US3707896A - Machine for working metals by impulses - Google Patents
Machine for working metals by impulses Download PDFInfo
- Publication number
- US3707896A US3707896A US00144911A US3707896DA US3707896A US 3707896 A US3707896 A US 3707896A US 00144911 A US00144911 A US 00144911A US 3707896D A US3707896D A US 3707896DA US 3707896 A US3707896 A US 3707896A
- Authority
- US
- United States
- Prior art keywords
- plunger
- impulse chamber
- chamber
- guide sleeve
- machine
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Expired - Lifetime
Links
Images
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23D—PLANING; SLOTTING; SHEARING; BROACHING; SAWING; FILING; SCRAPING; LIKE OPERATIONS FOR WORKING METAL BY REMOVING MATERIAL, NOT OTHERWISE PROVIDED FOR
- B23D15/00—Shearing machines or shearing devices cutting by blades which move parallel to themselves
- B23D15/12—Shearing machines or shearing devices cutting by blades which move parallel to themselves characterised by drives or gearings therefor
- B23D15/14—Shearing machines or shearing devices cutting by blades which move parallel to themselves characterised by drives or gearings therefor actuated by fluid or gas pressure
- B23D15/145—Shearing machines or shearing devices cutting by blades which move parallel to themselves characterised by drives or gearings therefor actuated by fluid or gas pressure actuated by explosion
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B30—PRESSES
- B30B—PRESSES IN GENERAL
- B30B1/00—Presses, using a press ram, characterised by the features of the drive therefor, pressure being transmitted directly, or through simple thrust or tension members only, to the press ram or platen
- B30B1/002—Presses, using a press ram, characterised by the features of the drive therefor, pressure being transmitted directly, or through simple thrust or tension members only, to the press ram or platen by internal combustion mechanism
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y10—TECHNICAL SUBJECTS COVERED BY FORMER USPC
- Y10T—TECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
- Y10T83/00—Cutting
- Y10T83/04—Processes
- Y10T83/0581—Cutting part way through from opposite sides of work
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y10—TECHNICAL SUBJECTS COVERED BY FORMER USPC
- Y10T—TECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
- Y10T83/00—Cutting
- Y10T83/869—Means to drive or to guide tool
- Y10T83/8821—With simple rectilinear reciprocating motion only
- Y10T83/8835—And means to move cooperating cutting member
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y10—TECHNICAL SUBJECTS COVERED BY FORMER USPC
- Y10T—TECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
- Y10T83/00—Cutting
- Y10T83/869—Means to drive or to guide tool
- Y10T83/8821—With simple rectilinear reciprocating motion only
- Y10T83/8858—Fluid pressure actuated
- Y10T83/8863—Explosive fluid
Definitions
- ABSTRACT Assigfleel Kharkovsky Aviatsionny 1115mm A machine incorporating two tools, one of which is W fastened on the plunger of an impulse chamber and [22] Filed: May 19 1971 the other fastened on an anvil connected through a rigid coupling with the impulse chamber forming a [21] Appl. No.: 144,911 common power block.
- the impulse chamber encloses a guide sleeve to accommodate the movable plunger and a cavity to be charged with an energy carrier.
- the [30] Foreign Apphcatlon Pnority Data impulse chamber is fitted with side channels in com- May 26, 1970 U.S.S.R.
- the present invention is best applicable for cutting ingots formed on continuous casting machines, for forging and stamping.
- horizontal impulse machines for cutting ingots comprising two movable blades, one of which is fastened on the plunger of an impulse chamber containing a guide sleeve in which the plunger is travelling, and a cavity in communication with the above sleeve at regular intervals, the above cavity being filled with an energy carrier to execute detonation, while another, the counter blade, is secured on an anvil connected through a rigid coupling with the impulse chamber to form a common power block so that upon detonation in the impulse chamber the blades advance towards the ingot (see U.S. Pat. No. 3,466,960.
- Another object of the present invention is to provide a machine for reducing wear on the rubbing surfaces of the plunger and the walls of the impulse chamber.
- Still another important object of the invention is to provide a machine ensuring a reduction in the noise level during the exhaust of the spent working substance of the energy carrier.
- a machine incorporating two movable tools, of which one is fastened on the plunger of an impulse chamber enclosing a guide sleeve to accom modate the travelling plunger, a cavity communicating at regular intervals with the above sleeve and being p'rimed with an energy carrier to execute detonation within the aforesaid cavity, while the other tool is secured on an anvil connected through a rigid coupling with the impulse chamber to form a common power block upon detonation in the impulse chamber both tools advance towards the metal stock to be processed, withthe impulse chamber fitted, according to the invention, with side channels communicating with the space beneath the plunger within the guide sleeve to form a common closed conduit located along the perimeter of the impulse chamber and filled with water fed via the said channels.
- an increase in the efficiency of usage of the energy contained in the working substance of the energy carrier may be attained due to the absence (within the space beneath the plunger) of the dead space which results in inefficient expansion of the working substance.
- leakage of the working substance through the clearance between the plunger and the walls of the impulse chamber guide sleeve is substantially decreased because the fluid, forced by the energy carrier working substance is likely to fill the said clearance keeping the above substance from leaking, due to an increased hydrodynamic flow resistance.
- the fluid which fills up the clearance tends to prevent the plunger from rubbing dry over the guide sleeve walls and to thus provide a decrease in the noise level in exhausting the spent working substance which may be attributed to the fluid evaporation.
- the common closed conduit tapering from the circumference to the center in a radial direction so that its expanded portion will approach in an axial direction the cavity primed with the energy carrier. This will contribute to almost complete displacement of the fluid from the closed conduit through the clearance between the plunger and the walls of the guide sleeve. As a result an adequate amount of the fluid will be admitted through the clearance to'cause the plunger to move through the working stroke.
- accumulations of the abrasion products as well as the hard products of the working substance may be localized in one and the same zone to keep them from being entrained into the detonation cavity and to contribute thereby to the most complete removal of these products by the fluid during the working stroke of the plunger.
- the machine under consideration comprises two- -blades 1 and 2, separated by ingot 3 to be cut, with blade 1 fastened on anvil 4 while the counter blade 2 is secured on plunger 5.
- Theplunger 5 is enclosed in guide sleeve 6 of impulse chamber 7 having cavity 8 to be charged with an energy carrier.
- the energy carrier use may be made of combustible mixtures of liquid or gas fuel and an oxidizer or compressed gases.
- Detonation cavity 8 communicates at regular intervals with guide sleeve 6 via hole 9 closedv by means of the valve type locking appliance 10. With the aid of tighteners impulse chamber 7 is rigidly coupled with anvil 4 forming a power block.
- Enclosed in guide sleeve 6 is space 12 beneath the plunger.
- the walls of impulse chamber 7 are fitted with side channels 13 in communication with space 12: so that a common closed conduit is formed along the perimeter of the impulse chamber.
- the conduit is filled with the fluid admitted via channels 13.
- the closed conduit is tapering from the circumference to the center in a radial direction with its expanding portion approaching in the axial direction cavity 8, as shown in the drawing.
- side channels 13 are equipped with non-return valves 14 communicating with a hydraulic system.
- the direction of the water feed is indicated in the drawing by arrow A.
- the fluid fed passes from the hydraulic system via non-return valves 14 and channels 13 into space 12 beneath the plunger, filling the closed conduit through the perimeter of chamber 7.
- the fluid is allowed to run off through the clearance between plunger 5 and the walls of guide sleeve 6 of impulse chamber 7 over the external walls of the chamber into a drainage system (not shown).
- Cavity 8 is charged with a combustible mixture burning, on ignition, at an increasing pressure which results in the opening of locking appliance 10.
- the working substance in the form of high-pressure combustion products penetrate under plunger 5 and as both guide sleeve 6 and space 12 are filled with the fluid there is no dead space contributing to inefficient gas expansion.
- plunger 5 together with lower blade 2 moves upward with a high speed.
- the gases tend to escape through the clearance between the plunger and the walls of guide sleeve 6.
- free outflow of the gases is possible only after they force out all the available fluid and the fluid typically has a low rate of discharge due to a relatively higher toughness and hydrodynamic flow resistance as compared with the gases.
- the cycle is then completed and a new one may be started with all the operations repeated in thesame sequence.
- a machine or working metals by impulses which comprises: an impulse chamber having a guide sleeve anda cavity charged with an energy carrier disposed within the chamber; a plunger enclosed in said guide sleeve; means for allowing thecavity'to communicate with the remaining portion of theichamberat regular intervalsyan anvil connected through a, rigid coupling with the said impulse chamber, forming a common power block; a plurality of tools of v which one is fastened on the plunger of the impulse chamber and the other on the said anvil; the said guide sleeve forming a space beneath the plunger; the said impulse chamber fitted with side channels in communication with the said space beneath the plunger and forming along the perimeter of the said impulse chamber a' common closed conduit filled with a fluid'fed via the said side channels; the said tools being advanced towards the metal to be processed upon detonation in the impulse chamber.
- a machine of claim 1 in which the side channels of the impulse chamber are equipped with non-return valves to keep both the fluid and the working substance of the energy carrier'from leaking from the space beneath the plunger.
Landscapes
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Chemical & Material Sciences (AREA)
- Combustion & Propulsion (AREA)
- Actuator (AREA)
- Shearing Machines (AREA)
- Forging (AREA)
Abstract
A machine incorporating two tools, one of which is fastened on the plunger of an impulse chamber and the other fastened on an anvil connected through a rigid coupling with the impulse chamber forming a common power block. The impulse chamber encloses a guide sleeve to accommodate the movable plunger and a cavity to be charged with an energy carrier. The impulse chamber is fitted with side channels in communication with the space in the guide sleeve beneath the plunger to form a common closed conduit, running along the perimeter of the impulse chamber and being filled with fluid.
Description
United States Patent 1 Kononenko et al. 1 Jan. 2, 197 3 [54] MACHINE FOR WORKING METALS [56] References Cited I SES BY MPUL UNITED STATES PATENTS [75] Inventors: Vadim Grigorievich Kononenko; 3 207 406 9/1965 B 83/623 X owman 2:33;; gzrm f imzzgzk :3 3/: gpzgnglelz Schekochikhin; Vlktor Alexeevich l o my me a' Stelmakh; Stanislav Anismovich Primary Examiner Frank Yost Mazichenko, all of Kharkov; Valen- Atwmey Ho1man & Stem tin Semenovich Kudryavtsev, Krasnoyarsk, all of U.S.S.R. 57 ABSTRACT Assigfleel Kharkovsky Aviatsionny 1115mm A machine incorporating two tools, one of which is W fastened on the plunger of an impulse chamber and [22] Filed: May 19 1971 the other fastened on an anvil connected through a rigid coupling with the impulse chamber forming a [21] Appl. No.: 144,911 common power block. The impulse chamber encloses a guide sleeve to accommodate the movable plunger and a cavity to be charged with an energy carrier. The [30] Foreign Apphcatlon Pnority Data impulse chamber is fitted with side channels in com- May 26, 1970 U.S.S.R. ..l4420l6 munication with the space in the guide sleeve beneath the plunger to form a common closed conduit, [52] US. Cl. ..83/639, 72/430, 83/51, running along the perimeter of the impulse chamber 33/623 and being filled with fluid. [51] Int. Cl. ..B26d 5/12 [58] Field of Search ..83/639, 5 1, 623, 600, 566; 3 Clam 1 Drawmg MACHINE FOR WORKING METALS BY IMPULSES The present invention relates to the facilities for metal forming and more particularly to vertical machines for working metals by impulses.
