly according to claim 6, characterized in that: A convex block is formed on the first support member (11), and the convex block is provided with the first annular groove (102) or the convex block and the cavity wall of the installation cavity (101) are combined to form the first annular groove (102); And / or the second support member (12) includes a first fixing block (121), a second fixing block (122) and a second connecting member (123), the first fixing block (121) is connected to the second support member (12), the second fixing block (122) is arranged on the first fixing block (121), the second connecting member (123) is used for connecting the first fixing block (121) and the second fixing block (122), and the first fixing block (121) and the second fixing block (122) enclose to form the second annular groove (103).

8. The handle control assembly according to claim 6, characterized in that: The first support member (11) is provided with a second through-hole (105), the second through-hole (105) is communicated with the installation cavity (101), the second support member (12) is provided with a first through-hole (104), a connecting column (42) is formed on the handle assembly (4), the connecting column (42) passes through the first through-hole (104) and the second through-hole (105) in sequence, and then extends into the installation cavity (101) to be connected with the rotating member (3); And / or there are multiple first connecting members (13), and the multiple first connecting members (13) are respectively connected to the first supporting member (11) and the second supporting member (12).

9. A garment steamer, characterized in that: include: Garment steamer body (100); According to any one of claims 1 to 8, the handle control assembly (200) is arranged on the garment steamer body (100), and the handle control assembly (200) can control the garment steamer body (100) to start or stop working.