The invention relates to a turnstile blocking apparatus, in particular to a transmission connecting mechanism positioned between a drive apparatus and a gate leaf swing arm.
Rail transit stations, such as transit stations of subways, light railways, railroads and so on, generally establish an automatic fare gate to control passengers and cargos. A turnstile blocking apparatus belongs to one kind of the automatic fare gate.
The width of a passage of the turnstile blocking apparatus is determined by the width of a gate leaf functioning as blocking when the leaf is closed. The transmission connecting mechanism, driving the gate leaf to be opened or closed and positioned between the drive apparatus and the swing arm of the gate leaf, determines the blocking amplitude of the gate leaf. Currently, the disclosed transmission connecting mechanism between the drive apparatus and the swing arm of the gate leaf has the following several categories: According to publication patent number CN201053282 of “Turnstile Structure for Fare Gate” a gate is opened and closed with the adoption of a connecting crank—swing rod transmission mechanism between a motor and a gate leaf; according to publication patent number CN2635850 of “Control Apparatus of Access Gate of Gate leaf” a motor is adopted to drive an eccentric transmission disk driving a traction plate connecting a swing arm of a gate leaf, thereby opening or closing the gate leaf; according to publication patent number CN201037352 of “Turnstile for Automatic Fare Gate”, a motor drives an eccentric disk driving a connecting rod to draw a swing arm, so as to open or close a gate leaf. The transmission connecting apparatus in the abovementioned prior art mainly consists of an eccentric disk or a crank and a connecting rod playing the same role or a traction plate and a swing rod playing the same role. However, either the eccentric amount of the eccentric disk or the length of the connecting rod is a constant value and cannot be adjusted, thereby determining that the blocking amplitude of the gate leaf is not a constant value. If the width of a passage needs to be adjusted, the transmission connecting mechanism consisting of an eccentric disk with other eccentric amount and the connecting rod with other length must be replaced, thus costing manpower and material resources and being adverse to fully utilize equipment.
As for the abovementioned technical problems, the invention provides the following technical solutions: a transmission connecting mechanism adjusting the length of a connecting rod and the eccentric amount of an eccentric disk is provided, so as to achieve a turnstile blocking apparatus adjusting the blocking width of a gate leaf within a certain range. The adopted technical solutions, solving the abovementioned technical problems, are as follows: The apparatus comprises a shaft 1 and swing arm 4, wherein it also comprises an eccentric disk 21 connected with the shaft 1 and eccentrically provided with a plurality of mounting holes 211 of the eccentric disk 21, an eccentric adjusting piece 22 connected with the eccentric disk 21 through the mounting hole 211 of the eccentric disk 21, a small shaft 223 eccentrically fixed at the eccentric adjusting piece 22, and a connecting rod mechanism 3 adjusting its length retractably and is connected with the swing arm 4.
The invention has the following technical effects: the eccentric disk in the prior art is directly with the small shaft 223 together, and the small shaft 223 is freely connected with the connecting rod again. Under such conditions, the eccentric amount of the small shaft 223 relative to the eccentric disk 21 is unchanged. The eccentric adjusting piece 22, fixing the small shaft 223, is additionally provided on the eccentric disk. The small shaft 223 then is freely connected with the connecting rod. A plurality of the mounting holes, adjusting the eccentricity, are arranged on the eccentric disk 21. The eccentric adjusting piece 22 can be rotated conveniently and then arranged in the corresponding mounting holes, thus realizing the function of adjusting the eccentricity. The length of the connecting rod must be adjusted after the eccentric amount is adjusted. The connecting rod in the prior art does not have stretching function. The connecting rod mechanism 3 in the invention can retractably adjust the length of the connecting rod. Through the abovementioned arrangement, the blocking width of the gate leaf can be increased or decreased within a certain range while the gate leaf is guaranteed to be completely opened or recovered in place.
One of the preferable solutions in the invention is as follows: The eccentric disk 21 is eccentrically provided with six mounting holes 211 of the eccentric disk positioned at the same periphery and distributed uniformly.
The preferable technical solution further has the following technical effects: Six mounting holes 211 having the inclined angle of 60° are uniformly and eccentrically provided at the eccentric disk 21. The eccentric adjusting piece 22 is only rotated by 60° and can change the eccentricity. Therefore, there is relatively big room to adjust the eccentric amount so that the eccentric amount can be better matched with the changed length of the connecting rod.
One of the preferable technical solutions of the invention is as follows: The eccentric adjusting piece 22 is a flange, and three flange mounting holes 222 are provided on the flange. The flange mounting holes 222 are uniformly distributed and corresponding to the mounting holes 211 of the eccentric disk.
