Hand-Operated Tool, Ground Contact Mounting Set And Method For Mounting A Terminal Onto A Ground Stud Contact, In Particular For A Car Body
20170244210 ยท 2017-08-24
Assignee
Inventors
Cpc classification
B25B27/005
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A tool for mounting a terminal onto a stud contact is disclosed. The tool has a receptacle, a stud detector, and an indicator. The receptacle is open in a mounting direction and receives the terminal. The stud detector detects a final installation position of the stud contact within the receptacle. The indicator is visible from an exterior of the tool and is connected to the stud detector. The indicator has a first visual appearance and a second visual appearance different from the first visual appearance, and automatically switches between the first visual appearance and the second visual appearance based on whether the stud contact is in the final installation position.
Claims
1. A tool for mounting a terminal onto a stud contact, comprising: a receptacle open in a mounting direction and receiving the terminal; a stud detector detecting a final installation position of the stud contact within the receptacle; and an indicator visible from an exterior of the tool and connected to the stud detector, the indicator having a first visual appearance and a second visual appearance different from the first visual appearance, the indicator automatically switching between the first visual appearance and the second visual appearance based on whether the stud contact is in the final installation position.
2. The tool of claim 1, further comprising a latching assembly engaging the terminal.
3. The tool of claim 2, wherein the latching assembly has a release opening open in the mounting direction and receiving a release element to disengage the latching assembly.
4. The tool of claim 1, wherein the stud detector is disposed at a bottom of the receptacle.
5. The tool of claim 1, wherein the receptacle is formed by an adaptor interchangeably mounted to the tool.
6. A ground contact mounting set, comprising: a stud contact having a trigger; and a tool having a receptacle open in a mounting direction and receiving a terminal, a stud detector interacting with the trigger in a final installation position of the stud contact within the receptacle, and an indicator visible from an exterior of the tool and connected to the stud detector, the indicator having a first visual appearance and a second visual appearance different from the first visual appearance, the indicator automatically switching between the first visual appearance and the second visual appearance based on whether the stud contact is in the final installation position.
7. The ground contact mounting set of claim 6, wherein the trigger is a protrusion.
8. The ground contact mounting set of claim 7, wherein the protrusion extends parallel to the mounting direction.
9. The ground contact mounting set of claim 8, wherein the protrusion protrudes from a top surface of the stud contact.
10. The ground contact mounting set of claim 6, wherein the tool has a latching assembly engaging the terminal.
11. The ground contact mounting set of claim 10, wherein the stud contact has a release element automatically disengaging the latching assembly in the final installation position.
12. The ground contact mounting set of claim 11, wherein the release element extends in the mounting direction.
13. The ground contact mounting set of claim 12, wherein the release element extends alongside the stud contact.
14. The ground contact mounting set of claim 12, wherein the release element engages a release opening of the terminal to friction fit the contact stud to the terminal.
15. The ground contact mounting set of claim 6, wherein the terminal is mounted on the stud contact and is axially tight against the stud contact in the mounting direction.
16. The ground contact mounting set of claim 15, wherein the tool has a terminal extractor engaging the terminal.
17. The ground contact mounting set of claim 16, wherein the terminal extractor engages the terminal in a rotary motion.
18. The ground contact mounting set of claim 17, wherein the terminal extractor is disposed on the receptacle.
19. The ground contact mounting set of claim 17, wherein, when the terminal extractor engages the terminal, the terminal can be removed from the contact stud in a direction counter to the mounting direction.
20. A method for mounting a terminal onto a stud contact using a tool, comprising: inserting the terminal into a receptacle of the tool; positioning the receptacle over the stud contact; and inserting the stud contact into the receptacle to a final installation position, an indicator of the tool having an automatically altered visual appearance based on whether the stud contact is in the final installation position.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0005] The invention will now be described by way of example with reference to the accompanying Figures, of which:
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DETAILED DESCRIPTION OF THE EMBODIMENT(S)
[0017] Embodiments of the present invention will be described hereinafter in detail with reference to the attached drawings, wherein like reference numerals refer to the like elements. The present invention may, however, be embodied in many different forms and should not be construed as being limited to the embodiments set forth herein; rather, these embodiments are provided so that the disclosure will be thorough and complete, and will fully convey the concept of the invention to those skilled in the art.
[0018] An assembly 1 according to the invention for providing a ground connection in a car body 2 is shown generally in
[0019] The terminal 12 is mounted onto the stud contact 4, in particular onto the connecting section 10. The terminal 12 is sleeve-like, and the stud contact 4 is inserted into the terminal 12 and engaged with the terminal 12 by a form-fit. The terminal 12 has a spring section 16 which is elastically deflectable in a radial outward direction. The spring section 16 is part of a contact section 17, shown in
[0020] The stud contact 4 is first mounted onto the car body 2, then after installing further equipment on the car body 2, the terminal 12 is mounted onto the stud contact 4. At this stage, the stud contact 4 may not be easily accessible. Moreover, it may be difficult to assess whether the terminal 12 has been correctly mounted onto the stud contact 4, as the stud contact 4 may be in a location where visual assessment is difficult or impossible.
