This invention relates to the technical field of disinfection equipment, particularly to a modular disinfection vehicle.
The UV sterilization and disinfection light mainly includes two working modes: direct illumination disinfection and ventilation disinfection. Direct illumination disinfection light refers to the light which directly exposes UV light in an open environment for sterilization and disinfection; it can be used for disinfection of object surface and air, its disinfection efficiency is high, but the safety performance is poor, so people need to keep themselves away from the light to ensure the safety. Ventilation disinfection light refers to the light which inhales air into the enclosed light cavity for UV disinfection and then exhausts sterilized air out of the light, so that air disinfection and ventilation is finished; it is mostly used for air disinfection, during disinfection, people do not need to leave the disinfection environment, UV inside the light will not cause personal injuries arising from exposure of UV light outside the light, and with high safety performance, it can realize co-existence of human and the light.
Most UV disinfection vehicles adopt direct illumination, and the specifications of disinfection vehicles are relatively unitary, their structures are not suitable for increasing or decreasing the quantity of UV light source modules and will affect series extension and use of disinfection vehicles. In addition, the UV light source inside the disinfection vehicles cannot be repaired or replaced conveniently, because their service life will be affected.
The foregoing content is only used for assisting in understanding the technical solution of this invention, but does not mean the acknowledgement of that the above content is the current technology.
The main objective of the present invention is to provide a modular disinfection vehicle to solve technical problems of existing disinfection vehicles like poor safety performance, unitary specification, structure unsuitable for the increase or the decrease of the quantity of UV light source modules, affecting series extension and use of disinfection vehicles and not good for repair or replacement of UV light source modules, etc.
The technical problem solving thinking of the invention is as follows:
On one aspect, the UV light source module of the disinfection vehicle is provided on the independent disinfection component which can be lifted and lowered, when there is no person in the sterilization environment, the light source module will be lifted to carry out direct illumination disinfection; when there is person in the sterilization environment, the light source module retracts into the vehicle body cavity and ventilation disinfection is enabled to improve the use safety of the product. These switchable working mode improves the safety, environment adaptability and sterilization and disinfection efficiency of the disinfection vehicle.
On the other hand, the disinfection component is designed into an independent extensible structure, the light source module is provided between the upper end and the lower end of the disinfection component, the upper end of the disinfection component is the first fixing part, the lower end of the disinfection component is the second fixing part, the upper end of the disinfection component is a dismountable structure which facilitates replacement and maintenance of the light source module. And, the light source module is provided in the dismountable disinfection component in a centralized way. When the quantity of the light source module needs to increase or decrease, only corresponding parts at the upper end or/and the lower end of the disinfection component need to be replaced, that is, only the first fixing part and/or the second fixing part second fixing part in this invention needs to be replaced, and the overall structure of the disinfection vehicle does not need to be improved significantly, which facilitates increase or decrease of the quantity of light source modules of the disinfection vehicle and realize specification derivation and series extension of disinfection vehicles. The disinfection component is provided with a (or several) support pillar/s which can improve the structure intensity of the disinfection component and play a leading and guiding role when the light source module lifts and retracts to make the disinfection vehicle system more stable. The motor drives the lead screw to finish lifting and lowering of the disinfection component, the control system controls lifting and lowering of the disinfection component and working of the UV light source module, including enabling, disenabling, timing, etc.
To realize the above subjective of the present invention, this invention adopts the following technical solution:
a modular disinfection vehicle used for sterilization and disinfection of air or the object surface, characterized in comprising:
a vehicle body with the first accommodating cavity and at least an avoiding hole connecting to the first accommodating cavity and provided on the top of the vehicle body;
a disinfection component, characterized in comprising the first fixing part, the second fixing part, at least a support pillar and at least a light source module, the first fixing part and the second fixing part provided on each end of the support pillar respectively, the second fixing part provided in the first accommodating cavity, the light source module and the support pillar pass through the avoiding hole in a flexible way; the light source module installed on the first fixing part and/or the second fixing part in a dismountable way;
a lifting mechanism, provided in the first accommodating cavity and connecting to the second fixing part to drive the disinfection component to stretch out of and retract to the vehicle body; and
a control system, used for controlling enabling and disenabling of the light source module and controlling the lifting mechanism to drive the disinfection component to stretch out of and retract to the vehicle body in the vertical direction.
