Photovoltaic product production line frame
Technical Field
The utility model relates to the technical field of frames, in particular to a frame of a photovoltaic product production line.
Background
The solar cell panel sintering equipment production line is longer, and if the whole production difficulty of its frame is big, and the transportation is inconvenient, adopts sectional type design now, and the production is separately produced, later transportation to workshop equipment is whole. The existing frame is more in assembly parts, time and labor are wasted during assembly, difficulty is high, and improvement of installation work efficiency is not facilitated. To this end, the utility model provides a photovoltaic product curing line frame.
Disclosure of utility model
The utility model aims to provide a photovoltaic product production line rack.
In order to solve the technical problems, the aim of the utility model is realized as follows:
A photovoltaic product production line rack comprises a first preheating section rack, a second preheating section rack, a sintering section rack and a cooling section rack;
The first preheating section frame comprises a first underframe, first side frames, a first top frame, first mounting frames and first hanging frames, wherein the number of the first side frames is two, the two first side frames are arranged on two side edges of the first underframe, a feeding step opening is formed in the first section of the first preheating section frame, the first top frame is arranged at the top of the first side frames, the two side edges of the first top frame are respectively and fixedly connected with the tops of the two first side frames, the first mounting frames are arranged above the first underframe, the tops of the first mounting frames are connected with the first underframe, the side portions of the first mounting frames are connected with the first side frames, and the number of the first hanging frames is two and hung at the bottom of the first top frame;
The first end of the second preheating section frame is connected with the second end of the first preheating section frame and comprises a second underframe, two second side frames, a second top frame and a second mounting frame, wherein the number of the second side frames is two and are respectively arranged on two side edges of the second underframe;
The first end of the sintering section frame is connected with the second end of the second preheating section frame and comprises a third underframe, a third side frame, a third top frame and a third mounting frame; the sintering section frame comprises a sintering section frame, a first side frame, a second side frame, a third top frame, a third mounting frame, a third bottom frame, a third top frame, a third bottom frame and a third bottom frame, wherein the number of the third side frames is two and is respectively arranged on two side edges of the third bottom frame;
The first end of the cooling section frame is connected with the second end of the sintering section frame and comprises a fourth underframe, a fourth side frame, a fourth top frame and a fourth mounting frame, wherein the number of the fourth side frames is two, the fourth side frames are respectively arranged on two side edges of the fourth underframe, a discharging step opening is formed in the second end of the cooling section frame, the fourth top frame is arranged at the top of the fourth side frame, two side edges are respectively connected with the tops of the two fourth side frames, the number of the fourth mounting frames is two, the fourth mounting frames are symmetrically arranged on the fourth underframe along the center line of the cooling section frame, and the bottom of the fourth mounting frames are fixedly connected with the fourth underframe.
On the basis of the scheme and as a preferable scheme of the scheme, the first mounting frame comprises a first top beam and first support legs, the first top beam comprises a longitudinal beam and a transverse beam which are connected together, two ends of the transverse beam are respectively and fixedly connected with the two first side frames, and the first support legs are fixedly arranged below the first top beam, and the bottom ends of the first support legs are fixedly connected with the first bottom frame.
On the basis of the scheme and as a preferable scheme of the scheme, the second mounting frame comprises a second top beam and second support legs, wherein the bottom ends of the second support legs are fixedly connected with the second underframe, and the top ends of the second support legs are fixedly connected with the bottom surface of the second top beam.
On the basis of the scheme and as a preferable scheme of the scheme, the third mounting frame comprises a third top beam and third supporting legs, wherein the bottom ends of the third supporting legs are fixedly connected with the third underframe, and the top ends of the third supporting legs are fixedly connected with the bottom surface of the third top beam.
On the basis of the scheme and as a preferable scheme of the scheme, the fourth mounting frame comprises a plurality of U-shaped beams, and the bottoms of the U-shaped beams are fixedly connected with the fourth underframe.
On the basis of the scheme and as a preferable scheme of the scheme, the first hanging frame comprises a hanging beam and a hanging frame bottom frame, wherein the top end of the hanging beam is fixedly connected with the first top frame, and the bottom end of the hanging beam is connected with the hanging frame bottom frame.
On the basis of the scheme and as a preferable scheme of the scheme, the connecting ends of the first preheating section frame, the second preheating section frame, the sintering section frame and the cooling section frame are all provided with end frames.
On the basis of the scheme and as a preferable scheme of the scheme, universal wheels and ground feet are arranged at the bottoms of the first preheating section frame, the second preheating section frame, the sintering section frame and the cooling section frame.
The utility model has the beneficial effects that the frame with larger length is divided into a plurality of sections, each section is assembled by a plurality of different parts, the parts can be produced independently during production, the production efficiency is high, and the transportation is convenient. The frame structure is simple in design, the number of parts contained in each section of frame is relatively small, the assembly is convenient and quick, and the frame installation work efficiency can be improved.
Drawings
FIG. 1 is a schematic diagram of the structure of the present utility model.
Fig. 2 is a front view of the present utility model.
Fig. 3 is a schematic view of a first preheating stage frame structure according to the present utility model.
Fig. 4 is a schematic diagram of a second preheating stage rack structure according to the present utility model.
FIG. 5 is a schematic structural view of a sintering section Duan Jijia according to the present utility model.
FIG. 6 is a schematic diagram of a cooling section frame structure according to the present utility model.
In the figure, 1, a first preheating section frame, 11, a first underframe, 12, a first side frame, 13, a first top frame, 14, a first mounting frame, 141, a first top beam, 142, a first support leg, 15, a first hanger, 151, a hanging beam, 152, a hanger underframe, 16 and a feeding step opening;
2. The second preheating section frame, 21, a second underframe, 22, a second side frame, 23, a second top frame, 24, a second mounting frame, 241, a second top beam, 242, and a second support leg;
3. The sintering section frame comprises 31, a third underframe, 32, a third side frame, 33, a third top frame, 34, a third mounting frame, 341, a third top beam, 342 and third support legs;
4. The cooling section frame comprises a cooling section frame body, a fourth underframe, a 42 fourth side frame, a 43 fourth top frame, a 44 fourth mounting frame, a 441U-shaped beam, a 45 discharging step opening;
5. End frame, universal wheel, 7, ground feet.
Detailed Description
The utility model will be further described with reference to the drawings and specific examples.
As shown in fig. 1 and 2, a photovoltaic product production line frame comprises a first preheating section frame 1, a second preheating section frame 2, a sintering section frame 3 and a cooling section frame 4 which are connected into a whole.
As shown in fig. 3, the first preheating stage rack 1 includes a first bottom chassis 11, a first side chassis 12, a first top chassis 13, a first mounting chassis 14, and a first hanger 15.
The number of the first side frames 12 is two, the two side frames are respectively arranged on two side edges of the first bottom frame 11, and a feeding step opening 16 is arranged on the first section of the first preheating section frame 1. The first top frame 13 is arranged at the top of the first side frames 12, and two side edges are fixedly connected with the tops of the two first side frames 12 respectively. The first mounting frame 14 is disposed above the first chassis 11, with the top connected to the first chassis 11 and the side connected to the first side frame 12. Specifically, the first mounting bracket 14 includes a first top beam 141 and a first leg 142. The first top beam 141 includes a longitudinal beam and a transverse beam connected together, and both ends of the transverse beam are fixedly connected with the two first side frames 12, respectively. The first support leg 142 is fixedly arranged below the first top beam 141, the bottom end of the first support leg is fixedly connected with the first chassis 11, and the top end of the first support leg is fixedly connected with the bottom surface of the first top beam 141. As shown in fig. 1, a two-step structure of the mounting sub-frame is provided at the first mounting 14 and the feed step opening 16.
The number of the first hanging frames 15 is two, and the first hanging frames are symmetrically hung at the bottom of the first top frame 13 along the center line of the first preheating section frame 1. Specifically, first hanger 15 includes a hanger beam 151 and a hanger chassis 152. The top end of the hanging beam 151 is fixedly connected with the first top frame 13, and the bottom end is connected with the hanging frame bottom frame 152.
An end frame 5 is arranged at the second end of the first preheating section frame 1, and two ends of the end frame 5 are respectively connected with two first side frames 12. And, one end of the side member of the first top beam 141 is connected to the end frame 5.
