Detailed Description
Embodiments of the present utility model are described in detail below, examples of which are illustrated in the accompanying drawings, wherein like or similar reference numerals refer to like or similar elements or elements having like or similar functions throughout. The embodiments described below by referring to the drawings are illustrative only and are not to be construed as limiting the utility model.
In the description of the present utility model, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc. indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings are merely for convenience in describing the present utility model and simplifying the description, and do not indicate or imply that the device or element being referred to must have a specific orientation, be configured and operated in a specific orientation, and therefore should not be construed as limiting the present utility model. Furthermore, features defining "first", "second" may include one or more such features, either explicitly or implicitly. In the description of the present utility model, unless otherwise indicated, the meaning of "a plurality" is two or more.
In the description of the present utility model, unless explicitly stated or limited otherwise, the terms "mounted," "connected," and "connected" are to be construed broadly, and may be, for example, fixedly connected, detachably connected, or integrally connected, mechanically connected, electrically connected, directly connected, indirectly connected via an intervening medium, or in communication between two elements. The specific meaning of the above terms in the present utility model will be understood in specific cases by those of ordinary skill in the art.
The following describes an air compressor 100 according to an embodiment of the present utility model with reference to fig. 1 to 3, by providing a solar panel 4 on the top of a machine body 1 to continuously supply power to a battery 2 and a control module 3, it is possible to avoid an insufficient or excessive discharge of the battery 2 and to ensure a reliable operation of the control module 3, and to install and protect a connection harness 8 through a harness bracket 5 to avoid damage, breakage or water inlet failure thereof.
As shown in fig. 1 to 3, an air compressor 100 according to an embodiment of the present utility model includes a body 1, a battery 2, a control module 3, a solar panel 4, and a harness bracket 5.
The air compressor 100 includes an engine body 1, where the engine body 1 is used to provide an installation position for components in the air compressor 100, and can protect the components installed in the engine body 1 to avoid failure caused by collision or water inflow.
The battery 2 and the control module 3 are both mounted to the body 1. Specifically, the air compressor 100 further includes a battery 2 and a control module 3, the battery 2 is used for storing electric energy and supplying power to other electric components to ensure normal operation of the air compressor, the control module 3 includes two parts, namely a main controller 31 and an auxiliary controller 32, the main controller 31 is used for controlling starting and stopping of the air compressor 100, the auxiliary controller 32 is used for controlling starting and stopping of charging the battery 2, and the machine body 1 can provide mounting positions for the battery 2 and the control module 3, namely, the battery 2 and the control module 3 can be connected to the machine body 1 so as to realize mounting of the battery 2 and the control module 3, and the battery 2 and the control module 3 are mounted in the machine body 1, namely, the machine body 1 can also play a protective role on the battery 2 and the control module 3 so as to avoid collision or water inlet to cause failure.
The solar panel 4 is installed at the top of the body 1, and the solar panel 4 is electrically connected with the battery 2 and the control module 3 through the connection harness 8.
Specifically, the solar panel 4 is used for converting received solar energy into electric energy, and then can supply power for other electricity utilization components, the solar panel 4 is arranged at the top of the machine body 1, solar energy can be conveniently absorbed by the solar panel 4, and then power is supplied for other electricity utilization components in the air compressor 100, and the solar panel 4 is respectively connected with the battery 2 and the control module 3 through the connecting wire harness 8, so that the battery 2 can be continuously charged through the solar panel 4, the situation that the air compressor 100 cannot be started due to insufficient electric quantity of the battery 2 is avoided, the situation that the service life is shortened due to excessive discharging of the battery 2 is avoided, and meanwhile, the solar panel 4 can also continuously supply power to the control module 3 so as to improve the working reliability of the control module 3.
The wire harness bracket 5 is mounted on the machine body 1, the wire harness bracket 5 is formed with a threading groove 53, and at least part of the connecting wire harness 8 is threaded in the threading groove 53.
Specifically, the wire harness bracket 5 can be used for installing the connection wire harness 8, the wire harness bracket 5 is installed in the machine body 1, the connection wire harness 8 can be installed in the machine body 1 through the wire harness bracket 5, and the wire harness bracket 5 is enabled to form the wire penetrating groove 53, at least part of the connection wire harness 8 is penetrated in the wire penetrating groove 53, the connection wire harness 8 can be fixed by the wire penetrating groove 53, and the wire penetrating groove 53 can also play a protective role on the connection wire harness 8 so as to adapt to severe outdoor environment, damage, breakage or water inlet of the connection wire harness 8 is avoided, so that failure of the air compressor 100 can be avoided.
