SLIDING-PLUG MOVEMENT MECHANISM DEVICE BASED ON VIRTUAL LINEAR MOVEMENT GUIDE RAIL AND FOR SLIDING-PLUG DOOR
20170137037 ยท 2017-05-18
Inventors
Cpc classification
B61D19/009
PERFORMING OPERATIONS; TRANSPORTING
E05D15/1044
FIXED CONSTRUCTIONS
International classification
B61D19/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A simple, convenient and light weight compartment door is provided.
Claims
1-6. (canceled)
7. A compartment door comprising a bearing rod slide block with a rod sliding block arranged on a bearing light bar, wherein the bearing light rod is connected by a sliding pair, wherein the compartment door is connected with the bearing sliding block through a plugging and pulling movement main body, and the plugging and pulling movement main body comprises a swing rod, a connecting rod and a roller, wherein an upper end of the connecting rod and compartment door are connected to a point B by a rotation pair, and a lower end of the connecting rod and the bearing rod slide block are connected to point D by a sliding pair, and wherein the upper end of the swing rod and bearing rod slide block are connected to point A by the rotation pair, and B, C, D are located on the same straight line.
8. The compartment door according to claim 7, wherein the mechanism of the plugging and pulling movement is from point A on the upper end of the swing rod to midpoint C on the connecting rod, and wherein a length AC is half the upper end of the connecting rod point B and the lower end of the connecting rod point D of the length BD.
9. The compartment door according to claim 7, wherein the upper pulley of the door is fixed on the compartment door and the upper pulley of the compartment door is arranged in the upper pulley track which is fixed on the vehicle body.
10. The compartment door according to claim 7, wherein the lower end of the compartment door is fixedly provided with a lower guide rail, while the lower guide rail and the lower pulley moving side of the door are arranged on the vehicle body connected by the sliding pair.
11. The compartment door according to claim 7, wherein the bearing light rod and nut slider are connected with a mesh, while the convex plate is fixed on the bearing light rod, a concave plate is fixed on the nut sliding block, and the convex plate and concave plate are connected together.
12. The compartment door according to the claim 11, wherein the nut sliding block is hollow and is provided with a thread, the screw rod is connected to the thread, and one end of the screw rod is also connected to the motor.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0012]
[0013] Numbers in
DETAILED DESCRIPTION
[0014] A mechanism device based on virtual linear moving guide rail of sliding-plug door plugging and pulling movement. It is made up of double linear guide rail and five-bar mechanisms with virtual restraint. Under normal circumstances, the mechanism degree of freedom is zero and it can't move. However, the mechanism is capable of moving when the length of each rod is at a specific length and at this time the mechanism is virtual restraint. The degree of freedom of the mechanism shall be calculated in accordance with the cancellation of the component and the low pair. At the same time, the degree of freedom of the five-bar mechanisms should be equal to the degree of freedom of the four-bar mechanisms and it can move. With the different requirements of industrial applications, the inventors selected different components and motion pairs as virtual restraint and the re-election of different components as driving parts, the mechanism can have different functions. The invention relates to a double linear guide rail and five-bar mechanisms of one double linear guide rails as a virtual restraint and cancels the linear guide rail (i.e. low pair) with its subsidiary slide block (i.e. component) whiles the remaining four components are retained. Although the linear guide rail (i.e. low pair) and its subsidiary slide block (component) were canceled, due to the special nature of the four-bar mechanisms length which is connected with the slide block, the connection point can still be guaranteed according to the original linear guide trajectory. Although cancel the linear guide rail, but still can walk out of the original linear guide rail track, we call it virtual linear motion guide rails. Connecting point of virtual linear moving guide rail and the driving point of the sliding-plug door are connected by rotation pair. In order to ensure that the sliding-plug door can follow the required linear movement along the guide track and complete the plugging and pulling movement of the door, the other guide rail in the original double guide rails is replaced with a roller form having high pair form with passive degree of freedom. Along with the change of the motion range of the mechanism, the force of the mechanism is also changing. In order to ensure flexibility of the plugging and pulling movement, different components can be used as the driving component in the mechanism so that the door is lighter, more flexible and reliable when making the plugging and pulling movement. The invention of the plugging and pulling movement is without driving power source alone. The power source is from the drive door opening and closing direction (i.e. train forward direction) of screw motion through the door of the curve guide rail forming action and reaction to push on the door which achieve the door plugging and pulling movement. The re-use of the torsion spring force driving the swing rod to rotate in the virtual linear guide rail sliding-plug door plugging and pulling movement mechanism, ensure that the door is always in open state. When the door to needs of the plugging or pulling, used to set in the door frame of bevel mechanism driven original slider guide rail changed to roller forms of high pair, plugging or pulling the door.
