CN104574610A - Intelligent building door control system provided with locking groove containing funnel-shaped region - Google Patents

Intelligent building door control system provided with locking groove containing funnel-shaped region Download PDF

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Publication number
CN104574610A
CN104574610A CN201510032073.3A CN201510032073A CN104574610A CN 104574610 A CN104574610 A CN 104574610A CN 201510032073 A CN201510032073 A CN 201510032073A CN 104574610 A CN104574610 A CN 104574610A
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China
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cam
door
casing
sleeve
horizontal
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CN201510032073.3A
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CN104574610B (en
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舒泳军
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Nanjing Heng Tianwei intellectual technology Co., Ltd
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舒泳军
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Abstract

The invention discloses an intelligent building door control system provided with a funnel-shaped-region locking groove. The door control system comprises a controller and an automatic sliding door, wherein the controller is used for controlling the sliding and locking of the automatic sliding door, the automatic sliding door comprises a door plank (1), an upper guide rail (2) and a lower guide rail (3), the upper edge and the lower edge of the door plank (1) are respectively provided with two sliding driving gears (4 and 5), each of the sliding driving gears (4 and 5) is fixedly connected with a belt pulley (41), the belt pulleys (41) are connected through a transmission belt (6), and one of the sliding driving gears (4 and 5) is connected with a sliding driving motor.