It should be noted that, the air compressor 100 in the present utility model may be configured as a mobile air compressor, so that the air compressor 100 may be moved to different spatial positions, such as to a position exposed to sunlight, or moved to a rainwater or humid environment, that is, the connection harness 8 between the solar panel 4 and the battery 2 and the control module 3 is easily exposed to the environment outside the machine body 1 during the use of the air compressor 100, and in the present utility model, a part of the connection harness 8 may be blocked by providing the harness bracket 5, and an entire part of the connection harness 8 may be blocked, or the harness bracket 5 may block a part of the connection harness 8 exposed to the environment outside the machine body 1, so that the security of the connection harness 8 is higher, and structural damage or breakage of the connection harness 8 is prevented.
From this, through set up solar panel 4 in order to absorb solar energy on organism 1 to convert solar energy into electric energy, simultaneously, link to each other solar panel 4 and battery 2 and control module 3 respectively through connecting pencil 8, can make solar panel 4 can be for battery 2 continuously charge, and can last the power supply in order to guarantee the reliable operation of control module 3 to control module 3, and, through set up pencil support 5 in order to install connecting pencil 8 on organism 1, and form wire trough 53 in order to protect and fix connecting pencil 8 on pencil support 5, so as to avoid its damage inefficacy.
According to the air compressor 100 provided by the embodiment of the utility model, the solar panel 4 is arranged at the top of the machine body 1 to continuously supply power to the battery 2 and the control equipment, so that insufficient or excessive discharge of the electric quantity of the battery 2 can be avoided, the battery 2 does not need to be recharged before the air compressor 100 is restarted after the air compressor is shut down, the electronic equipment such as a GPS (Global positioning System) of the air compressor 100 can work for a long time without disconnecting a switch of the battery 2, the electric quantity of the battery 2 is not influenced, the reliable operation of the control module 3 can be ensured, and meanwhile, the connecting wire harness 8 is installed and protected by the wire harness bracket 5 so as to avoid damage, breakage or water inlet failure.
In some embodiments, the wire harness bracket 5 includes a first bracket 51 and a second bracket 52, the first bracket 51 is provided at the top of the body 1 and is formed with a first wire penetrating groove 531, the second bracket 52 is provided at the side of the body 1 and is formed with a second wire penetrating groove 532, the first wire penetrating groove 531 is communicated with the second wire penetrating groove 532, and the connection wire harness 8 is sequentially threaded through the first wire penetrating groove 531 and the second wire penetrating groove 532.
Specifically, the harness bracket 5 is used for installing and protecting the connection harness 8, that is, the first bracket 51 and the second bracket 52 can both install and protect the connection harness 8. As shown in fig. 1-2, the solar panel 4 is disposed at the top of the machine body 1, the battery 2 and the control module 3 are disposed in the machine body 1, the first bracket 51 is disposed at the top of the machine body 1, the second bracket 52 is disposed at the side of the machine body 1, and the first wire-through slot 531 is communicated with the second wire-through slot 532, one end of the connection wire harness 8 in the first wire-through slot 531 can be connected with the solar panel 4, the other end of the connection wire harness 8 in the second wire-through slot 532 is connected with the connection wire harness 8 in the second wire-through slot 532, further, one end of the connection wire harness 8 in the second wire-through slot 532 can be connected with the connection wire harness 8 in the first wire-through slot 531, the other end of the connection wire harness 8 enters the machine body 1 from the second wire-through slot 532 and is connected with the solar panel 4 and the control module 3, and the connection wire harness 8 can be sequentially threaded into the first wire-through slot 531 and the second wire-through slot 532, so that the converted electric energy of the solar panel 4 can be sequentially conveyed to the battery 2 and the control module 3.
In some embodiments, the solar panels 4 are configured one, with one solar panel 4 being located at the top near the end of the body 1.
Specifically, a solar panel 4 may be disposed at the top of the machine body 1, for converting solar energy into electric energy, so as to supply power to the battery 2 and the control module 3, and the solar panel 4 is disposed at the top of the machine body 1 near the end, so as to leave enough space for a user to walk on the top of the machine body 1, and avoid the influence on maintenance actions such as lifting of the air compressor 100 and filling of cooling liquid due to the disposition of the solar panel 4.
And, it should be noted that, on the premise of leaving enough walking space for the user and not affecting the lifting of the air compressor 100, filling of the cooling liquid, etc., the setting area of the solar panel 4 is large enough to improve the efficiency of converting solar energy into electric energy, and more electric quantity can be provided for the battery 2 to avoid the shortage or overdischarge of the electric quantity of the battery 2.
