A billiard table electric iron guiding device and electric iron
By designing a guide device on the billiard table iron, the problem of unstable movement of the iron on the edge of the billiard table is solved, resulting in a more uniform ironing effect and higher operating efficiency, while protecting the edge of the billiard table.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 廖伟标
- Filing Date
- 2025-11-04
- Publication Date
- 2026-07-24
Smart Images

Figure CN224548798U_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of ironing equipment technology, and more specifically, to a guide device for an electric iron for a billiard table and an electric iron. Background Technology
[0002] An electric iron is a common ironing tool widely used for ironing clothing, home textiles, and other textiles. In the maintenance of a pool table, the table surface, as a crucial component, directly affects the trajectory of the balls and the gaming experience. Therefore, it requires regular ironing to remove wrinkles and maintain its smoothness. However, traditional electric irons rely heavily on the operator's experience to control the ironing direction and path when ironing pool table surfaces. Since the edges of a pool table are typically straight, it's difficult to maintain a straight path with the iron manually, leading to uneven ironing and potentially scratching or damaging the edges, affecting the table's performance and lifespan. Furthermore, manually controlling the iron requires constant attention to direction and pressure, increasing the difficulty and labor intensity, and reducing ironing efficiency. Therefore, in order to address the problem of iron guidance during the ironing of billiard table cloth, there is an urgent need for a guiding device that can assist the iron in moving stably along the edge of the billiard table, so as to improve ironing quality and efficiency and ensure the integrity of the cloth. Utility Model Content
[0003] To address the lack of a stable guide device for electric irons used on billiard tables in existing technologies, this solution proposes a guide device and an electric iron for billiard tables. By setting up an installation mechanism and a linear guide mechanism, the problem in existing technologies is solved.
[0004] To achieve the above objectives, the technical solution provided by this utility model is as follows: A guide device for an electric iron used on a billiard table includes: The mounting mechanism is attached to the casing of the electric iron at one end; A linear guide mechanism, connected to the mounting mechanism, has at least one guide portion for conforming to the edge of the pool table, the guide portion constraining the iron to move along the edge of the pool table. When using the pool table iron, first... Securely attach one end of the mounting mechanism to the iron's casing, ensuring a tight and secure connection. Then, adjust the linear guide mechanism so that the guide conforms to the edge of the billiard table. As the iron begins operation and moves along the edge of the table, the guide effectively constrains its movement, preventing deviation during ironing. The guide continuously functions, ensuring the iron moves smoothly along the preset straight path, resulting in more even ironing of the tablecloth. This reduces operator difficulty and workload, effectively avoiding the risk of scratching or damaging the tablecloth edge due to improper manual control, and significantly improving the quality and efficiency of ironing operations.
[0005] In a billiard table iron guide device provided in this application, the guide portion further includes at least two rollers. These rollers are vertically and rotatably mounted on the mounting mechanism and arranged along a straight line parallel to the iron's forward direction. The central axes of all rollers are in the same vertical plane. Using rollers significantly reduces the friction between the guide portion and the edge of the billiard table, making the iron move more smoothly and stably, reducing problems such as jamming or deviation caused by excessive frictional resistance. The fact that the central axes of all rollers are in the same vertical plane ensures consistent contact between the rollers and the edge of the billiard table, preventing deviations in roller installation angles from affecting the guiding effect. This structural design not only improves guiding accuracy but also effectively reduces wear on the edge of the billiard table, extending its service life.
[0006] In the electric iron guide device for a billiard table provided in this application, each of the rollers is further mounted via a corresponding pivot, the pivot passing through the roller and having its two ends fixedly connected to the mounting mechanism. This mounting method ensures that the rollers can rotate flexibly around the pivot, while the fixed connection between the two ends of the pivot and the mounting mechanism enhances the stability of the overall structure, preventing the rollers from loosening or shifting during long-term use, thereby ensuring the continuous and effective operation of the guide.
[0007] In a guide device for an electric iron for a billiard table provided in this application, the guide portion is further constructed as a smooth guide plate, which is used to conform to the edge of the billiard table and guide the movement of the electric iron by means of sliding friction.
[0008] In a guide device for an electric iron for a billiard table provided in this application, the guide portion is further provided with a V-shaped guide groove, and the two side walls of the V-shaped guide groove are used to hug the edge of the billiard table from both sides to achieve adaptive guidance.
[0009] In a billiard table iron guide device provided in this application, the mounting mechanism is further configured as a U-shaped groove, and the guide portion is disposed on the open side of the U-shaped groove to guide the movement of the iron. The U-shaped groove design allows for convenient connection with the iron housing, and the installation and disassembly process is simple and quick, facilitating operators to install, disassemble, or replace the iron according to actual usage needs.
[0010] This application provides an electric iron for a billiard table, including the aforementioned guide device.
[0011] In a billiard table iron provided in this application, the guide device is further installed on the narrow side or the long side of the iron.
