The invention involves a clamping device to effect conductive connection, and the clamping device is high conductivity energy-saving one using conductive material to directly contact an external conductor.
Nowadays, it is common to use the clamp structure in
Defects of known clamps in their manufacture and use:
1. Environmental pollution: known clamps use tooth-like conductive parts to connect cables and external conductors. To be economical and artistic, the tooth-like parts are generally made of iron and reprocessed with copper coating and galvanization. Therefore, the environment is seriously polluted during the manufacture.
2. Increased raw material loss: the production of the known clamps, not only requires wire casing and metal wires, but also needs conductive material to produce the tooth-like conductive parts.
3. Poor electric conduction: using tooth-like parts to connect the external conductor, known clamps only have the tooth surface to establish connection, so this small contact area leads to poor electric conduction.
4. Complicated manufacture procedures: to produce known clamps, metal wires need to be connected with the tooth-like conductive parts. Moreover, the tooth-like parts ought to be made independently and then assembled into the whole clamping device. The manufacture procedures are loaded down with trivial details.
The invention is to provide a high conductivity energy-saving clamping device by increasing its contact area with the external conductor to improve the conductivity.
To realize the purpose, the invention provides a clamping device, which comprises a clamp and a cable fixed upon the clamp. The invention has the following characteristics:
Conductive material inside the said cable protrudes and is set on the juncture of the clamp and the external conductor.
When the clamp connects the external conductor, the conductive material meets and contacts the conductor.
Inside the clamping device, the conductive material is plainly set on one part of the juncture of the clamp and the external conductor to form a conductive surface which contacts and meets the external conductor directly.
In the clamping device, conductive materials protruding from the cable is divided into two parts, and are set respectively on two parts of the juncture of the clamp and the external conductor. Two conductive surfaces are thus formed to directly contact and meet the external conductors respectively.
The conductive surface is covered by a metallic member. When the clamping device connects the external conductor, the metallic member directly contacts and grips the conductor. A contact region of the metallic member extends outside the juncture of the clamp. When the clamp connects the external conductor, the metallic member directly contacts the external conductor.
The clamping device includes an insulation plate set inside the juncture of the clamp. Conductive material is plainly laid on the plate.
The conductive material extends vertically from one part of the juncture of the clamp and the external conductor, forming cluster-like conductive material which directly contacts and grips the external conductor.
Conductive material from the cable is divided into two parts, extending vertically from two parts of the juncture of the clamp and the external conductor respectively. Two cluster-like conductive materials are thus formed to directly contact and meet the external conductor respectively.
The energy-saving clamping device includes an insulation plate set inside the juncture.
There are through holes in the insulation plate.
The conductive material goes through the through holes.
Conductive material from the cable is divided into two parts. One is plainly set on one part of the juncture of the clamp and the external conductor to form a conductive surface. The other vertically extends from another part of the juncture to form cluster-like conductive material.
The invention is superior to the known technology with the following advantages:
1. Saving material: the invention does not adopt the extensively used tooth-like conductive parts of known technology, so manufacture process is simplified and raw material & resources saved and cost economized. This is a contribution to the intensive enterprises and economy.
2. High conductivity: the invention employs conductive material to directly connect the external conductor so as to effectively increase the contact area. Therefore, its performance of conductivity is 10% to 15% higher than that of the clamp with the known technology.
3. Environmental protection: the invention does not adopt the tooth-like conductive parts of known technology which are widely used nowadays. So electroplating process is avoided as it is only used for producing the tooth-like parts. This greatly decreases environmental pollution and conforms to the environmental philosophy of emission reduction and low carbon green economy.
4. Various product forms: the invention can be applied to various products with different forms, which will enhance the recognition of the invention indirectly. The invention can be used in all sorts of electric circuit connection via clamps with a wide application range.
The following expatiates upon the preferred application examples of this invention with the figures.
A high conductivity energy-saving clamping device comprises a clamp 1, a cable 4 fixed upon clamp 1 and an insulation plate 6 set inside a juncture at the mouth of clamp 1. Conductive material 5 in the cable 4 extends and is set on the juncture where clamp 1 connects the external conductor. When clamp 1 connects the external conductor, conductive material 5 directly contacts and grips the external conductor.
As shown in
To better effect the Embodiment 1, we can place metallic members (not shown in the figures) to cover conductive surface 51 such that the members (usually copper pieces) are in direct contact with the external conductor, such as a wiring terminal, to effect the electric conduction. The use of metallic members can reduce the abrasion of conductive material, avoiding disconnection of the conductive material due to excessive force.
The metallic members in this embodiment may comprise a contact region (not shown in the figures) which extends outside the juncture at the mouth of the clamping device. The contact region of the metallic members contacts and grips the external conductor directly.
As shown in
According to different forms of the external conductor, as shown in
As shown in
According to the different forms of external conductor required by the clamp, as shown in
From the above mentioned embodiments, the invention has the following advantages:
1. Material saving: this invention does not employ the extensively used tooth-like conductive parts of known technology, so manufacture process is simplified and raw material & resources saved and cost economized. It is a contribution to intensive enterprises and economy.
2. High conductivity: the invention employs conductive materials to directly connect the external conductor so as to effectively increase the contact area. Therefore, its conductivity performance is 10% to 15% higher than that of the clamp with known technology adopting the tooth-like conductive parts to connect the cable with the external conductor.
3. Environmental protection: the invention does not adopt the tooth-like conductive parts of known technology which are widely used nowadays. So electroplating process is avoided as it is only used for producing the tooth-like parts. This greatly decreases environmental pollution and conforms to the environmental philosophy of emission reduction and low carbon green economy.
4. Various product forms: the invention can be applied to various products with different forms, which will enhance the recognition of the invention indirectly. The invention can be used in all sorts of electric circuit connection via clamps with a wide application range.
Although the invention is given detailed introduction from the above optimum selecting implement examples, the above description shall not be taken as limitations to the invention. Obviously a skilled person in this field can make a variety of modifications and substitutions to it after reading the above content. Therefore, the protection range of this invention shall be defined by the attached patent claims.
Number | Date | Country | Kind |
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201010139105.7 | Apr 2010 | CN | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/CN10/01016 | 7/9/2010 | WO | 00 | 4/26/2011 |