CN214463722U - Steel energy-saving fireproof window - Google Patents

Steel energy-saving fireproof window Download PDF

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Publication number
CN214463722U
CN214463722U CN202120602851.9U CN202120602851U CN214463722U CN 214463722 U CN214463722 U CN 214463722U CN 202120602851 U CN202120602851 U CN 202120602851U CN 214463722 U CN214463722 U CN 214463722U
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China
Prior art keywords
groove
block
window
stopper
wall
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CN202120602851.9U
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Chinese (zh)
Inventor
杨高磊
杜鹏飞
张亮
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Jiangsu Mingyue Fire Technology Co ltd
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Jiangsu Mingyue Fire Technology Co ltd
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Abstract

The application relates to an energy-conserving fire window of steel relates to the field of fire window technique, and it includes window frame body, PLASTIC LAMINATED and fire prevention glass, the PLASTIC LAMINATED is located on the window frame body, be equipped with the removable subassembly that is used for with this body coupling of window frame on the PLASTIC LAMINATED, be equipped with the coupling assembling that is used for with this body coupling of window frame on the fire prevention glass. The utility model provides a fireproof window receives the fever back, only needs to change PLASTIC LAMINATED and fire prevention glass, and it is simple convenient to change the process, has improved the fireproof window and has received the more troublesome problem of changing after the fever.