In some embodiments, the solar panels 4 are configured in at least two, at least two solar panels 4 are spaced apart and distributed on the machine body 1, and the first bracket 51 is disposed to extend along the distribution direction of at least two solar panels 4.
Specifically, the solar panel 4 is configured to convert solar energy into electrical energy to supply power to the battery 2 and the control module 3, at least two solar panels 4 may be simultaneously disposed at the top of the machine body 1, that is, the number of the solar panels may be two, three or more, so as to improve efficiency of converting solar energy into electrical energy, and provide more electrical energy for the battery 2, so as to avoid insufficient electrical energy or overdischarge of the battery 2, and meanwhile, the at least two solar panels 4 are disposed at intervals, so that the at least two solar panels 4 interfere with each other, so that the at least two solar panels 4 are independent of each other, and when any one of the solar panels 4 is damaged and fails, the rest of the solar panels 4 may still continuously supply power to the battery 2 and the control module 3, so as to improve reliability of supplying power to the battery 2 and the control module 3.
The solar panels 4 are disposed at a distance from each other, so that the arrangement of the solar panels 4 does not affect the maintenance actions such as the user walking on the top of the machine body 1, lifting the air compressor 100, and filling the cooling liquid.
And the first bracket 51 is arranged along the distribution direction of the at least two solar panels 4, and the at least two solar panels 4 are connected with the battery 2 and the control module 3 through the connecting wire harness 8 in the first bracket 51, so that the setting length of the connecting wire harness 8 can be reduced, and the setting cost is reduced.
In the implementation shown in fig. 1-2, two solar panels 4 are arranged on the top of the machine body 1 to improve the efficiency of converting solar energy into electric energy, the two solar panels 4 are arranged at intervals to avoid interference between the two solar panels, and when any one solar panel 4 is damaged and fails, the other solar panel 4 can still continuously supply power to the battery 2 and the control module 3 to improve the reliability of the solar panel 4 for supplying power to the battery 2 and the control module 3.
It should be noted that, the number of the solar panels 4 is not limited to the above embodiments, and may be flexibly selected according to the specific situation and the size of the space.
In some embodiments, the first bracket 51 is extended in a horizontal direction to be disposed at the top of the body 1, the second bracket 52 is extended in a vertical direction to be disposed at a side of the body 1, and an upper end of the second wire penetrating groove 532 is communicated with one end of the first wire penetrating groove 531.
Specifically, the first bracket 51 is arranged at the top of the machine body 1, the first bracket 51 can be installed from the top of the machine body 1, the connection wire harness 8 in the first wire penetrating groove 531 can be conveniently connected with the solar panel 4 positioned at the top of the machine body 1, namely, the electric energy of the solar panel 4 can be conveyed to other electric parts through the connection wire harness 8 in the first wire penetrating groove 531, the second bracket 52 is arranged at the side part of the machine body 1 along the vertical direction, the second bracket 52 can be installed from the side part of the machine body 1, the second wire penetrating groove 532 is communicated with one end of the first wire penetrating groove 531, namely, the connection wire harness 8 in the first wire penetrating groove 531 is connected with the connection wire harness 8 in the second wire penetrating groove 532, the electric energy can be conveyed to the connection wire harness 8 in the second wire penetrating groove 532 along the connection wire harness 8 in the first wire penetrating groove 531, the electric energy can be conveyed downwards from the top, and then the electric energy can be conveyed to the other electric parts from the connection wire harness 8 in the second wire penetrating groove 532 to the lower end of the second wire penetrating groove, and the setting length of the connection wire harness 8 can be reduced, and the setting cost of the connection wire harness 8 can be reduced.
It should be noted that, the first bracket 51 is extended in the horizontal direction, that is, the two solar panels 4 are spaced apart in the horizontal direction, and one end of the connection harness 8 in the first wire-passing groove 531 is connected to the solar panel 4, and the other end is connected to the connection harness 8 in the second wire-passing groove 532.
In some embodiments, the harness support 5 is configured to include a slot-type plate 54 and a connection plate 55, the threading slot 53 is provided at the slot-type plate 54 and is opened at one side of the slot-type plate 54, the connection plate 55 is connected with the slot-type plate 54 to close the opened side of the threading slot 53, and the slot-type plate 54 and the connection plate 55 are connected to the body 1 through a connection member.
