Disclosure of Invention
In order to overcome the defects of the prior art, the utility model provides a prevent public traffic type escalator that suitcase rolled and fell.
The utility model provides a technical scheme that its technical problem adopted is:
the utility model provides a prevent public traffic type escalator that suitcase rolled off, includes the step, the step is including footboard, kickboard, strut and guide pulley, the vacant space of footboard below is provided with the mounting box, be provided with drive controller in the mounting box, exhibition sinking mechanism and sensing assembly, the footboard is provided with standing zone, gyro wheel fixed area and foot and steps on the sensing district, the gyro wheel fixed area is provided with the adaptation the first opening of exhibition sinking mechanism, exhibition sinking mechanism passes through first opening exposes in the surface of footboard, the foot is stepped on the corresponding installation in sensing district the sensing assembly, drive controller receives and comes from sensing assembly's signal and then controls exhibition sinking mechanism's motion.
The flattening sinking mechanism comprises a rotating power source and a folded plate with an L-shaped structural section, the lower long side end of the folded plate is rotatably connected with the output end of the rotating power source, and the rotating power source controls the folded plate to rotate and incline downwards to form a sinking space for accommodating the roller of the luggage case.
The upper long side end of the folded plate is rotatably connected with a first long side end of a traction plate, and the second long side end of the traction plate is rotatably connected with the pedal.
The output end of the rotary power source is provided with a shaft coupling and a first rotating shaft, a second rotating shaft is arranged between the folded plate and the traction plate to form rotary connection, traction support rods are arranged on two sides of the folded plate, two ends of each traction support rod are respectively connected with the first rotating shaft and the second rotating shaft in a rotating mode, and the folded plate and the traction support rods and the first rotating shaft form relative stillness.
The sensing subassembly is including support column and sensor, the support column is installed the inside of mounting box, the upper portion of support column is provided with card sliding part, card sliding part registrates there is the spring, card sliding part slip block has the pedal, the top of spring is held the bottom of pedal, drive controller is provided with the time delay module, the pedal is triggered by pushing down the sensor, drive controller received signal and then control the mechanism that the exhibition sinks and start the time delay module, after the delay time of settlement, drive controller control the mechanism exhibition that the exhibition sinks is flat.
The pedal comprises a horizontal plate portion and a connecting portion, the pedal is provided with an adaptive second opening of the horizontal plate portion, the horizontal plate portion is exposed to the surface of the pedal through the second opening, the supporting column is provided with a support, the sensor is a photoelectric sensor, the support is installed with the photoelectric sensor, the connecting portion is provided with a signal sheet, when the horizontal plate portion is pressed down, the signal sheet passes through a sensing area of the photoelectric sensor, and the photoelectric sensor sends a signal to the driving controller.
The top surface of footboard is provided with the slipmat, the slipmat is provided with the correspondence the breach of gyro wheel fixed area, the slipmat covers part the folded plate.
The slipmat is provided with anti-skidding line, the slipmat corresponds the line in district of standing is inequality with the line that corresponds the sensing district is stepped on to the foot.
The non-slip mat is made of an elastically deformable material.
And anti-slip strips are arranged on the top surfaces of the folded plates and the traction plates.
The utility model has the advantages that: when a carrier of the luggage box steps on the sensing area by feet, the driving controller receives signals from the sensing assembly to control the motion of the flattening sinking mechanism, and the flattening sinking mechanism sinks to form an accommodating space of the luggage box roller, so that the rolling of the roller is limited, and the function of preventing the luggage box from falling is realized; the foot-operated sensing design does not need manual operation, and does not influence the moving speed of people; all equipment and components are arranged in the vacant space below the pedal, so that the original standing space of the public traffic type escalator is not occupied, and the flow of people for conveying is ensured.