Description

Steel energy-saving fireproof window
Technical Field
The application relates to the field of fireproof window technology, in particular to a steel energy-saving fireproof window.
Background
The fireproof window is a window which can still keep stability after being burnt for a period of time, and the window frame of the fireproof window is usually made of fireproof and high-temperature resistant materials.
Notice is CN 210343142U's patent among the correlation technique, an energy-conserving fire window of steel is disclosed, including last window frame, lower window frame and casement, go up window frame and lower window frame all fixed embedding on the wall body, the lower surface of going up the window frame is connected with the last fixed surface of lower window frame, the casement is articulated with lower window frame, all fixed the inlaying is equipped with double-deck fire prevention glass in going up window frame and the casement, the inside fixedly connected with first sealed platform of lower window frame, second sealed platform and third sealed platform, first sealed platform, equal fixedly connected with sealing strip on one side that second sealed platform and third sealed platform are close to the casement, fixedly connected with on one side that the casement is close to lower window frame with the first sealed baffle of first sealed platform butt and with the second sealed baffle of second sealed platform butt, one side that the casement is close to lower window frame and third sealed platform butt.
In view of the above-mentioned related art, the inventor believes that the appearance of the fire window may become unattractive after being burned, and thus a new fire window needs to be replaced, but the replacement process requires the removal of the fire window, which is troublesome.
SUMMERY OF THE UTILITY MODEL
In order to improve the problem that the fire window receives to change more troublesome after burning, this application provides an energy-conserving fire window of steel.
The application provides an energy-conserving fire window of steel adopts following technical scheme:
the utility model provides an energy-conserving fire prevention window of steel, includes window frame body, PLASTIC LAMINATED and fire prevention glass, the PLASTIC LAMINATED is located on the window frame body, be equipped with the removable subassembly that is used for with this body coupling of window frame on the PLASTIC LAMINATED, be equipped with the coupling assembling that is used for with this body coupling of window frame on the fire prevention glass.
Through adopting above-mentioned technical scheme, the PLASTIC LAMINATED helps reducing the window frame body and is burnt by the fire, consequently, the fire prevention window receives the back of burning by the fire, only needs to change PLASTIC LAMINATED and fire prevention glass, and removable subassembly helps the installation and dismantles the PLASTIC LAMINATED, and coupling assembling helps the installation and dismantles fire prevention glass, and the change process is simple convenient, has improved the fire prevention window and has received the more troublesome problem of changing after burning by the fire.
Optionally, removable subassembly includes stopper, turning block and stopper, the stopper rotates with the PLASTIC LAMINATED to be connected, the turning block rotates with the stopper to be connected, the stopper is installed on the turning block, be equipped with the mounting groove on the window frame body, be equipped with the joint annular on the cell wall of mounting groove, stopper and turning block all insert and locate in the mounting groove, the cell wall joint of stopper and joint annular.
By adopting the technical scheme, when the limiting block and the rotating block are both inserted into the mounting groove, the fireproof plate is continuously pressed, the rotating block rotates relative to the limiting block under the pressure of the groove wall of the mounting groove, the limiting block slides into the clamping ring groove and is clamped with the groove wall after rotating, the braking piece is operated, the rotating block is relatively fixed, and the fireproof plate can be fixed on the window frame body; the stopper can slide out of the clamping ring groove by operating the stopper to remove the fixing of the rotating block, and the fireproof plate is taken down, so that the fireproof plate is convenient to mount and dismount.
Optionally, the braking member includes a screw rod and a nut, the screw rod is connected with the rotating block in a rotating mode, a through hole is formed in the fireproof plate, the screw rod penetrates through the through hole, the nut is connected with the screw rod in a threaded mode, and the nut is abutted to the fireproof plate.
Through adopting above-mentioned technical scheme, when the turning block rotated, the screw rod removed in the through-hole, screwed up the nut, with nut and PLASTIC LAMINATED butt, can restrict the screw rod and remove to realize restricting the turning block and rotate.
Optionally, the fire-proof plate is provided with a hidden groove, the screw rod and the nut are inserted into the hidden groove, and the fire-proof plate is provided with a plug for plugging the hidden groove.
Through adopting above-mentioned technical scheme, hide groove and stopper and help reducing screw rod and nut and burnt and warp by the fire, simultaneously, can strengthen the aesthetic property of fire window.
