An installation apparatus for electromechanical pipeline installation and a method of using the same
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-03-31
- Publication Date
- 2026-08-11
AI Technical Summary
[0005]同时现有升降平台缺少定位机构;在实现风管和水管移动时,会出现转运过程中出现晃动等问题,并且传统升降设备不具有自我调节能力,转运管件类型较为单一,进而使得升降平台适用范围较为单一
[0037] This invention discloses an installation device for electromechanical pipeline installation. By using a lifting device and a limiting device in combination, this invention can facilitate the construction and installation of air ducts and water pipes by construction personnel.
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Figure CN116730246B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of pipeline installation equipment, specifically to an installation device for electromechanical pipeline installation and its usage method. Background Technology
[0002] During the installation of electromechanical pipelines, ground lifting platforms are used for construction operations.
[0003] Most existing ground lifting platforms for electromechanical pipeline installation are not convenient for limiting the movement of water pipes and air ducts during use. This can easily lead to unstable movement of the air ducts and water pipes, causing them to fall off and affecting construction. This results in the problem of not being able to limit the movement of water pipes and air ducts during use.
[0004] For example, the existing patent CN114590746A - a lifting device for pipeline installation construction.
[0005] Meanwhile, existing lifting platforms lack positioning mechanisms; when moving air ducts and water pipes, problems such as shaking may occur during the transfer process. Furthermore, traditional lifting equipment does not have self-adjusting capabilities, and the types of transfer pipes are relatively limited, which makes the application range of lifting platforms relatively narrow.
[0006] Therefore, in order to solve or improve at least one of the above problems, it is necessary to optimize the design of the existing lifting platform.
[0007] Therefore, a water pipe or air duct installation device that can better assist personnel in installing water pipes or air ducts is what is needed now. Summary of the Invention
[0008] The purpose of this invention is to provide an installation device with limiting capabilities that can assist operators in installing water pipes or air ducts.
[0009] To achieve the above objectives, the technical solution adopted by the present invention is as follows:
[0010] An installation device for electromechanical pipeline installation includes a plate body, wherein the plate body is provided with a lifting device and a limiting device;
[0011] The lifting device includes a lifting mechanism connected to the plate, and the lifting mechanism includes a lifting rod connected to the plate;
[0012] The limiting device includes an air duct limiting mechanism and a water pipe limiting mechanism;
[0013] The water pipe limiting mechanism includes a first limiting member disposed on the plate;
[0014] The duct limiting mechanism includes a second limiting component disposed on the plate;
[0015] The first limiting member is in the shape of an inverted U;
[0016] The second limiting member includes a limiting rod, which is arranged laterally;
[0017] The air duct limiting mechanism and the water pipe limiting mechanism are respectively connected to the plate body through connecting devices.
[0018] The connecting device includes a hollow sleeve disposed on the plate; the hollow sleeve includes a sleeve body, and the sleeve body is provided with a placement groove; the hollow sleeve is connected to a first limiting member or a second limiting member through a connecting mechanism; the connecting mechanism includes an assembly block disposed on the hollow sleeve, and the first limiting member or the second limiting member is inserted into the placement groove of the hollow sleeve through the assembly block.
[0019] The hollow sleeve is provided with a limiting mechanism, which includes a movable plate disposed on the hollow sleeve and a plurality of slots on the movable plate; the side of the hollow sleeve is provided with a through groove, and the assembly block is provided with a round rod, which passes through the through groove and is engaged in the slot of the movable plate.
[0020] The movable plate is connected to the hollow sleeve through an adjustment mechanism. The adjustment mechanism includes a hollow seat disposed on the movable plate, and the movable plate is connected to the hollow seat through a threaded rod.
[0021] The assembly block is connected to the first or second limiting member via a bridging mechanism; the bridging mechanism includes an insertion slot on the assembly block and a placement member on the first or second limiting member; the first or second limiting member is respectively inserted into the insertion slot of the corresponding assembly block via the placement member.
[0022] The assembly block includes a block body with a hollow interior forming a placement cavity; the insertion slot is connected to the placement cavity; the assembly block is provided with an insertion mechanism, which includes an insertion rod and an insertion hole provided on the placement component, the insertion rod and the insertion hole being used in conjunction.
[0023] The insertion rod is connected to a pushing mechanism, which includes a control component connected to the insertion rod via a connecting rod. The assembly block has a sliding hole, through which the control component is connected to the insertion rod via a connecting rod. The control component has a positioning mechanism, including a positioning rod. The assembly block has a positioning hole. The positioning rod passes through the control component and connects to the positioning hole on the assembly block. The positioning rod has a return spring; one end of the return spring is connected to the control component, and the other end is connected to the positioning rod.