The present invention is best applicable for cutting ingots formed on continuous casting machines, for forging and stamping.
Known at present are horizontal impulse machines for cutting ingots, comprising two movable blades, one of which is fastened on the plunger of an impulse chamber containing a guide sleeve in which the plunger is travelling, and a cavity in communication with the above sleeve at regular intervals, the above cavity being filled with an energy carrier to execute detonation, while another, the counter blade, is secured on an anvil connected through a rigid coupling with the impulse chamber to form a common power block so that upon detonation in the impulse chamber the blades advance towards the ingot (see U.S. Pat. No. 3,466,960.
In the known machines between the plunger and the cavity for executing the explosion in the impulse chamberthere is a space beneath the plunger which is not utilized as a working volume when the working substance of the energy carrier is allowed to expand. The above space is undesirable and leads to inefficient loss of energy. In addition, a clearance in the guide sleeve, necessary for the free travel of the plunger results in a leakage of the working substance of the energy carrier.
Moreover, peculiar to the known machines is dry friction of the plunger on the walls of the guide sleeve, which is likely to cause wear on the rubbing surfaces.
It is an object of the present invention to provide a machine for processing metals by impulses, capable of increasing the efficiency of utilization of the energy accumulated in the energy carrier.
Another object of the present invention is to provide a machine for reducing wear on the rubbing surfaces of the plunger and the walls of the impulse chamber.
Still another important object of the invention is to provide a machine ensuring a reduction in the noise level during the exhaust of the spent working substance of the energy carrier.
These, as well as other objects, are achieved by the provision of a machine incorporating two movable tools, of which one is fastened on the plunger of an impulse chamber enclosing a guide sleeve to accom modate the travelling plunger, a cavity communicating at regular intervals with the above sleeve and being p'rimed with an energy carrier to execute detonation within the aforesaid cavity, while the other tool is secured on an anvil connected through a rigid coupling with the impulse chamber to form a common power block upon detonation in the impulse chamber both tools advance towards the metal stock to be processed, withthe impulse chamber fitted, according to the invention, with side channels communicating with the space beneath the plunger within the guide sleeve to form a common closed conduit located along the perimeter of the impulse chamber and filled with water fed via the said channels.
With the above construction principle an increase in the efficiency of usage of the energy contained in the working substance of the energy carrier may be attained due to the absence (within the space beneath the plunger) of the dead space which results in inefficient expansion of the working substance. In addition, leakage of the working substance through the clearance between the plunger and the walls of the impulse chamber guide sleeve is substantially decreased because the fluid, forced by the energy carrier working substance is likely to fill the said clearance keeping the above substance from leaking, due to an increased hydrodynamic flow resistance. Also, the fluid which fills up the clearance tends to prevent the plunger from rubbing dry over the guide sleeve walls and to thus provide a decrease in the noise level in exhausting the spent working substance which may be attributed to the fluid evaporation.
It is preferred to make the common closed conduit tapering from the circumference to the center in a radial direction so that its expanded portion will approach in an axial direction the cavity primed with the energy carrier. This will contribute to almost complete displacement of the fluid from the closed conduit through the clearance between the plunger and the walls of the guide sleeve. As a result an adequate amount of the fluid will be admitted through the clearance to'cause the plunger to move through the working stroke. With the above conceptual design accumulations of the abrasion products as well as the hard products of the working substance may be localized in one and the same zone to keep them from being entrained into the detonation cavity and to contribute thereby to the most complete removal of these products by the fluid during the working stroke of the plunger.
To prevent the fluid from being forced out'as well as to keep-the working substance from leaking via the side channels it is sound practice to equip these channels with non-retum valves.
The nature of the present invention will become more clear from a consideration. of the following description of an impulse machine for cutting ingots taken in conjunction with the accompanying drawing which is a fragmentary cut-away front view of the above machine.
