This application is a National Stage of International Application No. PCT/JP2010/060145 filed Jun. 15, 2010, claiming the benefit of Application No. JP 2009-147734 filed Jun. 22, 2009, in the Japanese Patent Office (JPO), the contents of all of which are incorporated herein in their entirety.
The present invention relates to an evaluation method and an evaluation device for a clamping portion of an electric wire and a terminal.
There has been known that the above connection is liable to cause a difference in electric connection performance and mechanical connection performance due to the clamping quality of the conductor Wa and the wire barrel 11. Under the circumstances, there has been known a terminal clamping failure detecting device for detecting the failure during a process of clamping the terminal to discriminate a clamping state (for example, refer to Patent Document 1). In the terminal clamping failure detecting device, a pressure exerted on the crimper and the anvil during the clamping process is detected by a pressure sensor, and a pressure waveform detected by the pressure sensor is compared with a reference waveform during a normal state to determine whether the clamping is appropriately conducted, or not.
Also, as another evaluation method for the clamping portion, as illustrated in
Patent Literature 1: JP-A-2007-109517
However, in the former device disclosed in Patent Literature 1, because the pressure sensor must be incorporated into the terminal clamping device in advance, the configuration becomes complicated, and the costs are increased. Also, since a product after clamping is not directly tested, there arises such a problem that a final evaluation is difficult.
Also, in the latter method of measuring the crimp height, since there is a need to manually conduct the test by a dedicated micrometer, the work is troublesome, and the labor hour is taken, there arises such a problem that there is a difficulty to test all of clamping portions.
In view of the above circumstances, the present invention aims a method of evaluating a clamping portion of an electric wire and a terminal, and a device of evaluating the clamping portion, which can determine whether a clamping quality is good, or not, through simple test, and can easily test all of the clamping portions.
In order to solve the above problem, according to a first aspect of the present invention, there is provided a method of evaluating a clamping portion of an electric wire and a terminal, comprising: measuring a length of the terminal after clamping to detect an expansion of the terminal after clamping to the length of the terminal before clamping; determining that the clamping quality is “good” when the expansion falls within an allowable range between a given lower limit and a given upper limit; and determining that the clamping quality is “no good” when the expansion falls outside the allowable range.
According to a second aspect of the present invention, there is provided a device of evaluating a clamping portion of an electric wire and a terminal, comprising: a stand that sets up the terminal with reference to one end of the terminal in a longitudinal direction thereof; and a detection unit that detects whether a position of the other end of the terminal which is set up on the stand in the longitudinal direction falls within an allowable range defined on the basis of a given lower limit and a given upper limit of expansion of the terminal after clamping, or not.
According to a third aspect of the present invention, there is provided a device of evaluating a clamping portion of an electric wire and a terminal, comprising: a detection unit that detects an expansion of the terminal after clamping in a longitudinal direction thereof to the terminal before clamping; and a determination unit that determines that the clamping quality is “good” when the expansion detected by the detection unit falls within an allowable range between a given lower limit and a given upper limit, and the clamping quality is “no good” when the expansion falls outside the allowable range.
According to the first aspect of the present invention, with the use of a correlation between a crimp height and the expansion of the terminal due to clamping, the lower limit and the upper limit of the expansion of the terminal are set instead of the lower limit and the upper limit of the crimp height. It is determined whether the quality of the clamping portion is good, or not, according to whether the expansion of the terminal measured after clamping falls within the allowable range between the lower limit and the upper limit, or not, and therefore the clamping portion can be easily evaluated. That is, because measuring the length of the terminal is easier than measuring the crimp height, automation can be easily realized whereby all of the clamping portions can be tested. As a result, all performances of the clamping products can be ensured.
According to the second aspect of the present invention, the terminal is set up on the stand, and it is detected where a tip of the terminal is positioned whereby the quality of the clamping portion can be easily evaluated.
According to the third aspect of the present invention, the expansion of the terminal is detected by the detection unit, and how long is the expansion is determined by the determination unit whereby the quality of the clamping portion can be easily evaluated.
Hereinafter, embodiments of the present invention will be described with reference to the drawings.
