CN104563702A - Safety gate utilization method - Google Patents

Safety gate utilization method Download PDF

Info

Publication number
CN104563702A
CN104563702A CN201510035989.4A CN201510035989A CN104563702A CN 104563702 A CN104563702 A CN 104563702A CN 201510035989 A CN201510035989 A CN 201510035989A CN 104563702 A CN104563702 A CN 104563702A
Authority
CN
China
Prior art keywords
pendulum
stop
swings
drive surface
safety
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN201510035989.4A
Other languages
Chinese (zh)
Inventor
郑运婷
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Individual
Original Assignee
Individual
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Individual filed Critical Individual
Priority to CN201510035989.4A priority Critical patent/CN104563702A/en
Publication of CN104563702A publication Critical patent/CN104563702A/en
Pending legal-status Critical Current

Links

Landscapes

  • Power-Operated Mechanisms For Wings (AREA)

Abstract

The invention discloses a safety gate utilization method. The safety gate comprises an outer casing, a left pendulum bob, a right pendulum bob, a pendulum brake and a compression spring; the left pendulum bob and the right pendulum bod are connected with the outer casing; the pendulum brake is connected with the outer casing in a movable fit mode; the pendulum brake is arranged below the left pendulum bod and the right pendulum bod; the pendulum brake is arranged between the left pendulum bod and the right pendulum bod; the pendulum brake is provided with a left driving surface; the left driving surface of the pendulum brake is arranged at a pendulum track position of the left pendulum bod; the pendulum brake is provided with a right driving surface; the right driving surface of the pendulum bod is arranged at a pendulum track position of the right pendulum bod; the pendulum brake is supported on the compression spring; the compression spring is installed at the bottom of the outer casing; when the safety device is used, the left pendulum bod and the right pendulum bod drive the pendulum brake and the floor to be in friction in a contact mode to block a flexible door to rapidly be closed or opened, and the flexible door is effectively from clamping or bumping children.

Description

The using method of safety-door device
Technical field
The present invention relates to a kind of using method of safety device, particularly a kind of using method of safety-door device.
Background technology
At present, common interior door, the particularly interior door of highrise building, when there being large wind, often there is interior door quick closedown or open fast, and the power of closing and open is very big, and interior door is easy to crush and damage child, and a kind of using method of safety-door device has become the security needs that people use interior door.
Summary of the invention
The object of this invention is to provide a kind of using method of safety-door device, solution general room door is easily blown the problem of the child that crushes or damage by strong wind.
The technical solution adopted in the present invention is: safety-door device includes shell, left swing is hammered into shape, right pendulum, pendulum is stopped and Compress Spring, left swing hammer and right pendulum are connected with shell, put be connected dynamic with shell of stopping, pendulum is stopped and is positioned at the below of left swing hammer and right pendulum, pendulum is stopped and is positioned at the centre of left swing hammer and right pendulum, pendulum is stopped and is provided with left drive surface, put the track position that the left drive surface of stopping is positioned at the swing of left swing hammer, pendulum is stopped and is provided with right drive surface, put the track position that the right drive surface of stopping is positioned at the swing of right pendulum, pendulum is stopped and is supported on Compress Spring, Compress Spring is installed on the bottom of shell.
The using method of safety-door device is: during use, shell is installed on dodge gate lower end position, puts the top that the lower surface of stopping is positioned at floor, leaves gap between the lower surface that pendulum is stopped and floor; During large wind dodge gate quick closedown, left swing is hammered drive surface left into shape and is swung, and exerts pressure to left drive surface, and left swing hammer swings the elastic force overcoming Compress Spring and to be stopped by pendulum pressure, the lower surface that pendulum is stopped and floor rub, and utilize pendulum to stop and hinder dodge gate to be blown quick closedown by strong wind with the frictional force on ground; When large wind dodge gate is opened fast, right pendulum to the right drive surface swings, and exerts pressure to right drive surface, and right pendulum swings the elastic force overcoming Compress Spring and to be stopped by pendulum pressure, the lower surface that pendulum is stopped and floor rub, and utilize pendulum to stop and hinder dodge gate to be blown by strong wind with the frictional force on ground to open fast.
The invention has the beneficial effects as follows: during the use of safety-door device, utilize left swing to hammer into shape and right pendulum drives pendulum to stop and floor contact friction, hinder dodge gate quick closedown and open, effectively preventing dodge gate from crushing or the child that damages.
Accompanying drawing explanation
Fig. 1 is the structural representation of safety-door device.
Detailed description of the invention
Below in conjunction with accompanying drawing, the present invention is further detailed:
The structural representation of the safety-door device shown in Fig. 1, safety-door device includes shell 1, left swing hammer 2, right pendulum 3, put stop 4 and Compress Spring 5, left swing hammer 2 and right pendulum 3 are connected with shell 1, pendulum is stopped and 4 to be connected with shell 1 is dynamic, pendulum is stopped and 4 is positioned at left swing hammer 2 and the below of right pendulum 3, pendulum is stopped and 4 is positioned at left swing hammer 2 and the centre of right pendulum 3, pendulum is stopped and 4 is provided with left drive surface 6, pendulum stop 4 left drive surface 6 be positioned at left swing hammer 2 swing track position, pendulum is stopped and 4 is provided with right drive surface 7, pendulum stop 4 right drive surface 7 be positioned at right pendulum 3 swing track position, pendulum is stopped and 4 is supported on Compress Spring 5, Compress Spring 5 is installed on the bottom of shell 1.
The using method of safety-door device is: during use, shell 1 is installed on dodge gate 8 lower end position, pendulum stop 4 lower surface 9 be positioned at the top on floor 10, pendulum stop 4 lower surface 9 and floor 10 between leave gap; During 8 quick closedown of large wind dodge gate, left swing hammer 2 left drive surface 6 swings, and left drive surface 6 is exerted pressure, left swing hammer 2 swings the elastic force overcoming Compress Spring 5 and to be stopped by pendulum 4 pressures, make pendulum stop 4 lower surface 9 rub with floor 10, utilize pendulum to stop and 4 hinder dodge gate 8 to be blown quick closedown by strong wind with the frictional force on ground; When large wind dodge gate 8 is opened fast, right pendulum 3 to the right drive surface 7 swings, and right drive surface 7 is exerted pressure, right pendulum 3 swings the elastic force overcoming Compress Spring 5 and to be stopped by pendulum 4 pressures, make pendulum stop 4 lower surface 9 rub with floor 10, utilize pendulum to stop and 4 hinder dodge gate 8 to be blown by strong wind with the frictional force on ground to open fast.
Swing pressure pendulum and stop to implement left swing hammer 2 and right pendulum 3 and 4 to move down, described shell 1 is provided with pilot hole 13, and pendulum is stopped and 4 is provided with guide rod 14, and guide rod 14 is connected with pilot hole 13 is dynamic, Compress Spring 5 is enclosed within outside guide rod 14, and the direction of Compress Spring 5 elastic force vertically upward; Left swing hammer 2 swings the elastic force that the pressure putting on left drive surface 6 is greater than Compress Spring 5; Right pendulum 3 swings the elastic force that the pressure putting on right drive surface 7 is greater than Compress Spring 5; When described dodge gate 8 swings left, right pendulum 3 swings by counter clockwise direction, backswing, then reciprocally swinging after right wall 11 percussion of right pendulum 3 and shell 1; When described dodge gate 8 swings to the right, left swing hammer 2 swings in the direction of the clock, backswing, then reciprocally swinging after left wall 12 percussion of left swing hammer 2 and shell 1.
In order to implement left swing hammer 2 and right pendulum 3 swing and reset, left swing hammer 2 is provided with left swing bar 15, left spherojoint 16 and left swing ball 17, one end of left swing bar 15 is connected with left swing ball 17, and the other end of left swing bar 15 is connected with left spherojoint 16, and left spherojoint 16 is connected with shell 1; Right pendulum 3 is provided with right fork 18, right spherojoint 19 and right swing ball 20, and one end of right fork 18 is connected with right swing ball 19, and the other end of right fork 18 is connected with right spherojoint 19, and right spherojoint 19 is connected with shell 1; Described left swing bar 15 is provided with Zola's spring 21, and one end of Zola's spring 21 is connected with left swing bar 15, and the other end of Zola's spring 21 is connected with shell 1; Right fork 18 is provided with right extension spring 22, and one end of right extension spring 22 is connected with right fork 18, and the other end of right extension spring 22 is connected with shell 1; The other end and the shell 1 of described Zola's spring 21 are hinged, and the other end and the shell 1 of right extension spring 22 are hinged.
Described pendulum stop 4 left drive surface 6 be inclined-plane, the inclined-plane of left drive surface 6 is facing to left swing hammer 2; Pendulum stop 4 right drive surface 7 be inclined-plane, the inclined-plane of right drive surface 7 is facing to right pendulum 3; The oscillatory forces of described left swing hammer 2 is greater than the pulling force of Zola's spring 21, and the oscillatory forces of right pendulum 3 is greater than the pulling force of right extension spring 22.
When described dodge gate 8 swings left, left swing hammer 2 is by counterclockwise swinging, and left swing hammer 2 contacts with left drive surface 6, and driving pendulum is stopped and 4 to be moved vertically downward; After described left swing hammer 2 stopping swings by counter clockwise direction, left swing hammer 2 resets in the direction of the clock swing under the pulling force effect of Zola's spring 21, left swing hammer 2 left swing ball 17 leave pendulum stop 4 left drive surface 6, pendulum stop 4 under the effect of Compress Spring 5 elastic force rise reset, pendulum stop 4 lower surface 9 leave floor 10.
When described dodge gate 8 swings to the right, right pendulum 3 swings in the direction of the clock, and right pendulum 2 contacts with right drive surface 7, drives pendulum to stop and 4 to move vertically downward; After described right pendulum 3 stops pressing swing in the direction of the clock, right pendulum 3 under the pulling force effect of right extension spring 22 by the swing that counterclockwise resets, the right swing ball 20 of right pendulum 3 leave pendulum stop 4 right drive surface 7, pendulum stop 4 under the effect of Compress Spring 5 elastic force rise reset, pendulum stop 4 lower surface 9 leave floor 10.
In order to avoid left swing hammer 2 and right pendulum 3 are put excessive, described pendulum is stopped and 4 is provided with baffle plate 23, and baffle plate 23 is between left drive surface 6 and right drive surface 7, and baffle plate 23 is just facing to left swing hammer 2, and baffle plate 23 back side is facing to right pendulum 3.
In order to regulate and fixing brake disc 24, described pendulum is stopped and 4 is provided with brake disc 24, and brake disc 24 is stopped by screw thread and pendulum and 4 to be connected, and brake disc 24 is provided with locking nut 25; The lower surface of described brake disc 24 is to landing ground, and the end face of brake disc 24 is parallel to the ground, and the end face of brake disc 14 is made up of rubber or plastics.

