CN204174900U - Building scaffold - Google Patents

Building scaffold Download PDF

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Publication number
CN204174900U
CN204174900U CN201420540807.XU CN201420540807U CN204174900U CN 204174900 U CN204174900 U CN 204174900U CN 201420540807 U CN201420540807 U CN 201420540807U CN 204174900 U CN204174900 U CN 204174900U
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set unit
square set
ccf layer
layer
pin
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邱垂亮
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Guangdong Longcheng environmental protection template technology Co., Ltd.
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邱垂亮
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Abstract

A kind of building scaffold, includes the horizontal square set unit of many Pin, the longitudinal square set unit of many Pin; The horizontal square set unit of described many Pin, the longitudinal square set unit of many Pin assemble for upper and lower some layers of ccf layer; In often neighbouring two-layer ccf layer, the lower end of the vertical bar of every root of a upper ccf layer and the upper end of a vertical bar of next ccf layer correspondence position utilize described plug and jack to form grafting relation; Every layer of odd number ccf layer forms by the longitudinal square set unit of many Pin is transversely arranged successively, and each even number ccf layer includes the horizontal square set unit of front and back two row.The utility model installation or removal are convenient, and the main bearing member near ground can not be removed by thief.

Description

Building scaffold
Technical field
The utility model belongs to the technical field of construction implement, is specifically related to a kind of building scaffold.
Background technology
Existing building scaffold is mostly adopt fastener for connection and form latticed steel pipe support, steel pipe wherein after overlap joint runs through the horizontal total length of skin in the horizontal, vertical steel pipe after connection extends near terrace by ground, then needs to be locked by Special-purpose ten font snap close at horizontal steel pipe and vertical steel pipe crossover sites; Latticed steel pipe support after overlap joint is divided into front and back two spoke, between two spoke grid steel pipe supports, reconnect longitudinal quarter butt, just can set up the foot pedal of standing for construction worker between the adjacent longitudinal quarter butt in left and right.
But existing above-mentioned building operations building scaffold has the following disadvantages:
One, the main node position (comprising steel tube lapping position and crossover sites) of above-mentioned latticed steel pipe support needs to rely on special part locking, these main node positions are greatly stressed, thus require that special part is firm solid, big and heavy, mean that special part cost is higher; And above-mentioned main node position is greatly stressed, the mode that clamping, snapping, pin joint etc. are convenient to assemble can not be adopted to carry out loosely connected, the mode of screwed tight generally can only be adopted to realize connection of compacting, therefore in assembling scaffold or dismounting scaffold process, need tighten or unscrew a large amount of nut or bolt, can not hand operation, very work consuming is consuming time, and often occur that nut or bolt are accidentally dropped situation about dropping downwards, cause potential safety hazard;
Two, owing to often saving horizontal steel pipe, often to save the length of vertical steel pipe longer, usually about 6 meters are reached, be difficult to by lift, interior of building, the carrying of building window, can only vertically suspend in midair and be transported to installation site outside skin in a pre-installation, also outside exterior wall, vertical suspention directly ground can only be transferred to after removal, therefore horizontal steel pipe, vertical steel pipe difficult and there is potential safety hazard;
Three, in latticed steel pipe support, the horizontal steel pipe after overlap joint needs the horizontal total length running through skin, and thus scaffold steel consumption is large, and scaffold cost is high;
Four, latticed steel pipe support is positioned at outdoor, and steel pipe is the target that thief covets, and the steel pipe near ground especially the easiest, most probable is removed by thief.After the whole latticed steel pipe scaffold of traditional structure is set up, owing to lacking linkage relationship between each several part, cross snap close wherein near ground and corresponding horizontal steel pipe can be pulled down and steal separately by thief, once the horizontal steel pipe near ground is removed by thief, the structural safety problem of whole scaffold just becomes hidden trouble.
Utility model content
The purpose of this utility model is overcome above-mentioned shortcoming and provide and a kind of building scaffold, and it installs or removes convenient, and the main bearing member near ground can not be removed by thief.