[0012] In the electric iron for a billiard table provided in this application, the guide device further comprises two devices, which are respectively installed on the narrow side portions at both ends of the electric iron. This installation method allows the guide devices at both ends to fit against the two sides of the short edge of the billiard table when the electric iron moves along the short edge, forming a bidirectional constraint. This further improves the straightness and stability of the electric iron's movement, and is especially suitable for fine ironing operations on the short side area of the billiard table, avoiding slight deviations that may occur due to unilateral guidance.
[0013] In a billiard table iron provided in this application, the guide device further includes two devices, which are respectively installed on the long side portions at both ends of the iron.
[0014] The beneficial effects of this application are:
[0015] The present application discloses a guide device and an iron for a billiard table. When using the billiard table iron, one end of the mounting mechanism is first securely connected to the iron's casing, ensuring a tight and secure connection. Then, the linear guide mechanism is adjusted to ensure the guide conforms to the edge of the billiard table. When the iron begins operation and moves along the edge of the billiard table, the guide effectively constrains the iron's movement, preventing it from deviating during ironing. Whether using a rolling roller, a smooth guide plate, or a V-shaped guide groove to hug the edge from both sides, the guide continuously functions, ensuring the iron moves smoothly along a preset straight trajectory. This guarantees more even ironing of the tablecloth, reduces operator difficulty and labor intensity, effectively avoids the risk of scratching or damaging the tablecloth edge due to improper manual control, and significantly improves the quality and efficiency of ironing operations. Attached Figure Description
[0016] Figure 1 This is a three-dimensional structural diagram of the electric iron for a billiard table according to this application; Figure 2This is a three-dimensional structural schematic diagram of the electric iron guide device for a billiard table according to this application; Label Explanation: 100. Mounting mechanism; 110. U-shaped slot; 111. Open side; 112. First support plate; 113. Second support plate; 114. Third support plate; 200. Linear guide mechanism; 210. Guide part; 211. Roller; 212. Rotating shaft; 300. Electric iron; 310. Narrow side; 320. Long side. Detailed Implementation
[0017] To further understand the content of this utility model, a detailed description of this utility model will be provided in conjunction with the accompanying drawings and embodiments.
[0018] It should be noted that the terms "first," "second," etc., in the specification, claims, and accompanying drawings of this application are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. It should be understood that such data can be interchanged where appropriate for the embodiments of this application described herein. In this application, the terms "upper," "lower," "left," "right," "front," "rear," "top," "bottom," "inner," "outer," "middle," "vertical," "horizontal," "lateral," and "longitudinal," etc., indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings. These terms are primarily for better description of this application and its embodiments and are not intended to limit the indicated devices, elements, or components to having a specific orientation, or to be constructed and operated in a specific orientation. Furthermore, some of the above terms may be used to indicate other meanings besides orientation or positional relationships; for example, the term "upper" may in some cases indicate a dependency or connection relationship. Those skilled in the art can understand the specific meaning of these terms in this application according to the specific circumstances.
[0019] To further understand the content of this utility model, a detailed description of this utility model will be provided in conjunction with the accompanying drawings and embodiments. Example 1
[0020] like Figure 1 As shown, this application provides a guide device for an electric iron used on a billiard table, including a mounting mechanism 100 and a linear guide mechanism 200. One end of the mounting mechanism 100 is connected to the housing of an electric iron 300. The linear guide mechanism 200 is connected to the mounting mechanism 100 and has at least one guide portion 210 for conforming to the edge of the billiard table. The guide portion 210 constrains the electric iron 300 to move along the edge of the billiard table. When using the billiard table electric iron 300, first, firmly connect one end of the mounting mechanism 100 to the housing of the electric iron 300, ensuring that the connection is tight and not easily loosened. Then, adjust the linear guide mechanism 200 so that the guide portion 210 conforms to the edge of the billiard table.
[0021] When the electric iron 300 starts working and moves along the edge of the billiard table, the guide section 210 effectively constrains the movement direction of the electric iron 300, preventing it from deviating during ironing. The guide section 210 continuously functions, ensuring that the electric iron 300 always moves smoothly along the preset straight trajectory, thereby ensuring more even ironing of the tablecloth. At the same time, it reduces the difficulty and labor intensity of the operator, effectively avoiding the risk of scratching or damaging the edge of the tablecloth due to improper manual control, and significantly improving the quality and efficiency of ironing operations.
[0022] like Figure 2 As shown, in this application, the mounting mechanism 100 is configured as a U-shaped slot 110, and a guide portion 210 is provided on the open side 111 of the U-shaped slot 110 to guide the movement of the electric iron 300. The U-shaped slot 110 includes a first support plate 112, a second support plate 113, and a third support plate 114. The first support plate 112 and the second support plate 113 are arranged in parallel, forming the aforementioned open side 111 between them. The two ends of the third support plate 114 are fixedly connected to the edges of the first support plate 112 and the second support plate 113. The three are integrally bent into shape. The third support plate 114 is used to fix the entire electric iron 300 guide device to the electric iron 300 housing by bolts or screws.
