Disclosure of Invention
The invention aims to provide a detachable assembled factory building steel structure, and aims to solve the technical problem that in the prior art, when the existing factory building steel structure is installed, all parts are connected in a welding mode, so that recycling is inconvenient.
In order to achieve the above purpose, the detachable assembled factory building steel structure comprises a floor slab, a guide plate, a mounting mechanism, two cross beams and a plurality of supporting pieces, wherein the guide plate is connected with the floor slab, the mounting mechanism comprises mounting pieces, a motor, a fixed block, two connecting blocks, two sliding blocks, two connecting pieces and a plurality of limiting rods, the supporting pieces are provided with grooves and through holes, the cross beams are arranged in the corresponding grooves, the cross beams are provided with a plurality of limiting grooves, the floor slab is provided with sliding grooves, two sliding blocks are in sliding connection with the sliding grooves, the mounting pieces are fixedly connected with the floor slab, the motor is mounted on the mounting pieces, the output end of the motor is fixedly connected with the fixed block, one ends of the two connecting blocks are hinged with the fixed block, the other ends of the two connecting blocks are respectively hinged with the corresponding sliding blocks, one ends of the plurality of limiting rods are respectively fixedly connected with the corresponding connecting pieces, and the other ends of the limiting rods are respectively inserted into the corresponding limiting rods.
The support piece comprises a stand column, a plurality of bottom plates and a plurality of first bolts, wherein the stand column is matched with the cross beam, the grooves are formed in the stand column, the bottom plates are fixedly connected with the stand column, and the first bolts penetrate through the bottom plates.
The installation piece comprises a vertical plate and a transverse plate, wherein the vertical plate is fixedly connected with the floor slab, the transverse plate is fixedly connected with the vertical plate, and the motor is installed on the transverse plate.
The connecting piece comprises a connecting rod and a block body, one end of the connecting rod is fixedly connected with the corresponding sliding block, and the other end of the connecting rod is fixedly connected with the block body.
The detachable assembled factory building steel structure further comprises two groups of protection components, wherein the two groups of protection components are arranged on two sides of the guide plate.
The protection assembly comprises a side plate, a plurality of second bolts and hanging pieces, wherein the second bolts penetrate through the side plate and are in threaded connection with the guide plate, the hanging pieces are fixedly connected with the side plate and are located above the side plate, and the number of the hanging pieces is two.
The guide plate is provided with a hanging groove, and the hanging groove is positioned above the floor slab.
According to the detachable assembled factory building steel structure, when the detachable assembled factory building steel structure is specifically used, the mounting mechanism is arranged, the supporting pieces are firstly fixed on the ground, the motor is opened, the output end of the motor drives the fixed blocks to rotate, the fixed blocks drive one ends of the two connecting blocks to rotate on the fixed blocks, the other ends of the two connecting blocks to rotate on the corresponding sliding blocks respectively, the two connecting blocks drive the two sliding blocks to move oppositely when rotating, the two sliding blocks drive the two connecting pieces and the limit rods to move oppositely, then the guide plates are hung, so that the two cross beams are respectively placed in the corresponding grooves, the motor is reversed, the output end of the motor drives the fixed blocks to rotate, the fixed blocks drive one ends of the two connecting blocks to rotate on the fixed blocks, the other ends of the two connecting blocks are respectively driven to rotate on the corresponding sliding blocks, the two sliding blocks are driven to move relatively when rotating, the two sliding blocks drive the two sliding blocks to move relatively, the two connecting blocks drive the two connecting blocks to rotate on the corresponding limit rods to rotate, the two connecting blocks drive the two connecting blocks to rotate relatively, the two connecting blocks to rotate in the corresponding limit rods to rotate, the two connecting blocks are driven to rotate correspondingly, the two connecting blocks rotate relatively to rotate, the two connecting blocks rotate relatively to rotate, the corresponding limit blocks rotate, and the two connecting blocks rotate relatively to rotate, and the two connecting blocks rotate, and the two connecting pieces rotate correspondingly to rotate, and the corresponding limit pieces rotate to rotate, and the corresponding to rotate, the guide plate and the floor slab are disassembled, and the supporting piece is disassembled, so that the welding mode is replaced for connection, and the recycling is facilitated.
Drawings
In order to more clearly illustrate the embodiments of the invention or the technical solutions in the prior art, the drawings that are required in the embodiments or the description of the prior art will be briefly described, it being obvious that the drawings in the following description are only some embodiments of the invention, and that other drawings may be obtained according to these drawings without inventive effort for a person skilled in the art.
Fig. 1 is a front view of a first embodiment of the present invention.
Fig. 2 is a cross-sectional view of the A-A line structure of fig. 1 in accordance with the present invention.
Fig. 3 is a cross-sectional view of the B-B line structure of fig. 1 according to the present invention.
Fig. 4 is a front view of a second embodiment of the present invention.
Fig. 5 is a front view of a third embodiment of the present invention.
Fig. 6 is a cross-sectional view of the C-C line structure of fig. 5 in accordance with the present invention.