[0024] The limiting rod is connected to the placement member through a limiting component. The limiting rod is connected to the limiting component through an adjusting part. The adjusting part includes a sliding hole and an adjusting rod provided on the limiting component. One end of the adjusting rod is inserted into the sliding hole, and the other end extends to the outside of the limiting component. The limiting rod is sleeved on the adjusting rod. The end of the limiting rod is inserted into the sliding hole.
[0025] Both ends of the plate are provided with duct limiting mechanisms and water pipe limiting mechanisms; the first limiting member in each water pipe limiting mechanism is connected to the hollow sleeve at both ends by a connecting mechanism; the duct limiting mechanism and water pipe limiting mechanism are provided on the same side of the plate; the duct limiting mechanism is arranged close to the edge of the plate.
[0026] A method of using the installation equipment for electromechanical pipeline installation, the method comprising the following steps:
[0027] Step 1: Assemble and install the equipment; and select the first and second limiting components of appropriate size;
[0028] Step 2: After completing Step 1, identify the parts to be installed:
[0029] When the part to be installed is a water pipe;
[0030] The water pipe to be installed must be placed on the plate, and the water pipe must pass through the first limiting member.
[0031] When the part to be installed is a duct:
[0032] The duct to be installed must be placed on the panel, and the duct must be positioned directly below the limiting rod in the second limiting component.
[0033] After completing the above steps, proceed to the next step.
[0034] Step 3: Control the lifting rod to make the plate move, thereby transporting the air duct or water pipe to the installation position;
[0035] Once the air ducts and / or water pipes are delivered to the installation location, the air ducts and / or water pipes will be installed and secured.
[0036] The advantages of this invention are:
[0037] This invention discloses an installation device for electromechanical pipeline installation. By using a lifting device and a limiting device in combination, this invention can facilitate the construction and installation of air ducts and water pipes by construction personnel.
[0038] This invention, through the use of a limiting device, can limit the movement of air ducts and water pipes during installation. This effectively reduces the inconvenience of limiting water pipes and air ducts during the use of existing electromechanical pipeline installation ground lifting platforms, which can easily lead to unstable air ducts and water pipes shaking and falling off, affecting construction. In turn, it improves the overall stability of the equipment. Attached Figure Description
[0039] The following is a brief explanation of the contents of each of the accompanying drawings and the markings in the drawings:
[0040] Figure 1 This is a perspective view of the main structure of a ground lifting platform and construction method for installing electromechanical pipelines according to the present invention.
[0041] Figure 2 This is a partial three-dimensional view of a ground lifting platform and construction method for installing electromechanical pipelines according to the present invention;
[0042] Figure 3 This invention relates to a ground lifting platform for installing electromechanical pipelines and its construction method. Figure 2 Enlarged 3D view of the structure at point A in the middle;
[0043] Figure 4 This invention relates to a ground lifting platform for installing electromechanical pipelines and its construction method. Figure 2 Enlarged 3D view of the structure at point B in the middle;
[0044] Figure 5 This is a three-dimensional view of the limiting device portion of the ground lifting platform and construction method for installing electromechanical pipelines according to the present invention.
[0045] Figure 6 This invention relates to a ground lifting platform for installing electromechanical pipelines and its construction method. Figure 5 Enlarged 3D view of the structure at point C;
[0046] Figure 7 This is a three-dimensional cross-sectional view of a limiting device used in a ground lifting platform and construction method for installing electromechanical pipelines according to the present invention.
[0047] Figure 8 This is a perspective view of the limiting device portion of a ground lifting platform and construction method for installing electromechanical pipelines according to the present invention.
[0048] Figure 9 This is a three-dimensional structural diagram of a ground lifting platform for electromechanical pipeline installation and an auxiliary device for construction methods according to the present invention.
[0049] In the diagram: 1. Lifting rod; 2. Plate; 3. Water pipe limiting mechanism; 4. Air duct limiting mechanism; 5. Connecting device; 51. Hollow sleeve; 52. Assembly block; 53. Insert rod; 54. Placement component; 55. Control component; 56. Positioning rod; 57. Return spring; 58. Positioning hole; 59. Sliding hole; 6. Limiting mechanism; 61. Moving plate; 62. Round rod; 63. Slot; 64. Hollow seat; 65. Threaded rod; 66. Knob; 67. Fixing rod; 7. Adjusting part; 71. Limiting rod; 72. Protective pad; 73. Adjusting rod; 74. