Support column, process device module, and construction method thereof
Abstract
The present disclosure provides a support column, comprising a first column segment and a second column segment, the first column segment and the second column segment of the support column are configured to provide support between two adjacent horizontal modules of a process device module and/or between a horizontal module of a process device module and a ground; one end of the first column segment and one end of the second column segment are arranged in sliding contact and detachably connected; and a sum of a length of the first column segment, a length of the second column segment, and a sliding contact distance between the first column segment and the second column segment in a longitudinal direction is greater than a distance between the two adjacent horizontal modules in a longitudinal direction of the support column. When the horizontal module is assembled with other modules and the support columns need to be removed, the first column segment is disconnected from the ground below or from the installed horizontal module below, the second column segment is disconnected from the installed horizontal module above, the joint between the first column segment and the second column segment is loosened to make the first column segment and the second column segment come into sliding contact and get close to each other, such that the whole support column is removed, which is time saving and labor saving.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . A support column, comprising a first column segment and a second column segment, the first column segment and the second column segment being configured to provide support between two adjacent horizontal modules of a process device module and/or between a horizontal module of a process device module and a ground; one end of the first column segment and one end of the second column segment being arranged in sliding contact and detachably connected; and a sum of a length of the first column segment, a length of the second column segment, and a sliding contact distance between the first column segment and the second column segment in a longitudinal direction being greater than a distance between the two adjacent horizontal modules in a longitudinal direction of the support column.
2 . The support column according to claim 1 , wherein one end of the first column segment is provided with a first inclined plate, the other end of the first column segment is provided with a first connecting portion, one end of the second column segment is provided with a second inclined plate, and the other end of the second column segment is provided with a second connecting portion; the first inclined plate and the second inclined plate are inclined relative to the first column segment and the second column segment at a same angle, respectively, and the first inclined plate and the second inclined plate are oppositely arranged and detachably connected; and the first connecting portion is configured to be detachably connected to a ground below or to a horizontal module on a lower layer of the process device module, and the second connecting portion is configured to be detachably connected to a horizontal module on an upper layer of the process device module.
3 . The support column according to claim 2 , wherein the first inclined plate and the second inclined plate are inclined at an angle of 10 degrees to 45 degrees.
4 . The support column according to claim 2 , wherein the first column segment and the second column segment are both profile steel, and/or
the first inclined plate and the second inclined plate are integrally formed with the first column segment and the second column segment, respectively.
5 . The support column according to claim 2 , wherein the first inclined plate and the second inclined plate are in bolted connection.
6 . A process device module, comprising:
at least two horizontal modules; at least one first vertical module and at least one second vertical module, the first vertical module and the second vertical module each being provided with at least two layers of workspace, a number of the horizontal modules being the same as a number of layers of the first vertical module and a number of layers of the second vertical module, the first vertical module and the second vertical module on each layer being communicated by one of the horizontal modules, and the horizontal modules being detachably connected to the first vertical module and the second vertical module; and a plurality of the support columns, each of which comprising a first column segment and a second column segment, the first column segment and the second column segment being configured to provide support between two adjacent horizontal modules of a process device module and/or between a horizontal module of a process device module and a ground; one end of the first column segment and one end of the second column segment being arranged in sliding contact and detachably connected; and a sum of a length of the first column segment, a length of the second column segment, and a sliding contact distance between the first column segment and the second column segment in a longitudinal direction being greater than a distance between the two adjacent horizontal modules in a longitudinal direction of the support column, the plurality of the support columns being configured to provide support between two adjacent horizontal modules of a process device module and/or between a horizontal module of a process device module and a ground when the process device module is assembled, the first column segment and the second column segment of the support column being detachably connected to two adjacent horizontal modules, respectively, and the first column segment of one of the plurality of the support columns being detachably connected to the ground.
7 . The process device module according to claim 6 , wherein the horizontal module comprises a frame structure and at least two connecting cross members, two of the connecting cross members are connected to the frame structure and provided on two opposite sides of the frame structure, and the horizontal module is connected to the first vertical module and the second vertical module by the connecting cross members; the frame structure is provided with at least one layer of pipe rack, the pipe rack being configured to arrange pipes, and two opposite sides of the pipe rack are connected to a cable tray; and/or
a passage space is reserved between every two adjacent horizontal modules.
