DEVICE FOR ROLLING MOTION BY ENERGY FROM FUEL-OIL COMBUSTION
20210381424 · 2021-12-09
Inventors
Cpc classification
F02F1/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M69/045
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02F1/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02B53/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01N13/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01M11/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02B53/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01C9/005
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y02T10/12
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
F02D41/0025
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02D37/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02B53/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02B55/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01C21/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M25/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F02B53/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01M11/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01N13/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02B53/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02B55/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02F1/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02F1/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A device wherein rolling motion is obtained by energy obtained as a result of combustion of solid, liquid or gas fuel oil. The device has an elliptic disc installed onto a symmetric ball on a ball shaft in a body. A fuel oil injector inlet channel and ignition bobbin inlet channels are provided in the body. A rolling wall is installed onto the body and an exhaust outlet pipe. The rolling wall separates a symmetric body chamber into a suction chamber and combustion chamber. In one cycle rolling of elliptic disk, fuel-oil taken into the suction chamber is transferred to combustion chamber. Fuel oil taking and fuel-oil compressing and explosion thereof by ignition is conducted simultaneously and continuously and not interrupted.
Claims
1. A device wherein rolling motion is obtained by energy generated as a result of combustion of solid, liquid or gas fuel oil comprising: an elliptic disc installed between a symmetric ball comprising two symmetric parts on a ball shaft extending into a body comprising symmetric two parts, a fuel oil injector inlet channel and ignition bobbin inlet channels in the body; wherein a fuel oil injector is placed to the fuel oil injector inlet channel and ignition bobbins are placed in the ignition bobbin inlet channels; an exhaust output pipe inserted into an exhaust output channel inside the body; a rolling wall inserted into a rolling wall inlet channel on the body; wherein the rolling wall separates a symmetric body chamber it enters into equal volume suction chamber and combustion chamber; elliptic disk forced to do rolling motion by fuel-oil sprayed into the suction chamber; the elliptic disk contacting the rolling wall and making rolling/cyclic motion at horizontal position not circular rotation, as a result of one cycle rolling of the elliptic disk, suction chamber fuel-oil taken into suction chamber is transferred to the combustion chamber; explosion is achieved as a result of heat of fuel-oil compressed by the elliptic disk in the combustion chamber and start of ignition from the bobbin; discharge of exhaust gas from explosion to an external environment via an exhaust gas pipe; fuel oil inlet into the combustion chamber where process is performed is prevented in stage of fuel-oil compression and burning in the combustion chamber; with the pressure created by explosion in the combustion chamber, elliptic disk touches a concave wall of the rolling wall and upon progressing, fuel-oil entering the suction chamber is transferred back to the combustion chamber; fuel oil taking and fuel-oil compressing and explosion thereof by ignition is conducted simultaneously and continuously and not interrupted; rolling/oscillation of the symmetric ball and shaft (2.1) where to symmetric ball is connected upon rolling of the elliptic disk by pressure created in combustion chamber by explosion upon contact to the concave wall; shaft (2.1) making oscillation/rolling gain motion capability/motion energy; shaft (2.1) motions are transferred to apparatus by means of a spindle, pipe and similar apparatus to be connected to the shaft (2.1) when required; characterized in comprising a body, ball shaft, fuel oil injector, ignition bobbins, exhaust output pipe and rolling wall.
2. The device of claim 1, wherein the body comprises two separate parts, namely, a left body and a right body.
3. The device of claim 1, comprising a rolling wall inlet channel insulation housing on the body and a rolling wall inlet channel having a rolling wall seating surface, fuel oil injector inlet channel, ignition bobbin inlet channels, exhaust outlet channel, body chamber, shaft inlet channel, body connection holes, cooler-heater channels, lubrication channels and cooling wings on outer surface sides.
4. The device of claim 1, wherein the ball shaft comprises the shaft, the symmetric ball and the elliptic disk.
5. The device of claim, wherein the symmetric ball comprises two separate parts of symmetric feature, namely, a left ball and a right ball.
6. The device of claim 4, wherein the symmetric ball comprises a shaft passing channel having shaft fixing tab thereon, a disk seating surface and a ball contact surface.
7. The device of claim 4, comprising two separate parts consisting of the elliptic disk, an upper disk and a lower disk.
8. The device of claim 1, wherein the upper disk comprises a tab compressing hole with two tabs, a rolling wall seating chamber and the lower disk with a tab housing compressing hole with two tab housings.