Detailed Description
In the description of the present invention, it is to be understood that the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", and the like indicate orientations or positional relationships based on those shown in the drawings, and are merely for convenience of description and simplicity of description, and do not indicate or imply that the device or element being referred to must have a particular orientation, be constructed and operated in a particular orientation, and thus, should not be construed as limiting the present invention. In addition, in the description of the present invention, "a plurality" or "a plurality" means two or more unless specifically limited otherwise.
Referring to fig. 1 to 6, a public traffic type escalator that prevents suitcase and roll off, includes the step, the step is including footboard 1, kickplate 2, strut 3 and guide pulley, the vacant space of footboard 1 below is provided with mounting box 4, be provided with drive controller 5 in the mounting box 4, the mechanism and the sensing subassembly that sink are put down to the exhibition, footboard 1 is provided with the district of standing, gyro wheel fixed area and the sensing district is stepped on to the foot, the gyro wheel fixed area is provided with the adaptation the first opening 101 of the mechanism that sink is put down to the exhibition, the mechanism that sink is put down to the exhibition passes through first opening 101 exposes in the surface of footboard 1, the sensing of the district is correspondingly installed to the foot sensing subassembly.
When a carrier of the luggage box steps on the foot stepping sensing area, the driving controller 5 receives signals from the sensing assembly to control the motion of the flattening sinking mechanism, and the flattening sinking mechanism sinks to form an accommodating space of the luggage box roller, so that the rolling of the roller is limited, and the function of preventing the luggage box from falling is realized; the foot-operated sensing design does not need manual operation, and does not influence the moving speed of people; all equipment and components are arranged in the vacant space below the pedal 1, so that the original standing space of the public traffic type escalator is not occupied, and the flow of people for conveying is ensured.
The flattening sinking mechanism comprises a rotating power source 6 (a stepping motor) and a folded plate 7 with an L-shaped structural section, wherein the lower long side end of the folded plate 7 is in rotating connection with the output end of the rotating power source 6, and the rotating power source 6 controls the folded plate 7 to rotate and incline downwards to form a sinking space for accommodating the roller of the luggage case. The L-shaped structural design of the folded plate 7 is as follows: firstly, the design of the inclined sinking space can enable the gravity center of the luggage case to be as close to the inner side of the steps as possible, so that the falling possibility of the luggage case is further reduced; secondly, in order to ensure that the top surface of the folded plate 7 can be flatly connected with the pedal 1 when the folded plate is not inclined; and thirdly, matching the installation position of the stepping motor with the position of the output end of the stepping motor.
Considering that only the flap 7 is disposed to be inclined downward to form a receiving space, when the flap 7 is turned upward and restored while the roller is lifted, the pressure applied to the flap 7 is large and the roller may be caught between the first opening 101 and the flap 7, and therefore, the upper long side end of the flap 7 is rotatably connected to the first long side end of the pulling plate 8 and the second long side end of the pulling plate 8 is rotatably connected to the step 1. The pulling plate 8 assists the folded plate 7 to support the luggage trolley, so that the top of the folded plate 7 is prevented from being broken and deformed due to overlarge stress as much as possible, and the luggage trolley is prevented from being clamped.
The output of rotation power supply 6 is provided with shaft coupling and first pivot 9, it forms to rotate to be provided with second pivot 10 between folded plate 7 and the tractive board 8 and connects, the both sides of folded plate 7 are provided with tractive bracing piece 11, the both ends of tractive bracing piece 11 are rotated respectively and are connected first pivot 9 and second pivot 10, folded plate 7 and tractive bracing piece 11 both form relative stillness with first pivot 9. The function of the traction support rod 11 is as follows: firstly, when the folded plate 7 is turned downwards, the downward folding action of pulling the folded plate 7 and the pulling plate 8 is assisted; secondly, when the folded plate 7 does not turn, it is used as a supporting structure to enhance the strength of the folding structure.