As shown in fig. 4, the first end of the second preheating section frame 2 is connected with the second end of the first preheating section frame 1, and includes a second bottom frame 21, a second side frame 22, a second top frame 23 and a second mounting frame 24.
The number of the second side frames 22 is two, and the second side frames 22 are respectively arranged on two side edges of the second chassis 21. The second top frame 23 is disposed at the top of the second side frames 22, and two side edges are respectively connected to the tops of the two second side frames 22. The number of the second mounting frames 24 is two, the second mounting frames are symmetrically arranged on the second underframe 21 along the center line of the second preheating section frame 2, and the bottom of the second mounting frames is fixedly connected with the second underframe 21. Specifically, the second mounting frame 24 includes a second top beam 241 and a second leg 242, wherein the bottom end of the second leg 242 is fixedly connected to the second chassis 21, and the top end is fixedly connected to the bottom surface of the second top beam 241.
End frames 5 are arranged at two ends of the second preheating section frame 2 so as to be connected with the first preheating section frame 1 and the sintering section frame 3, and stability of a connecting structure is improved.
As shown in fig. 5, the first end of the sintering section frame 3 is connected with the second end of the second preheating section frame 2, and includes a third bottom frame 31, a third side frame 32, a third top frame 33, and a third mounting frame 34.
The number of the third side frames 32 is two, and the third side frames 32 are respectively arranged on two side edges of the third underframe 31. The third top frame 33 is disposed at the top of the third side frames 32, and two side edges are respectively connected to the tops of the two third side frames 32. The number of the third mounting frames 34 is two, the third mounting frames 34 are symmetrically arranged on the third underframe 31 along the center line of the sintering section frame 3, and the bottom of the third mounting frames is connected with the third underframe 31. Specifically, the third mount 34 includes a third top beam 341 and a third leg 342. The bottom end of the third leg 342 is fixedly connected with the third chassis 31, and the top end is fixedly connected with the bottom surface of the third top beam 341.
End frames 5 are arranged at two ends of the sintering section frame 3 so as to be connected with the second preheating section frame 2 and the cooling section frame 4, and stability of a connecting structure is improved.
As shown in fig. 6, the first end of the cooling section frame 4 is connected to the second end of the sintering section frame 3, and includes a fourth bottom frame 41, a fourth side frame 42, a fourth top frame 43, and a fourth mounting frame 44.
The number of the fourth side frames 42 is two, the fourth side frames are respectively arranged on two side edges of the fourth underframe 41, and a discharging step opening 45 is arranged at the second end of the cooling section frame 4. The fourth top frame 43 is disposed at the top of the fourth side frames 42, and two side edges are respectively connected to the tops of the two fourth side frames 42. The number of the fourth mounting frames 44 is two, the fourth mounting frames 44 are symmetrically distributed on the fourth underframe 41 along the center line of the cooling section frame 4, and the bottom of the fourth mounting frames is fixedly connected with the fourth underframe 41. Preferably, the fourth mounting frame 44 includes a plurality of uniformly distributed U-shaped beams 441, and the bottom of the U-shaped beams 441 is fixedly connected to the fourth chassis 41. And, the U-shaped beam 441 is lowered in height to form a stepped structure with the discharge stepped opening 45.
The first end of the cooling section frame 4 is provided with an end frame 5 to improve the stability of the connection structure.
Further, the bottoms of the first preheating section frame 1, the second preheating section frame 2, the sintering section frame 3 and the cooling section frame 4 are respectively provided with universal wheels 6 and anchor feet 7, so that the flexibility of the frame is improved. Specifically, a mounting plate is arranged on each section of underframe, the universal wheels 6 are fixedly arranged on the mounting plate, and the foundation feet 7 are arranged on the mounting plate in a lifting manner through screw rods.
The foregoing describes in detail preferred embodiments of the present utility model. It should be understood that numerous modifications and variations can be made in accordance with the concepts of the utility model by one of ordinary skill in the art without undue burden. Therefore, all technical solutions which can be obtained by logic analysis, reasoning or limited experiments based on the prior art by the person skilled in the art according to the inventive concept shall be within the scope of protection defined by the claims.