The machine under consideration comprises two- -blades 1 and 2, separated by ingot 3 to be cut, with blade 1 fastened on anvil 4 while the counter blade 2 is secured on plunger 5. Theplunger 5 is enclosed in guide sleeve 6 of impulse chamber 7 having cavity 8 to be charged with an energy carrier. As for the energy carrier, use may be made of combustible mixtures of liquid or gas fuel and an oxidizer or compressed gases. Detonation cavity 8 communicates at regular intervals with guide sleeve 6 via hole 9 closedv by means of the valve type locking appliance 10. With the aid of tighteners impulse chamber 7 is rigidly coupled with anvil 4 forming a power block. Enclosed in guide sleeve 6 is space 12 beneath the plunger. The walls of impulse chamber 7 are fitted with side channels 13 in communication with space 12: so that a common closed conduit is formed along the perimeter of the impulse chamber. The conduit is filled with the fluid admitted via channels 13. The closed conduit is tapering from the circumference to the center in a radial direction with its expanding portion approaching in the axial direction cavity 8, as shown in the drawing.
To prevent both the fluid and the working substance of the energy carrier from leaking from space 12, side channels 13 are equipped with non-return valves 14 communicating with a hydraulic system. The direction of the water feed is indicated in the drawing by arrow A.
The machine functions as follows:
The fluid fed passes from the hydraulic system via non-return valves 14 and channels 13 into space 12 beneath the plunger, filling the closed conduit through the perimeter of chamber 7. The fluid is allowed to run off through the clearance between plunger 5 and the walls of guide sleeve 6 of impulse chamber 7 over the external walls of the chamber into a drainage system (not shown).
Cavity 8 is charged with a combustible mixture burning, on ignition, at an increasing pressure which results in the opening of locking appliance 10. The working substance in the form of high-pressure combustion products penetrate under plunger 5 and as both guide sleeve 6 and space 12 are filled with the fluid there is no dead space contributing to inefficient gas expansion. Under the influence of gas pressure, plunger 5 together with lower blade 2 moves upward with a high speed. As soon as plunger 5 starts travelling, the gases tend to escape through the clearance between the plunger and the walls of guide sleeve 6. However, free outflow of the gases is possible only after they force out all the available fluid and the fluid typically has a low rate of discharge due to a relatively higher toughness and hydrodynamic flow resistance as compared with the gases. An adequate amount of the fluid in space 12 beneath the plunger keeps the products of combustion from leaking through the working stroke of plunger 5. The plunger moves in guide sleeve 6 without dry friction as the fluid filling the clearance tends to assist in sliding over a thin film of the fluid. When plunger 5 with lower blade 2 moves upward (upstroke), impulse chamber 7 and anvil 5, connected to it through a rigid coupling, together with upper blade 1 move downward (downstroke) under the action of repercussion. The cutting of ingot 3 is executed by means of blades 1 and 2 hitting the ingot synchronously from .both sides with plunger 5 located in the extreme upper position with respect to sleeve 6. When the plunger occupies the above position, exhaust gases are discharged through the clearance with the remainder of the fluid being simultaneously forced out from sleeve 6 which is likely to decrease the exhaust noise level due to a reduction in the pressure of the gases whose temperature tends to decrease on account of heat consumption on heating and evaporation of the fluid. Next both plunger 5 and power block 4, 7, 11 return to their original position. During the downstroke of plunger 5 non-return valve 14 opens under the pressure of the fluid and the latter is admitted into sleeve 6. At the moment plunger 5 is in the extreme lower position, its speed decreases due to a hydrodynamic resistance of the fluid forced out through the clearance which provides for shock-free positioning of the plunger. The fluid flowing out from the working cylinder carries off both the products of abrasion and solid particles entrained by the exhaust gases.
The cycle is then completed and a new one may be started with all the operations repeated in thesame sequence.
