Electric blasting device using aluminum foil
Granted 19 Mar 2002 · 2 office actions
Assignee: KOREA ELECTROTECHNOLOGY RESEARCH INSTITUTE
Law firm: Law firm · Log in to unlock
Attorney: Attorney · Log in to unlock
Inventors: Geun-Hie Rim, Chu-Hyun Cho · Examiner: Peter A. Nelson · AU 3641 · TC 3600
Life of the application
9 dated eventsAbstract
The present invention relates to an electric blasting device using aluminum foil, the objective of which lies in providing an economical and safe electric blasting device. In line with this objective; a portion of the outer conductor of the cable is removed, and the aluminum foil is inserted therein in order to electrically connect the inner and outer conductors. Between the aluminum foil and the inner conductor, water, an insulator, and a teflon tube are inserted. When pulse high-current is made to flow, the aluminum foil changes into the condition of plasma. The aluminum therefrom and water react to generate explosive power. The invention is economical in that it uses commercialized aluminum foil, in addition to having a short scattering distance of the fragments. It also allows a low-vibration blasting due to the short reaction time therein.
Description
5 parts›TECHNICAL FIELD
The present invention relates to an electric blasting device, or more specifically to an electric blasting device using aluminum foil.
›BACKGROUND ART
An electric blasting device has many advantages over the conventional blasting device, e.g., explosives or dynamites, in that it generates less vibration and noise with almost no spattering fragments. The conventional electric blasting devices of the past utilize customized aluminum wires or use a kneaded mixture of aluminum powder and water as explosives in order to cause chemical reactions therein. However, this sort of methods are problematic for the following reasons: (a) they must use customized aluminum wires or powder, which are difficult to find in the marketplace; (b) the reaction time is extended therein; and (c) the issue of safety arises due to the far-scattering fragments from blasting a bedrock.
›SUMMARY OF THE INVENTION
In line with solving the aforementioned problems, the objective of the present invention lies in providing an economical and safe electric blasting device and an aluminum foil installation structure by means of using aluminum foil which is easily accessible in the marketplace, Instead of using hard-to-obtain aluminum powder or wires.
The present invention relates to an electric blasting device using aluminum foil, the objective of which lies in providing an economical and safe electric blasting device. In line with this objective, a portion of the outer conductor of the cable is removed, and the aluminum foil is inserted therein in order to electrically connect the inner and outer conductors. Between the aluminum foil and the inner conductor, water, an insulator, and a teflon tube are inserted. When pulse high-current is made to flow, the aluminum foil changes into the condition of plasmas and the aluminum therefrom and water react to generate explosive power.
›BRIEF DESCRIPTION OF THE DRAWINGS
FIG. 1 is an outlined drawing of the electric blasting device using aluminum foil under the present invention.
FIG. 2 is a cross-sectional drawing of the coaxial cable used in the electric blasting device using aluminum foil under the present invention.
FIG. 3 is an outlined drawing of the cable terminal under the present invention.
›DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
The composition and the functions of the present invention, with references to attached drawings, are explained in detail as below. FIG. 1 is an outline drawing of the electric blasting device using aluminum foil under the present invention. As illustrated in FIG. 1, the electric blasting device of the present invention comprises a coaxial cable or the similar structure thereof ( 1 ), a cable terminal ( 2 ) for connecting said coaxial cable to the aluminum foil, a foil holder ( 3 ) for holding the aluminum foil ( 4 ) in a fixed position to said cable terminal ( 2 ), and aluminum foil ( 4 ) for generating explosive power by causing chemical reactions with water.
As shown in FIG. 2, the coaxial cable or the similar structure thereof ( 1 ) comprises, from the center to the outside, an inner conductor ( 8 ), an insulator ( 7 ), an outer conductor ( 9 ), and an outer covering ( 10 ). The outer conductor ( 9 ) of the coaxial cable ( 1 ) is removed to the extent necessary, and a teflon tube ( 6 ) is inserted to prevent damage to the insulator ( 7 ). However, in some cases, a teflon tube ( 6 ) may not be necessary. The aluminum foil ( 4 ) which generates explosive power is made to cover the terminal ( 2 ) which is attached to the inner and outer conductors of the coaxial cable ( 1 ). With the attachment of the aluminum foil ( 4 ) to the cable terminal ( 2 ) in this manner, the outer conductor ( 9 ) of the coaxial cable ( 1 ) is electrically connected to the inner conductor ( 8 ) thereof. Between the teflon tube ( 6 ) and the aluminum foil ( 4 ), a small space is provided to be filled with water. Small holes are made in the aluminum foil for filling the interior with water.