Its object can realize by following scheme: a kind of building scaffold, includes the horizontal square set unit of many Pin, the longitudinal square set unit of many Pin; The horizontal square set unit of each Pin includes left and right two vertical bars, upper and lower two transverse horizontal bars, diagonal angle braces, upper and lower two transverse horizontal bars are fixedly connected between the two vertical bars in left and right and form the square frame be integrated, the two ends of diagonal angle brace are fixedly connected on this square frame diagonal position, and the length of transverse horizontal bar is m; The longitudinal square set unit of each Pin includes the vertical bar in two, front and back and upper and lower two vertical equity bars, and upper and lower two vertical equity bars are fixedly connected between the vertical bar in two, front and back and form the square frame be integrated;
The height of described each vertical bar is identical, and a wherein end of every vertical bar of root is provided with jack, and the other end is formed as the plug that can insert the vertical bar jack of another root; The horizontal square set unit of described many Pin, the longitudinal square set unit of many Pin assemble for upper and lower some layers of ccf layer; In often neighbouring two-layer ccf layer, the lower end of the vertical bar of every root of a upper ccf layer and the upper end of a vertical bar of next ccf layer correspondence position utilize described plug and jack to form grafting relation;
Number from the bottom up, every layer of odd number ccf layer forms by the longitudinal square set unit of many Pin is transversely arranged successively, horizontal spacing between the longitudinal square set unit of adjacent two Pin in every left and right equals the length m of transverse horizontal bar, is also removably connected with oblique connecting rod between the adjacent vertical bar of the longitudinal square set unit of adjacent two Pin in every left and right; The lateral attitude of longitudinal square set unit of each layer odd number ccf layer high order end is concordant, and the lateral attitude of longitudinal square set unit of each layer odd number ccf layer low order end is concordant;
Number from the bottom up, each even number ccf layer includes the horizontal square set unit of front and back two row, horizontal square set unit of often going forms by the horizontal square set unit of many Pin is transversely arranged successively, in the horizontal square set unit of every a line, the horizontal spacing between the horizontal square set unit of adjacent two Pin in every left and right equals the length m of transverse horizontal bar; The structure of the horizontal square set unit of front and back two row of same even number ccf layer is identical, and location overlap in the horizontal, before and after this, the longitudinal pitch of the horizontal square set unit of two row equals the longitudinal length of vertical equity bar;
In every neighbouring two-layer even number ccf layer, wherein there is the lateral attitude of the vertical bar of high order end of the horizontal square set unit of one deck even number ccf layer concordant with the longitudinal square set unit of a Pin of odd number ccf layer high order end, and the vertical bar of high order end of the horizontal square set unit of another layer of even number ccf layer to stagger to the right one section of lateral separation m relative to the longitudinal square set unit of a Pin of the high order end of odd number ccf layer, the longitudinal square set unit of a Pin is also provided with in the left side of the horizontal square set unit of two row of this another layer of even number ccf layer, the lateral attitude of the longitudinal square set unit of this Pin is concordant with the longitudinal square set unit of a Pin of odd number ccf layer high order end, the lengthwise position of two vertical bars of the longitudinal square set unit of this Pin is concordant with the lengthwise position of two row transverse direction square set unit respectively, also oblique connecting rod is removably connected with between the vertical bar of every root of longitudinal square set unit of this even number ccf layer and the vertical bar of adjacent transverse square set unit,
In every neighbouring two-layer even number ccf layer, wherein there is the lateral attitude of the vertical bar of low order end of the horizontal square set unit of one deck even number ccf layer concordant with the longitudinal square set unit of a Pin of odd number ccf layer low order end, and the vertical bar of low order end of the horizontal square set unit of another layer of even number ccf layer to stagger left one section of lateral separation m relative to the longitudinal square set unit of a Pin of the low order end of odd number ccf layer, the longitudinal square set unit of a Pin is also provided with on the right side of the horizontal square set unit of two row of this another layer of even number ccf layer, the lateral attitude of the longitudinal square set unit of this Pin is concordant with the longitudinal square set unit of a Pin of odd number ccf layer low order end, the lengthwise position of two vertical bars of the longitudinal square set unit of this Pin is concordant with the lengthwise position of two row transverse direction square set unit respectively, also oblique connecting rod is removably connected with between the vertical bar of every root of longitudinal square set unit of this even number ccf layer and the vertical bar of adjacent transverse square set unit.
Be preferably, in every layer of even number ccf layer, between the adjacent vertical bar of the horizontal square set unit of adjacent two Pin in every left and right, be also removably connected with oblique connecting rod.
