This application claims priority of Taiwanese Invention Patent Application No. 108113847, filed on Apr. 19, 2019.
The disclosure relates to a cylinder device, more particularly to a cylinder device installed in a nailing tool.
A pneumatic nailing tool includes a conventional cylinder for storing gas. However, for a cylinder that must be installed in a specific direction, in order to ensure that the installation direction is correct and to satisfy a strength requirement, the conventional cylinder is provided in multiple portions and assembled using screws or rivets, which makes the process of assembly complicated and time consuming, and also increases the cost of manufacturing the conventional cylinder.
Moreover, a process, such as drilling, milling, cutting, etc., is used to form holes on the conventional cylinder, which also complicates the manufacturing process and increases manufacturing time.
Therefore, the object of the disclosure is to provide a cylinder device that can alleviate the drawbacks of the aforementioned prior art.
According to the disclosure, a cylinder device includes a base seat and a cylinder unit.
The base seat includes a coupling portion surrounding an axis and defining an internal space. The internal space has an open end and extends from the open end along the axis. The coupling portion has a coupling end, an inner surface, at least two first protrusion parts, and at least two first intermediate parts.
The coupling end is adjacent to the open end of the internal space. The inner surface surrounds the axis and extends from the coupling end along the axis. The first protrusion parts are angularly spaced apart from each other, protrude inwardly from the inner surface and are adjacent to the coupling end. The first intermediate parts are formed on the inner surface and are arranged alternately with the first protrusion parts.
The cylinder unit includes a cylinder body surrounding the axis and defining a cylinder chamber. The cylinder body has a coupling segment inserted through the open end of the internal space into the internal space, and having an outer surface, at least two second protrusion parts, and at least two second intermediate parts.
The outer surface surrounds the axis and confronts the inner surface of the coupling portion of the base seat. The second protrusion parts are angularly spaced apart from each other and protrude outwardly from the outer surface. The second intermediate parts are formed on the outer surface and arranged alternately with the second protrusion parts.
The coupling segment of the cylinder body is rotatable about the axis relative to the base seat from a locked position, where the second protrusion parts respectively engage the first protrusion parts of the coupling portion of the base seat and where each of the second intermediate parts cooperates with a respective one of the first intermediate parts of the coupling portion of the base seat to form a gap which is adapted for gas in the cylinder chamber to exit therethrough, to an unlocked position, where the second protrusion parts are respectively aligned with the first intermediate parts of the coupling portion of the base seat in a direction of the axis, and where the second intermediate parts are respectively aligned with the first protrusion parts of the coupling portion of the base seat in the direction of the axis, thereby permitting the cylinder unit to move along the axis relative to the base seat to be separated from the base seat.
Other features and advantages of the disclosure will become apparent in the following detailed description of the embodiment with reference to the accompanying drawings, of which:
Referring to
The base seat 1 includes a coupling portion 11 surrounding an axis (X) and defining an internal space 10. The internal space 10 has an open end and extends from the open end along the axis (X). The coupling portion 11 has a coupling end 111 adjacent to the open end of the internal space 10, an inner surface 112 surrounding the axis (X) and extending from the coupling end 111 along the axis (X), at least two first protrusion parts 113, at least two first intermediate parts 114, an internal ring-shaped projection 115, an outer surface 116 surrounding the inner surface 112, and at least one through hole 117 extending through the inner and outer surfaces 112, 116. The first protrusion parts 113 are angularly spaced apart from each other, protrude inwardly from the inner surface 112 and are adjacent to the coupling end 111. The first intermediate parts 114 are formed on the inner surface 112 and are arranged alternately with the first protrusion parts 113. The internal ring-shaped projection 115 extends inwardly from the inner surface 112 and is spaced apart from the first protrusion parts 113 along the axis (X).
In this embodiment, the at least two first protrusion parts 113 includes four first protrusion parts 113, and the at least two first intermediate parts 114 includes four first intermediate parts 114.
The cylinder unit 2 includes a striking cylinder 21 including a cylinder body 211 that has an open end, a storage member 22 connected to the cylinder body 211 of the striking cylinder 21 and having an open end, and a cap member 23 coupled to the storage member 22 and the cylinder body 211 of the striking cylinder 21. The open ends of the cylinder body 211 and the storage member 22 cooperate with the cap member 23 to define an air space 20 (see
The cylinder body 211 surrounds the axis (X), defines a cylinder chamber 210, and further has a coupling segment 213 and an external ring-shaped projection 214. The coupling segment 213 extends from an end 212 of the cylinder body 211 along the axis (X), and the external ring-shaped projection 214 is spaced apart from the end 212 of the cylinder body 211 along the axis (X).
The coupling segment 213 is defined between the end 212 of the cylinder body 211 and the external ring-shaped projection 214, and is inserted through the open end of the internal space 10 into the internal space 10 of the base seat 1. Referring further to
The second protrusion parts 215 are angularly spaced apart from each other and protrude outwardly from the outer surface 213a. The second intermediate parts 216 are formed on the outer surface 213a and arranged alternately with the second protrusion parts 215. In this embodiment, the second protrusion parts 215 are disposed at the end 212 of the cylinder body 211, and the second intermediate parts 216 extend from the end 212 of the cylinder body 211 in the direction of the axis (X). In this embodiment, the securing holes 217 extend respectively through the second protrusion parts 215 toward the inner surface 213b.
The coupling segment 213 of the cylinder body 211 is rotatable about the axis (X) relative to the base seat 1 from a locked position (see
Each of the second protrusion parts 215 of the coupling segment 213 of the cylinder body 211 is disposed between the internal ring-shaped projection 115 and a respective one of the first protrusion parts 113 when the coupling segment 213 is at the locked position. Each of the second protrusion parts 215 cooperates with the external ring-shaped projection 214 to define an engaging groove 219 which receives a respective one of the first protrusion parts 113 of the coupling portion 11 of the base seat 1 when the coupling segment 213 is at the locked position.
In this embodiment, the at least two gas outlet holes 218 includes four gas outlet holes 218.
The storage member 22 is for storing a gas having a predetermined pressure.
The at least one fastening member 3 extends through the at least one through hole 117 and into the at least one securing hole 217 to lock the coupling segment 213 of the cylinder body 211 at the locked position.
In this embodiment, the quantities of the fastening member 3, the through hole 117 and the securing hole 217 are four, the fastening members 3 are screws, and the securing holes 217 are threaded holes. In other embodiments, for example, the fastening members 3 may be plugs and the securing holes 217 may be jacks. In other embodiments, the quantities of the fastening member 3, the through hole 117 and the securing hole 217 may be two.
Referring to
The cylinder device is adapted to be used with a piston unit (not shown) installed in the cylinder chamber 210. The gas having a predetermined pressure stored in the storage member 22 can flow into the cylinder chamber 210 through the air space 20 to drive the piston unit to move along the axis (X) in a direction from the cap member 23 toward the base seat 1. During this movement of the piston unit toward the base seat 1, a volume of a space defined between the piston unit and the base seat 1 is reduced and gas stored in said space may be discharged through the gas outlet holes 218 and the gaps 110 to the outside environment instead of being compressed. This reduces resistance experienced by the piston unit as it moved toward the base seat 1.
In variations of the embodiment, the gas outlet holes 218 maybe omitted and the gas stored in said space may flow into the gaps 110 through a gap between the end 212 of the cylinder body 211 and the internal ring-shaped projection 115.
The benefits of the cylinder device of the disclosure is as follows:
1. By provision of the first and second protrusion parts 113, 215 and the first and second intermediate parts 114, 216, the cylinder body 211 and the base seat 1 may be easily coupled with each other, and the gaps 110 are formed between the first and second intermediate parts 114, 216. This simplifies the structure of the cylinder device and increases convenience of assembly.
2. The first and second protrusion parts 113, 215 help strengthen structural integrity of the coupling portion 11 of the base seat 1 and the coupling segment 213 of the cylinder body 211.
In the description above, for the purposes of explanation, numerous specific details have been set forth in order to provide a thorough understanding of the embodiment. It will be apparent, however, to one skilled in the art, that one or more other embodiments maybe practiced without some of these specific details. It should also be appreciated that reference throughout this specification to “one embodiment,” “an embodiment,” an embodiment with an indication of an ordinal number and so forth means that a particular feature, structure, or characteristic may be included in the practice of the disclosure. It should be further appreciated that in the description, various features are sometimes grouped together in a single embodiment, figure, or description thereof for the purpose of streamlining the disclosure and aiding in the understanding of various inventive aspects, and that one or more features or specific details from one embodiment may be practiced together with one or more features or specific details from another embodiment, where appropriate, in the practice of the disclosure.
While the disclosure has been described in connection with what is considered the exemplary embodiment, it is understood that this disclosure is not limited to the disclosed embodiment but is intended to cover various arrangements included within the spirit and scope of the broadest interpretation so as to encompass all such modifications and equivalent arrangements.
Number | Date | Country | Kind |
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108113847 | Apr 2019 | TW | national |