Claims (10)

1. the using method of safety-door device, safety-door device includes shell (1), left swing hammer (2), right pendulum (3), pendulum is stopped (4) and Compress Spring (5), left swing hammer (2) and right pendulum (3) are connected with shell (1), pendulum is stopped (4) and shell (1) is dynamic is connected, put the below that stop (4) are positioned at left swing hammer (2) and right pendulum (3), put the centre that stop (4) are positioned at left swing hammer (2) and right pendulum (3), put stop (4) and be provided with left drive surface (6), the stop left drive surface (6) of (4) of pendulum is positioned at the track position that left swing hammer (2) swings, put stop (4) and be provided with right drive surface (7), the stop right drive surface (7) of (4) of pendulum is positioned at the track position that right pendulum (3) swings, putting stop (4) is supported on Compress Spring (5), Compress Spring (5) is installed on the bottom of shell (1),
It is characterized in that: the using method of described safety-door device is: during use, shell (1) is installed on dodge gate (8) lower end position, the lower surface (9) of putting stop (4) is positioned at the top of floor (10), puts between the lower surface (9) of stop (4) and floor (10) and leaves gap; During large wind dodge gate (8) quick closedown, left swing hammer (2) left drive surface (6) swings, and left drive surface (6) is exerted pressure, left swing hammer (2) swings the elastic force overcoming Compress Spring (5) and to be stopped by pendulum (4) pressure, stop lower surface (9) and the floor (10) of (4) of pendulum rub, utilizes pendulum to stop (4) and the frictional force on ground hinders dodge gate (8) to be blown quick closedown by strong wind; When large wind dodge gate (8) is opened fast, right pendulum (3) to the right drive surface (7) swings, and right drive surface (7) is exerted pressure, right pendulum (3) swings the elastic force overcoming Compress Spring (5) and to be stopped by pendulum (4) pressure, stop lower surface (9) and the floor (10) of (4) of pendulum rub, utilizes pendulum to stop (4) and the frictional force on ground hinders dodge gate (8) to be blown by strong wind to open fast.
2. the using method of safety-door device according to claim 1, is characterized in that: described left swing hammer (2) swings the elastic force that the pressure putting on left drive surface (6) is greater than Compress Spring (5).
3. the using method of safety-door device according to claim 1, is characterized in that: described right pendulum (3) swings the elastic force that the pressure putting on right drive surface (7) is greater than Compress Spring (5).
4. the using method of safety-door device according to claim 1, it is characterized in that: when described dodge gate (8) swings left, right pendulum (3) swings by counter clockwise direction, backswing, then reciprocally swinging after right wall (11) percussion of right pendulum (3) and shell (1).
5. the using method of safety-door device according to claim 1, it is characterized in that: when described dodge gate (8) swings to the right, left swing hammer (2) swings in the direction of the clock, backswing, then reciprocally swinging after left wall (12) percussion of left swing hammer (2) and shell (1).
6. the using method of safety-door device according to claim 1, is characterized in that: the oscillatory forces of described left swing hammer (2) is greater than the pulling force of Zola's spring (21), and the oscillatory forces of right pendulum (3) is greater than the pulling force of right extension spring (22).
7. the using method of safety-door device according to claim 1, it is characterized in that: when described dodge gate (8) swings left, left swing hammer (2) is by counterclockwise swinging, and left swing hammer (2) contacts with left drive surface (6), driving pendulum stop (4) move vertically downward.
8. the using method of safety-door device according to claim 1, it is characterized in that: after described left swing hammer (2) stopping swings by counter clockwise direction, left swing hammer (2) resets in the direction of the clock swing under the pulling force effect of Zola's spring (21), the left swing ball (17) of left swing hammer (2) leaves pendulum and to stop the left drive surface (6) of (4), pendulum stop (4) to rise under the effect of Compress Spring (5) elastic force resets, floor (10) is left in the lower surface (9) of putting stop (4).
9. the using method of safety-door device according to claim 1, it is characterized in that: when described dodge gate (8) swings to the right, right pendulum (3) swings in the direction of the clock, and right pendulum (2) contacts with right drive surface (7), drive pendulum stop (4) move vertically downward.
10. the using method of safety-door device according to claim 1, it is characterized in that: after described right pendulum (3) stops pressing swing in the direction of the clock, right pendulum (3) under the pulling force effect of right extension spring (22) by the swing that counterclockwise resets, the right swing ball (20) of right pendulum (3) leaves pendulum and to stop the right drive surface (7) of (4), pendulum stop (4) to rise under the effect of Compress Spring (5) elastic force resets, floor (10) is left in the lower surface (9) of putting stop (4).
CN201510035989.4A 2015-01-25 2015-01-25 Safety gate utilization method Pending CN104563702A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201510035989.4A CN104563702A (en) 2015-01-25 2015-01-25 Safety gate utilization method