Description

A kind of intelligent building gate control system be provided with containing funnel area latch recess
Technical field
The invention belongs to intelligent building field, be specially a kind of intelligent building gate control system be provided with containing funnel area latch recess.
Background technology
Usually there is in intelligent building the gate control system of energy automatic shutter.This gate control system can sense pedestrian near and automatically open, and automatically can to close away from rear pedestrian.
In order to security consideration, this gate control system to need to be arranged under the accidental situation such as power-off and by manpower push-and-pull and opening or closing by force, thus can improve the flexibility of system, avoids causing can not apply under fortuitous event.
But like this, the security of gate control system in protection security etc. is affected.Such as, under some egregious cases, need carry out secure lock to gate control system and can not be opened by force by manpower; Or in some cases, can not be closed by force by manpower.
Summary of the invention
The object of the present invention is to provide a kind of intelligent building gate control system be provided with containing funnel area latch recess, it can overcome the defect of prior art.
According to the intelligent building gate control system be provided with containing funnel area latch recess of the present invention, comprise controller and automatic sliding door, described controller is for controlling push-and-pull and the locking of described automatic sliding door, described automatic sliding door comprises door-plate part, upper rail part and lower guideway part, the lower edges of described door-plate part is provided with two push-and-pull driven wheels, each in described two push-and-pull driven wheels is all connected with belt pulley, described belt pulley is connected by driving belt, and one in described two push-and-pull driven wheels connects with push-and-pull drive motor, tooth bar extending longitudinally and guide-track groove depression is provided with in described upper rail part and lower guideway part, the thickness direction that described tooth bar and guide-track groove are recessed in door-plate part is provided separately, described door-plate part is provided with the guiding be slidably matched that to cave in described guide-track groove and protrudes, also locking device is provided with in described guide-track groove depression, for to coordinate with the latch recess in the described surface level that protrudes of leading thus opposite house plate locks,
Described locking device comprises lock drive motor, casing installed by stationary housing and cam slide, described stationary housing has the first wall portion, second wall portion and the connecting portion between described first wall portion and the second wall portion, described stationary housing is fixedly connected with building matrix by described connecting portion, described cam slide is installed casing and is arranged between described first wall portion and the second wall portion, and described cam slide is installed casing and is slidably matched with the horizontal slide rail be arranged in described connecting portion by the sliding part at its horizontal walls place, described cam slide is installed casing top and is provided with gathering sill, the sliding center section of horizontal slide rail in described connecting portion is provided with orienting lug, described orienting lug is arranged in gathering sill, described lock drive motor is fixedly connected with described building matrix by fixed mount, described lock drive motor is provided with output shaft, described output shaft to be coordinated with the keyway in cam member endoporus by key and rotates with driving cam part, the side of described cam member is provided with the first installing sleeve, opposite side is provided with the second installing sleeve, described cam slide is installed casing and is had internal cavities, and the both sides inwall of the internal cavities of described cam slide installation casing is respectively arranged with the first protrusion sleeve and second extended internally and protrudes sleeve, described first protrusion sleeve and second protrudes sleeve and stretches in the first installing sleeve and the second installing sleeve respectively, and the first installing sleeve protrudes sleeve connection by the first thrust bearing and first, second installing sleeve protrudes sleeve connection by the second thrust bearing and second, described cam slide is installed in the internal cavities of casing and is also provided with lock slider, described lock slider is provided with and the horizontal joint that described cam member engages and the V-arrangement end (727) relative with described the horizontal joint, described cam slide is installed casing and is also provided with the second horizontal wall end relative with described horizontal walls, sliding eye is provided with in second horizontal wall end, the inwall of described sliding eye and the sliding part between the horizontal joint and V-arrangement end (727) of described lock slider are slidably matched, described lock slider is provided with flexible member mounting flange near described the horizontal joint, and described lock slider is provided with defining flange between described sliding part and described V-arrangement end (727), defining flange is used for the outer side engagement of described second horizontal wall end thus carries out spacing to the inside motion of described lock slider, compression elastic element is provided with to carry out inside bias voltage to described lock slider between described flexible member mounting flange and the inner side of described second horizontal wall end, described first wall portion of described stationary housing and described cam slide are installed between casing and the second wall portion and described cam slide are installed to be separately installed with between casing and be centered around the axial Compress Spring of described output, and described output shaft protrudes sleeve, second through described first wall portion, first successively and protrudes sleeve, cam member endoporus and described second wall portion, described latch recess is blind hole, and there is outside funnel area and inner cylindrical region, funnel area is used for V-arrangement ends contact thus successfully upper part, V-arrangement end is guided to cylindrical region, thus, described output shaft can drive described cam member rotate thus drive described lock slider to stretch out, described lock slider can move horizontally between described first wall portion and the second wall portion together with described cam slide installation casing and described cam member.
By such scheme, owing to have employed locking system, it can lock by opposite house plate by force when needs, like this, can controllably lock gate control system.Adapted to the needs under particular condition, such as, the blocking preventing burglar from runing away, the locking of fire situation are often opened etc.Owing to have employed floating type setting in the horizontal direction, its at vee-block with V-shaped groove not strictly to carrying out the movement of slight amplitude thus aim at V-shaped groove on time; And due to the fixation of stationary housing, this slight horizontal level floats and does not affect the locking effect of opposite house plate.