The preferable technical solution further has following technical effects: The eccentric disk 21 in the prior art is directly welded with the small shaft 223 together, and thus the eccentric amount cannot be adjusted. The invention is additionally provided with the flange and eccentrically provided with the small shaft 223; there is one eccentric amount between the small shaft 223 and the central point of the flange. The flange is in bolted connection with the eccentric disk 21 through the mounting holes. Therefore, only when the mounted place between the flange and the eccentric disk 21 is changed, the eccentric amount can be conveniently changed.
One of the preferable technical solutions of the invention is as follows: The connecting rod 3 comprises an adjusting nut 31 having the left and the right ends respectively provided with a left thread and a right thread, the traction rod (32) of the left thread having one end connected with the left thread of the adjusting nut (31) and having the other end connected with the swing arm (4) of a gate leaf, and. the traction rod (33) of the right thread having one end connected with the right thread of the adjusting nut (31) and having the other end connected with the eccentric adjusting piece 22.
One of the preferable technical solutions of the invention is as follows: A connecting rod mechanism 3 in the invention is connected with a left traction rod and a right traction rod 32 and 33 as well as adjusting nut 31 through a thread. Only when the adjusting nut 31 is rotated, the traction rods 32 and 33 of the left and the right threads can be moved relatively, thus realizing the functions that the connecting rod can be stretched and its length can hence be adjusted.
One of the preferable technical solutions of the invention is as follows: A connecting rod mechanism 3 further comprises a left lock nut 34 arranged between a traction rod 32 of a left thread and an adjusting nut 31 and a right lock nut 35 arranged between a traction rod 33 of a right thread and the adjusting nut 31.
The preferable technical solution further has follows technical effects: The right and the left lock nuts 34 and 35 are arranged between the traction rods 32 and 33 of the left and the right threads and the adjusting nut 31. After the connecting rod is adjusted, the lock nut is rotated tightly again, so that the traction rod and the adjusting nut are connected more firmly and stably, thereby preventing their parts from being displaced.
One of the preferable technical solutions of the invention is as follows: swing arm 4 is fixed with a traction shaft 41; the traction rod 32 of the left thread is fixed with a left bearing 36 sleeved with the traction shaft 41, thereby facilitating the traction rod 32 of the left thread to be freely connected with the swing arm 4. The traction rod 33 of the right thread is fixed with a right bearing 37 sleeved with the small shaft 223, thereby facilitating the traction rod 33 of the right thread to be freely connected with the eccentric adjusting piece 22.
The preferable technical solutions further have the following technical effects: The connecting rod as well as the swing arm and the small shaft are freely connected with bearings, thereby facilitating the operation between the parts to be matched with each other more smoothly and facilitating vibration to be lowered.
The embodiments of the invention shall be described in more details with the combination of the drawings and further illustrate the advantages of the invention and its contributions compared to the prior art. As shown in
Compared with the prior art, the invention mainly improves an eccentric transmission mechanism and a connecting rod mechanism 3. As shown in
With the abovementioned arrangements, the invention adjusts the blocking width of a gate leaf within a certain range through such following steps: A mounting hole of a flange is firstly rotated and fixed on an eccentric disk 21 with bolts after the mounting hole is adjusted to have proper eccentric amount. An adjusting nut 31 is rotated, and the traction rods 32 and 33 of the left and the right threads are moved relatively, so as to increase or decrease the length of a connecting rod. After the length of the connecting rod is adjusted, the left and the right luck nuts 34 and 35 are screwed tightly. With the abovementioned adjustment, the blocking width of the gate leaf is changed and guarantees the gate leaf to be opened or recovered in place. In existing experiments, for example, the blocking width of 900 mm can be adjusted to be 870 mm.
Number | Date | Country | Kind |
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2010 1 0597007 | Dec 2010 | CN | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/CN2011/000229 | 2/14/2011 | WO | 00 | 12/12/2012 |
Publishing Document | Publishing Date | Country | Kind |
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WO2012/079271 | 6/21/2012 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
6241300 | Suzuki | Jun 2001 | B1 |
8020603 | Burgin | Sep 2011 | B2 |
20070237577 | Gelfand et al. | Oct 2007 | A1 |
20090116903 | Causey et al. | May 2009 | A1 |
Number | Date | Country |
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201037352 | Mar 2008 | CN |
201110102 | Sep 2008 | CN |
Number | Date | Country | |
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20130269260 A1 | Oct 2013 | US |