Electrical Connection Device
The electrical connection device addresses the issue of maintaining secure contact pressure under vibrations by using latch portions on the male contact body and expanding member to fix the contact pressure, ensuring reliable connections and easy maintenance.
Patent Information
- Application Number
- JP2023551169
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2021-02-23
- Filing Date
- 2022-02-16
- Publication Date
- 2025-05-07
- Estimated Expiration
- 2042-02-16
AI Technical Summary
Existing electrical connection devices struggle to maintain secure contact pressure under disturbances such as vibrations, leading to unreliable connections.
The electrical connection device incorporates a male contact body with a first latch portion and an expanding member with a second latch portion, which engage to fix the expanding member at a tightening position, ensuring consistent contact pressure.
This solution provides a secure and consistent contact pressure, preventing issues like low contact pressure or damage to components due to improper expansion, and allows for easy reuse and replacement of parts.
Smart Images

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Abstract
Description
[Technical field]
[0001] The invention relates to an electrical connection device in the preamble of independent claim 1. More specifically, the electrical connection device is used for connecting a number of busbars to one another. [Background technology]
[0002] A typical electrical connection device includes a female contact and a male contact body, and the male contact body is configured to be insertable into the female contact along an insertion direction. The male contact body has a cavity penetrating the male contact body. The cavity is defined by an inner surface of the male contact body. The electrical connection device also includes an expansion member inserted into the cavity. The expansion member has a tapered cross section along a longitudinal axis in the locking direction. The expansion member moves along the locking direction from a release position to a fastening position, thereby expanding the male contact body, thereby enabling contact pressure to be generated between the female contact and the male contact body. In this case, the cavity penetrates the entire male contact body, so that two openings are formed in the male contact body. Summary of the Invention [Problem to be solved by the invention]
[0003] The electrical connecting device according to independent claim 1 is known from EP 2 141 719 A1. This electrical connecting device is a disconnector movable between two positions. The maintenance of the contact pressure between the male contact body and the female contact is achieved by a frictional connection between the male contact body, the female contact and the spreader member. In such an arrangement, the contact pressure and therefore the contact are not ensured under the effect of certain disturbances, such as vibrations of the electrical connecting device.
[0004] SUMMARY OF THE PRESENT EMBODIMENT An object of the present invention is to provide an improved electrical connection device of the general type which is more reliable in terms of contact pressure and resulting contact area. [Means for solving the problem]
[0005] The problem is solved by the characterizing feature of independent claim 1. Thus, in the electrical connecting device according to the preamble of independent claim 1, the solution according to the invention is such that the inside of the male contact body has a first latch part and the outside of the expanding member has a second latch part. When the expanding member reaches the clamping position, the first latch part latches with the second latch part, thereby fixing the expanding member in the clamping position.
[0006] The solution according to the invention has the advantage that the fuse is simple and cheap to manufacture. Also, in the electrical connection device according to the invention, the clamping position of the spreader element and the resulting contact pressure are predetermined by the latch of the first and second latch elements, so that the resulting contact pressure can be fixed by design. In addition, there is no risk that the user will not spread the male contact body sufficiently by moving the spreader element, resulting in a too low contact pressure, or that the user will insert the spreader element too far into the male contact body, resulting in damage to the male contact body and / or the female contact.
[0007] Preferred embodiments according to the invention are the subject matter of the dependent claims.
[0008] In a preferred embodiment of the present invention, a cavity is provided that tapers in the locking direction. The taper of the cavity is such that the gap between the inner surface of the male contact body and the outer surface of the spreader member when the spreader member is in the clamped position is 0.02 mm. Surface shape The male contact body is expanded to provide contact. Surface shape The contact portion provides an improved frictional connection which, in addition to the latching of the first and second latch portions, holds the contact body in the clamped position.
[0009] In another preferred embodiment of the present invention, the first latch part and / or the second latch part have a curved surface such that the latch between the first latch part and the second latch part can be released without destruction by applying a force to the spreading member in a direction opposite to the locking direction, thus allowing the connection to be reused and the parts attached on each side of the connection to be replaced.
[0010] Furthermore, the male contact body preferably has a slot at the axial end opposite to the locking direction, which allows the male contact body to be expanded in this region under the action of a relatively small force by the expansion member. This reduces the force required to cause the expansion of the male contact body required to generate the desired contact pressure. In addition, this allows the deformation of the male contact body to be contained within the elastic region, improving reusability.
[0011] It is particularly advantageous if the insertion direction and the locking direction are parallel and opposite to each other, which allows a simple and compact design of the electrical connecting device.
[0012] It is particularly advantageous if the female contact and the male contact body are formed so that they are coaxially aligned with each other when the male contact body is inserted into the female contact. Furthermore, the spreader member is preferably also formed so that it is coaxially aligned with the male contact body. This allows for a simple construction and a uniform distribution of forces.
[0013] According to another preferred embodiment of the invention, the cross-sectional area of the cavity and the cross-sectional area of the spreader member each have a circular shape, preferably a circular area, which on the one hand simplifies the alignment of the spreader member with respect to the cavity and on the other hand allows a better distribution of the contact pressure between the female contact and the male contact body, in addition the contact area between the spreader member and the inside of the male contact body, which creates the frictional connection, is maximized.
[0014] According to a further preferred embodiment, the outer contact surface of the male contact body has a number of contact-forming elevations. The contact-forming elevations are preferably formed as webs. The webs preferably extend in the locking direction along the outer side of the male contact body. The contact-forming elevations create a number of contact points between the male contact body and the female contact. This reduces the contact resistance. In addition, the contact-forming elevations increase the frictional resistance between the male contact body and the female contact.
[0015] In a further preferred embodiment of the present invention, the expanding member has a second latch portion as a circumferential protrusion on its outer side, and the male contact body has a circumferential groove on its inner side. No. 1 The latch portion has a projection and a groove that are formed to geometrically engage with each other. This allows the first latch portion and the second latch portion to be securely latched, and simplifies the structure of each component. In addition, the latch in the circumferential direction increases the safety of the expansion member against vibration or impact from each direction in the fastened position.
[0016] It is preferable that the circumferential projection and the circumferential groove are configured so that, under the action of a force acting on the expansion member in the locking direction or a force acting in the opposite direction, the surface of the circumferential projection can be slid away from the surface of the circumferential groove, thereby allowing the expansion member to advance and retreat relative to the fastening position without destruction.
[0017] In another preferred embodiment of the invention, the exterior of the male contact body includes a third latch portion and the interior of the female contact includes a fourth latch portion. When the spreader member reaches the clamped position, the third latch portion engages with the fourth latch portion, thereby causing a locking of the contact between the male contact body and the female contact. This additional locking further secures the contact between the male contact body and the female contact against vibration.
[0018] In a particularly preferred embodiment of the invention, the electrical connection device comprises a movement mechanism for moving the spreading member, which can be locked when the spreading member is in the clamping position, thereby allowing additional fixing of the spreading member in the clamping position and thus fixing the contact pressure.
[0019] The movement mechanism preferably comprises a lever rotatably mounted about a pivot axis relative to the male contact body, the first leg of the lever being mounted in a region of the spreader member which extends outside the cavity of the male contact body in the locking direction, in such a position that movement of the lever between the open and closed positions causes movement of the spreader member between the release and clamping positions. This embodiment of the movement mechanism is inexpensive to implement in terms of production.
[0020] Furthermore, the releasable locking of the lever preferably locks the lever in the closed position as soon as the lever reaches the closed position. Such a releasable locking of the lever can be implemented in a variety of ways in a safe, cost-effective and simple manner from a manufacturing standpoint.
[0021] The fixing part of the lever is preferably designed as a snap member in the form of a hook, so that when the lever is moved from the open position to the closed position, the hook catches on a second leg of the lever, which is opposite the first leg of the lever with respect to the pivot axis, thereby ensuring that the lever is fixed in the closed position.