Accompanying drawing explanation
Fig. 1 is the one-piece construction schematic diagram of the intelligent building gate control system of embodiments of the invention;
Fig. 2 is the structural representation of gate control system on the thickness direction of door-plate, and the left and right directions in figure shows the thickness direction of door-plate.
The structural representation of locked component has been shown in Fig. 3.
Embodiment
Below in conjunction with Fig. 1-3, the present invention is described in detail.
According to the intelligent building gate control system be provided with containing funnel area latch recess of the embodiment of the present invention, comprise controller and automatic sliding door, described controller is for controlling push-and-pull and the locking of described automatic sliding door, described automatic sliding door comprises door-plate part 1, upper rail part 2 and lower guideway part 3, the lower edges of described door-plate part 1 is provided with two push-and-pull driven wheels 4, 5, described two push-and-pull driven wheels 4, each in 5 is all connected with belt pulley 41, described belt pulley 41 is connected by driving belt 6, and described two push-and-pull driven wheels 4, one in 5 connects with push-and-pull drive motor, tooth bar 21 extending longitudinally and guide-track groove depression 22 is provided with in described upper rail part 2 and lower guideway part 3, described tooth bar 21 and guide-track groove depression 22 are provided separately on the thickness direction of door-plate part, described door-plate part 1 is provided with 22 guiding be slidably matched that to cave in described guide-track groove and protrudes 101, locking device 7 is also provided with in described guide-track groove depression 22, for to coordinate with the latch recess 723 in the surface level of described guiding protrusion 101 thus opposite house plate locks,
Described locking device 7 comprises lock drive motor 701, casing 706 installed by stationary housing 703 and cam slide, described stationary housing 703 has the first wall portion 704, second wall portion 717 and the connecting portion between described first wall portion 704 and the second wall portion 717, described stationary housing 703 is fixedly connected with building matrix 8 by described connecting portion, described cam slide is installed casing 706 and is arranged between described first wall portion 704 and the second wall portion 717, and described cam slide is installed casing 706 and is slidably matched with the horizontal slide rail 718 be arranged in described connecting portion by the sliding part at its horizontal walls place, described cam slide is installed casing 706 top and is provided with gathering sill 729, sliding 718 center sections of horizontal slide rail in described connecting portion are provided with orienting lug 728, described orienting lug 728 is arranged in gathering sill 729, described lock drive motor 701 is fixedly connected with described building matrix 8 by fixed mount 702, described lock drive motor 701 is provided with output shaft 705, described output shaft 705 to be coordinated with the keyway in cam member 709 endoporus by key and rotates with driving cam part 709, the side of described cam member 709 is provided with the first installing sleeve 707, opposite side is provided with the second installing sleeve 708, described cam slide is installed casing 706 and is had internal cavities, and the both sides inwall of the internal cavities of described cam slide installation casing 706 is respectively arranged with the first protrusion sleeve 710 and second extended internally and protrudes sleeve 713, described first protrusion sleeve 710 and the second protrusion sleeve 713 stretch in the first installing sleeve 707 and the second installing sleeve 708 respectively, and the first installing sleeve 707 protrudes sleeve 710 by the first thrust bearing 711 and first to be connected, second installing sleeve 708 protrudes sleeve 713 by the second thrust bearing 712 and second and is connected, described cam slide is installed in the internal cavities of casing 706 and is also provided with lock slider 714, described lock slider 714 is provided with the horizontal joint and the V-arrangement end (727) relative with described the horizontal joint of engaging with described cam member 709, described cam slide is installed casing 706 and is also provided with the second horizontal wall end 716 relative with described horizontal walls, sliding eye is provided with in second horizontal wall end, the inwall of described sliding eye and the sliding part between the horizontal joint and V-arrangement end (727) of described lock slider 714 are slidably matched, described lock slider 714 is provided with flexible member mounting flange 721 near described the horizontal joint, 719, and described lock slider 714 is provided with defining flange 720 between described sliding part and described V-arrangement end (727), 715, defining flange 720, 715 carry out spacing to the inside motion of described lock slider 714 for the outer side engagement with described second horizontal wall end 716, at described flexible member mounting flange 721, compression elastic element 722 is provided with to carry out inside bias voltage to described lock slider 714 between 719 and the inner side of described second horizontal wall end 716, described first wall portion 704 of described stationary housing 703 and described cam slide are installed between casing 706 and the Compress Spring 740,741 being separately installed with between casing 706 and being centered around around described output shaft 705 installed by the second wall portion 717 and described cam slide, and described output shaft 705 protrudes sleeve 710, second through described first wall portion 704, first successively and protrudes sleeve 713, cam member 709 endoporus and described second wall portion 717, described latch recess 723 is blind hole, and there is outside funnel area 730 and inner cylindrical region 731, funnel area 730 is for contacting with V-arrangement end 727 thus successfully upper part, V-arrangement end 727 being guided to cylindrical region 731, thus, described output shaft 705 can drive described cam member 709 to rotate thus drive described lock slider 714 to stretch out, described lock slider 714 can move horizontally between described first wall portion 704 and the second wall portion 717 together with described cam slide installation casing 706 and described cam member 709.
Alternatively, the quantity of described door-plate part is two, and it is oppositely arranged and can moves privately in opposite directions with mutually.
Alternatively, wherein, described controller can by sensor sense pedestrian near with away from thus control push-and-pull drive motor and run opening and closing to drive described gate control system.
Alternatively, described controller can control the motion of described push-and-pull drive motor and described lock drive motor according to command signal.
Alternatively, wherein, the quantity of the described latch recess 723 on described door-plate part is multiple, can lock for the diverse location of door-plate part.