9. The device of claim 8, wherein the upper disk and lower disk combine and form a clutching channel.
10. The device of claim 1, comprising a rolling wall o-ring channel having a cover and the rolling wall containing the concave wall perpendicular to the cover.
11. The device of claim 1, wherein the fuel oil injector is installed onto the fuel oil injector inlet channel.
12. The device of claim 1, wherein the ignition bobbin is installed onto the ignition bobbin inlet channel.
13. The device of claim 1, wherein the exhaust outlet channel is installed onto the exhaust outlet pipe.
14. The device of claim 1, wherein the equal volume suction chamber and combustion chamber are formed in the body chamber in the rolling wall.
Description
[0037] The figures prepared to make better understanding of the invention are as follows:
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[0076] Each part is assigned a separate number in figures for better understanding of the invention. Description of each part assigned a number is as follows: [0077] 1—Body [0078] 1/A Left body [0079] 1/B—right body [0080] 1.1—Rolling wall inlet channel, [0081] 1.1.1—Rolling wall inlet channel insulation housing, [0082] 1.1.2—Rolling wall seating surface, [0083] 1.2—Fuel oil injector inlet channel, [0084] 1.3. Ignition bobbin inlet channel, [0085] 1.4—Exhaust output channel, [0086] 1.4.1. Exhaust output channel o-ring housing [0087] 1.5—Body chamber, [0088] 1.5.1. Suction chamber, [0089] 1.5.1. Combustion chamber, [0090] 1.6—Shaft inlet channel [0091] 1.7—Body connection hole, [0092] 1.8—Cooler—heater channel [0093] 1.9—Lubrication channel [0094] 1.10. Cooling wing, [0095] 2—Ball shaft, [0096] 2.1—Shaft, [0097] 2.2—Symmetric ball, [0098] 2.2/A Left ball [0099] 2.2/B right ball [0100] 2.2.1—Shaft passing channel [0101] 2.2.1.1 Shaft fixing tab, [0102] 2.2.2—Disk seating surface, [0103] 2.2.3—Ball contact surface, [0104] 2.3. Elliptic disk, [0105] 2.3/A Upper disk, [0106] 2.3/B Lower disk, [0107] 2.3.1. Tab, [0108] 2.3.1.1. Tab pressing hole, [0109] 2.3.2. Tab housing, [0110] 2.3.2.1. Tab housing pressing hole, [0111] 2.3.4—Rolling wall seating chamber, [0112] 2.3.5—Shaft clutching channel [0113] 5.3. Fuel oil injector, [0114] 4—Ignition bobbin [0115] 5—Exhaust output pipe, [0116] 6—Rolling wall, [0117] 6.1—Cover, [0118] 6.2. Concave wall, [0119] 6.2.1. Rolling wall o-ring channel [0120] 7—O-ring.
[0121] Device wherein rolling/oscillating motion is obtained by means of energy generating as a result of solid, liquid or gas fuel-oil combustion comprises main parts/accessories consisting of a body (1), ball shaft (2), fuel oil injector (3), ignition bobbins (4), exhaust output pipe (5) and rolling wall (6).
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[0123] Same part numbers are assigned to the parts of left body (1.A) and right body (1.B). It is aimed to make description easy to understand and to avoid doubt in description as they are symmetric of each.
[0124] Body (1) comprises two equal parts: Left body (1/A) and right body (1/B). Internal perspective view of a part out of two-piece body (1) belonging to body (1) is shown in
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[0126] The body (1) has rolling wall inlet channel (1.1) wherein rolling wall (6) enters, and rolling wall surface (1.1.2) where cover (6.1) sits. O-ring (7) is placed into rolling wall inlet channel insulation housing (1.1.1) and insulation is provided.
[0127] Fuel oil injector inlet channel (1.2) wherein fuel oil injector (3) enters and sprays fuel oil,
[0128] Ignition bobbin inlet channels (1.3) where ignition bobbins (4) give ignition,
[0129] Exhaust outlet channel (1.4) where exhaust outlet pipe (5) is connected, Shat inlet channel (1.6) where shaft (2.1) is connected, Body connection holes (1.7) where left body (1/A) and right body (1/B) interconnect, Cooler-heater channels (1.8) for cooling or heating of body (1) by liquid, Lubrication channels (1.9) to prevent rust of body (1),
[0130] Cooling channels (1.10) on outer surface sides for cooling body (1) in outer environment are provided.