Be more preferably, in every layer of odd number ccf layer, between the adjacent vertical bar of the longitudinal square set unit of adjacent two Pin in every left and right, be also removably connected with horizontal cross connecting rod.
In present specification, longitudinally so-called, referring to the horizontal direction perpendicular to the corresponding building wall of this scaffold, is also longitudinally fore-and-aft direction; Laterally so-called, referring to the horizontal direction being parallel to building wall, is also laterally left and right directions.
So-called neighbouring two-layer even number ccf layer, refer to middle only across the two-layer ccf layer of one deck odd number ccf layer, such as the second ccf layer and the 4th ccf layer, again such as the 4th ccf layer and the 6th ccf layer, the 6th ccf layer and the 8th ccf layer, the rest may be inferred.
The utility model has the following advantages and effect:
One, the main bearing member of the utility model building scaffold is vertical bar in vertical bar in longitudinal square set unit and vertical equity bar, horizontal square set unit and transverse horizontal bar, the stressed larger main node position of the utility model includes two classes, wherein the first kind is the intersection point of vertical bar in longitudinal square set unit and vertical equity bar, and the intersection point of vertical bar in horizontal square set unit and transverse horizontal bar, Equations of The Second Kind is the tie point of the vertical up and down bar of every neighbouring two-layer ccf layer.Above-mentioned first kind main node position was fixedly connected with complete (being such as welded as a whole) by scaffold manufacturer before setting up scaffold, Equations of The Second Kind main node position then can utilize plug and jack to form grafting relation in erecting bed, thus the connection at the stressed larger main node position of the utility model does not need to rely on screw thread and compacts and tighten, avoid the trouble and potential safety hazard of tightening or unscrewing nut (bolt), make the assembling of scaffold or dismantle very convenient, fast, saving of labor, can hand operation, and provide cost savings higher special connection fittings, reduce costs.In the utility model, oblique connecting rod mainly just plays the auxiliary effect linked, the tie point of oblique connecting rod and horizontal square set unit or longitudinal square set unit is stressed less, not stressed larger main node position, the thus tie point of oblique connecting rod and horizontal square set unit or the longitudinal square set unit loose joint mode that clamping, snapping etc. can be adopted easy.
Two, because the utility model adopts building blocks joint form, therefore the steel pipe much shorter of size compared with traditional pin hand cradle of component (longitudinal square set unit, horizontal square set unit, oblique connecting rod) is respectively overlapped, lift, interior of building, the carrying of building window can be passed through, lift can be utilized in a pre-installation to be transported to the corresponding aspect of building or indoor, then the Window Delivery of skin is just passed through outside exterior wall, therefore the utility model respectively overlaps component carrying easily, reduces the potential safety hazard of vertical suspention handling process;
Three, longitudinal square set unit of odd number ccf layer of the present utility model and the horizontal square set unit of even number ccf layer crisscross, and the horizontal square set unit of every neighbouring two-layer even number ccf layer staggers lattice (stagger one section of lateral separation m), form triangle disposition syndeton, this crisscross syndeton good stability;
Four, after the whole building scaffold of the utility model is set up, linkage relationship is formed between each several part, namely lower floor's ccf layer can pin by nature by upper strata ccf layer, if thief will steal, the superiors' framework can only be dismantled, a part of component near ground can not be pulled down separately and steal by thief, and the component avoided near ground is removed by thief and jeopardizes the problem of scaffolding structure safety;
The length of the transverse horizontal bar five, after the utility model overlap joint is only equivalent to 1/2 of the horizontal steel pipe length of traditional pin hand cradle, and thus scaffold steel consumption is less, reduces scaffold cost.
Accompanying drawing explanation
Fig. 1 is the perspective view of the longitudinal square set unit of each Pin of the utility model.
Fig. 2 is the perspective view of the horizontal square set unit of each Pin of the utility model.
Fig. 3 is the vertical bar section structural representation in Fig. 1, Fig. 2.
Fig. 4 is the perspective view of the first specific embodiment first to fourth ccf layer of the utility model.
Fig. 5 is the Facad structure simplified schematic diagram of the first specific embodiment first to fourth ccf layer of the utility model.