Claims (5)

1. one kind is provided with the intelligent building gate control system containing funnel area latch recess, comprise controller and automatic sliding door, described controller is for controlling push-and-pull and the locking of described automatic sliding door, described automatic sliding door comprises door-plate part (1), upper rail part (2) and lower guideway part (3), the lower edges of described door-plate part (1) is provided with two push-and-pull driven wheels (4, 5), described two push-and-pull driven wheels (4, 5) each in is all connected with belt pulley (41), described belt pulley (41) is connected by driving belt (6), and described two push-and-pull driven wheels (4, 5) one in connects with push-and-pull drive motor, tooth bar (21) extending longitudinally and guide-track groove depression (22) is provided with in described upper rail part (2) and lower guideway part (3), described tooth bar (21) and guide-track groove depression (22) are provided separately on the thickness direction of door-plate part, described door-plate part (1) is provided with the guiding that to cave in described guide-track groove (22) be slidably matched and protrudes (101), locking device (7) is also provided with in described guide-track groove depression (22), for to coordinate with the latch recess (723) in the described surface level protruding (101) that leads thus opposite house plate locks,
Described locking device (7) comprises lock drive motor (701), casing (706) installed by stationary housing (703) and cam slide, described stationary housing (703) has the first wall portion (704), second wall portion (717) and the connecting portion be positioned between described first wall portion (704) and the second wall portion (717), described stationary housing (703) is fixedly connected with building matrix (8) by described connecting portion, described cam slide is installed casing (706) and is arranged between described first wall portion (704) and the second wall portion (717), and described cam slide is installed casing (706) and is slidably matched with the horizontal slide rail be arranged in described connecting portion (718) by the sliding part at its horizontal walls place, described cam slide is installed casing (706) top and is provided with gathering sill (729), sliding (718) center section of horizontal slide rail in described connecting portion is provided with orienting lug (728), described orienting lug (728) is arranged in gathering sill (729), described lock drive motor (701) is fixedly connected with described building matrix (8) by fixed mount (702), described lock drive motor (701) is provided with output shaft (705), described output shaft (705) to be coordinated with the keyway in cam member (709) endoporus by key and rotates with driving cam part (709), the side of described cam member (709) is provided with the first installing sleeve (707), opposite side is provided with the second installing sleeve (708), described cam slide is installed casing (706) and is had internal cavities, and the both sides inwall of the internal cavities of described cam slide installation casing (706) is respectively arranged with the first protrusion sleeve (710) and second extended internally and protrudes sleeve (713), described first protrusion sleeve (710) and second protrudes sleeve (713) and stretches in the first installing sleeve (707) and the second installing sleeve (708) respectively, and the first installing sleeve (707) protrudes sleeve (710) by the first thrust bearing (711) and first to be connected, second installing sleeve (708) protrudes sleeve (713) by the second thrust bearing (712) and second and is connected, described cam slide is installed in the internal cavities of casing (706) and is also provided with lock slider (714), described lock slider (714) is provided with the horizontal joint and V-arrangement end (727) (727) relative with described the horizontal joint of engaging with described cam member (709), described cam slide is installed casing (706) and is also provided with the second horizontal wall end (716) relative with described horizontal walls, sliding eye is provided with in second horizontal wall end, the inwall of described sliding eye and the sliding part between the horizontal joint and V-arrangement end (727) of described lock slider (714) are slidably matched, described lock slider (714) is provided with flexible member mounting flange (721 near described the horizontal joint, 719), and described lock slider (714) is provided with defining flange (720 between described sliding part and described V-arrangement end (727), 715), defining flange (720,715) carry out spacing to the inside motion of described lock slider (714) for the outer side engagement with described second horizontal wall end (716), at described flexible member mounting flange (721,719) and between the inner side of described second horizontal wall end (716) compression elastic element (722) is provided with to carry out inside bias voltage to described lock slider (714), described first wall portion (704) of described stationary housing (703) and described cam slide are installed between casing (706) and the second wall portion (717) and described cam slide are installed to be separately installed with between casing (706) and be centered around described output shaft (705) Compress Spring (740,741) around, and described output shaft (705) protrudes sleeve (710), second through described first wall portion (704), first successively and protrudes sleeve (713), cam member (709) endoporus and described second wall portion (717), described latch recess (723) is blind hole, and there is outside funnel area (730) and inner cylindrical region (731), funnel area (730) is for contacting with V-arrangement end (727) thus successfully V-arrangement end (727) upper part being guided to cylindrical region (731), thus, described output shaft (705) can drive described cam member (709) rotate thus drive described lock slider (714) to stretch out, described lock slider (714) can move horizontally between described first wall portion (704) and the second wall portion (717) together with described cam slide installation casing (706) and described cam member (709).
2. be provided with the intelligent building gate control system containing funnel area latch recess as claimed in claim 1, the quantity of described door-plate part is two, and it is oppositely arranged and can moves privately in opposite directions with mutually.
3. be provided with the intelligent building gate control system containing funnel area latch recess as claimed in claim 1, wherein, described controller can by sensor sense pedestrian near with away from thus control push-and-pull drive motor and run opening and closing to drive described gate control system.
4. be provided with the intelligent building gate control system containing funnel area latch recess as claimed in claim 1, described controller can control the motion of described push-and-pull drive motor and described lock drive motor according to command signal.
5. be provided with the intelligent building gate control system containing funnel area latch recess as claimed in claim 1, wherein, the quantity of the described latch recess (723) on described door-plate part is multiple, can lock for the diverse location of door-plate part.
CN201510032073.3A 2015-01-22 2015-01-22 A kind of intelligent building gate control system be provided with containing funnel area latch recess Active CN104574610B (en)