In this embodiment, as illustrated in
There is known that there is a correlation (that is, an inversely proportional relationship) between the expansion of the terminal 10 and a crimp height C/H due to clamping. Therefore, as illustrated in
It is checked whether the measured expansion of the terminal 10 after clamping falls within the allowable range between the lower limit and the upper limit in a characteristic diagram of
In this way, in the evaluation method according to this embodiment, with the use of the correlation between the crimp height C/H and the expansion of the terminal 10 due to clamping, the lower limit and the upper limit of the expansion of the terminal are set instead of the lower limit and the upper limit of the crimp height C/H. Whether the quality of the clamping portion is good, or not, is determined according to whether the expansion of the terminal 10 measured after clamping falls within the allowable range between the lower limit and the upper limit. Therefore, the clamping portion can be easily evaluated. That is, because measuring the length of the terminal 10 is easier than measuring the crimp height C/H, automation can be easily realized, thereby enabling all of the clamping portions to be tested. As a result, all performances of the clamping portions can be ensured.
A specific evaluation device for implementing this method is conceivable, for example, as illustrated in
In the evaluation device of
For example, as illustrated in
Therefore, according to this device, the terminal 10 is set up on the stand, and where the tip (the other end) of the terminal 10 is positioned is detected with the result that the quality of the clamping portion can be easily evaluated.
In this evaluation device, as the detection unit, an optical detection mechanism having a light emitting portion 31 and a light receiving portion 32 as a set. A light emitted from the light emitting portion 31 is input to the light receiving portion 32. The lead of the terminal 10 set up on the stand enters a path of the light. For that reason, the amount of received light is reduced as large as an area in which the tip of the terminal 10 blocks the light entering the light receiving portion 32 from the light emitting portion 31. In this case, a relationship between the amount of received light and the expansion of the terminal 10 is grasped in advance, thereby being capable of setting a range of the amount of received light corresponding to an upper limit and a lower limit of the expansion of the terminal 10. The expansion of the terminal 10 can be detected by measuring the amount of received light, on the basis of which the quality of the clamping portion can be evaluated by a determination unit not shown.
In this way, the expansion of the terminal 10 is detected by the detection unit, that is, the light emitting portion 31 and the light receiving portion 32, and how long the expansion is determined by the determination unit, thereby enabling the quality of the clamping portion to be easily evaluated. That is, as illustrated in
The present invention is based on Japanese Patent Application No. 2009-147734 filed on Jun. 22, 2009, and content thereof is incorporated herein by reference.
The method of evaluating the clamping portion of the electric wire and the terminal, and the device of evaluating the clamping portion according to the present invention are effective in the quality determination of the clamping portion when the electric wire and the terminal used as the parts for automobiles are crimped onto each other.
Number | Date | Country | Kind |
---|---|---|---|
2009-147734 | Jun 2009 | JP | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
---|---|---|---|---|
PCT/JP2010/060145 | 6/15/2010 | WO | 00 | 12/21/2011 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2010/150684 | 12/29/2010 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
4856186 | Yeomans | Aug 1989 | A |
5491994 | Baldyga | Feb 1996 | A |
6626711 | Kitagawa et al. | Sep 2003 | B2 |
7086261 | Saito et al. | Aug 2006 | B2 |
20020130669 | Ishibashi et al. | Sep 2002 | A1 |
20040221634 | Saito et al. | Nov 2004 | A1 |
20070218749 | Viviroli | Sep 2007 | A1 |
Number | Date | Country |
---|---|---|
1392637 | Jan 2003 | CN |
1 447 886 | Aug 2004 | EP |
61-133844 | Jun 1986 | JP |
61133844 | Jun 1986 | JP |
2007-109517 | Apr 2007 | JP |
Entry |
---|
International Search Report dated Aug. 10, 2010 from the International Searching Authority in counterpart application No. PCT/JP2010/060145. |
Written Opinion of the International Searching Authority dated Aug. 8, 2010 in counterpart application No. PCT/JP2010/060145. |
Office Action dated Jul. 2, 2014 issued by the State Intellectual Property Office of the People's Republic of China in counterpart Chinese Patent Application No. 201080027536.2. |
Number | Date | Country | |
---|---|---|---|
20120146659 A1 | Jun 2012 | US |