Fig. 6 is the perspective view of the first specific embodiment first of the utility model to the 3rd ccf layer.
Fig. 7 is the perspective view of the first specific embodiment first ccf layer of the utility model.
Fig. 8 is the Facad structure simplified schematic diagram of the first specific embodiment first ccf layer of the utility model.
Fig. 9 be the first specific embodiment first ccf layer of the utility model look up structural representation sketch.
Figure 10 is the perspective view of the first specific embodiment the first to the second ccf layer of the utility model.
Figure 11 is the Facad structure simplified schematic diagram of the first specific embodiment second ccf layer of the utility model.
Figure 12 be the first specific embodiment second ccf layer of the utility model look up structural representation sketch.
Figure 13 is the Facad structure simplified schematic diagram of the first specific embodiment of the utility model the 4th ccf layer.
Figure 14 be the first specific embodiment of the utility model the 4th ccf layer look up structural representation sketch.
Figure 15 is the connection status structural representation of oblique connecting rod (horizontal cross connecting rod) and vertical bar.
Figure 16 is the structural representation of movable bayonet lock in Fig. 1, Fig. 2, Figure 15.
Figure 17 is the view of movable bayonet lock when oblique connecting rod (horizontal cross connecting rod) is inserted in preparation.
Figure 18 is the Facad structure simplified schematic diagram of the utility model the second specific embodiment first to fourth ccf layer.
Figure 19 is the grafting relation schematic diagram of the vertical up and down bar of neighbouring ccf layer.
Detailed description of the invention
Embodiment one
Building scaffold shown in Fig. 4, Fig. 5 includes the horizontal square set unit 6 of many Pin, the longitudinal square set unit 5 of many Pin; Shown in Fig. 2, the horizontal square set unit 6 of each Pin includes left and right two vertical bars 7, upper and lower two transverse horizontal bars 61, diagonal angle braces 62, upper and lower two transverse horizontal bars 61 are fixedly connected between the two vertical bars 7 in left and right and form the square frame be integrated, the two ends of diagonal angle brace 62 are fixedly connected on this square frame diagonal position, and the length of transverse horizontal bar 61 is m; Shown in Fig. 1, the longitudinal square set unit 5 of each Pin includes the vertical bar 7 in two, front and back and upper and lower two vertical equity bars 51, and upper and lower two vertical equity bars 51 are fixedly connected between the vertical bar 7 in two, front and back and form the square frame be integrated.
The horizontal square set unit of described many Pin, the longitudinal square set unit of many Pin assemble for upper and lower some layers of ccf layer.Wherein, number from the bottom up, the structure of first floor ccf layer is identical with the structure of 4N+1 layer ccf layer, and also identical with the structure of 4N-1 layer ccf layer, they all belong to odd number ccf layer, and wherein N is natural number.Number from the bottom up, the structure of second layer ccf layer is identical with the structure of 4N+2 layer ccf layer, and the structure of the 4th layer of ccf layer is identical with the structure of 4N+4 layer ccf layer, and they all belong to even number ccf layer.
Shown in Fig. 4, Fig. 5, Fig. 6, Fig. 7, Fig. 8, Fig. 9, every layer of odd number ccf layer forms by the longitudinal square set unit 5 of many Pin is transversely arranged successively, horizontal spacing between the longitudinal square set unit 5 of adjacent two Pin in every left and right equals the length m of transverse horizontal bar, is also removably connected with oblique connecting rod 8 between the adjacent vertical bar 7 of the longitudinal square set unit of adjacent two Pin in every left and right; The lateral attitude of longitudinal square set unit of each layer odd number ccf layer high order end is concordant, and the lateral attitude of longitudinal square set unit of each layer odd number ccf layer low order end is concordant.In every layer of odd number ccf layer, between the adjacent vertical bar of the longitudinal square set unit of adjacent two Pin in every left and right, also removably connect horizontal cross connecting rod 9.