Specifically, the inside of the slot-shaped plate 54 forms the threading slot 53 for threading the connection harness 8, and the threading slot 53 is opened at one side of the slot-shaped plate 54, so that the slot-shaped plate 54 forms a "several" shape structure to promote the structural strength of the slot-shaped plate 54, the connection plate 55 is connected with the slot-shaped plate 54, and the connection plate 55 is used to close the open side of the slot-shaped plate 54 to avoid the connection harness 8 from falling from the threading slot 53, and the slot-shaped plate 54 and the connection plate 55 are connected with the machine body 1 through the connection piece to improve the connection reliability between the two.
It should be noted that, as shown in fig. 1-3, the first wire-penetrating groove 531 and the second wire-penetrating groove 532 are both opened towards the inside of the machine body, so as to seal and shield the connection wire harness 8 inwards, reduce the plate material setting of the wire harness bracket 5, and reduce the setting cost.
In some specific embodiments, a plurality of through holes may be disposed on the slot-shaped plate 54 and the connecting plate 55 at intervals, and the plurality of through holes are in one-to-one correspondence, and the slot-shaped plate 54 and the connecting plate are connected with the machine body 1 by using a connecting piece, so as to improve the reliability and stability of the connection between the slot-shaped plate and the connecting plate, wherein the connecting piece may adopt bolts 9.
In some embodiments, the slot-type plate 54 includes a top plate 541, two side plate portions 542 and a burring portion 543, the side plate portions 542 are connected to both sides of the top plate 541 at intervals to define the threading slot 53 with the top plate 541, the burring portion 543 is connected to the side plate portions 542 at a bend and is spaced apart in parallel with the top plate 541, and the slot-type plate 54 is provided with a connection hole 544 for threading a connection member.
Specifically, the slot-shaped board 54 includes three parts, namely, a top board 541, side boards 542 and a flanging part 543, the top board 541 is located above the slot-shaped board 54, so that the connecting harness 8 can be shielded and protected from above, and the side boards 542 are arranged in two, and are respectively located at two sides of the top board 541 and connected with the top board 541, so that the side boards 542 and the top board 541 jointly form the wire through slot 53 for penetrating the connecting harness 8, meanwhile, each side board 542 is connected with one flanging part 543, namely, the flanging parts 543 are also arranged in two, and are respectively bent from the side boards 542 connected with the flanging parts 543 to the outside of the wire through slot 53, and the flanging parts 543 are arranged to be parallel to the top board 541, namely, one side of the side board 542 is connected with the top board 541, and the other side board 542 is connected with the flanging parts 543, so that the side boards 542 have a certain height, and the connecting harness 8 can be penetrated in the wire through slot 53, and the flanging parts 543 can be better attached to the connecting board 55, and further the connecting the slots 54 and the connecting board 55 with the machine body 1 can be facilitated.
The top plate 541, the side plate 542, and the flange 543 may be directly integrally formed, or may be fixedly connected to each other by welding to improve the connection strength.
And, the slot-shaped plate 54 is provided with the connection holes 544, that is, the burring 543 is provided with the connection holes 544, and the burring 543 may be provided with a plurality of connection holes 544 at intervals, that is, the wire harness bracket 5 may be connected to the machine body 1 through a plurality of connectors at the same time. As shown in fig. 2 to 3, ten connection holes 544 are provided in the two burring portions 543 of the first bracket 51, and four connection holes 544 are provided in the two burring portions 543 of the second bracket 52, so that connection reliability between the harness bracket 5 and the machine body 1 can be improved.
The number of the connection holes 544 is not limited to the above embodiments, and may be flexibly selected according to specific requirements and space sizes.
In some embodiments, the solar panel 4 is detachably mounted to the body 1 by a mounting bracket 6.
Specifically, still be provided with installing support 6 on organism 1, installing support 6 is used for being connected solar panel 4 and organism 1 to realize the installation of solar panel 4 on organism 1, and set up installing support 6 for can be convenient for install or dismantle solar panel 4 for organism 1, when solar panel 4 damage the inefficacy in long-term use, perhaps when can't continue to use because other reasons lead to, can change solar panel 4, can dismantle damaged solar panel 4, change new solar panel 4 can.
In some embodiments, the mounting bracket 6 includes a first plate 61, a second plate 62 and a third plate 63, where the first plate 61 and the third plate 63 are respectively connected to two sides of the second plate 62 in a bending manner, and the first plate 61 and the third plate 63 are distributed in parallel and spaced apart, and the first plate 61 is attached to the solar panel 4 and the third plate 63 is attached to the top wall of the machine body 1.