What is claimed is: l. A machine or working metals by impulses which comprises: an impulse chamber having a guide sleeve anda cavity charged with an energy carrier disposed within the chamber; a plunger enclosed in said guide sleeve; means for allowing thecavity'to communicate with the remaining portion of theichamberat regular intervalsyan anvil connected through a, rigid coupling with the said impulse chamber, forming a common power block; a plurality of tools of v which one is fastened on the plunger of the impulse chamber and the other on the said anvil; the said guide sleeve forming a space beneath the plunger; the said impulse chamber fitted with side channels in communication with the said space beneath the plunger and forming along the perimeter of the said impulse chamber a' common closed conduit filled with a fluid'fed via the said side channels; the said tools being advanced towards the metal to be processed upon detonation in the impulse chamber.
2. A machine of claim 1,, in which the common closed conduit is tapering from the circumference to the center in a radial direction and its expanded portion approaches in the axial direction the cavity filled with the energy carrier.
3. A machine of claim 1, in which the side channels of the impulse chamber are equipped with non-return valves to keep both the fluid and the working substance of the energy carrier'from leaking from the space beneath the plunger.
Claims (3)
1. A machine for working metals by impulses which comprises: an impulse chamber having a guide sleeve and a cavity charged with an energy carrier disposed within the chamber; a plunger enclosed in said guide sleeve; means for allowing the cavity to communicate with the remaining portion of the chamber at regular intervals; an anvil connected through a rigid coupling with the said impulse chamber, forming a common power block; a plurality of tools of which one is fastened on the plunger of the impulse chamber and the other on the said anvil; the said guide sleeve forming a space beneath the plunger; the said impulse chamber fitted with side channels in communication with the said space beneath the plunger and forming along the perimeter of the said impulse chamber a common cloSed conduit filled with a fluid fed via the said side channels; the said tools being advanced towards the metal to be processed upon detonation in the impulse chamber.
2. A machine of claim 1, in which the common closed conduit is tapering from the circumference to the center in a radial direction and its expanded portion approaches in the axial direction the cavity filled with the energy carrier.
3. A machine of claim 1, in which the side channels of the impulse chamber are equipped with non-return valves to keep both the fluid and the working substance of the energy carrier from leaking from the space beneath the plunger.
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
SU1442016 | 1970-05-26 |
Publications (1)
Publication Number | Publication Date |
---|---|
US3707896A true US3707896A (en) | 1973-01-02 |
Family
ID=20453342
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
US00144911A Expired - Lifetime US3707896A (en) | 1970-05-26 | 1971-05-19 | Machine for working metals by impulses |
Country Status (6)
Country | Link |
---|---|
US (1) | US3707896A (en) |
AT (1) | AT313681B (en) |
DE (1) | DE2125458B2 (en) |
FR (1) | FR2093699A5 (en) |
GB (1) | GB1339944A (en) |
SE (1) | SE375926B (en) |
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US3895552A (en) * | 1972-06-26 | 1975-07-22 | France Etat | Explosive type severing device for cables, rods and the like |
US4030389A (en) * | 1975-04-30 | 1977-06-21 | Nikolai Borisovich Ponomarenko | Machine for high-speed plastic working of materials |
US4417493A (en) * | 1980-04-28 | 1983-11-29 | Nippon Kokan Kabushiki Kaisha | Method for cutting off steel plate |
US6401510B1 (en) * | 1999-04-07 | 2002-06-11 | 3M Innovative Properties Company | Method for stamping a part from a multi-layered strip |