[0131] When left body (1/A) and right body (1/B) combine, body chamber (1.5) wherein ball shaft (2) enters is formed.
[0132] Perspective view of parts forming ball shaft (2) in demounting position is given in
[0133] Ball shaft (2) comprises a shaft (2.1) two facing symmetric balls (2.2) and elliptic disk (2.3).
[0134] Outer perspective view of a part of the symmetric ball (2.2) is shown in
[0135] Shaft (2.1) is the apparatus whereon left ball (2.2/A) and right ball (2.2/B) are installed.
[0136] Symmetric ball (2.2) comprises left ball (2.2/A) and right ball (2.2/B). Symmetric ball (2.2) comprises shaft fixing tab (2.2.1.1) clutching shaft (2.1) on inner surface and disk seating surface (2.2.2) and ball contact surface (2.2.3).
[0137] Facing two-part symmetric ball (2.2) to provide oscillation and in angle is located on shaft (2.1). Disk seating surface (2.2.2) clutched by elliptic disk (2.3) between left ball (2.2/A) and right ball (2.2/B) is formed.
[0138] Perspective view of two-part elliptic disk (2.3) in demounted position is given in
[0139] Elliptic disk (2.3) comprises upper disk (2.3/A) and lower disk (2.3/B).
[0140] Upper part of elliptic disk (2.3), that is, upper disk (2.3/A) facing tabs (2.3.1) having tab pressing hole (2.3.1.1) thereon and rolling wall seating chamber (2.3.4) where elliptic disk (2.3) enters.
[0141] Lower part of elliptic disk (2.3), that is lower disk (2.3/B) contains facing tab housings (2.3.2) having tab housing pressing hole (2.3.2.1).
[0142] Shaft clutching channel (2.3.5) is formed by combination of upper disk (2,3/A) and lower disk (2.3/B).
[0143] Perspective view of two-part elliptic disk (2.3) with shaft (2.1) installed together with symmetric ball (2.2) in demounting position is shown in
[0144] Perspective view of rolling wall (6) is given in
[0145] Rolling wall (6) is formed by mounting vertical positioned concave wall (6.2) onto horizontal located cover (6.1). Rolling wall o-ring channel (6.2.1) is formed to provide insulation on lower surface of concave wall (6.2). Rolling wall o-ring channel (6.2.1) is shown with dots in
[0146] Mounting of device parts onto symmetric body (1):
[0147] Perspective view of body (1) and rolling wall (6) in demounting position is given in
[0148] O-ring (7) is located into rolling wall inlet channel insulation housing (1.1.1) in order to provide insulation.
[0149] Rolling wall (6) is inserted into symmetric body (1) from concave wall (6.2) through rolling wall inlet channel (1.1). The cover (6.1) is located in a manner to contact rolling wall seating surface (1.1.2).
[0150] Perspective view of body (1) and ignition bobbins (4) in demounting position is given in
[0151] Ignition bobbins (4) are located into ignition bobbin inlet channels (1.3) in the body (1)
[0152] Perspective view of body (1) and fuel oil injector (3) in demounting position is given in
[0153] Fuel oil injector (3) is located into fuel oil injector inlet channel (1.2) in the body (1).
[0154] Perspective view of body (1) and exhaust gas outlet pipe (5) in demounting position is given in
[0155] O-ring (7) is placed into exhaust outlet channel o-ring housing (1.4.1) on the body (1) in order to provide insulation. Exhaust outlet pipe (5) is located into exhaust outlet channel (1.4).
[0156] Perspective view of body chamber (1.5) is shown in
[0157] Perspective view of body (1) parts not installed accessories and ball shaft (2) in demounting position is shown in
[0158] A front perspective view of rolling wall (6) on ball shaft (2) is given in
[0159] Perspective view of ball shaft (2) inside body (1) not having rolling wall (6) inserted is shown in
[0160] A side perspective view of body (1) with accessories installed is given in
[0161] Operation of Device Wherein Rolling/Oscillating Motion is Obtained by Energy Generated as a Result of Combustion of Solid, Liquid or Gas Fuel Oil:
[0162] A semi-cross-sectional view of fuel oil spraying to suction chamber (1.5.1) is given in
[0163] Fuel oil sprayed into suction chamber (1.5.1) from fuel oil injector (3) applies pressure onto elliptic disk (2.3) and forces it to make rotational/cyclic motion (