CN214216941U - Assembled concrete superimposed sheet transportation frame device - Google Patents
Assembled concrete superimposed sheet transportation frame device Download PDFInfo
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- CN214216941U CN214216941U CN202023142185.XU CN202023142185U CN214216941U CN 214216941 U CN214216941 U CN 214216941U CN 202023142185 U CN202023142185 U CN 202023142185U CN 214216941 U CN214216941 U CN 214216941U
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Abstract
The utility model relates to an assembled concrete superimposed sheet transportation frame device belongs to transportation component technical field. The lower group of the transportation and storage rack consists of two lower longitudinal beams, a plurality of lower cross beams and a plurality of lower upright columns, wherein the lower longitudinal beams and the lower cross beams are arranged between the two lower longitudinal beams; the lower vertical columns are vertically arranged on the two lower longitudinal beams, the two sides of the lower vertical columns are provided with inclined supports and/or inclined steel plate upper group transportation and storage racks which are composed of two upper longitudinal beams, a plurality of upper cross beams and a plurality of upper vertical columns, the plurality of upper cross beams are arranged between the two upper longitudinal beams, and the upper longitudinal beams and the upper cross beams form a rectangular frame; the upper upright post is vertically arranged at the bottoms of the two upper longitudinal beams, and triangular support plates are arranged on two sides of the upper upright post; the upper group of transporting and storing racks and the lower group of transporting and storing racks are mutually sleeved and connected together through upper upright posts and lower upright posts. The utility model discloses can effectively solve the low problem of current conveyer conveying efficiency.
Description
Technical Field
The utility model relates to an assembled concrete superimposed sheet transportation frame device belongs to transportation component technical field.
Background
At present, the national development is changed from a high-speed development stage to a high-quality development stage, so that the assembly type building is pushed in the building industry. The large-scale prefabricated member of assembled prefabricated component such as superimposed sheet, because its size is big, the quality is heavy, is different from traditional mode of transportation. The mode of stacking single pieces is mainly adopted for transferring, storing and transporting the prefabricated composite plates in production in the market at present, the mode needs a large-area operation field and more manpower and transportation times, and the efficiency is low.
SUMMERY OF THE UTILITY MODEL
Based on prior art's above-mentioned defect, the utility model provides an assembled concrete superimposed sheet transportation frame device for thereby solve the problem that the loading capacity is few, the handling process is loaded down with trivial details to lead to conveying efficiency low in the current conveyer, thereby save assembled building prefabricated component accessory cost of transportation.
In order to solve the technical problem, the utility model discloses following technical scheme:
an assembled concrete composite slab transportation frame device comprises an upper group of transportation and storage frames and a lower group of transportation and storage frames which are assembled together up and down, wherein the lower group of transportation and storage frames are composed of two lower longitudinal beams, a plurality of lower cross beams and a plurality of lower upright posts, and the lower longitudinal beams and the lower cross beams are arranged between the two lower longitudinal beams; the lower upright posts are vertically arranged on the two lower longitudinal beams, and inclined supports and/or inclined steel plates are arranged on two sides of the lower upright posts;
the upper group of transporting and storing frames are composed of two upper longitudinal beams, a plurality of upper cross beams and a plurality of upper upright columns, the plurality of upper cross beams are arranged between the two upper longitudinal beams, and the upper longitudinal beams and the upper cross beams form a rectangular frame; the upper upright posts are vertically arranged at the bottoms of the two upper longitudinal beams, and triangular support plates are arranged on two sides of the upper upright posts;
the upper group of transporting and storing racks and the lower group of transporting and storing racks are mutually sleeved and connected together through upper stand columns and lower stand columns.
Furthermore, the upper upright posts are square tubes of 120mm × 6mm, and the lower upright posts are square tubes of 100mm × 10 mm.
Furthermore, the upper longitudinal beam is a square tube with the thickness of 130mm by 160mm by 89mm, and the upper transverse beam is a channel steel with the thickness of 65mm by 160 mm.
Furthermore, the lower longitudinal beams are square tubes of 130mm by 160mm by 89mm, and the lower transverse beams are channel steel of 65mm by 160 mm.
Furthermore, 4 groups of hanging rings are welded on two sides of the upper group of transportation storage rack and the lower group of transportation storage rack.
Furthermore, the two sides of the lower upright post are provided with inclined supports formed by I-shaped steel and/or inclined steel plates with the thickness of 10 mm.
Furthermore, all set up one in the middle of last group's transportation storage rack and the lower group's transportation storage rack and have 65mm 160mm channel-section steel secondary longeron for connect many entablature and many bottom end rails respectively.
Compared with the prior art, the utility model discloses following technological effect has:
the utility model discloses installation simple manufacture, use are convenient, under the lower condition of temperature in winter, can carry out effectual protection and steam maintenance to prefabricated component.
Drawings
FIG. 1 is a side view of a lower set of transport storage racks of the present invention;
FIG. 2 is a top view of the lower group of transporting and storing racks of the present invention;
FIG. 3 is a front view of the lower set of transporting racks of the present invention;
FIG. 4 is a side view of the upper group of transport racks of the present invention;
fig. 5 is a bottom view of the upper group of transportation and storage racks of the present invention;
fig. 6 is a front view of the upper group transportation storage rack of the present invention.
Detailed Description
The present invention will be described in detail with reference to fig. 1 to 6.
As shown in fig. 1 to 6, the fabricated concrete composite slab transporting rack device of the embodiment includes an upper group transporting and storing rack 1 and a lower group transporting and storing rack 2 assembled together up and down, as shown in fig. 1 to 3, the lower group transporting and storing rack 2 is composed of two lower longitudinal beams 21, a plurality of lower cross beams 22 and a plurality of lower upright columns 23, and the lower longitudinal beams 21 and the lower cross beams 22 form a rectangular frame. A plurality of lower cross members 22 are provided between the two side sills 21. The lower upright column 23 is vertically arranged on the two lower longitudinal beams 21, and the two sides of the lower upright column 23 are provided with inclined supports 24 and/or inclined steel plates 25. As shown in fig. 4 to 6, the upper group transporting and storing rack 1 is composed of two upper longitudinal beams 11, a plurality of upper cross beams 12 and a plurality of upper upright posts 13, the plurality of upper cross beams 12 are arranged between the two upper longitudinal beams 11, and the upper longitudinal beams 11 and the upper cross beams 12 form a rectangular frame. The upper upright column 13 is vertically arranged at the bottom of the two upper longitudinal beams 11, and triangular support plates 14 are arranged on two sides of the upper upright column 13. The upper group of transporting and storing racks 1 and the lower group of transporting and storing racks 2 are mutually sleeved and connected together through upper upright posts 13 and lower upright posts 23. 4 groups of lifting rings are welded on two sides of the upper group of transportation storage rack 1 and the lower group of transportation storage rack 2 and used for transporting the laminated slab components.
In this embodiment, the upper pillars 13 are square tubes of 120mm × 6mm, and the lower pillars 23 are square tubes of 100mm × 10 mm. The upper longitudinal beam 11 is a square tube with the thickness of 130mm by 160mm by 89mm, and the upper transverse beam 12 is a channel steel with the thickness of 65mm by 160 mm. The lower longitudinal beam 21 is a square tube with the thickness of 130mm by 160mm by 89mm, and the lower transverse beam 22 is a channel steel with the thickness of 65mm by 160 mm. The two sides of the middle lower upright column 23 are respectively provided with an inclined support 24 formed by I-shaped steel, one side of the lower upright column 23 at the two ends is provided with an inclined support 24 formed by I-shaped steel, and the other side is provided with an inclined steel plate 25 with the thickness of 10 mm. The middle of the upper group of transport storage rack 1 and the middle of the lower group of transport storage rack 2 are respectively provided with a 65mm and 160mm channel steel secondary longitudinal beam 10 for respectively connecting a plurality of upper cross beams 12 and a plurality of lower cross beams 22.