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CN201510032073.3A CN104574610B (en) 2015-01-22 2015-01-22 A kind of intelligent building gate control system be provided with containing funnel area latch recess

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Application Number Priority Date Filing Date Title
CN201510032073.3A CN104574610B (en) 2015-01-22 2015-01-22 A kind of intelligent building gate control system be provided with containing funnel area latch recess

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CN104574610B CN104574610B (en) 2015-12-09

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Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20110291846A1 (en) * 2010-05-28 2011-12-01 Rockwell Automation Technologies, Inc. Efficient and safe door locking control in power-off and power-on conditions
CN102900285A (en) * 2012-09-24 2013-01-30 长兴县供电局 Locking device for access control
CN103382791A (en) * 2013-08-12 2013-11-06 武汉普林光通科技有限公司 Electronic lock system and control method thereof
CN203659088U (en) * 2014-01-02 2014-06-18 大连枫林轩宇科技发展有限公司 Access control electric lock control system

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20110291846A1 (en) * 2010-05-28 2011-12-01 Rockwell Automation Technologies, Inc. Efficient and safe door locking control in power-off and power-on conditions
CN102900285A (en) * 2012-09-24 2013-01-30 长兴县供电局 Locking device for access control
CN103382791A (en) * 2013-08-12 2013-11-06 武汉普林光通科技有限公司 Electronic lock system and control method thereof
CN203659088U (en) * 2014-01-02 2014-06-18 大连枫林轩宇科技发展有限公司 Access control electric lock control system

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Address after: 311817 Zhuji City, Zhejiang province should shop Street Town Shop Street Village Town, Changxin Road, No. 8, No.

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Denomination of invention: Intelligent building door control system provided with locking groove containing funnel-shaped region

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