Families Citing this family (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE102009037396B4 (en) | 2009-08-13 | 2012-08-16 | Wafios Ag | Pyrotechnically operated cutting device |
DE102016212242B4 (en) | 2016-07-05 | 2019-02-07 | Technische Universität Bergakademie Freiberg | Process for the production of phosphoric acid from phosphorus-containing primary and secondary raw materials |
Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US3207406A (en) * | 1963-01-15 | 1965-09-21 | Automated Building Components | Center closing press |
US3438129A (en) * | 1966-12-27 | 1969-04-15 | Etc Inc | Cutting tool |
US3466960A (en) * | 1967-02-28 | 1969-09-16 | Jury Alexandrovich Boborykin | Device for cutting moving ingots,preferably those obtained by the continuous casting method |
-
1971
- 1971-05-19 US US00144911A patent/US3707896A/en not_active Expired - Lifetime
- 1971-05-21 AT AT439571A patent/AT313681B/en active
- 1971-05-21 GB GB1629071A patent/GB1339944A/en not_active Expired
- 1971-05-22 DE DE19712125458 patent/DE2125458B2/en active Granted
- 1971-05-25 FR FR7118838A patent/FR2093699A5/fr not_active Expired
- 1971-05-25 SE SE7106760A patent/SE375926B/xx unknown
Patent Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US3207406A (en) * | 1963-01-15 | 1965-09-21 | Automated Building Components | Center closing press |
US3438129A (en) * | 1966-12-27 | 1969-04-15 | Etc Inc | Cutting tool |
US3466960A (en) * | 1967-02-28 | 1969-09-16 | Jury Alexandrovich Boborykin | Device for cutting moving ingots,preferably those obtained by the continuous casting method |
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US3895552A (en) * | 1972-06-26 | 1975-07-22 | France Etat | Explosive type severing device for cables, rods and the like |
US4030389A (en) * | 1975-04-30 | 1977-06-21 | Nikolai Borisovich Ponomarenko | Machine for high-speed plastic working of materials |
US4417493A (en) * | 1980-04-28 | 1983-11-29 | Nippon Kokan Kabushiki Kaisha | Method for cutting off steel plate |
US6401510B1 (en) * | 1999-04-07 | 2002-06-11 | 3M Innovative Properties Company | Method for stamping a part from a multi-layered strip |
Also Published As
Publication number | Publication date |
---|---|
DE2125458B2 (en) | 1973-03-22 |
SE375926B (en) | 1975-05-05 |
FR2093699A5 (en) | 1972-01-28 |
AT313681B (en) | 1974-02-25 |
DE2125458C3 (en) | 1973-10-11 |
GB1339944A (en) | 1973-12-05 |
DE2125458A1 (en) | 1972-01-20 |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
US3707896A (en) | Machine for working metals by impulses | |
US3990351A (en) | Pneumatic impact device | |
US3741072A (en) | Hydraulic fluid actuated percussion tool | |
ES195738U (en) | A disposition of useful motor of percussion. (Machine-translation by Google Translate, not legally binding) | |
SE8005481L (en) | SET AND DEVICE FOR PALAR RECOVERY | |
US2426409A (en) | Distributing valve for percussive tools | |
GB1218381A (en) | Improvements in or relating to injection assemblies for die casting machines | |
ES323293A1 (en) | A pneumatic engine. (Machine-translation by Google Translate, not legally binding) | |
GB1204487A (en) | Improvements in and relating to impulse-forming and like machines | |
GB1102614A (en) | Die-casting machine | |
GB1458481A (en) | Damping the movement of a hammer piston | |
GB1078913A (en) | High energy rate forming machine | |
US2177935A (en) | Stamp mill | |
US4104904A (en) | High-energy rate forging machine | |
GB1161904A (en) | Impact Ram. | |
GB1266418A (en) | ||
SU421504A1 (en) | MACHINE FOR SPLITTING WOOD P T In f-l ^^^ '^' Ji ^ i - ^^ - ^^ lVUiii.4 tisi; ^; ^ tJ st! " | |
SU659269A1 (en) | High-speed horizontal hammer with two-side impact | |
JPS56134116A (en) | Shearing machine | |
SU405254A1 (en) | Hydraulic drive of stamping hammer | |
SU631082A3 (en) | Device for percussion drilling with internal combustion engine | |
SU449148A2 (en) | Device for the destruction of rocks | |
RU2015322C1 (en) | Air-operated hammer with throttling aid distribution | |
SU277516A1 (en) | ||
GB1377444A (en) | Machine for casting under pressure |