The advantages and positive effect of the modular disinfection vehicle in this invention include:
(1) The light source module is provided in the independent disinfection component which can be lifted and lowered, enabling the disinfection vehicle to have two switchable working modes, improve the safety, environment adaptability and sterilization and disinfection of the disinfection vehicle and realize co-existence of human and the vehicle during working of the disinfection vehicle;
(2) The light source module is provided between the first fixing part and the second fixing part in a dismountable way, facilitating replacement and repair of the light source module;
(3) The light source module is provided in the dismountable disinfection component in a centralized way. When the quantity of the light source module needs to increase or decrease, only the corresponding first fixing part and/or the second fixing part need to be replaced, and the overall structure of the disinfection vehicle does not need to be improved significantly, which facilitates increase or decrease of the quantity of light source modules of the disinfection vehicle and realize specification derivation and series extension of disinfection vehicles;
(4) The disinfection component is provided with a (or several) support pillar/s which can improve the structure intensity of the disinfection component and play a leading and guiding role when the light source module lifts and retracts to make the disinfection vehicle system more stable.
The shape, dimension, proportion or position relationship of parts of the product in drawings may be real data of embodiments and they are under protection of this invention.
The technical solutions of the embodiments in this present invention will be described in an explicit and intact manner below with reference to the drawings. It is obvious that the specific embodiments described herein are merely part but not all the embodiments of this present invention. All other embodiments obtained by technicians in this field without inventive work based on the embodiments in this present invention are within the protection scope of this present invention.
In one example of the present invention as shown in
In the solution of this invention, the light source module 33 of the disinfection vehicle is provided in the independent disinfection component 3 which can be lifted and lowered, enabling the disinfection vehicle to have two switchable working modes. Under the first working mode, the lifting component controls the disinfection component 3 to stretch out of the outer side of the vehicle body 1 to carry out direct illumination disinfection of the surrounding environment; Under the second working mode, the lifting component controls the disinfection component 3 to retracts to the first accommodating cavity 18 to sterilize air in the first accommodating cavity 18 to guarantee the safety, environment adaptability and sterilization and disinfection efficiency of the disinfection vehicle and realize co-existence of human and machine during working of the disinfection vehicle.
The dismountable light source module 33 can be provided on the first fixing part 31 or the second fixing part 32 or between them. As shown in
In the embodiment as shown in
According to
As shown in
The top cover 11 is provided with at least one avoiding hole 16 connecting to first accommodating cavity 18. In one example of the present invention according to the functions of each avoiding hole 16, there is the first avoiding hole 16a, the second avoiding hole 16b and the third avoiding hole 113. As shown in
In one example of the present invention the middle of the outer side of the top cover 11 is provided with a groove 111, the horizontal projection plane of the first fixing part 31 is rectangular on the whole, which facilitates accommodation of 1-4 light source modules 33, and the horizontal projection plane of the groove 111 is rectangular on the whole. The projection plane is rectangular on the whole, which means that the shape of the projection plane is approximately rectangular, such as rectangle, rectangle provided with a chamfer or oval. The first avoiding hole 16a, the second avoiding hole 16b and the third avoiding hole 113 are provided at the bottom of the groove 111 respectively. When the disinfection component 3 retracts to the vehicle body 1, the first fixing part 31 can be placed inside the groove 111.
Optionally, there are four support pillars 34 provided on the outer side of the disinfection component 3. The support pillar 34 is of a profile structure and the outer contour of the cross section is non-circular, avoiding that the support pillar 34 rotates relative to the first fixing part 31 and/or the second fixing part 32. There are four second avoiding holes 16b which enable each support pillar 34 to pass through different second avoiding hole 16b to ensure stable and smooth movement of the disinfection component 3.
The solution of this invention can also be understood like this: the support pillar 34 and the light source module 33 share one avoiding hole 16, which can reduce the quantity of holes on the top cover 11, reduce the processing technology of the top cover 11 and improve the assembly efficiency of the disinfection component 3.
As shown in
In one example of the present invention rotating motor 21 drives the lead screw 23 to rotate to make nut 22 move along the lead screw 23. By controlling the rotation direction of the rotating shaft of motor 21, the nut 22 can move up and down along the lead screw 23 to make the light source module 33 stretch out of or retract to vehicle body 1. Since the support pillar 34 passes through the second avoiding hole 16b, the second avoiding hole 16b can control the support pillar 34 to only move up and down, so that the disinfection component 3 can lift and lower smoothly and stably. Additionally, the lifting mechanism is of a concise and compact structure, the disinfection component 3 is very light, so small-power motor 21 and thin lead screw 23 can be used. In this embodiment, the diameter of the lead screw 23 is 6-10 mm (8 mm is the optimal). The technician can also set the diameter of the lead screw 23 according to the size and specification of the disinfection vehicle.
The motor 21 is provided with a gear mechanism which can reduce the rotation speed of the motor 21 and provide bigger output torque. The motor 21 connects to the lead screw 23 via the gear mechanism.