Having such structure as above, the electric blasting device of the present invention is made to operate with the following principles: When a high-current pulse flows through the aluminum foil ( 4 ), heat is generated by resistance of the aluminum foil ( 4 ), causing a further increase in resistance of the aluminum foil ( 4 ). Consequently, more heat is generated, increasing in a non-linear manner, and most of the energy stored in the capacitor is consumed by the aluminum foil ( 4 ). Since most of the energy is consumed in such an intensified manner, the aluminum foil becomes evaporated, in effect, turning into plasma. Expansion force is primarily generated by volume expansion of the aluminum, and the secondary chemical energy is emitted by reaction of aluminum plasma with oxygen in water. Consequently, the pressure is further increased, and the explosive power is so generated.
Here, the optimal cross-sectional area and the length of the aluminum foil can be calculated from the following Mathematical Formulas 1 and 2. If the formulas are satisfied, the point of energy consumption by aluminum foil ( 4 ) is at the current. All of the energy consumed is minimized, thereby generating more power.
Mathematical Formula 1
Mathematical Formula 2
Here, A is the cross-sectional area. l is length. E is the energy stored by a capacitor at voltage V. L s is a circuit inductance. L L is a load inductance. P m is density. ζ is evaporation energy. K v is a constant. For the material constants with respect to aluminum, P m is 10.5×10 3 kg/m 3 , K v is 2.2×10 16 [MKS], and ζ is 10.8×10 6 J/kg.
FIG. 2 is a cross-sectional drawing of the coaxial cable ( 1 ) used in the electric blasting device utilizing aluminum foil of the present invention. There, the coaxial cable ( 1 ) comprises an inner conductor ( 8 ), an outer conductor ( 9 ), an insulator ( 7 ) inserted between the two conductors, and a protective outer covering or stainless steel pipe protective structure ( 10 ).
FIG. 3 is an outline drawing of the cable terminal ( 2 ) used in the present invention. The cable terminal ( 2 ) comprises a female screw ( 11 ), a contact ring ( 12 ), and a male screw ( 13 ). When screws ( 11 ) and ( 13 ) are screwed into place, the contact ring ( 12 ) is compressed and tightened firmly against the cable ( 1 ). As such, an electric contact is made while enabling terminal ( 2 ) to withstand the mechanical force therein. The advantages of the present structure lie in achieving coaxiality which reduces unnecessary inductance and in effectively withstanding the magnetic force generated by pulse high-current.
As compared to the conventional explosives and dynamites used in the construction sites, i.e., for blasting bedrock and buildings, and dismantling concrete structures, a blasting device utilizing a very economical and safe aluminum foil by means of the present invention can be used as a replacement therein.
Further, as compared to the conventional electric blasting devices utilizing aluminum wires or powder, the present invention is highly economical in that it uses an ordinary commercialized aluminum foil, allows low-vibration blasting due to the short reaction time, and enhances safety due to the short scattering distance at the time of blasting.
Further, with easy installation, the present invention by using a coaxial cable structure can minimize the inductance of the transmission line, and is highly effective due to its symmetrical structure.
›Tables in the description — 2
| A | 2 | ||||||||||||||||||||
| = | |||||||||||||||||||||
| E | 3 | / | 2 | VL | S | 1 | / | 2 | | K | v | ||||||||||
| Mathematical | | ||||||||||||||||||||
| | Formula | | |||||||||||||||||||
| | 1 |
| l | = | |||||||||||||||||||||||||||||||
| EL | L | ρ | m | | A | | | ζ | | ( | L | S | + | L | l | ) | ||||||||||||||||
| Mathematical | | |||||||||||||||||||||||||||||||
| | Formula | | ||||||||||||||||||||||||||||||
| | 2 |
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