Specifically, the mounting bracket 6 includes three parts, namely the first plate body 61, the second plate body 62 and the third plate body 63, where the first plate body 61 and the third plate body 63 are connected with the second plate body 62 respectively, and the three parts can be directly constructed into a whole, or fixedly connected, and can be connected in a welded manner to improve the connection strength, meanwhile, the first plate body 61 is attached to the solar panel 4, the third plate body 63 is attached to the top wall of the machine body 1, that is, the mounting of the solar panel 4 on the top of the machine body 1 can be realized through the mounting bracket 6, and the attachment connection mode can increase the contact area, so that the connection strength can be increased, and the first plate body 61 and the third plate body 63 are parallel and spaced apart, so that interference between the first plate body 61 and the solar panel 4 and the connection of the third plate body 63 and the machine body 1 can be facilitated.
It should be noted that, the solar panel 4 may be connected to the first plate 61 of the mounting bracket 6 by a connecting member, and meanwhile, the third plate 63 of the mounting bracket 6 may be connected to the machine body 1 by a connecting member, so that the mounting bracket 6 or the solar panel 4 may be conveniently mounted or dismounted.
In some embodiments, at least two mounting brackets 6 are connected to each solar panel 4, the mounting brackets 6 being spaced apart in parallel.
Specifically, the mounting brackets 6 are used for mounting the solar panels 4, each solar panel 4 is connected with at least two mounting brackets 6, when a plurality of solar panels 4 are arranged, a plurality of mounting brackets 6 can be arranged on the machine body 1 at the same time, the plurality of mounting brackets 6 are arranged at intervals, the solar panels 4 can be connected with the machine body 1 at a plurality of positions, the connection reliability and stability between the solar panels 4 and the machine body 1 can be improved, meanwhile, as shown in fig. 1-2, the mounting brackets 6 are arranged between the solar panels 4 and the machine body 1, namely, the mounting brackets 6 are connected to the lower side of the solar panels 4, and the upper side of the machine body 1 is provided with the mounting brackets 6 which can also support the solar panels 4, and a plurality of mounting brackets 6 which are distributed at intervals are arranged on the machine body 1 at the same time, so that the solar panels 4 can be supported at a plurality of positions, the stability of supporting the solar panels 4 can be improved, and the plurality of mounting brackets 6 can jointly bear the pressure of the solar panels 4, and the service life of the mounting brackets 6 can be further improved.
In the embodiment shown in fig. 2-3, four mounting brackets 6 are disposed on the machine body 1, and two mounting brackets 6 are disposed at the bottom of two solar panels 4 respectively, that is, one solar panel 4 can be mounted and supported by two mounting brackets 6 respectively, and the two mounting brackets 6 are disposed in parallel and spaced apart, so as to improve the reliability and stability of mounting and supporting the solar panel 4, and improve the connection reliability between the solar panel 4 and the machine body 1.
It should be noted that, the number of the mounting brackets 6 is not limited to the one described in the present embodiment, and may be flexibly selected according to the specific situation and the size of the space.
In some embodiments, the bottom of the machine body 1 is further provided with a supporting wheel 7, the supporting wheel 7 is used for supporting the machine body 1, the supporting wheel 7 can rotate relative to the machine body 1, the air compressor 100 can be driven to move through the rotation of the supporting wheel 7 so as to change the position of the air compressor 100, the air compressor 100 can be further moved to different working positions, the number of the supporting wheels 7 can be multiple, and the supporting wheels 7 are arranged at intervals, so that the supporting wheels 7 can support the machine body 1 at multiple positions at the same time, the stability of supporting the machine body 1 is improved, meanwhile, the supporting wheels 7 can bear the pressure of the machine body 1 jointly, so that the pressure born by each supporting wheel 7 is small, and the service life of the supporting wheels 7 can be prolonged.
As shown in fig. 1-2, four supporting wheels 7 are disposed at the bottom of the machine body 1, and the four supporting wheels 7 are spaced apart, i.e. the four supporting wheels 7 can support the machine body 1 from four positions at the same time to improve the stability of supporting the machine body 1, and the four supporting wheels 7 can bear the pressure of the machine body 1 together, so as to prolong the service life of the supporting wheels 7.
It should be noted that the number of the supporting wheels 7 is not limited to the number described in the present embodiment, and may be flexibly selected according to specific requirements and space sizes.
In the description of the present specification, reference to the terms "one embodiment," "some embodiments," "illustrative embodiments," "examples," "specific examples," or "some examples," etc., means that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the utility model. In this specification, schematic representations of the above terms do not necessarily refer to the same embodiments or examples. Furthermore, the particular features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the spirit and scope of the utility model as defined by the appended claims and their equivalents.