8 . The process device module according to claim 7 , wherein the process device module further comprises a connecting structure, the first vertical module is provided with a first docking portion, the second vertical module being provided with a second docking portion, and the first docking portion and the second docking portion both are detachably connected to the connecting cross members of the horizontal module by the connecting structure.
9 . The process device module according to claim 6 , wherein when a plurality of first vertical modules and a plurality of second vertical modules are provided, the plurality of first vertical modules are arranged side by side along a first direction and connected in sequence, and the plurality of second vertical modules are arranged side by side along the first direction and connected in sequence; a length of the horizontal module in the first direction is greater than or equal to a sum of lengths of the plurality of first vertical modules arranged side by side in the first direction, or the length of the horizontal module in the first direction is greater than or equal to a sum of lengths of the plurality of second vertical modules arranged side by side in the first direction; and two opposite sides of each horizontal module are connected to the first vertical module and the second vertical module on each layer, respectively.
10 . The process device module according to claim 6 , wherein the process device module further comprises a splicing assembly, the first vertical module comprises a plurality of first cross members and a plurality of first longitudinal members which are connected to each other, and the first longitudinal members of every two adjacent first vertical modules are in a bolted connection by the splicing assembly; and/or
the second vertical module comprises a plurality of second cross members and a plurality of second longitudinal members which are connected to each other, and the second longitudinal members of every two adjacent second vertical modules are in a bolted connection by the splicing assembly.
11 . The process device module according to claim 10 , wherein the splicing assembly comprises a end plate and at least two fasteners, the end plate is arranged between every two adjacent first longitudinal members, and every two adjacent first longitudinal members are connected by the at least two fasteners; and/or
the end plate is arranged between every two adjacent second longitudinal members, and every two adjacent second longitudinal members are connected by the at least two fasteners.
12 . A method of constructing a process device module, which applies the process device module, the process device module comprising:
at least two horizontal modules; at least one first vertical module and at least one second vertical module, the first vertical module and the second vertical module each being provided with at least two layers of workspace, a number of the horizontal modules being the same as a number of layers of the first vertical module and a number of layers of the second vertical module, the first vertical module and the second vertical module on each layer being communicated by one of the horizontal modules, and the horizontal modules being detachably connected to the first vertical module and the second vertical module; and a plurality of the support columns, each of which comprising a first column segment and a second column segment, the first column segment and the second column segment being configured to provide support between two adjacent horizontal modules of a process device module and/or between a horizontal module of a process device module and a ground; one end of the first column segment and one end of the second column segment being arranged in sliding contact and detachably connected; and a sum of a length of the first column segment, a length of the second column segment, and a sliding contact distance between the first column segment and the second column segment in a longitudinal direction being greater than a distance between the two adjacent horizontal modules in a longitudinal direction of the support column, the plurality of the support columns being configured to provide support between two adjacent horizontal modules of a process device module and/or between a horizontal module of a process device module and a ground when the process device module is assembled, the first column segment and the second column segment of the support column being detachably connected to two adjacent horizontal modules, respectively, and the first column segment of one of the plurality of the support columns being detachably connected to the ground, the method comprising: connecting the first column segment and the second column segment of the support column; connecting the horizontal modules on respective layers to the first vertical module and the second vertical module under the support of the support columns; and removing the support columns after the horizontal modules on the respective layers are respectively connected to the first vertical module and the second vertical module.
13 . The method of constructing a process device module according to claim 12 , further comprising:
assembling a first layer: mounting an end of the first column segment of the support column far away from the second column segment to a ground, connecting the second column segment to the horizontal module such that the horizontal module is supported on the ground, and connecting two opposite sides of the horizontal module to the first vertical module and the second vertical module, respectively; assembling, on the basis of the first layer, layer by layer from the bottom to the top: connecting the first column segment and the second column segment of the support column, connecting the first column segment and the second column segment to two adjacent horizontal modules, respectively, and connecting two opposite sides of each horizontal module to the first vertical module and the second vertical module, respectively, layer by layer from the bottom to the top; and removing the support columns: after the horizontal modules on respective layers are respectively connected to the first vertical module and the second vertical module, disconnecting the first column segment from the ground below or from the installed horizontal module on a lower layer, disconnecting the second column segment from the installed horizontal module on an upper layer, disconnecting the first column segment and the second column segment of each support column, and pushing the first column segment and the second column segment to make sliding contact and get close to each other in a longitudinal direction of the support column such that the entire support column is removed.Join the waitlist — get patent alerts
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