As shown in
In one example of the present invention one shielding device can be the first shielding part 14 which comprises one first board 141 and two second boards 142 provided at intervals. The first board 141 is provided above the clearance of two second boards 142 in the stack-up way, enabling the UV light emitted by the light source module 33 to not go out of the vehicle body 1 in the direction vertical to the first board 141 and second boards 142. The other shielding device is the second shielding part 15 which comprises the fourth board 151 and the fifth board 152. The middle part of the fourth board 151 is provided with a ventilation hole. The fifth board 152 is provided at the ventilation hole of the fourth board 151 at intervals in a stack-up way. The fifth board 152 covers the ventilation hole of the fourth board 151, preventing the UV light from being emitted out of the vehicle body via the ventilation hole.
Optionally, the first board 141 and the second boards 142 are in parallel. There is the third mounting column between the first board 141 and the second boards 142. There may be several mounting columns. One end of the third mounting column connects to the first board 141, the other end of the third mounting column connects to the second board 142 to facilitate processing of the first shielding part 14 and increase the ventilation hole of the first shielding part 14.
The ventilation component 4 comprises a fan housing 42 and at least one first fan 41. The fan housing 42 is provided with the fourth ventilation hole corresponding to the first fan 41. The fan housing 42 is against the inner wall of the vehicle body 1, so that air in the first accommodating cavity 18 can be exhausted out of the vehicle body 1 via the second ventilation hole 48 after passing through the fourth ventilation hole, the first fan 41 can generate air faster and blower sterilized air further. The fan housing 42 provided on the second shielding part 15 faces one side of the second ventilation hole 48. The second shielding part 15 and the fan housing 42 can prevent the fan from the damage of the light emitted by the light source module 33. In one example of the present invention as shown in
In one example of the present invention the first ventilation hole 47 and the second ventilation hole 48 are disposed opposite each other on two sides of the vehicle body 1, so that the incoming air of the vehicle body 1 will not affect its outgoing air and the disinfection efficiency of the disinfection vehicle is improved. As shown in
The first ventilation hole 47 is provided with a filter screen 45 in a dismountable way, the filter screen 45 filters the air which flows into the first accommodating cavity 18 to ensure the cleanliness inside the vehicle body 1, and the filter screen 45 is dismountable in the way of screw fastening or clamping. In one example of the present invention the first ventilation hole 47 is provided with the first protective net 44, and the second ventilation hole 48 is provided with the second protective net 46 to improve the use safety of the disinfection vehicle.
The control system 6 also comprises the first circuit board 66 which is provided inside the second accommodating cavity 112 and connects to at least one key 65, the key 65 stretches out of the top of the vehicle body 1, the top cover 11 is provided with a hole for stretching of the key 65, the key 65 comprises a keycap and a button, the keycap covers the key, the keycap stretches out of the top cover 11 from the hole, key 65 can be used for controlling the lifting mechanism 2 to stretch out or retract, controlling the disinfection component 3 to be enabled or disenabled, or controlling the working time of the light source module 33. As shown in
The control system 6 also comprises a working indicator 67 provided on the top of the vehicle body 1 and used for displaying the working state of the light source module 33. The working indicator 67 comprises an indicator light source and a transparent cover. The indicator light source is provided on the first circuit board 66, and the transparent cover is provided on the intersection of the top and lateral side of the vehicle body 1 corresponding to the indicator light source. The transparent cover comprises two transparent parts which form an included angle. One transparent part faces the upper side of the vehicle body 1, and the other transparent part faces the lateral side of the vehicle body 1 to enlarge the light emission angle of the indicator light source. In one example of the present invention, as shown in
In this example, as shown in
Optionally, the first limit switch 62 is provided on the top of the first accommodating cavity 18 and has the first switch contact metal 621 facing the first fixing part 31 provided on the extrusion part 312; the vehicle body 1 is provided with the third avoiding hole 113 corresponding to the first switch contact metal 621, when the lifting mechanism 2 drives the disinfection component 3 to retract to the bottom of the vehicle body 1 and reach the limit state, the extrusion part 312 extends into the third avoiding hole 113 and goes against the first switch contact metal 621 to enable the first limit switch 62; the second limit switch 63 is provided on the top of the first accommodating cavity 18 and possesses a second switch contact metal 631 facing the second fixing part 32, when the lifting mechanism 2 drives the disinfection component 3 to stretch out of the vehicle body 1 and reach the limit state on the top of the vehicle body 1, the second fixing part 32 goes against the second switch contact metal 631 to enable the second limit switch 63.