Optionally, coupling assembling includes glass frame, dog and is used for driving the driving piece of dog, glass frame and window frame body butt, be equipped with the installation annular on the internal perisporium of glass frame, fire prevention glass inserts and locates in the installation annular, be equipped with the shrink groove on the periphery wall of glass frame, the dog is inserted and is located in the shrink groove, be equipped with the catch groove relative with the shrink groove on the window frame body, the dog is with the cell wall butt in catch groove, the driving piece is installed on the glass frame.
By adopting the technical scheme, the driving piece is operated to drive the stop block to move into the stop groove, so that the glass frame and the window frame body are relatively fixed; the operation driving piece moves the stop block into the accommodating groove, so that the glass frame can be separated from the window frame body, and the fireproof glass is convenient to mount and dismount.
Optionally, the driving piece includes gear, pivot and voussoir, gear and voussoir are all located in the shrink groove, pivot and gear fixed connection, be equipped with rotatory hole on the cell wall of shrink groove, the pivot is worn to locate in the rotatory hole, the cell wall sliding connection of voussoir and shrink groove, the wedge face and the dog sliding connection of voussoir, gear and voussoir meshing, be equipped with the setting element that is used for being connected with the glass frame in the pivot.
Through adopting above-mentioned technical scheme, the pivot is used for drive gear to rotate, and the gear is used for driving the voussoir and slides, and the voussoir slides and can push the dog outward or pull to the shrink groove in, consequently, helps can dismantle glass frame and window frame body and be connected.
Optionally, the locating piece includes locating piece and the magnet that is used for adsorbing the locating piece, the locating piece rotates with the pivot to be connected, be equipped with the constant head tank on the glass frame, magnet fixed connection is on the cell wall of constant head tank, the cell wall joint of locating piece and constant head tank, locating piece and magnet butt.
Through adopting above-mentioned technical scheme, when the gear with voussoir driven suitable position, insert the locating piece in the constant head tank and with cell wall joint, can restrict pivot and gear revolve for voussoir and dog keep relatively fixed, magnet helps reducing the locating piece and rotates at will.
Optionally, the positioning element includes a positioning rod and an elastic clamping block, the elastic clamping block is fixedly connected with the positioning rod, the positioning rod is fixedly connected with the rotating shaft, the glass frame is provided with an elongated slot, a slot wall of the elongated slot is provided with a slot, the positioning rod is clamped with the slot wall of the elongated slot, and the elastic clamping block is abutted to the slot wall of the slot.
By adopting the technical scheme, when the positioning rod is clamped with the groove wall of the long groove, the rotation of the rotating shaft and the gear is reduced, so that the situation that the wedge block and the stop block move randomly is reduced, and the fixture block is beneficial to reducing the situation that the positioning rod rotates randomly.
In summary, the present application includes at least one of the following beneficial technical effects:
1. by arranging the fireproof plate, the detachable assembly and the connecting assembly, only the fireproof plate and the fireproof glass need to be replaced after the fireproof window is burnt, the replacement process is simple and convenient, and the problem that the fireproof window is troublesome to replace after being burnt is solved;
2. the detachable assembly comprises a limiting block, a rotating block and a braking piece, wherein the braking piece comprises a screw rod and a nut, so that the detachable connection of the fireproof plate and the window frame body is realized, and the fireproof plate is simple and convenient to mount and dismount;
3. the coupling assembling of this application includes glass frame, dog and driving piece, and the driving piece includes gear, pivot and voussoir, is convenient for install and dismantles fire prevention glass.
Drawings
Fig. 1 is a front view of a steel energy-saving fireproof window in embodiment 1 of the present application.
Fig. 2 is a sectional view taken along line a-a of fig. 1.
Fig. 3 is a schematic structural view of a connecting assembly according to embodiment 1 of the present application.
Fig. 4 is an exploded view of the connection assembly shown in fig. 3.
Fig. 5 is an exploded view of a positioning member according to embodiment 2 of the present application.
Description of reference numerals: 1. a window frame body; 11. mounting grooves; 111. clamping the ring groove; 12. a baffle groove; 13. installing a frame; 14. a window sash frame; 2. a fire-proof plate; 21. a through hole; 22. hiding the groove; 23. a plug; 3. fireproof glass; 4. a removable component; 41. a limiting block; 411. straightening; 412. bending the block; 42. rotating the block; 43. a stopper; 431. a screw; 432. a nut; 5. a connecting assembly; 51. a glass frame; 511. mounting a ring groove; 512. a contraction groove; 5121. rotating the hole; 513. positioning a groove; 514. a long groove; 5141. a card slot; 515. a steel frame; 516. a bump; 52. a stopper; 521. connecting blocks; 53. a drive member; 531. a gear; 532. a rotating shaft; 533. a wedge block; 5331. a sliding groove; 6. a positioning member; 61. positioning blocks; 611. a first block; 612. a second block; 62. a magnet; 63. positioning a rod; 631. a first lever; 632. a second lever; 64. and the elastic clamping block.
Detailed Description