[0022] In a particularly preferred embodiment of the invention, the electrical connection device has a housing. The housing preferably surrounds the male contact body at least in some areas. In this respect, the housing can perform various advantageous roles. For example, the housing can act as a protection against dirt that should be kept away from the electrical connection. In addition, the housing can act as a suspension for the components of the electrical connection device and provide an electrical insulating effect.
[0023] The housing preferably forms an assembly with the male contact body, so that the housing can be preassembled with the male contact body.
[0024] According to a further preferred embodiment, the housing is configured such that the female contact can be inserted between the male contact body and the housing part. Preferably, the housing part is designed as a sleeve and is further preferably aligned coaxially with the male contact body. When the male contact body is inserted into the female contact, the outside of the female contact preferably comes into contact with the inside of the housing part. This simplifies the alignment of the male contact body with the female contact and further protects the contact surface between the male contact body and the female contact from dirt. The housing part is preferably configured such that it stabilizes the female contact when the male contact body is expanded from the outside. This prevents plastic deformation of the female contact and supports the female contact with the housing part, which improves, for example, the reusability of the female contact.
[0025] In a preferred embodiment of the invention, the lever is attached to the housing, which allows for a compact design of the electrical connection device. The snap member is preferably formed as part of the housing, which allows for an even more compact construction.
[0026] According to another preferred embodiment, the additional housing forms an assembly with the female contact. The additional housing is configured such that the housing in assembly with the male contact body can be inserted between the additional housing and the female contact. The additional housing is preferably formed as a sleeve aligned coaxially with the female contact. When the male contact body is inserted into the female contact, the outside of the housing preferably contacts the inside of the additional housing. This further simplifies the alignment between the male contact body and the female contact and provides effective insulation and very effective protection against dirt. In addition, the contact surfaces of the male contact body and the female contact are well protected from human access, which increases the safety when using the electrical connection device.
[0027] According to another preferred embodiment, the female contact is seated on a first surface of the connection member. The axis of the female contact relative to the first surface includes an angle between 70° and 90°. The connection member includes a section arranged on the first surface. The intersection angle between the normal vector of the section and the normal vector of the first surface is between 70° and 90°. The section is surrounded by a layer of insulating material. This allows a space-saving and safe manufacture of the electrical connection device. The section with the insulating layer thereby protects the further component from sparks that may occur during the connection between the male contact body and the female contact.
[0028] The additional housing is preferably integrally formed from the same insulating material as the layer around the portion of the connecting member. More preferably, the first side of the connecting member is also surrounded by insulating material and the additional housing is integrally formed with the insulating material around the first side of the connecting member. More preferably, the additional housing is integrally formed with the insulating material around the first side and around the portion of the connecting member. This makes the additional housing particularly simple to manufacture and reduces the number of manufacturing steps required. [Brief description of the drawings]
[0029] [Figure 1] FIG. 1 is a perspective view of one embodiment of the present invention. [Diagram 2] FIG. 13 is a cross-sectional view showing the embodiment without the female contact. [Diagram 3] FIG. 2 is a cross-sectional view showing the embodiment without the housing. [Figure 4] FIG. 2 is an exploded view of the assembly of the embodiment including the male contact body, the lever, the spreader member, and the first and second housing parts. [Diagram 5] 5a, 5b and 5c are perspective views of the embodiment including an additional housing around the female contact at various process steps that close the connection between the female contact and the male contact body. [Figure 6] FIG. 2 is a cross-sectional view of the embodiment including the additional housing. DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0030] Hereinafter, embodiments of the present invention will be described in more detail with reference to the drawings.
[0031] In the following description, identical components are designated by the same reference numerals. If a figure includes a reference numeral that is not described in detail in relation to that figure, it is described in the preceding or following figure.
