This application claims the benefit of Japanese Patent Application Number 2011-270368 filed on Dec. 9, 2011, the entirety of which is incorporated by reference.
The present invention relates to electric power tools in which a terminal base having a terminal plate attached thereto is provided in a battery holding portion formed in a housing and the terminal plate is slid and mounted on a battery pack.
For example, General Catalog, Makita Corporation, October 2011, p. 16, (searched. on Dec. 8, 2011), URL:
http://www.makita.co.jp/product/ecatalog/sougou/index.html#16 discloses an electric power tool which includes a substantially cylindrical main body housing extending in the longitudinal direction, a handle portion protruding downward from the main body housing, and a battery holding portion provided at a distal end of the handle portion, and in which a battery pack is detachably mounted on the battery holding portion. In this electric power tool, a terminal base having terminal plates attached thereto is provided in the battery holding portion, and the terminal plates are slid and inserted into charging/discharging terminals placed in the battery pack by sliding the battery pack along the battery holding portion.
In this electric power tool, the terminal plates are insert-molded on the terminal base. Thus, if vibrations produced during operation of the electric power tool are transmitted to the battery holding portion through the main body housing, vibrations are transmitted to the terminal plates via the terminal base. Accordingly, during operation of the electric power tool, the terminal plates vibrate and rub against the charging/discharging terminals of the battery pack. Therefore, it may cause melting of the terminal plates. In order to suppress such melting of the terminal plates, a buffer member is interposed between the battery holding portion and the terminal base in an attempt to reduce transmission of vibrations to the terminal plates. However, the buffer member needs to be provided independently of the terminal base. Therefore, it has been desired to prevent melting of the terminal plates by a simple structure.
In another method to reduce transmission of vibrations to the terminal base, the terminal base provided in the battery holding portion was moved according to vibrations. However, such a mechanism of moving the terminal base according to vibrations needs to be individually designed according to the type of electric power tool, which may increase manufacturing cost of the electric power tool.
The present invention was proposed in view of the above problems, and it is an object of the present invention to provide an electric power tool capable of suppressing melting of a terminal plate by an inexpensive, simple structure.
In a first aspect of the present invention, an electric power tool includes a battery holding portion formed in a housing, a terminal base provided in the battery holding portion and having a terminal plate attached thereto, a battery pack on which the terminal plate is slid and mounted, and a buffer material interposed at least between the terminal base and the terminal plate.
In a second aspect of the present invention according to the configuration of the first aspect, a through hole is formed in the terminal plate, and the terminal plate is attached to the terminal base with the through hole being filled with the buffer material.
In the electric power tool according to the first aspect of the present invention, the buffer material can reduce transmission of the vibrations from the terminal base to the terminal plate even if vibrations produced during operation of the electric power tool are transmitted to the housing. This can suppress rubbing of the terminal plate against the battery pack, and thus can suppress melting of the terminal plate. Moreover, it can be realized to suppress melting of the terminal plate only by the buffer material interposed at least between the terminal base and the terminal plate. Therefore, the structure that suppresses melting of the terminal plate can be inexpensively and easily implemented.
According to the second aspect of the present invention, the buffer material can be held between the terminal base and the terminal plate with the through hole in the terminal plate being filled with the buffer material. This can increase the strength in integrating the terminal plate with the buffer material.