The present application is described in further detail below with reference to figures 1-5.
The embodiment of the application discloses a steel energy-saving fireproof window.
Example 1
Referring to fig. 1 and 2, the steel energy-saving fireproof window comprises a window frame body 1, a fireproof plate 2, fireproof glass 3, a detachable component 4 and a connecting component 5, wherein the window frame body 1 comprises a steel mounting frame 13 and a window sash frame 14, the mounting frame 13 is mounted on a wall body, the window sash frame 14 is hinged to the mounting frame 13, the fireproof plate 2 covers the outer surfaces of the mounting frame 13 and the window sash frame 14, the fireproof plate 2 and the mounting frame 13 are made of the same material, the detachable component 4 is mounted on the fireproof plate 2, and the mounting frame 13 and the window sash frame 14 are detachably connected with the detachable component 4; the fireproof glass 3 is arranged in the window sash frame 14, and the connecting assembly 5 is connected between the fireproof glass 3 and the window sash frame 14.
Referring to fig. 2, the detachable assembly 4 includes a limiting block 41, a rotating block 42 and a stopping member 43, the limiting block 41 includes a straight block 411 and a bent block 412, the straight block 411 and the bent block 412 are integrally connected, the straight block 411 is hinged on the fireproof plate 2, the bent block 412 is hinged with the rotating block 42, and the stopping member 43 is installed on the rotating block 42.
Referring to fig. 2, the mounting frame 13 and the sash frame 14 are provided with mounting grooves 11 on the surfaces thereof, the straight block 411, the bent block 412 and the rotating block 42 are inserted into the mounting grooves 11, and the wall of the mounting groove 11 is provided with a snap ring groove 111.
Inserting the straight block 411, the bent block 412 and the rotating block 42 into the installation groove 11, simultaneously pressing the fireproof plate 2 towards the direction close to the installation frame 13 or the window sash frame 14, when the rotating block 42 abuts against the bottom wall of the installation groove 11, continuously pressing the fireproof plate 2, rotating the rotating block 42 under pressure, synchronously rotating the straight block 411 and the bent block 412 along with the rotating block 42, and when the bent block 412 slides into the clamping ring groove 111, abutting the fireproof plate 2 against the installation frame 13 or the window sash frame 14; when the braking member 43 is operated to fix the rotating block 42, the bent block 412 is clamped with the wall of the clamping ring groove 111, the bent block 412 blocks the straight block 411 from moving out of the mounting groove 11, and the fireproof plate 2 is fixed with the mounting frame 13 or the window sash frame 14.
Referring to fig. 2, the braking member 43 includes a screw 431 and a nut 432, the screw 431 is inserted into the mounting groove 11, the screw 431 is hinged to the rotating block 42, the fire-proof plate 2 is provided with a coaxial through hole 21 and a hidden groove 22, the through hole 21 is communicated with the hidden groove 22, the screw 431 is inserted into the through hole 21, the screw 431 is in sliding abutment with the hole wall of the through hole 21, the nut 432 is in threaded connection with one end of the screw 431 far away from the rotating block 42, the screw 431 and the nut 432 are both located in the hidden groove 22, and the nut 432 is in abutment with the bottom wall of the hidden groove 22.
Referring to fig. 2, the fireproof plate 2 is provided with a plug 23, the plug 23 is inserted into the hidden groove 22 and abuts against the peripheral wall of the hidden groove 22, the material of the plug 23 is the same as that of the fireproof plate 2, and the surface of the plug 23 is flush with the surface of the fireproof plate 2.
Referring to fig. 3, the connecting assembly 5 includes a glass frame 51, a stopper 52 and a driving member 53, the fire-proof glass 3 is disposed in the glass frame 51, an installation ring groove 511 is disposed on an inner peripheral wall of the glass frame 51, and an edge of the fire-proof glass 3 is inserted into the installation ring groove 511 and abuts against a groove wall of the installation ring groove 511; a contraction groove 512 is formed in the outer peripheral wall of the glass frame 51, the stop block 52 is inserted into the contraction groove 512, the stop block 52 is abutted to the groove wall of the contraction groove 512, and the driving member 53 is installed on the glass frame 51; the glass frame 51 is arranged in the window sash frame 14, the outer peripheral wall of the glass frame 51 is abutted against the inner peripheral wall of the window sash frame 14, the inner peripheral wall of the window sash frame 14 is provided with a blocking groove 12, and the blocking groove 12 is opposite to the contraction groove 512.
Referring to fig. 4, the driving member 53 includes a gear 531, a rotating shaft 532, and a wedge 533, the wedge 533 is disposed in the contracting slot 512, the wedge 533 is slidably abutted against a slot wall of the contracting slot 512, and a wedge surface of the wedge 533 is abutted against a bottom end of the stopper 52; the bottom end of the stopper 52 is integrally connected with a T-shaped connecting block 521, a T-shaped sliding groove 5331 is arranged on the wedge surface of the wedge 533, and the connecting block 521 is inserted into the sliding groove 5331 and slidably abuts against the groove wall.