[0032] 1 to 4 show an example of an embodiment of the present invention. Here, FIG. 1 shows a perspective view of an example of an embodiment of an electrical connecting device 1 seen obliquely from above. FIG. 2 shows a cross-sectional view of the electrical connecting device 1 without the female contact 3. Also, FIG. 3 shows a cross-sectional view of the electrical connecting device 1 with the housing 5 and lever 6 omitted. Finally, FIG. 4 shows an exploded view of an assembly including the male contact body 2, the lever 6, the expanding member 4, and the housing 5. The housing 5 has a first housing part 11 and a second housing part 12.
[0033] An example embodiment of the electrical connection device 1 comprises a male contact body 2 and a female contact 3. Between the male contact body 2 and the female contact 3, an electrical contact is generated by the electrical connection device with a certain contact pressure. For this purpose, the male contact body 2 is guided into the female contact 3 in an insertion direction 15. The female contact 3 is therefore designed as a sleeve. A conical cavity extends through the male contact body 2. In other example embodiments, the cavity can be, for example, cylindrical, cubic or pyramidal. In this cavity, there is a likewise conical spreading member 4, which can be moved from the release position to the clamped position by a movement in the locking direction 14. In other embodiments, the spreading member 4 can also have a shape other than conical. However, the spreading member 4 must have a cross-sectional shape that tapers in the locking direction 14. The movement of the expansion element 4 from the release position to the clamped position in the locking direction 14 causes an expansion of the area of the male contact body 2 and a contact pressure between the male contact body 2 and the female contact 3. In this case, the male contact body 2 has a number of ridges 19 on its outer surface, which reduce the contact resistance between the male contact body 2 and the female contact 3. It should be noted that in Figures 1 to 4 the expansion member 4 is shown in the clamped position and the male contact body 2 inserted into the female contact 3, respectively. The arrows representing the directions of movement of the various components therefore only represent the general directions of such movement.
[0034] In the area of the male contact body 2 which is expanded by the movement of the expanding member 4, the male contact body 2 is thus formed with a number of slits 18, so that softer fingers (gripping parts) 13 are formed and the expanding part is elastically deformed. In this area of the male contact body 2, a first latch part 9 in the form of a circumferential groove 9 is also provided, which is formed in the circumferential direction on the inside of the male contact body 2 surrounding the conical cavity. On the outside of the expanding member, there is a second latch part 10, which is formed as a protrusion in the form of a bead 10, the shape of which allows a geometric engagement with the circumferential groove 9. As soon as the expanding member is guided into the clamping position, the bead 10 engages with the circumferential groove 9, so that the first latch part 9 and the second latch part 10 fix the expanding member in the clamping position. This allows the clamping position of the expanding member 4 and, as a result, the contact pressure between the male contact body 2 and the female contact 3 to be fixed. This also allows the specification of the contact pressure, since the latching of the second latch part 10 to the first latch part 9 informs the user that the spreader member 4 has reached the desired final position. On the other hand, the shape of the bead 10 in combination with the shape of the circumferential groove 9 allows a non-destructive latching of the second latch part 10 to the first latch part 9, since the two curved parts can slide against each other. Furthermore, the engagement of the second latch part 10 to the first latch part 9 can also be released non-destructively when a sufficient force is applied to the spreader member 4 in the direction opposite to the locking direction 14.
[0035] The movement of the spreading member 4 towards and against the locking direction 14 is effected via a lever 6 as part of the movement mechanism of the spreading member 4. The lever 6 is rotatably supported relative to the male contact body 2 via a suspension 7. A first leg of the lever 6 engages with a recess 16 of the spreading member 4 formed in the part of the spreading member 4 that protrudes from the male contact body 2 in the locking direction 14. The lever 6 is movable between an open position and a closed position, and moves the spreading member 4 between a release position and a clamping position. In this regard, the lever has an opening. When the lever 6 reaches the closed position, a hook 8 attached to the male contact body 2 is snapped into place via the opening. This locks the lever 6 in the closed position and prevents the spreading member 4 from moving away from the clamping position. This further fixes the spreading member 4 in the clamping position and therefore further fixes the contact pressure between the male contact body 2 and the female contact 3. Therefore, the hook 8 is formed so that it can be manually disengaged from the lever 6 when the lever 6 is moved from the closed position to the open position.
