Information
-
Patent Grant
-
6758169
-
Patent Number
6,758,169
-
Date Filed
Thursday, October 10, 200222 years ago
-
Date Issued
Tuesday, July 6, 200420 years ago
-
Inventors
-
Original Assignees
-
Examiners
- Argenbright; Tony M.
- Harris; Katrina B.
Agents
-
CPC
-
US Classifications
Field of Search
US
- 123 3
- 123 198 E
- 123 2
- 322 1
- 290 1 A
-
International Classifications
-
Abstract
A frame type engine generator having an engine, a generator connected with the engine and driven by the engine and a supporting frame for supporting the engine and generator therein is closed at the front surface of the supporting frame with a control panel, closed at the rear surface thereof with a muffler cover and closed at the top surface thereof with a fuel tank. To raise a noise reduction performance of the engine generator, the left side surface of the supporting frame is closed with a left panel and the right side surface thereof is closed with a right panel. The left and right panels have a double-walled structure including an inner panel and an outer panel, respectively. The left and right panels are detachably attached to the supporting frame through a rubber seal, respectively.
Description
BACKGROUND OF THE INVENTION
1. Field of the Invention
The present invention relates to an engine generator and more particularly to an engine generator supported by a supporting frame.
2. Discussion of Prior Arts
A frame type engine generator in which a forced air cooled engine and a generator driven by the engine are mounted on a supporting frame is generally used. The frame type engine generator is advantageous in weight, the number of components and manufacturing cost, because the engine generator is not enclosed by panels and the like and has a simple construction. For example, a frame type engine generator disclosed in Japanese Patent Application Laid-open No. Toku-Kai-2000 213361 is closed on the front and rear sides with a control panel and a muffler cover, respectively but is open on left and right sides.
On the other hand, the frame type engine generator has a disadvantage that it makes much noises through the openings. Hence, in case where the engine generator is used in a place where noise emission is strictly restricted, a soundproof type engine generator whose all openings are closed is employed. This soundproof type engine generator is constituted by many components different from those of the frame type engine generator to obtain effects of noise reduction and hence an advantage of the frame type engine generator such as small number of components is lost. Accordingly, users sometimes employ the frame type and sometimes employ the soundproof type according to work situations. Further, manufactures must supply both types of engine generators to markets.
SUMMARY OF THE INVENTION
It is an object of the present invention to provide an engine generator capable of obtaining a large noise reduction performance and a shock resistance performance when needed while the advantages of a frame type engine generator, namely, compact size and low cost are retained.
In order to achieve the object, an engine generator having an engine, a generator connected with the engine and driven by the engine, a supporting frame for supporting the engine and generator therein, a fuel tank for closing a top surface of the supporting frame, a control panel for closing a front surface of the supporting frame in front of the generator, and a muffler cover for closing a rear surface of the supporting frame in the rear of the engine, comprises a left panel detachable from the supporting frame for closing a left side surface of the supporting frame, a right panel detachable from the supporting frame for closing a right side surface of the supporting frame and a plate detachable from the supporting frame for closing an under surface of the supporting frame. The left panel has a double walled structure including an inner panel and an outer panel and is enclosed at the outer periphery thereof by a rubber seal. Similarly, the right panel has a double walled structure including an inner panel and an outer panel and is enclosed at the outer periphery thereof by a rubber seal. The left and right panels are attached to the supporting frame through the rubber seal.
BRIEF DESCRIPTION OF DRAWINGS
FIG. 1
is a perspective view of an engine generator when viewed from a front left side of the engine generator;
FIG. 2
is a perspective view of the engine generator when viewed from a rear right side of the engine generator;
FIG. 3
is an explanatory diagram showing a connecting portion of the engine and the generator;
FIG. 4
is an exploded perspective view to illustrate an installation of shield panels on the engine generator;
FIG. 5
is an explanatory diagram showing the way of installing left and right shield panels on the engine generator;
FIG. 6
is a perspective view of the engine generator with the shield panels when viewed from a front left side of the engine generator;
FIG. 7
is a perspective view of the engine generator with the shield panels when viewed from a rear right side of the engine generator;
FIG. 8
is a view showing the construction of a left shield panel;
FIG. 9
is a partially vertically sectional view of the shield panels attached to the engine generator;
FIG. 10
is a partially horizontally sectional view of the shield panels attached to the engine generator; and
FIG. 11
is an explanatory diagram showing a sealing rubber between an inner panel and an outer panel.