[0023] like Figure 2 As shown in this application, the guide portion 210 includes at least two rollers 211. The rollers 211 are vertically and rotatably disposed on the mounting mechanism 100 and arranged along a straight line parallel to the forward direction of the electric iron 300. The central axes of each roller 211 are in the same vertical plane. Each roller 211 is mounted via a corresponding pivot 212, which passes through the roller 211 and is fixedly connected to the mounting mechanism 100 at both ends. Multiple rollers 211 can also be used, all connected to the open side 111 of the mounting mechanism 100. The pivot 212 can be a bolt, with its head passing through the through holes provided on the first support plate 112, the second support plate 113, and the roller 211, and tightened at the other end by a nut, ensuring that the roller 211 can rotate freely around the bolt without axial movement. Using rollers 211 significantly reduces the friction between the guide section 210 and the edge of the billiard table, making the iron 300 move more smoothly and stably, reducing problems such as jamming or deviation caused by excessive frictional resistance. The fact that the central axes of all rollers 211 are in the same vertical plane ensures consistent contact between the rollers 211 and the edge of the billiard table, preventing deviations in the roller installation angle from affecting the guiding effect. This structural design not only improves guiding accuracy but also effectively reduces wear on the edge of the billiard table, extending its service life. Example 2
[0024] In this embodiment, the guide portion 210 is constructed as a smooth guide plate (not shown in the figure) to conform to the edge of the billiard table and guide the movement of the electric iron 300 by sliding friction. The guide portion 210 can be a smooth guide plate, which can be an L-shaped plate or a V-shaped plate. The smooth guide plate is fixed on the open side 111 of the U-shaped slot 110. The inner sidewall of the U-shaped slot 110 is adapted to the two side edges of the smooth guide plate (not shown in the figure), and the two are firmly fixed by welding or bolting to ensure that the guide plate will not loosen or shift during the movement of the electric iron 300. The surface of the smooth guide plate is precision ground and polished, and its coefficient of friction is much lower than that of traditional metal materials, which can effectively reduce the sliding friction generated when in contact with the edge of the billiard table, making it easier to push the electric iron 300. Example 3
[0025] In this embodiment, this application provides an electric iron 300 for a billiard table, including a guide device. The guide device is installed on the narrow side 310 or the long side 320 of the electric iron 300. Preferably, there are two guide devices, which are respectively installed on the narrow side 310 at both ends of the electric iron 300. This installation method allows the guide devices at both ends to fit against the two sides of the short edge of the billiard table when the electric iron 300 moves along the short edge, forming a bidirectional constraint, further improving the straightness and stability of the movement of the electric iron 300, and is especially suitable for fine ironing operations on the short side area of the billiard table, avoiding slight deviations that may occur due to unilateral guidance.
[0026] The guide device includes two devices, which are respectively installed on the long side 320 at both ends of the electric iron 300.
[0027] The present invention and its embodiments have been described above illustratively. This description is not restrictive, and the figures shown are only one embodiment of the present invention; the actual structure is not limited to this. Therefore, if those skilled in the art are inspired by this description and design similar structures and embodiments without departing from the inventive spirit of the present invention, such designs should fall within the protection scope of the present invention.
Claims
1. A guide device for an electric iron used on a billiard table, characterized in that, include: The mounting mechanism (100) is connected at one end to the casing of the electric iron (300); A linear guide mechanism (200) is connected to the mounting mechanism (100), the linear guide mechanism (200) having at least one guide portion (210) for conforming to the edge of the billiard table, the guide portion (210) constraining the electric iron (300) to move along the edge of the billiard table.
2. The electric iron guide device for a billiard table according to claim 1, characterized in that, The guide section (210) includes at least two rollers (211), which are vertically and rotatably disposed on the mounting mechanism (100) and arranged along a straight line parallel to the forward direction of the electric iron (300), with the central axis of each roller (211) in the same vertical plane.
3. The electric iron guide device for a billiard table according to claim 2, characterized in that, Each of the rollers (211) is mounted via a corresponding shaft (212), which passes through the roller (211) and has its two ends fixedly connected to the mounting mechanism (100).
4. The electric iron guide device for a billiard table according to claim 1, characterized in that, The guide portion (210) is configured as a smooth guide plate to conform to the edge of the billiard table and guide the movement of the electric iron (300) by sliding friction.
5. The electric iron guide device for a billiard table according to claim 4, characterized in that, The guide section (210) is formed with a V-shaped guide groove, and the two side walls of the V-shaped guide groove are used to hug the edge of the billiard table from both sides to achieve adaptive guidance.
6. The electric iron guide device for a billiard table according to any one of claims 1 to 5, characterized in that, The mounting mechanism (100) is configured as a U-shaped slot (110), and the guide (210) is provided on the opening side (111) of the U-shaped slot (110) to guide the movement of the electric iron (300).
7. An electric iron (300) for a billiard table, characterized in that, Includes the guiding device as described in any one of claims 1 to 6.
8. The electric iron for a billiard table (300) according to claim 7, characterized in that, The guide device is installed on the narrow side (310) or the long side (320) of the electric iron (300).
9. The electric iron (300) for a billiard table according to claim 8, characterized in that, The guide device includes two devices, which are respectively installed on the narrow side (310) at both ends of the electric iron (300).
10. The electric iron for a billiard table (300) according to claim 8, characterized in that, The guide device includes two devices, which are respectively installed on the long side (320) at both ends of the electric iron (300).