[0036] In the illustrated embodiment, the housing 5 surrounds the male contact body 2 in a certain area, so that the housing 5 forms an assembly with the male contact body 2, the lever 6, and the spreader member 4. In this case, the housing 5 has a first housing part 11 and a second housing part 12.
[0037] The first housing part 11 forms the suspension 7 and the hook 8. In addition, the first housing part 11 forms a cap 17 which encloses the area of the spreading member 4 which extends from the male contact body 2 in the locking direction 14. The cap 17 has an opening in the direction of the lever 6 so that the lever 6 can engage in a recess 16 of the spreading member. The cap 17 therefore serves as a dust protection and as a protection against the influence of forces on the spreading member 4 (not caused by the movement of the lever 6) directed in the direction opposite to the locking direction 14.
[0038] The second housing part 12 surrounds the male contact body 2 at a certain distance in the area guided by the female contact 3. The second housing part is therefore mainly formed as a sleeve. This distance is selected so that the female contact body can be inserted between the second housing part 12 and the male contact body 2. This facilitates the positioning of the male contact body 2 on the female contact 3 and provides an effective dust protection of the two contacts. The second housing part 12 is designed in such a way that during spreading of the male contact body 2, the female contact is stabilized from the outside by the movement of the spreading member 4 into the clamping position, so that deformation of the female contact 3 is counteracted.
[0039] Since the housing 5 is made up of two parts (portions), the assembly of the housing 5 is simplified, and the assembly of the housing 5, the lever 6 and the spreader member as a whole is also simplified. In addition, the two housing parts 11, 12 can be made of different materials in order to further adapt the properties of the two housing parts 11, 12 to their respective intended uses.
[0040] 5a, 5b and 5c show a method of assembling an embodiment of the electrical connection device, in which the female contact 3 is attached to a stepped connection element 20. The female contact 3 is thereby seated on the underside of the stepped connection element 20, which can also be manufactured integrally therewith. The stepped connection element 20 is surrounded by an insulating material 21 in the area of its underside and in a section located thereon. An additional housing 22 is formed around the female contact 3 from the insulating material.
[0041] Here, between the additional housing 22 and the female contact 3, there is a space into which the housing 5, which is assembled with the male contact body 2, can be inserted when the male contact body 2 is inserted into the female contact 3. Here, the additional housing 22, the housing 5, the female contact 3 and the spreading member 4 are positioned coaxially with each other. In order to spread the male contact body 2 in the female contact, the lever 6 moves from the open position of FIG. 5b to the closed position of FIG. 5c. This allows the spreading member 4 to move in the locking direction 14 into the male contact body 2, spreading the male contact body 2. In FIG. 5c, it can be seen that the hook 8 snaps onto the lever 6, fixing the lever 6 in the closed position. The arrangement of the male contact body 2 relative to the female contact 3 and the closing operation of the contact by moving the lever 6 into the closed position are very simple due to this design, require only a few work steps and can be easily automated by a robot.
[0042] Fig. 6 is a cross-sectional view of the electrical connection device 1 in the arrangement of Fig. 5c. Due to the arrangement of the male contact body 2 and the female contact 3 in the housing 5 and the additional housing 22, the electrical connection between the male contact body 2 and the female contact 3 is very well insulated and also well protected from dirt. [Explanation of symbols]
[0043] 1 Electrical connection device 2 Male contact body 3 Female contact 4 Expansion member 5. Cabinet 6 Lever 7. Suspension 8. Hooks 9 First latch part / groove 10 Second latch part / bead 11 First housing part 12 Second housing part 13 Finger 14 Locking Direction 15 Insertion direction 16 Recess 17 Cap 18 Slots 19 Bridge 20 Step-shaped connecting member 21 Insulating materials 22 Additional Cases
Claims
1. An electrical connection device having a female contact and a male contact body, The male contact body is insertable into the female contact along an insertion direction; The male contact body has a cavity extending therethrough; The cavity is defined by an inner surface of the male contact body; The electrical connection device further comprises an expansion member inserted into the cavity, the expansion member having a cross section tapered along a longitudinal axis in a locking direction; When the expanding member moves from the release position to the fastening position along the locking direction, the male contact body expands, thereby generating contact pressure between the female contact and the male contact body; The electrical connection device has a housing surrounding the male contact body at least in a plurality of regions, The housing forms an assembly with the male contact body. This is based on the premise that an additional housing forms an assembly with the female contact; The additional housing is configured so that the housing forming the assembly with the male contact body is inserted between the additional housing and the female contact.