DESCRIPTION OF PREFERRED EMBODIMENT
Referring to the drawings
FIGS. 1 and 2
, reference numeral
1
denotes a frame type engine generator comprising a single cylinder forced air cooled engine, a generator and a supporting frame
4
for supporting the engine and the generator therein. A cylinder head
2
a
of the engine
2
is slanted to the right to reduce the height of the engine generator in the supporting frame
4
.
Further, as shown in
FIG. 3
, a crankshaft
2
b
of the engine
2
extends toward the generator
3
in front of the engine
2
and a flywheel
2
c
is mounted on the crankshaft
2
b
. The flywheel
2
c
is connected with a connecting shaft
5
for connecting the flywheel
2
c
and a rotor of the generator
3
. Reference numeral
6
of
FIG. 3
denotes a recoil starter. The recoil starter
6
starts the engine
2
by pulling a recoil grip
7
shown in FIG.
1
.
The flywheel
2
c
incorporates a cooling fan
8
for sending cooling air from the generator
3
toward the engine
2
. There is provided a fan cover
9
around the cooling fan
8
. A partition
9
a
is integrally formed with the fan cover
9
to separate the engine
2
side from the generator
3
side. Further, a rubber seal (not shown) is provided on the outer edge of the partition
9
a.
The supporting frame
4
is formed by upward bending respective front and rear portions of a rectangular pipe frame
10
. A left channel
11
l
longitudinally connects front left and rear left top corners of the supporting frame
4
and a right channel
11
r
longitudinally connects front right and rear right top corners of the supporting frame
4
. Further, a fuel tank
13
is secured between the respective left and right channels
11
l
,
11
r
in such a manner as covering the top surface of the supporting frame
4
.
Further, a front base channel
12
f
laterally connects left and right lower pipe frames of the supporting frame
4
and a rear base channel
12
r
laterally connects the left and right pipe frames. The generator
3
is supported mainly by the front base channel
12
f
and the engine
2
is supported mainly by the rear base channel
12
r.
A control box
14
having an output terminal and accommodating miscellaneous control equipments is provided on the front side of the supporting frame
4
and a control panel
15
covers the control box
14
and a forefront part of the supporting frame
4
.
The control box
14
has an opening portion at a lower part thereof, that is, in front of the generator
3
and a louver
15
a
is formed on the control box
14
so as to introduce outside air therethrough towards the generator
3
.
There is provided a muffler
16
of the engine
2
on the rear side of the supporting frame
4
. The rear surface of the supporting frame
4
is closed with a muffler cover
17
. A hole
17
a
is provided on the muffler cover
17
and an outlet pipe
16
a
of the muffler
16
is exposed outside through the hole
17
a
. Further, a louver
17
b
is formed on the muffler cover
17
in order to rearwardly discharge air inside of the engine generator
1
therethrough.
Further, as shown in
FIG. 4
, the engine generator
1
is closed at left and right lateral side surfaces thereof with left and right panels
21
,
22
respectively and is closed at the bottom surface thereof with a base plate
23
. Thus, since the frame type engine generator
1
is closed at all six surfaces thereof, an excellent noise insulation performance can be obtained.
As shown in
FIG. 5
, the left and right panels
21
,
22
have hooks
35
,
45
at lower ends thereof respectively. The left and right panels
21
,
22
are hooked on the pipe frame
10
of the supporting frame
4
by utilizing the hooks
35
,
45
respectively. Upper ends of the left and right panels
21
,
22
are attached to the left and right channels
11
l
,
11
r
by threading screws
24
into tapped holes
11
la
,
11
ra
of the left and right channels
11
l
,
11
r
through screw holes
21
a
,
22
a
provided on the left and right panels
21
,
22
, respectively. Thus, the left and right lateral side of the engine generator
1
are closed.
Further, the base plate
23
is attached to the front and rear base channels
12
f
,
12
r
by threading bolts
25
into tapped holes provided on the base channels
12
f
,
12
r
through four bolt holes
23
a
provided at four corners thereof. Thus, the under surface of the engine generator
1
is closed with the base plate
23
.
Further, a caster
26
is attached to each corner of the base plate
23
through a caster plate
27
. The caster plate
27
is concurrently attached to the front and rear base channels
12
f
,
12
r
through bolt holes
27
a
provided on the caster plate
27
when the base plate
23
is attached using the bolts
25
.
