Abstract:
An installation device for a vehicle cylinder and an installation assembly having the same are provided. The installation device includes a main body, at least one lateral member and a plurality of swingable abutting members. Each said swingable abutting member disposed between the main body and the lateral member protrudes outside the lateral member and is slidably disposed in one radial sliding slot disposed on the lateral member. Each said swingable abutting member is provided for being assembled to a valve to be installed into the vehicle cylinder. The installation assembly further includes a driving mechanism assembled to the installation device for pushing the valve into the vehicle cylinder.
Abstract:
A gear grasping device includes a main body, a first jaw, a second jaw, and an adjustment means. The main body is provided with a curved portion accompanied with an opening. The first jaw and the second jaw are disposed on the main body. The opening is arranged between the first jaw and the second jaw. By the adjustment means, position of the first jaw is changeable for adjusting a jaw span between the first jaw and the second jaw. Therefore, the gear grasping device is fit for sizes of gears, and is operation-friendly.
Abstract:
A dismantling device including a main body, a driving member and an insert is provided. The main body includes a through hole. The driving member is rotatably assembled to the main body. The insert is rotatably disposed in the assembling hole of the first portion. Whereby, an object to be dismantled can be placed in the hole to abut against the insert. A tool is used to drive the driving member to rotate. A protrusion of the driving member is inserted into the through hole for holding the object so that the object can be rotated to be dismantled. As a result, the object can be hold stably by the insert so that the dismantling device can be used for dismantling objects in different sizes.
Abstract:
A tool holder, including: a base; and two blocking portions, disposed on the base in interval and defining a receiving space and an entrance which are in communication with each other, the two blocking portions being relatively movable, the entrance being configured to allow insertion of a received portion of a tool into the receiving space, the two blocking portions being configured to block the received portion received within the receiving space.
Abstract:
A hub removal tool is provided, including a base, a first working member and a threaded rod. The base has at least one positioning hole and an assembling hole penetrating therethrough in a first direction. The assembling hole defines a central axis extending in the first direction. The first working member is disposed on the base. The first working member has a first screw hole. An opening direction of the first screw hole is identical to the first direction. As viewed in the first direction, the first screw hole is located in a distribution area of the assembling hole and a first axis of the first screw hole is misaligned with the central axis. The threaded rod is screwed with the first screw hole and is movable in the first direction.
Abstract:
A replaceable tool is provided, including: a main body, including a connecting hole extending along a first axis; a control member, inserted within the main body and including a detent member, being movable between a locked position and a release position along a second axis lateral to the first axis; wherein when the control member is located in the locked position, the detent member radially protrudes within the connecting hole; when the control member moves from the locked position to the release position, the detent member is away from the first axis.
Abstract:
The screw bolt dismantling tool includes a shaft. The shaft has a handle and a working portion at two opposite ends thereof The working portion includes a seat and at least one abutting piece. The seat has a magnet on a central portion of a face of the seat opposite to the handle. The abutting piece is located at a periphery of the face of the seat opposite to the handle and extends toward a direction opposite to the handle. The abutting piece is non-magnetic.
Abstract:
A dis/assembling plier for a connector is provided, including a first clamping body, a driving lever and a clamping member. The first clamping body includes a first grip portion, a first clamping portion and a body portion connected between the first grip portion and the first clamping portion, and the body portion is formed with a first pivoting portion and a second pivoting portion. The driving lever is pivoted with the first pivoting portion and includes a second grip portion and a driving tooth portion disposed on two opposite ends of the first pivoting portion. The clamping member is pivoted with the second pivoting portion and includes a second clamping portion and a passive tooth portion disposed on two opposite ends of the second pivoting portion. The passive tooth portion is engaged with the driving tooth portion and rotatable around the second pivoting portion.
Abstract:
A nut disassembling device is provided, comprising an adjustment member, a support rod, a center pillar and two clamping blocks. The support rod is screwed with two tightening members. Each of the tightening members is rotatable relative to the support rod, and the clamping block is moved by the tightening member. Thus, during the clamping of the nut, the clamping blocks close and push the nut through rotation of the tightening members, and it effectively improves the clamping for installation and uninstallation of the nut.
Abstract:
An auxiliary equipment for valve grinding is provided, including a main body, a driving shaft, a first linkage, a second linkage, a third linkage and a driven shaft. The driving shaft defines a first axial direction. The driving shaft is for connecting to a rotating tool. One end of the first linkage is connected to the driving shaft. The second linkage and the other end of the first linkage are connected to a first movable connecting portion. One end of the third linkage and the second linkage are connected to a second movable connecting portion. The driven shaft defines a second axial direction. When the first linkage rotates together with the driving shaft, the first movable connecting portion rotates about the first axial direction, the second linkage swings about the first movable connecting portion, and the second movable connecting portion swings about the second axial direction.