An embodiment of the present invention will be described with reference to
A hammer case 9 is mounted on the front (rightward in
The handle portion 6 is connected to the body portion 4 so as to extend downward from the body portion 4. A switch 12 having a trigger 11 is accommodated in the handle portion 6. The battery holding portion 7 is formed at a lower end of the handle portion 6. Guide rails (not shown) extending in the longitudinal direction are formed at left and right lower ends of the battery holding portion 7. A pair of left and right slide rails 15, 15 (see
As shown in
As shown in
As shown in
The slide rails 15, 15 (see
When the battery pack 3 is mounted on the battery holding portion 7, the slide rails 15, 15 of the battery pack 3 shown in
For example, when a screw is tightened into a block of wood by the tool mounted on the socket holding portion 10, vibrations are produced by the impact during operation of the impact driver 1. Such vibrations are continuously transmitted from the main body housing 2 to the terminal plates 16, 16 through the terminal base 17. If the terminal plates 16, 16 are thus continuously vibrated, the terminal plates 16, 16 rub against the charging/discharging terminals 31, 31, thereby causing melting of the terminal plates 16, 16. In order to prevent such a disadvantage, in the present embodiment, vibrations are absorbed by the buffer members 25 interposed between the terminal base 17 and the terminal plates 16, 16 and between the terminal base 17 and the arm members 19, 19, so that vibrations are less likely to be transmitted to the terminal plates 16, 16. This can suppress rubbing of the terminal plates 16, 16 against the charging/discharging terminals 31, 31. Moreover, in order to suppress transmission of vibrations to the terminal plates 16, 16, the buffer members 25 described above needs only to be formed on the terminal base 17, and no additional processing is required for the charging/discharging terminals 31. This can simplify the structure of the charging/discharging terminals 31.
According to the impact driver 1 of the present embodiment, even if vibrations produced during operation of the impact driver 1 are transmitted to the main body housing 2, the buffer members 25 made of the elastomer can suppress transmission of the vibrations from the terminal base 17 to the terminal plates 16, 16. This can suppress rubbing of the terminal plates 16, 16 against the charging/discharging terminals 31, 31 of the battery pack 3, and thus can suppress melting of the terminal plates 16, 16. Moreover, it can be realized to suppress melting of the terminal plate only by the buffer member 25 interposed at least between the terminal base 17 and the terminal plates 16, 16, and between the terminal base 17 and the arm members 19, 19. Therefore, the structure that suppresses melting of the terminal plates 16, 16 can be inexpensively and easily implemented.
The buffer members 25 made of the elastomer is held between the terminal base 17 and the terminal plates 16, 16 with the through holes 18 in the terminal plates 16, 16 being filled with the elastomer. This can increase the strength in integrating each terminal plate 16 with the buffer member 25. Moreover, the buffer members 25 are held between the terminal base 17 and the arm members 19, 19 with the through holes 18 in the arm members 19, 19 being filled with the elastomer. This can increase the strength in integrating each arm member 19 with the buffer member 25.
The present invention is not limited to the above embodiment, and the configuration can be partially changed as appropriate without departing from the spirit and scope of the invention. The above embodiment is described with respect to an example in which the buffer members 25 are made of the elastomer. However, the buffer members may be made of a fluorine-containing rubber having high heat resistance. The above embodiment is described with respect to an example in which the terminal plates 16, 16 and the arm members 19, 19 are attached to the lower surface of the terminal base 17 with the buffer members 25 interposed between the lower surface of the terminal base 17 and the terminal plates 16, 16 and between the lower surface of the terminal base 17 and the arm members 19, 19. However, the terminal plates 16, 16 may be attached to the lower surface of the terminal base 17 with the buffer members 25 interposed therebetween, and no buffer member 25 may be provided between the lower surface of the terminal base 17 and the arm members 19, 19. The above embodiment is described with respect to an example in which the present invention is applied to an impact driver. However, the present invention is not limited to this, and the present invention may be applied to an electric power tool such as a rechargeable drill driver in which a terminal plate is slid and mounted on a battery pack.
It is explicitly stated that all features disclosed in the description and/or the claims are intended to be disclosed separately and independently from each other for the purpose of original disclosure as well as for the purpose of restricting the claimed invention independent of the composition of the features in the embodiments and/or the claims. It is explicitly stated that all value ranges or indications of groups of entities disclose every possible intermediate value or intermediate entity for the purpose of original disclosure as well as for the purpose of restricting the claimed invention, in particular as limits of value ranges.
| Number | Date | Country | Kind |
|---|---|---|---|
| 2011-270368 | Dec 2011 | JP | national |