[0015] As shown in
[0016] In addition to the main body mechanism ACBD, this device is supplemented by compartment door (4), bearing rod slide block (5), bearing light rod (6), reverse stroke non-self-locking (i.e. having a large lead) trip screw rod (7) with the screw rod (7) to match the nut slider (8) and the compartment door upper pulley (9), upper pulley guide rail (10), compartment door lower pulley (11) and other components. It is the ACBD mechanism which makes the plugging and pulling movement based on virtual linear mobile guide rail about the sliding-plug door. Point B of the mechanism component (2) is connected to the compartment door (4) by rotation pair B and there is a compartment door upper pulley (9) on the top of compartment door. The compartment door upper pulley (9) is installed on the upper pulley guide rail (10) and the upper pulley guide rail (10) is fixed and installed on the vehicle body. The guide rail on the lower end of compartment door is installed on the door, with the door into a whole. The compartment door lower pulley (11) is installed on the guide rail of the lower end and can move along the low guide rail as shown in
[0017] Its drive transmission line: If the door needs to be closed using the controller to control the steering of a motor and running time of the motor,]driven screw rod (7) to rotate, driven a nut slider (8) along the train forward moving direction, driven the bearing rod slide (5) along the bearing rod to move, driven the main body of the plugging or pulling movement ABCD moving as a whole, driven upper pulley of compartment door (9) move along the upper pulley track (10) doing straight line movement, completed movement that the door along the train forward direction (or reverse direction) closed (or open) movement. When the compartment door (4) moved to near the end point position of closed the door. Because the upper pulley (9) of the compartment door enter in the curved section of the upper pulley guide rail (10), by the upper pulley track (10) to the upper pulley of compartment door (9) the counterforce of V direction force, making B point on the compartment door (4) along the direction V complete plugging or pulling movement of closed the door. Due to the characteristics of the mechanism, the invention can always ensure that the B point along the direction that BA is perpendicular to the AD, and make virtual linear guide rail movement. The above is the closing process, first along the forward direction of the train, that is, the upper pulley of compartment door (9) in the upper pulley track (10) doing straight line movement. When the door is closed, the upper pulley of compartment door (9) enters the upper pulley track (10) curved section to complete plugging or pulling movement along the V direction and closed the door.
[0018] If you need to open the door, then the process is an opposite process. First, making the curved section plugging or pulling movement of the guide rail to open the door, and then make a straight line movement to open the door. The opposite movement showed in
[0019] The drive transmission line: If the door needs to be closed the controller is used to control the steering and running time of the motor. The driven screw rod (7) rotate and drives the nut slider (8) along the train forward moving direction which intern drives the bearing rod slide (5) along the bearing rod to move. This then drives the main body of the plugging or pulling movement ABCD moving as a whole. The driven upper pulley of compartment door (9) also moves along the upper pulley track (10) in a straight line movement and completes the door movement along the train forward direction (closed) or reverse direction (open) movement when the compartment door (4) moved to near the end point position of the closed door. Because the upper pulley (9) of the compartment door enters the curved section of the upper pulley guide rail (10), the force of the upper pulley track (10) to the counterforce of the upper pulley of compartment door (9) is in the V direction. This enables B point on the compartment door (4) along the direction V completes the plugging or pulling movement of closed door. Due to the characteristics of the mechanism, the invention can always ensure that the B point is along the direction that BA is perpendicular to AD and makes virtual linear guide rail movement. The above is the closing process, first along the forward direction of the train, i.e. the upper pulley of compartment door (9) in the upper pulley track (10) doing straight line movement. When the door is closed, the upper pulley of compartment door (9) enters the upper pulley track (10) curved section to complete plugging or pulling movement along the V direction and closed the door.
[0020] If you need to open the door, the process is the opposite process. First, make the curved section plugging or pulling movement of the guide rail to open the door and then make a straight line movement to open the door.