As shown in
In one example of the present invention, the mounting board 19 is provided with the first mounting columns 196 and two winding parts 191, the top of the first mounting column 196 is an upward inclined plane which facilitates installation of the sensing device 64 and enables the sensing side of the sensing device 64 to be upward inclined. There can be two first mounting columns 196. The top of one first mounting column 196 is provided with a protruding point, and the top of the other first mounting column 196 is provided with a fixed hole. The sensing device 64 is provided with two holes corresponding to two first mounting columns 196 respectively. One hole is used for working with the protruding point for positioning, and the other hole is used for fixing with a screw, so that the sensing device 64 can be installed and fixed quickly. The mounting board 19 is provided with two winding parts 191 which are in the hook shape. There is a certain clearance between winding parts 191 and the mounting board 19. The redundant lead wire 7 inside the vehicle body 1 can be wound on winding parts 191 to keep the tidiness inside the vehicle, optimize the space of the vehicle body 1 and avoid winding of wire during rotation of the lead screw 23.
In this example, the modular disinfection vehicle is also provided with the function of reminding the service life of the light source module 33 and the filter screen 45. One mounting board 19 is provided with a light source indicator 192, a light tube reset key 193, a filter screen indicator 194 and a filter screen reset key 195 electrically connecting to the master power supply 61. When the accumulated working time of the light source module 33 reaches the service life, the control system 6 will enable the light source indicator 192. After replacing a new light source module 33, by pressing the light tube reset key 193, the light source indicator 192 will be turned off, and the control system 6 will recalculate the service time of the light source module 33. After the service life of the filter screen 45 expires, the control system 6 will turn on the filter screen indicator 194. After replacing a new filter screen 45, by pressing the filter screen reset key 195, the filter screen indicator 194 will be turned off.
As shown in
As shown in
Optionally, the handle 5 is parallel to the top of the vehicle body 1; optionally, the handle 5 is parallel to the lateral side of the vehicle body 1, which avoids inclination of the disinfection vehicle when the disinfection vehicle is put upside down, facilitates packing and guarantees stable transportation; In addition, such a handle design mode is more suitable for cable winding of the disinfection vehicle and can improve the convenience in use.
In one example of the present invention, the vehicle body 1 is provided with the first side wall and the second side wall which are opposite to each other, the mounting hole of the first side wall is the first mounting hole 54, the mounting hole of the second side wall is the second mounting hole 55, and to guarantee the stability when carrying or pushing the disinfection vehicle via the handle 5, the first mounting hole 54 and the second mounting hole 55 are provided on the same level.
As shown in
Optionally, the first bending section 522 and the third bending section 532 are of a prism structure, the outline of the cross section of the first bending section 522 and the third bending section 532 can be a rectangle, triangle and a shape composed of straight sides and arc lines.
Handle 51 comprises the first handle shell 511 and the second handle shell 512 which are snap-fitted with each other to form the fourth accommodating cavity in an enclosing way. The second bending section 523 and the fourth bending section 533 go deep into the fourth accommodating cavity where they are fixed. The first handle shell 511 is provided with several second mounting columns 513 which are arranged along the length of the handle 51. The top of the second mounting columns 513 is provided with screw holes. The second handle shell 512 is provided with several connecting holes corresponding to the second mounting column 513. The connecting holes of the second handle shell 512 face the inner side of the vehicle body 1 to form the concealed design and improve the appearance effect of the handle 5. Several connecting holes on the handle 51 can also prevent slide.
The handle 51 is between the first supporting arm 52 and the second supporting arm 53, and there is a large space between the first supporting arm 52 and the second supporting arm 53; When the disinfection vehicle is not working, the cable can be wound onto the handle 5, which prevents the cable from falling onto the ground disorderly and facilitates movement of the disinfection vehicle. The first main section of the first supporting arm 52 is provided with an upward first curve structure 521 nearby the handle 51, the second main section of the second supporting arm 53 is provided with a second curve structure 531 nearby the handle 51; The straight distance between the first curve structure 521 and the handle 51 is the same as that between the second curve structure 531 and the handle 51, so that the acting force of the handle 51 on the first supporting arm 52 is the same as or approximate to that on the second supporting arm 53, which facilitates holding of the handle 51. When winding the cable on the handle 5, the curve structure can also increase the winding space of the cable.
The above description only presents the preferred examples of the invention, and it is not for this reason that the patent scope of the invention is limited. Any equivalent structural transformation made by using the description of the invention and the drawings, or direct/indirect application in other related technical fields under the inventive concept of the invention, is included in the patent protection scope of the invention.
Number | Date | Country | Kind |
---|---|---|---|
2021213864888 | Jun 2021 | CN | national |