Shown in Fig. 4, Figure 10, Figure 11, Figure 12, Figure 13, Figure 14, each even number ccf layer includes the horizontal square set unit of front and back two row, horizontal square set unit of often going forms by the horizontal square set unit 6 of many Pin is transversely arranged successively, in the horizontal square set unit of every a line, horizontal spacing between the horizontal square set unit 6 of adjacent two Pin in every left and right equals the length m of transverse horizontal bar, is also removably connected with oblique connecting rod 8 between the adjacent vertical bar of the horizontal square set unit of adjacent two Pin in every left and right; The structure of the horizontal square set unit of front and back two row of same even number ccf layer is identical, and location overlap in the horizontal, before and after this, the longitudinal pitch of the horizontal square set unit of two row equals the longitudinal length of vertical equity bar;
Fig. 4, Fig. 5, Figure 10, Figure 11, Figure 12, Figure 13, shown in Figure 14, in every neighbouring two-layer even number ccf layer, wherein there is one deck even number ccf layer (Fig. 4, be specially second layer ccf layer in Fig. 5) the longitudinal square set unit of a Pin of lateral attitude and odd number ccf layer high order end of the vertical bar of high order end of horizontal square set unit concordant, and another layer of even number ccf layer (Fig. 4, be specially the 4th layer of ccf layer in Fig. 5) the vertical bar of high order end of horizontal square set unit to stagger to the right one section of lateral separation m relative to the longitudinal square set unit of a Pin of the high order end of odd number ccf layer, at this another layer of even number ccf layer (Fig. 4, be specially the 4th layer of ccf layer in Fig. 5) the left side of the horizontal square set unit of two row be also provided with a Pin longitudinal square set unit 5(as Figure 13, shown in Figure 14), the lateral attitude of the longitudinal square set unit 5 of this Pin is concordant with the longitudinal square set unit of a Pin of odd number ccf layer high order end, the lengthwise position of two vertical bars of the longitudinal square set unit 5 of this Pin is concordant with the lengthwise position of two row transverse direction square set unit respectively, also oblique connecting rod 8 is removably connected with, as shown in Figure 13, Figure 14 between the vertical bar of every root of longitudinal square set unit of this even number ccf layer and the vertical bar of adjacent transverse square set unit,
Fig. 4, Fig. 5, Figure 10, Figure 11, Figure 12, Figure 13, shown in Figure 14, in every neighbouring two-layer even number ccf layer, wherein there is one deck even number ccf layer (Fig. 4, be specially second layer ccf layer in Fig. 5) the longitudinal square set unit of a Pin of lateral attitude and odd number ccf layer low order end of the vertical bar of low order end of horizontal square set unit concordant, and another layer of even number ccf layer (Fig. 4, be specially the 4th layer of ccf layer in Fig. 5) the vertical bar of low order end of horizontal square set unit to stagger left one section of lateral separation m relative to the longitudinal square set unit of a Pin of the low order end of odd number ccf layer, at this another layer of even number ccf layer (Fig. 4, be specially the 4th layer of ccf layer in Fig. 5) the right side of the horizontal square set unit of two row be also provided with a Pin longitudinal square set unit 5(as Figure 13, shown in Figure 14), the lateral attitude of the longitudinal square set unit of this Pin is concordant with the longitudinal square set unit of a Pin of odd number ccf layer low order end, the lengthwise position of two vertical bars of the longitudinal square set unit of this Pin is concordant with the lengthwise position of two row transverse direction square set unit respectively, also oblique connecting rod 8 is removably connected with, as shown in Figure 13, Figure 14 between the vertical bar of every root of longitudinal square set unit of this even number ccf layer (being specially the 4th layer of ccf layer in Fig. 4, Fig. 5) and the vertical bar of adjacent transverse square set unit,
In above-mentioned all longitudinal square set unit and horizontal square set unit, the oneself height of each vertical bar 7 is identical, and the bottom of every vertical bar 7 of root is provided with sleeve 73, be formed as jack 72 in the middle of sleeve 73, the upper end of the vertical bar of every root 7 is formed as the plug 71 that can insert the vertical bar jack of another root; In often neighbouring two-layer ccf layer, the lower end jack 72 of the vertical bar of every root of a upper ccf layer utilizes described plug and jack to form grafting relation with the upper end plug 71 of a vertical bar of next ccf layer correspondence position, as shown in figure 19.
It is as follows that above-described embodiment sets up process: first set up the first ccf layer, after setting up as shown in Figure 7, Figure 8, then on the first ccf layer, set up the second ccf layer, after setting up as shown in Figure 10, more then on the second ccf layer, set up the 3rd ccf layer, after setting up as shown in Figure 6, then on the 3rd ccf layer, set up the 4th ccf layer again, after setting up as shown in Figure 4, Figure 5, constantly upwards set up according to this, after having set up, just can set up foot rest 10 on vertical equity bar 51.