[0021] To facilitate the mounting of the terminal 12 onto the stud contact 4 and to assure that the terminal 12 is correctly mounted onto the stud contact 4, the tool 22 shown in
[0022] The tool 22 has a grip end 24 adapted to be used manually by an operator. The tool 22 also has a tool end 26 located at a distal end 28 of a longitudinal tool section 30 which extends away at an angle, for example perpendicularly, from the grip end 24. The shape and size of the tool section 30 may be adapted to specific needs. For example, a long, narrow tool section 30 may be necessary if the stud contact 4 is mounted to the car body 2 at the bottom of the engine compartment and only a long and narrow access opening is available.
[0023] The tool 22 has a receptacle 32 disposed at the tool end 26. The receptacle 32 is a hollow member, in which the terminal 12, in particular its contact section 17, is received. The receptacle 32 is open in a mounting direction 34 in which the terminal 12 is placed over the stud contact 4.
[0024] The tool 22 has an indicator 36 disposed to be visible from an exterior of the tool 22 and adapted to be switched from a first visual appearance 38, shown in
[0025] In the second visual appearance 40, the LED 42 may be switched on or the indicator 36 may emit a different set of wavelengths to represent a different, for example a green light, signal that the installation of the terminal 12 onto the stud contact 4 has been successfully completed. Thus, the tool 22 allows for a correct mounting of the terminal 12 onto the stud contact 4, even if the stud contact 4 is not visible to the operator.
[0026] The receptacle 32 of the tool 22 is formed by an interchangeable adaptor 44 attached to the tool end 26. For inserting the terminal 12 into the receptacle 32, the receptacle 32 is moved in the mounting direction 34 over the terminal 12, as shown in
[0027] Upon moving the terminal 12, in particular its contact section 17 over the stud contact 4, both are form-fit and engaged automatically. As shown in
[0028] The tool 22, as shown in
[0029] The trigger 56 is disposed at a top surface 60 of the stud contact 4, the top surface 60 facing counter to the mounting direction 34. As shown in
[0030] In order to safely attach the terminal 12 to the tool 22 before mounting the terminal 12 onto the stud contact 4, a latching assembly 70 is provided as is described in the following with reference to
[0031] The latching assembly 70 is disposed on the outside 72 of the receptacle 32 and on the terminal 12. The latching assembly 70 extends across only a section of the respective circumferences of the receptacle 32 and the terminal 12. The latching assembly 70 is disposed diametrically opposite to the connection section 18.
[0032] The latching assembly 70 is operated by slipping the receptacle 32 over the contact section 17 of the terminal 12. In the latched state of the latching assembly 70, two latching members 74, 76 engage with each other in the mounting direction to form a positive lock. At least one of the latching members 74, 76 is elastically deflectable in a radial direction 78. At least one of the latching members 74, 76 is a radial protrusion. The embodiment of
[0033] The latching assembly 70 also has a release opening 84 opening in the mounting direction 34. The release opening 84 provides access to at least one of the latching members 74, 76; at least one of the latching members 74, 76 may overlap the release opening 84. In the shown embodiment, the release opening 84 is formed in the terminal 12 and the latching member 74, which overlaps the release opening 84, is part of the tool 22.
[0034] The terminal 12, as shown in
[0035] A release element 90, as shown in
[0036] The release element 90, as shown in
[0037] The release element 90 is adapted to be inserted into the release opening 84 and to interact with at least one of the latching members 74, 76 to disengage the latching assembly 70. For disengagement, at least one of the latching members 74, 76 is moved by the release element 90 out of overlap with the respective other latching members 76, 74. For example, the release element 90 presses against the radial protrusion 80 of the receptacle 32 and deflects the radial protrusion 80 radially inwards, so that the latching member 74 may slide past the latching member 76 counter to the mounting direction 34. The length of the release element 90 in the mounting direction 34 is adapted to permit disengagement of the latching assembly 70 only if the terminal 12 is close to or touches the shoulder 24, or if the stud contact 4 is in the final installation position 50.
[0038] To help in inserting the release element 90 into the release opening 84, a guidance arrangement 92 shown in
[0039] After disengagement of the latching assembly 70, as shown in
[0040] The tool 22 also has a terminal extractor 100, shown in
[0041] In order to avoid accidentally pulling off the terminal 12 right after mounting it onto the stud contact 4, the direction in which the terminal extractor 100 is brought into engagement with the terminal 12, is different from the direction of movement by which the latching assembly 70 is engaged or disengaged. For example, if the latching assembly 70 is engaged and disengaged by a motion of the tool 22 along the mounting direction 34, the terminal extractor 100 is engaged by a movement in a direction perpendicular to the mounting direction 34. The terminal extractor 100 may be adapted to engage the terminal 12 in a rotary motion 102. The terminal 12 and the terminal extractor 100 may both form complementary parts of a bayonet fastening 104.
[0042] The latch opening 88 formed by the terminal 12 receives a radially-protruding extractor latch 106 of the receptacle 32 upon a rotation of the receptacle 32 as shown in
[0043] Once the terminal extractor 100 is in the engaged state shown in