Referring to fig. 4, the gear 531 is disposed in the retraction slot 512, the gear 531 is engaged with the wedge 533, one end of the rotating shaft 532 is integrally connected to the gear 531, a rotating hole 5121 is disposed on a slot wall of the retraction slot 512, the rotating shaft 532 is inserted into the rotating hole 5121 and abuts against a hole wall, and a positioning element 6 is disposed at an end of the rotating shaft 532 extending out of the rotating hole 5121.
Referring to fig. 4, the positioning member 6 includes a positioning block 61 and a magnet 62, the positioning block 61 includes a first block 611 and a second block 612, the first block 611 is a ductile iron block, the second block 612 is a hard iron block, the first block 611 and the second block 612 are hinged, and the first block 611 is welded to the rotating shaft 532; the glass frame 51 comprises a steel frame 515 and a protruding block 516, the protruding block 516 is integrally connected to the steel frame 515, the protruding block 516 is provided with a positioning groove 513, the magnet 62 is bonded to the groove wall of the positioning groove 513, the second block 612 is inserted into the positioning groove 513 and clamped with the groove wall, and the second block 612 and the magnet 62 are attracted together through magnetism.
The implementation principle of the embodiment 1 is as follows: install the installing frame 13 on the wall body, then, cover the surface at installing frame 13 and window sash frame 14 with PLASTIC LAMINATED 2, simultaneously, insert stopper 41 and turning block 42 in mounting groove 11, press PLASTIC LAMINATED 2 again, turning block 42 receives the extrusion and rotates, stopper 41 follows turning block 42 and rotates simultaneously, screw rod 431 slides along the pore wall of through-hole 21, when stopper 41 rotates certain angle, bend 412 inserts in the joint annular 111, at this moment, installing frame 13 and window sash frame 14 all with PLASTIC LAMINATED 2 butt.
Then, the nut 432 is screwed, when the nut 432 abuts against the bottom wall of the hidden groove 22, the nut 432 is stopped being screwed, the screw rod 431, the rotating block 42 and the bent block 412 are fixed relatively, the bent block 412 is clamped with the groove wall of the clamping ring groove 111, and the plug 23 is plugged into the hidden groove 22.
The fireproof glass 3 is inserted into the installation ring groove 511, then the glass frame 51 is placed into the window sash frame 14, the rotating shaft 532 is rotated, the gear 531 drives the wedge block 533 to move, the wedge block 533 pushes the stop block 52 to move towards the outside of the contraction groove 512, and when the stop block 52 is inserted into the stop groove 12, the rotating shaft 532 stops rotating; then the first block 611 is bent, the second block 612 moves synchronously with the first block 611, the length direction of the second block 612 is the same as the length direction of the positioning groove 513, the second block 612 is inserted into the positioning groove 513, and meanwhile, the second block 612 and the magnet 62 are attracted together through magnetism, so that the installation of the steel energy-saving fireproof window is completed.
When the steel energy-saving fireproof window is burnt, the second block 612 is rotated out of the positioning groove 513, then the rotating shaft 532 is rotated in the reverse direction, the connecting block 521 drives the stop block 52 to move along with the wedge block 533, the stop block 52 contracts into the contraction groove 512, the glass frame 51 is taken out of the window sash frame 14, after the new glass frame 51 and the new fireproof glass 3 are replaced, the glass frame 51 and the new fireproof glass 3 are installed in the window sash frame 14 again.
And then the plug 23 is pulled out, the nut 432 is taken down from the screw rod 431, the screw rod 431 is pressed, the bent block 412 moves into the mounting groove 11 from the clamping ring groove 111, then the fireproof plate 2 is taken down, and after a new fireproof plate 2 is replaced, the replacement of the steel energy-saving fireproof window is completed.
Example 2
Referring to fig. 5, the present embodiment is different from embodiment 1 in that the positioning member 6 includes a positioning rod 63 and an elastic latch 64, the positioning rod 63 includes a first rod 631 and a second rod 632, the first rod 631 is a plastic iron rod, the second rod 632 is a hard iron rod, and the first rod 631 is welded to the rotating shaft 532; the second rod 632 is hinged to the first rod 631, the elastic latch 64 is glued to the second rod 632, the elastic latch 64 is a rubber block, the protrusion 516 is provided with an elongated slot 514, a slot wall of the elongated slot 514 is provided with a slot 5141, the second rod 632 is inserted into the elongated slot 514 and is in clamping connection with the slot wall, and meanwhile, the elastic latch 64 is inserted into the slot 5141 and is in clamping connection with the slot wall.
The implementation principle of the embodiment 2 is as follows: when the first rod 631 is bent, the second rod 632 moves synchronously with the first rod 631, when the length direction of the second rod 632 is the same as the length direction of the elongated slot 514, the second rod 632 slides into the elongated slot 514, and meanwhile, the elastic clamping block 64 is extruded to elastically deform and also slides into the elongated slot 514, and when the elastic clamping block 64 moves to the clamping slot 5141, the elastic clamping block 64 returns to the original shape and is inserted into the clamping slot 5141 to be clamped with the slot wall of the clamping slot 5141, so that the fixing of the rotating shaft 532 is completed.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.