Figure 15, Figure 16, Figure 17 show oblique connecting rod 8 or the Detachable connection structure between horizontal cross connecting rod 9 and vertical bar 7, and this Detachable connection structure is prior art.Shown in Figure 17, the end of oblique connecting rod 8, horizontal cross connecting rod 9 is provided with pin-and-hole 10; Shown in Fig. 1, Fig. 2, Figure 15, each vertical bar 7 is provided with movable bayonet lock 74, the movable bayonet lock 74 of every root is provided with rotating fixture block 740, when oblique connecting rod 8 or horizontal cross connecting rod 9 are connected with vertical bar 7 by needs, fixture block 740 is turned to state shown in Figure 17, then make pin-and-hole 10 entangle movable bayonet lock 74, finally fixture block 740 is turned to state shown in Figure 15, Figure 16, thus oblique connecting rod 8 or horizontal cross connecting rod 9 are temporarily coupled together with vertical bar 7.
From above-mentioned, the whole scaffold of the utility model, in assembling process, does not need to use bolt, nut.
Embodiment two
Embodiment two mainly contains following 2 points with the difference of embodiment one:
1, in every neighbouring two-layer even number ccf layer, wherein there is the lateral attitude of the vertical bar of low order end of the horizontal square set unit of one deck even number ccf layer (Figure 18 is specially the 4th layer of ccf layer) concordant with the longitudinal square set unit of a Pin of odd number ccf layer low order end, and the vertical bar of low order end of the horizontal square set unit of another layer of even number ccf layer (being specially second layer ccf layer in Figure 18) to stagger left one section of lateral separation m relative to the longitudinal square set unit of a Pin of the low order end of odd number ccf layer, the longitudinal square set unit 5 of a Pin is also provided with on the right side of the horizontal square set unit of two row of this another layer of even number ccf layer (being specially second layer ccf layer in Figure 18), the lateral attitude of the longitudinal square set unit of this Pin is concordant with the longitudinal square set unit of a Pin of odd number ccf layer low order end, the lengthwise position of two vertical bars of the longitudinal square set unit of this Pin is concordant with the lengthwise position of two row transverse direction square set unit respectively, also oblique connecting rod is removably connected with, as shown in Figure 13, Figure 14 between the vertical bar of every root of longitudinal square set unit of this even number ccf layer (being specially second layer ccf layer in Figure 18) and the vertical bar of adjacent transverse square set unit,
2, in embodiment two, the jack of vertical bar is positioned at upper end, and plug is positioned at lower end.
Except above-mentioned 2 differences, the structure of all the other aspects of embodiment and embodiment one are roughly the same.
Embodiment three
Embodiment three is only with the main distinction of embodiment one: the second ccf layer and the 4th ccf layer are exchanged, namely the second ccf layer of embodiment one is identical with the 4th ccf layer structure of embodiment three, and the 4th ccf layer of embodiment one is identical with the second ccf layer structure of embodiment three.