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201510035989.4A CN104563702A (en) 2015-01-25 2015-01-25 Safety gate utilization method

Publications (1)

Publication Number Publication Date
CN104563702A true CN104563702A (en) 2015-04-29

Family

ID=53080695

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201510035989.4A Pending CN104563702A (en) 2015-01-25 2015-01-25 Safety gate utilization method

Country Status (1)

Country Link
CN (1) CN104563702A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112065197A (en) * 2020-09-17 2020-12-11 台州市楷毅通信技术有限公司 Protective safety door

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN87204115U (en) * 1987-04-08 1988-01-13 周本廉 Wind proof door fixing device
CN2918673Y (en) * 2006-06-16 2007-07-04 赵武举 Door leaf windbreak locating device
CN102678004A (en) * 2012-04-21 2012-09-19 林智勇 Anti-pinch child door
KR20130051962A (en) * 2013-02-25 2013-05-21 김승우 Door Closer

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN87204115U (en) * 1987-04-08 1988-01-13 周本廉 Wind proof door fixing device
CN2918673Y (en) * 2006-06-16 2007-07-04 赵武举 Door leaf windbreak locating device
CN102678004A (en) * 2012-04-21 2012-09-19 林智勇 Anti-pinch child door
KR20130051962A (en) * 2013-02-25 2013-05-21 김승우 Door Closer

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112065197A (en) * 2020-09-17 2020-12-11 台州市楷毅通信技术有限公司 Protective safety door
CN112065197B (en) * 2020-09-17 2022-02-01 台州市楷毅通信技术有限公司 Protective safety door

Similar Documents

Publication Publication Date Title
CN102678004B (en) Anti-pinch child door
CN102561901A (en) Anti-pinch safe door
CN204457203U (en) A kind of safety-door device
CN110173158B (en) Alarm lock
CN104563702A (en) Safety gate utilization method
CN204457200U (en) A kind of Anti-pinch door without injuring automatically
CN204457198U (en) A kind of automatic control Anti-pinch door without injuring device
CN104499855A (en) Safety door device
CN204609589U (en) A kind of Anti-pinch door without injuring
CN204457199U (en) A kind of automatic control Anti-pinch door without injuring
CN204609587U (en) A kind of building door device
CN106884592B (en) The application method of intelligent alarm household door gear
CN204457196U (en) Anti-pinch door without injuring device
CN104847207A (en) Application method of automatic door stop
CN104695783B (en) Automatically the using method of Anti-pinch door without injuring
CN104675234B (en) Automatic anti-pinch door
CN104695784B (en) The using method of automatic control Anti-pinch door without injuring
CN104695785B (en) Automatic control Anti-pinch door without injuring
CN205206541U (en) Electromagnetism door -inhale
CN104612506A (en) Automatic anti-pinch door device
CN204984041U (en) Novel prevent tong door
CN104806105A (en) Using method of building door device
CN203570098U (en) Safe case provided with door pin automatic-reset mechanism
CN203570097U (en) Automatic door bolt reset mechanism arranged on safe cabin door
CN204311868U (en) Public building fireproof lifesaving handspike system

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
WD01 Invention patent application deemed withdrawn after publication
WD01 Invention patent application deemed withdrawn after publication

Application publication date: 20150429