FIGS. 6 and 7
show the engine generator
1
when the left and right panels
21
,
22
, the base plate
23
and the caster plates
27
are attached to the engine generator
1
shown in
FIGS. 1 and 2
, respectively.
As shown in
FIGS. 8
,
9
and
10
, the left panel
21
has a double-walled structure comprising an inner panel
31
and an outer panel
32
. The inner panel
31
is connected with the outer panel
33
by a rubber seal
33
enclosing the outer periphery thereof.
That is, the inner panel
31
is fabricated of plastic molding having a plurality of inwardly protruded sections
31
a
and outwardly protruded sections
31
b
for the purpose of raising strength of the left panel
21
.
Further, as will be described hereinafter, there are provided a plurality of slots
31
c
in the vicinity of the periphery edge of the inner panel
31
. Projections
34
of the rubber seal
33
are fitted to those slots
31
c
and thus the inner panel
31
is fixed to the outer panel
32
.
Further, a window
31
d
is formed in the upper edge of the inner panel
31
to accommodate the recoil grip
7
.
The outer panel
32
is also fabricated of plastic molding whose outer surface is molded in an outwardly convex manner. Further, the outer panel
32
has an inwardly protruded section extending longitudinally in the middle part thereof. This inwardly protruded section has an aesthetic effect and at the same time a purpose for raising strength of the outer panel
32
.
As shown in
FIG. 11
, a flange section
32
a
is formed along the outer periphery of the outer panel
32
. The flange section
32
a
has a small slant necessary for plastic molding, that is, a draft angle. Further, a step section
32
b
is provided on the flange section
32
a
. The outer periphery of the inner panel
31
contacts the step section
32
b
so as to accommodate the inner panel
31
in the outer panel
32
.
A plurality of slots
32
c
are provided on the step section
32
b
of the outer panel
32
. Further, a plurality of slots
31
c
are provided at a position identical to the position of the respective slots
32
c
in the vicinity of the outer periphery of the inner panel
31
. Further, the projections
34
inwardly extending from the rubber seal
33
are fitted to the slots
31
c
and
32
c
to connect the inner panel
31
with the outer panel
32
.
Further, the outer panel
32
has also a window
32
d
at a position corresponding to the position of the recoil grip
7
.
The rubber seal
33
is formed so as to enclose the outer periphery of the outer panel
32
. There are provided a projection
34
on the upper side, two projections
34
on the lower side, three projections
34
on the front and rear sides respectively.
The projection
34
of the rubber seal
33
, as shown in
FIG. 11
, is formed such that the forefront part thereof is tapered off so as to be easily fitted to the slots
31
c
,
32
c
. Further, the projection
34
is shaped so as to be firmly held after being fitted.
Further, a hook
35
is formed at the lower part of the rubber seal
33
to hook the pipe frame
10
of the supporting frame
4
.
On the other hand, the right panel
22
is formed in the same way as the left panel
21
, comprising an inner panel
41
and an outer panel
42
which are connected with each other through a rubber seal
43
enclosing the outer periphery of the right and left panels
22
,
21
.
The inner panel
41
is fabricated of plastic molding having a plurality of inwardly protruded sections
41
a
and outwardly protruded sections
41
b
for the purpose of raising strength of the right panel
22
.
Further, there are provided a plurality of slots
41
c
in the vicinity of the periphery edge of the inner panel
41
. Projections
44
which will be described hereinafter of the rubber seal
43
are fitted to those slots
41
c
and thus the inner panel
41
is combined with the outer panel
42
.
The outer panel
42
is also fabricated of plastic molding of which outer surface is molded in an outwardly convex manner. Further, the outer panel
42
has an inwardly protruded section extending longitudinally in the middle part thereof. This inwardly protruded section has an aesthetic effect and at the same time a purpose for raising strength of the outer panel
42
.
A flange section
42
a
is formed along the outer periphery of the outer panel
42
. The flange section
42
a
has a small slant necessary for plastic molding, that is, a draft angle. Further, a step section
42
b
is provided on the flange section
42
a
. The outer periphery of the inner panel
41
contacts the step section
42
b
so as to accommodate the inner panel
41
in the outer panel
42
.