The above-mentioned embodiments are only given for the purpose of more clearly illustrating the technical solutions of the present invention, and are not intended to limit the present invention, and the modifications of the technical solutions of the present invention by those skilled in the art based on the common general knowledge in the field are also within the scope of the present invention.
Claims (7)
1. The utility model provides an assembled concrete superimposed sheet transportation frame device which characterized in that: comprises an upper group of transportation and storage racks (1) and a lower group of transportation and storage racks (2) which are assembled together up and down; the lower group of the transporting and storing rack (2) is composed of two lower longitudinal beams (21), a plurality of lower cross beams (22) and a plurality of lower upright posts (23), wherein the lower longitudinal beams (21) and the lower cross beams (22) form a rectangular frame; a plurality of lower cross beams (22) are arranged between the two lower longitudinal beams (21); the lower upright post (23) is vertically arranged on the two lower longitudinal beams (21), and inclined supports (24) and/or inclined steel plates (25) are arranged on two sides of the lower upright post (23);
the upper group of the transporting and storing rack (1) is composed of two upper longitudinal beams (11), a plurality of upper cross beams (12) and a plurality of upper upright posts (13), the plurality of upper cross beams (12) are arranged between the two upper longitudinal beams (11), and the upper longitudinal beams (11) and the upper cross beams (12) form a rectangular frame; the upper upright columns (13) are vertically arranged at the bottoms of the two upper longitudinal beams (11), and triangular support plates (14) are arranged on two sides of the upper upright columns (13);
the upper group of the transporting and storing racks (1) and the lower group of the transporting and storing racks (2) are mutually sleeved and connected together through upper upright posts (13) and lower upright posts (23).
2. The fabricated concrete composite slab transportation frame device according to claim 1, wherein: the upper upright column (13) is a square tube with the thickness of 120 mm/6 mm, and the lower upright column (23) is a square tube with the thickness of 100 mm/10 mm.
3. The fabricated concrete composite slab transportation frame device according to claim 1, wherein: the upper longitudinal beam (11) is a square tube with the thickness of 130mm by 160mm by 89mm, and the upper transverse beam (12) is a channel steel with the thickness of 65mm by 160 mm.
4. The fabricated concrete composite slab transportation frame device according to claim 1, wherein: the lower longitudinal beam (21) is a square tube with the thickness of 130mm by 160mm by 89mm, and the lower transverse beam (22) is a channel steel with the thickness of 65mm by 160 mm.
5. The fabricated concrete composite slab transportation frame device according to claim 1, wherein: 4 groups of lifting rings are welded on two sides of the upper group of transportation storage rack (1) and the lower group of transportation storage rack (2).
6. The fabricated concrete composite slab transportation frame device according to claim 1, wherein: and inclined supports (24) formed by I-shaped steel and/or inclined steel plates (25) with the thickness of 10mm are arranged on two sides of the lower upright post (23).
7. The fabricated concrete composite slab transportation frame device according to claim 1, wherein: go up group's transportation storage rack (1) and all set up one in the middle of lower group's transportation storage rack (2) and have 65mm 160mm channel-section steel secondary longitudinal beam (10) for connect many entablature (12) and many bottom end rail (22) respectively.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202023142185.XU CN214216941U (en) | 2020-12-24 | 2020-12-24 | Assembled concrete superimposed sheet transportation frame device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202023142185.XU CN214216941U (en) | 2020-12-24 | 2020-12-24 | Assembled concrete superimposed sheet transportation frame device |
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Publication Number | Publication Date |
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CN214216941U true CN214216941U (en) | 2021-09-17 |
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CN202023142185.XU Active CN214216941U (en) | 2020-12-24 | 2020-12-24 | Assembled concrete superimposed sheet transportation frame device |
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CN (1) | CN214216941U (en) |
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2020
- 2020-12-24 CN CN202023142185.XU patent/CN214216941U/en active Active
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