Claims (8)

1. The utility model provides an energy-conserving fire window of steel which characterized in that: including window frame body (1), PLASTIC LAMINATED (2) and fire prevention glass (3), on window frame body (1) was located in PLASTIC LAMINATED (2), be equipped with on PLASTIC LAMINATED (2) and be used for detachable subassembly (4) be connected with window frame body (1), be equipped with on fire prevention glass (3) and be used for coupling assembling (5) be connected with window frame body (1).
2. The steel energy-saving fireproof window of claim 1, wherein: removable subassembly (4) include stopper (41), turning block (42) and stopper (43), stopper (41) rotate with PLASTIC LAMINATED (2) and are connected, turning block (42) rotate with stopper (41) and are connected, install on turning block (42) stopper (43), be equipped with mounting groove (11) on window frame body (1), be equipped with joint annular (111) on the cell wall of mounting groove (11), stopper (41) and turning block (42) all insert and locate mounting groove (11) in, the cell wall joint of stopper (41) and joint annular (111).
3. The steel energy-saving fireproof window of claim 2, wherein: the braking piece (43) comprises a screw rod (431) and a nut (432), the screw rod (431) is rotatably connected with the rotating block (42), a through hole (21) is formed in the fireproof plate (2), the screw rod (431) penetrates through the through hole (21), the nut (432) is in threaded connection with the screw rod (431), and the nut (432) is abutted to the fireproof plate (2).
4. The steel energy-saving fireproof window of claim 3, wherein: be equipped with on PLASTIC LAMINATED (2) and hide groove (22), screw rod (431) and nut (432) all insert and locate and hide in groove (22), be equipped with on PLASTIC LAMINATED (2) and be used for the shutoff to hide stopper (23) in groove (22).
5. The steel energy-saving fireproof window of claim 1, wherein: coupling assembling (5) include glass frame (51), dog (52) and be used for driving piece (53) of dog (52), glass frame (51) and window frame body (1) butt, be equipped with installation annular groove (511) on the internal perisporium of glass frame (51), fire prevention glass (3) are inserted and are located in installation annular groove (511), be equipped with shrink groove (512) on the periphery wall of glass frame (51), dog (52) are inserted and are located in shrink groove (512), be equipped with on window frame body (1) and keep off groove (12) relative with shrink groove (512), dog (52) and the cell wall butt that keeps off groove (12), driving piece (53) are installed on glass frame (51).
6. The steel energy-saving fireproof window of claim 5, wherein: the driving piece (53) comprises a gear (531), a rotating shaft (532) and a wedge block (533), the gear (531) and the wedge block (533) are arranged in a shrinkage groove (512), the rotating shaft (532) is fixedly connected with the gear (531), a rotating hole (5121) is formed in the groove wall of the shrinkage groove (512), the rotating shaft (532) is arranged in the rotating hole (5121) in a penetrating manner, the wedge block (533) is connected with the groove wall of the shrinkage groove (512) in a sliding manner, the wedge surface of the wedge block (533) is connected with a stop block (52) in a sliding manner, the gear (531) is meshed with the wedge block (533), and a positioning piece (6) used for being connected with a glass frame (51) is arranged on the rotating shaft (532).
7. The steel energy-saving fireproof window of claim 6, wherein: the locating piece (6) includes locating piece (61) and magnet (62) that are used for adsorption positioning piece (61), locating piece (61) rotates with pivot (532) to be connected, be equipped with constant head tank (513) on glass frame (51), magnet (62) fixed connection is on the cell wall of constant head tank (513), locating piece (61) and the cell wall joint of constant head tank (513), locating piece (61) and magnet (62) butt.
8. The steel energy-saving fireproof window of claim 6, wherein: the positioning piece (6) comprises a positioning rod (63) and an elastic clamping block (64), the elastic clamping block (64) is fixedly connected with the positioning rod (63), the positioning rod (63) is fixedly connected with a rotating shaft (532), an elongated slot (514) is formed in the glass frame (51), a clamping groove (5141) is formed in the groove wall of the elongated slot (514), the positioning rod (63) is clamped with the groove wall of the elongated slot (514), and the elastic clamping block (64) is abutted to the groove wall of the clamping groove (5141).
CN202120602851.9U 2021-03-24 2021-03-24 Steel energy-saving fireproof window Active CN214463722U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120602851.9U CN214463722U (en) 2021-03-24 2021-03-24 Steel energy-saving fireproof window

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120602851.9U CN214463722U (en) 2021-03-24 2021-03-24 Steel energy-saving fireproof window

Publications (1)

Publication Number Publication Date
CN214463722U true CN214463722U (en) 2021-10-22

Family

ID=78160187

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120602851.9U Active CN214463722U (en) 2021-03-24 2021-03-24 Steel energy-saving fireproof window

Country Status (1)

Country Link
CN (1) CN214463722U (en)

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