A plurality of slots
42
c
are provided on the step section
42
b
of the outer panel
42
in the same manner as in the inner panel
41
. Further, a plurality of slots
41
c
are provided at a position identical to the position of the respective slots
42
c
in the vicinity of the outer periphery of the inner panel
41
. Further, the projections
44
inwardly extending from the rubber seal
43
are fitted to the slots
41
c
and
42
c
to connect the inner panel
41
with the outer panel
42
.
The rubber seal
43
is formed so as to enclose the outer periphery of the outer panel
42
. There are provided a projection
44
on the upper side, two projections
44
on the lower side, three projections
44
on the front and rear sides respectively.
The projection
44
of the rubber seal
43
is formed such that the forefront part thereof is tapered off so as to be easily fitted to the slots
41
c
,
42
c
. Further, the projection
44
is shaped so as to be firmly held after being fitted.
Further, a hook
45
is formed at the lower part of the rubber seal
43
to hook the pipe frame
10
of the supporting frame
4
.
Further, when the outer panel
42
is fitted to the rubber seal
43
, since the flange section
42
a
provided along the outer periphery of the outer panel
42
is slightly slanted outwardly, the flange section
42
a
can be easily fitted to the rubber seal
43
. Further, since the slant of the flange section
42
a
provided a tension outwardly on the rubber seal
43
, the outer panel
42
is firmly held by the rubber seal
43
. As a result, the noise reduction performance of the engine generator is enhanced.
When thus constituted left and right panels
21
,
22
attached to the supporting frame
4
, since the rubber seals
33
,
43
have a specified amount of deformation between the pipe frame
10
and the flange sections
32
a
,
42
a
or between the left and right channels
11
l
,
11
r
and the flange sections
32
a
,
42
a,
an excellent noise insulation effect is obtained.
Further, since the rubber seals
33
,
43
temporarily hold the pipe frame
10
, screws
24
can be easily fastened on the left and right panels
21
,
22
.
Further, since the left and right panels
21
,
22
are fabricated of plastic, high frequency noise can be effectively reduced. Further, since an air layer is provided between the inner panels
31
,
41
and the outer panels
32
,
42
, noise can be effectively reduced.
Further, in spite of the frame type engine generator, in case where situations require noise reductions, an engine generator having an excellent noise reduction performance can be obtained only by attaching the left and right panels
21
,
22
and the base plate
23
to the frame type engine generator
1
.
While the presently preferred embodiment of the present invention has been shown and described, it is to be understood that this disclosure is for the purpose of illustration and that various changes and modifications may be made without departing from the scope of the invention as set forth in the appended claims.
Claims
- 1. An engine generator having an engine, a generator connected with said engine and driven by said engine, a supporting frame for supporting said engine and said generator therein, comprising:a fuel tank for closing a top surface of said supporting frame; a control panel for closing a front surface of said supporting frame in front of said generator; a muffler cover for closing a rear surface of said supporting frame in the rear of said engine; a left panel for detachably closing a left side surface of said supporting frame; a right panel for detachably closing a right side surface of said supporting frame; and a base plate for detachably closing an under surface of said supporting frame.
- 2. The engine generator according to claim 1, wherein said left panel has a double-walled structure including an inner panel and an outer panel and is enclosed at the outer periphery thereof with a rubber seal.
- 3. The engine generator according to claim 2, wherein said left panel is attached to said supporting frame through said rubber seal.
- 4. The engine generator according to claim 1, wherein said right panel has a double walled structure including an inner panel and an outer panel and is enclosed at the outer periphery thereof with a rubber seal.
- 5. The engine generator according to claim 4, wherein said left panel is attached to said supporting frame through said rubber seal.
- 6. The engine generator according to claim 2, wherein at least one of said inner and outer panels is made of plastic.
- 7. The engine generator according to claim 4, wherein at least one of said inner and outer panels is made of plastic.
Priority Claims (2)
Number |
Date |
Country |
Kind |
P. 2001-314321 |
Oct 2001 |
JP |
|
P. 2001-314322 |
Oct 2001 |
JP |
|
US Referenced Citations (3)
Number |
Name |
Date |
Kind |
4493390 |
Pagano et al. |
Jan 1985 |
A |
5197426 |
Frangesch et al. |
Mar 1993 |
A |
6039009 |
Hirose |
Mar 2000 |
A |
Foreign Referenced Citations (1)
Number |
Date |
Country |
2000-213361 |
Aug 2000 |
JP |