101-Floor, 102-deflector, 103-crossbeam, 104-motor, 105-fixed block, 106-connecting block, 107-slider, 108-gag lever post, 109-stand, 110-bottom plate, 111-first bolt, 112-riser, 113-diaphragm, 114-connecting rod, 115-block, 116-chute, 117-groove, 118-through hole, 119-gag lever slot, 201-side plate, 202-second bolt, 203-hanging piece, 204-hanging slot, 301-loop bar, 302-strut, 303-pick-up piece.
Detailed Description
First embodiment:
Referring to fig. 1 to 3, fig. 1 is a front view of a first embodiment of the present invention, fig. 2 is a sectional view of the A-A line structure of fig. 1 of the present invention, and fig. 3 is a sectional view of the B-B line structure of fig. 1 of the present invention.
The invention provides a detachable assembled factory building steel structure which comprises a floor slab 101, a guide plate 102, an installation mechanism, two cross beams 103 and a plurality of supporting pieces, wherein the installation mechanism comprises an installation piece, a motor 104, a fixed block 105, two connecting blocks 106, two sliding blocks 107, two connecting pieces and a plurality of limiting rods 108, the supporting pieces comprise upright posts 109, a plurality of bottom plates 110 and a plurality of first bolts 111, the installation piece comprises vertical plates 112 and transverse plates 113, and the connecting pieces comprise connecting rods 114 and blocks 115.
For this embodiment, the deflector 102 is connected to the floor 101, and the deflector 102 can deflect rainwater.
Wherein the supporting member is provided with a groove 117 and a through hole 118, the cross beam 103 is arranged in the corresponding groove 117, the cross beam 103 is provided with a plurality of limit grooves 119, the floor 101 is provided with a chute 116, two slide blocks 107 are both in sliding connection with the chute 116, the mounting member is fixedly connected with the floor 101, the motor 104 is mounted on the mounting member, the output end of the motor 104 is fixedly connected with the fixed block 105, one ends of two connecting blocks 106 are hinged with the fixed block 105, the other ends of two connecting blocks 106 are respectively hinged with the corresponding slide blocks 107, two connecting pieces are respectively fixedly connected with the corresponding slide blocks 107, one ends of a plurality of limit rods 108 are respectively fixedly connected with the corresponding connecting pieces, the other ends of the limit rods 108 penetrate through the corresponding through holes 118, and is inserted into the corresponding limit groove 119, when the installation mechanism is specifically used, a plurality of supporting pieces are firstly fixed on the ground, the motor 104 is opened, the output end of the motor 104 drives the fixed block 105 to rotate, the fixed block 105 drives one ends of two connecting blocks 106 to rotate on the fixed block 105, the other ends of the two connecting blocks 106 are driven to rotate on the corresponding sliding blocks 107 respectively, the two connecting blocks 106 drive the two sliding blocks 107 to move oppositely when rotating, the two sliding blocks 107 drive the two connecting pieces and the plurality of limit rods 108 to move oppositely, then the guide plate 102 is hung, so that the two cross beams 103 are respectively arranged in the corresponding grooves 117, the motor 104 is reversed, the output end of the motor 104 drives the fixed block 105 to rotate, the fixed block 105 drives two one ends of the connecting block 106 to rotate on the fixed block 105, drives two other ends of the connecting block 106 to rotate on the corresponding sliding blocks 107 respectively, drives two sliding blocks 107 to move relatively when rotating, drives two connecting pieces to move relatively when rotating, drives a plurality of limiting rods 108 to be inserted into the corresponding limiting grooves 119 respectively by the connecting pieces, so that the cross beam 103 is limited and fixed, when the motor 104 is required to be dismounted, the output end of the motor 104 drives the fixed block 105 to rotate, the fixed block 105 drives two one ends of the connecting block 106 to rotate on the fixed block 105, drives the other ends of the connecting block 106 to rotate on the corresponding sliding blocks 107 respectively, and drives the two sliding blocks 107 to move relatively when rotating, thereby indirectly driving a plurality of limiting rods 108 to slide out of the corresponding limiting grooves 119 respectively, and the deflector 102 and the floor slab 101 are dismounted in an alternative manner.
Secondly, the upright 109 is adapted to the cross beam 103, the groove 117 is formed in the upright 109, the plurality of bottom plates 110 are fixedly connected with the upright 109, the plurality of first bolts 111 penetrate through the bottom plates 110, and the bottom plates 110 are fixed through the plurality of bolts, so that the upright 109 is fixed.
Meanwhile, the vertical plate 112 is fixedly connected with the floor 101, the horizontal plate 113 is fixedly connected with the vertical plate 112, the motor 104 is installed on the horizontal plate 113, the horizontal plate 113 can be fixed on the floor 101 through the vertical plate 112 by arranging the horizontal plate 113 and the vertical plate 112, and the horizontal plate 113 is used for installing the motor 104.
In addition, one end of the connecting rod 114 is fixedly connected with the corresponding slider 107, the other end of the connecting rod 114 is fixedly connected with the block 115, and the connecting rod 114 is used for connecting the slider 107 and the block 115.