Claims (3)

1. a building scaffold, is characterized in that including the horizontal square set unit of many Pin, the longitudinal square set unit of many Pin; The horizontal square set unit of each Pin includes left and right two vertical bars, upper and lower two transverse horizontal bars, diagonal angle braces, upper and lower two transverse horizontal bars are fixedly connected between the two vertical bars in left and right and form the square frame be integrated, the two ends of diagonal angle brace are fixedly connected on this square frame diagonal position, and the length of transverse horizontal bar is m; The longitudinal square set unit of each Pin includes the vertical bar in two, front and back and upper and lower two vertical equity bars, and upper and lower two vertical equity bars are fixedly connected between the vertical bar in two, front and back and form the square frame be integrated;
The height of described each vertical bar is identical, and a wherein end of every vertical bar of root is provided with jack, and the other end is formed as the plug that can insert the vertical bar jack of another root; The horizontal square set unit of described many Pin, the longitudinal square set unit of many Pin assemble for upper and lower some layers of ccf layer; In often neighbouring two-layer ccf layer, the lower end of the vertical bar of every root of a upper ccf layer and the upper end of a vertical bar of next ccf layer correspondence position utilize described plug and jack to form grafting relation;
Number from the bottom up, every layer of odd number ccf layer forms by the longitudinal square set unit of many Pin is transversely arranged successively, horizontal spacing between the longitudinal square set unit of adjacent two Pin in every left and right equals the length m of transverse horizontal bar, is also removably connected with oblique connecting rod between the adjacent vertical bar of the longitudinal square set unit of adjacent two Pin in every left and right; The lateral attitude of longitudinal square set unit of each layer odd number ccf layer high order end is concordant, and the lateral attitude of longitudinal square set unit of each layer odd number ccf layer low order end is concordant;
Number from the bottom up, each even number ccf layer includes the horizontal square set unit of front and back two row, horizontal square set unit of often going forms by the horizontal square set unit of many Pin is transversely arranged successively, in the horizontal square set unit of every a line, the horizontal spacing between the horizontal square set unit of adjacent two Pin in every left and right equals the length m of transverse horizontal bar; The structure of the horizontal square set unit of front and back two row of same even number ccf layer is identical, and location overlap in the horizontal, before and after this, the longitudinal pitch of the horizontal square set unit of two row equals the longitudinal length of vertical equity bar;
In every neighbouring two-layer even number ccf layer, wherein there is the lateral attitude of the vertical bar of high order end of the horizontal square set unit of one deck even number ccf layer concordant with the longitudinal square set unit of a Pin of odd number ccf layer high order end, and the vertical bar of high order end of the horizontal square set unit of another layer of even number ccf layer to stagger to the right one section of lateral separation m relative to the longitudinal square set unit of a Pin of the high order end of odd number ccf layer, the longitudinal square set unit of a Pin is also provided with in the left side of the horizontal square set unit of two row of this another layer of even number ccf layer, the lateral attitude of the longitudinal square set unit of this Pin is concordant with the longitudinal square set unit of a Pin of odd number ccf layer high order end, the lengthwise position of two vertical bars of the longitudinal square set unit of this Pin is concordant with the lengthwise position of two row transverse direction square set unit respectively, also oblique connecting rod is removably connected with between the vertical bar of every root of longitudinal square set unit of this even number ccf layer and the vertical bar of adjacent transverse square set unit,
In every neighbouring two-layer even number ccf layer, wherein there is the lateral attitude of the vertical bar of low order end of the horizontal square set unit of one deck even number ccf layer concordant with the longitudinal square set unit of a Pin of odd number ccf layer low order end, and the vertical bar of low order end of the horizontal square set unit of another layer of even number ccf layer to stagger left one section of lateral separation m relative to the longitudinal square set unit of a Pin of the low order end of odd number ccf layer, the longitudinal square set unit of a Pin is also provided with on the right side of the horizontal square set unit of two row of this another layer of even number ccf layer, the lateral attitude of the longitudinal square set unit of this Pin is concordant with the longitudinal square set unit of a Pin of odd number ccf layer low order end, the lengthwise position of two vertical bars of the longitudinal square set unit of this Pin is concordant with the lengthwise position of two row transverse direction square set unit respectively, also oblique connecting rod is removably connected with between the vertical bar of every root of longitudinal square set unit of this even number ccf layer and the vertical bar of adjacent transverse square set unit.
2. building scaffold according to claim 1, is characterized in that: in every layer of even number ccf layer, is also removably connected with oblique connecting rod between the adjacent vertical bar of the horizontal square set unit of adjacent two Pin in every left and right.
3. building scaffold according to claim 1, is characterized in that: in every layer of odd number ccf layer, is also removably connected with horizontal cross connecting rod between the adjacent vertical bar of the longitudinal square set unit of adjacent two Pin in every left and right.
CN201420540807.XU 2014-09-20 2014-09-20 Building scaffold Active CN204174900U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112211384A (en) * 2020-09-28 2021-01-12 安徽长青建筑制品有限公司 Scaffold for building site

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112211384A (en) * 2020-09-28 2021-01-12 安徽长青建筑制品有限公司 Scaffold for building site
CN112211384B (en) * 2020-09-28 2022-07-05 安徽长青建筑制品有限公司 Scaffold for building site

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Inventor after: Chen Guangzhan

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