1. An electrical connection device comprising:
2. 2. The electrical connection device according to claim 1, The housing is configured so that the female contact can be inserted between the male contact body and a housing part, The housing part externally stabilizes the female contact while the male contact body is expanding.
1. An electrical connection device comprising:
3. 3. The electrical connecting device according to claim 1, The inside of the male contact body has a first latch portion, The outer side of the expansion member has a second latch portion, When the spreading member reaches the fastening position, the first latch portion latches with the second latch portion, thereby fixing the spreading member at the fastening position.
1. An electrical connection device comprising:
4. 4. The electrical connection device according to claim 3, The cavity tapers toward the locking direction, so that when the expansion member is in the fastening position, the male contact body expands to form a planar contact portion between the inner side of the male contact body and the outer surface of the expansion member.
1. An electrical connection device comprising:
5. 5. The electrical connecting device according to claim 3, The first latch portion and / or the second latch portion has a curved surface portion that enables the latch between the first latch portion and the second latch portion to be released without destruction by applying a force to the spreading member in a direction opposite to the locking direction.
1. An electrical connection device comprising:
6. In the electrical connecting device according to any one of claims 3 to 5, The male contact body has a slot at an axial end opposite the locking direction, Under the action of a force by the spreading member, the male contact body is spreadable in the area where the slot is present.
1. An electrical connection device comprising:
7. In the electrical connecting device according to any one of claims 3 to 6, The cross-sectional area of the cavity and the cross-sectional area of the expansion member each have a circular shape.
1. An electrical connection device comprising:
8. In the electrical connecting device according to any one of claims 3 to 7, the expanding member has the second latch portion as a circumferential protrusion on the outer side of the expanding member, and the male contact body has the first latch portion as a circumferential groove on the inner side of the male contact body; The circumferential projection and the circumferential groove are configured to engage with each other.
1. An electrical connection device comprising:
9. 9. The electrical connection device according to claim 8, The circumferential projection and the circumferential groove are configured such that, under the action of a force acting on the expansion member in the locking direction or a force acting in a direction opposite to the locking direction, the surface of the circumferential projection is slid away from the surface of the circumferential groove, so that the expansion member can advance and retreat to the fastening position without being destroyed.
1. An electrical connection device comprising:
10. In the electrical connecting device according to any one of claims 3 to 9, The electrical connection device includes a moving mechanism that moves the expanding member, When the spreading member is in the clamping position, the moving mechanism is lockable.
1. An electrical connection device comprising:
11. 11. The electrical connection device according to claim 10, The moving mechanism has a lever that is rotatable about a pivot axis relative to the male contact body, a first leg of the lever is attached to a region of the spreader member that extends outside the cavity of the male contact body in the locking orientation; Movement of the lever between an open position and a closed position causes the spreader member to move between the released position and the clamped position.
1. An electrical connection device comprising:
12. 12. The electrical connection device according to claim 11, The lever is provided on the housing.
1. An electrical connection device comprising:
13. 13. The electrical connecting device according to claim 11 or 12, As soon as the lever reaches the closed position, a releasable lock on the lever locks the lever in the closed position.
1. An electrical connection device comprising:
14. 14. The electrical connection device according to claim 13, the fastening part of the lever is designed as a snap member in the form of a hook, When the lever moves from the open position to the closed position, the hook engages with a second leg of the lever that is opposite the first leg of the lever relative to the pivot axis.
1. An electrical connection device comprising:
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