The sensing assembly comprises a supporting column 15 and a sensor 13, the supporting column 15 is installed inside the installation box 4, a clamping and sliding portion is arranged on the upper portion of the supporting column 15, a spring 14 is sleeved on the clamping and sliding portion, the clamping and sliding portion is clamped with a pedal 12 in a sliding mode, and the top of the spring 14 supports the bottom of the pedal 12. The reason why the present embodiment sets the structure for triggering the sensor 13 as the step plate 12 is that: firstly, the treading area is large enough, and under the condition of extremely high density in crowds, special search is not needed; secondly, the pedal 1 is arranged to be convenient to control to be flush with the pedal 1.
The drive controller 5 is provided with a delay module, the pedal 12 is pressed down to trigger the sensor 13, the drive controller 5 receives signals and then controls the flattening sinking mechanism to sink and start the delay module, the running speed of the escalator is fixed, so the time from the starting point to the end point of each step is also fixed, the time is used as the set time of the delay module, after the set delay time, the drive controller 5 controls the flattening sinking mechanism to flatten and reset, and a luggage carrier can easily and smoothly pull away the luggage.
The pedal 12 includes a horizontal plate portion 1201 and a connecting portion 1202, the pedal 1 is provided with a second opening 102 adapted to the horizontal plate portion 1201, the horizontal plate portion 1201 is exposed to the surface of the pedal 1 through the second opening 102, the support column 15 is provided with a bracket, the sensor 13 is a photoelectric sensor 13, the bracket is provided with the photoelectric sensor 13, the connecting portion 1202 is provided with a signal sheet 1203, when the horizontal plate portion 1201 is pressed down, the signal sheet 1203 passes through a sensing area of the photoelectric sensor 13, and the photoelectric sensor 13 sends a signal to the driving controller 5. The assembly design has the advantage of convenience in assembly, the sensing assembly can be integrally assembled firstly and then directly installed in the installation box 4, the sensor 13 does not need to be installed at a certain position of the installation box 4 or the pedal 1 firstly, then the supporting column 15 and other parts are installed, and meanwhile, whether the signal sheet 1203 passes through the sensing area of the photoelectric sensor 13 or not needs to be specially calibrated.
The top surface of the pedal 1 is provided with a non-slip mat 17, the non-slip mat 17 is provided with a notch corresponding to the roller fixing area, the non-slip mat 17 covers a part of the folded plate 7, as shown in fig. 5, the non-slip mat 17 covering the part of the folded plate 7 has a certain function of preventing the roller from falling off from the recessed space.
The non-slip mat 17 is provided with anti-slip lines, and the non-slip mat 17 corresponds the line in the district of standing is inequality with the line that corresponds the sensing district is stepped on to this suggestion the position in sensing district is stepped on to the foot.
It should be noted that even if a pedestrian does not mistakenly tread the foot treading sensing area with a luggage, the pedestrian does not influence the escalator, because the lifting stroke of the foot treading plate 12 is extremely small, the purpose is to trigger the photoelectric sensor 13, the lifting fall does not influence the standing of the pedestrian basically, and the flattening sinking mechanism is arranged at the position close to the inner side of the step, the sinking depth is shallow, the treading area is not large, and the standing of the pedestrian is not influenced basically.
The non-slip mat 17 is made of an elastically deformable material, such as rubber or the like. Because the non-slip mat 17 of the embodiment also has the function of preventing the roller from separating from the invagination space, the non-slip mat 17 part covering the folded plate 7 has higher frequency of being impacted by external force, the roller preventing function of the non-slip mat 17 is not influenced by adopting an elastic deformable material, and simultaneously, compared with a hard material, the non-deformable non-slip mat has the advantage of being not easy to deform.
The top surfaces of the folding plate 7 and the traction plate 8 are provided with anti-slip strips 17, so that the height difference between the folding plate 7 and the traction plate 8 and other parts is reduced in addition to the anti-slip function.
The present embodiment further includes other devices or components such as a truss, a guide rail, a handrail, a driving device, etc., which are conventional structural designs in the art, but are not innovative in the present embodiment, and therefore are not described herein again.
The above embodiments do not limit the scope of the present invention, and those skilled in the art can make equivalent modifications and variations without departing from the overall concept of the present invention.