By using the detachable assembled factory building steel structure of this embodiment, when the detachable assembled factory building steel structure is specifically used, the installation mechanism is arranged, a plurality of supporting pieces are fixed on the ground, the motor 104 is opened, the output end of the motor 104 drives the fixed block 105 to rotate, the fixed block 105 drives one ends of two connecting blocks 106 to rotate on the fixed block 105, the other ends of two connecting blocks 106 are driven to rotate on the corresponding sliding blocks 107 respectively, the two connecting blocks 106 drive the two sliding blocks 107 to move in opposite directions when rotating, the two sliding blocks 107 drive the two connecting pieces and the plurality of limiting rods 108 to move in opposite directions, then the guide plate 102 is hung, so that the two cross beams 103 are respectively arranged in the corresponding grooves 117, the motor 104 is reversed, the output end of the motor 104 drives the fixed block 105 to rotate, the one ends of the two connecting blocks 106 are driven to rotate on the fixed block 105, the other ends of the two connecting blocks 106 are driven to rotate on the corresponding sliding blocks 107 respectively, the two connecting blocks 106 are driven to rotate on the corresponding connecting blocks 106, the corresponding connecting blocks 107 are driven to rotate on the corresponding connecting blocks 106, the two connecting blocks 107 are driven to rotate, the corresponding connecting blocks 106 are driven to rotate, the two connecting blocks are driven to rotate on the corresponding connecting blocks 106, the two connecting blocks are driven to rotate, the corresponding connecting blocks 107 are driven to rotate respectively, the other ends of the connecting blocks are driven to rotate, the corresponding connecting blocks are driven to rotate, the two connecting pieces are driven to rotate respectively, and the corresponding connecting pieces are driven to rotate, and the corresponding connecting pieces are respectively to rotate, and the corresponding connecting pieces are driven to rotate and are respectively to rotate, the two connecting blocks 106 drive the two sliding blocks 107 to move in opposite directions when rotating, so that the plurality of limiting rods 108 are indirectly driven to slide out of the corresponding limiting grooves 119 respectively, the guide plates 102 and the floor 101 are detached, and then the supporting pieces are detached, so that the welding mode is replaced to connect, and the recycling is convenient.
Second embodiment:
On the basis of the first embodiment, please refer to fig. 4, fig. 4 is a front view of a second embodiment of the present invention.
The invention provides a detachable assembled factory building steel structure which further comprises two groups of protection components, wherein each protection component comprises a side plate 201, a plurality of second bolts 202 and a hanging piece 203.
For this embodiment, the protecting components are disposed on two sides of the baffle 102, and two groups of protecting components are disposed to protect the two sides.
The second bolts 202 penetrate through the side plate 201 and are in threaded connection with the guide plate 102, the hanging pieces 203 are fixedly connected with the side plate 201 and are located above the side plate 201, the number of the hanging pieces 203 is two, the two hanging pieces 203 are hung, the side plate 201 is enabled to move to a designated position, and then the second bolts 202 penetrate through the corresponding side plate 201 and are screwed on the guide plate 102, so that the side plate 201 is fixed on the guide plate 102, and the side plate 201 is used for protecting two sides.
Secondly, a hanging groove 204 is formed in the guide plate 102, the hanging groove 204 is located above the floor 101, and the rope can be limited when the guide plate 102 is hung by the hanging groove 204.
Use a detachable assembled factory building steel construction of this embodiment, hang two hang and get the piece 203, make curb plate 201 removes to the assigned position, later will a plurality of second bolt 202 runs through corresponding curb plate 201, and all screw up on the guide plate 102, thereby will curb plate 201 is fixed on the guide plate 102, curb plate 201 is used for protecting both sides, through setting up hang and hold groove 204, can hang and get when the guide plate 102 carries out spacingly to the rope.
Third embodiment:
on the basis of the second embodiment, please refer to fig. 5 and 6, fig. 5 is a front view of a third embodiment of the present invention, and fig. 6 is a cross-sectional view of the C-C line structure of fig. 5 of the present invention.
The invention provides a detachable assembled factory building steel structure which further comprises a loop bar 301, a supporting rod 302 and a plurality of picking pieces 303.
For this embodiment, one end of the loop bar 301 is fixedly connected with one of the sliders 107, the other end of the loop bar 301 is sleeved with the supporting rod 302, one end of the supporting rod 302 away from the loop bar 301 is fixedly connected with the other slider 107, and when the slider 107 slides, the corresponding slider 107 drives the supporting rod 302 to slide in the loop bar 301, so that the stability of the slider 107 can be improved.
The picking member 303 is fixedly connected with the corresponding upright post 109, and by setting the picking member 303, the upright post 109 can be picked up more conveniently.
When the detachable assembled factory building steel structure of the embodiment is used, the corresponding sliding blocks 107 drive the supporting rods 302 to slide in the loop bars 301 when the sliding blocks 107 slide, so that the stability of the sliding blocks 107 can be improved, and the upright columns 109 can be picked up more conveniently by arranging the pick-up pieces 303.
The above disclosure is only a preferred embodiment of the present invention, and it should be understood that the scope of the invention is not limited thereto, and those skilled in the art will appreciate that all or part of the procedures described above can be performed according to the equivalent changes of the claims, and still fall within the scope of the present invention.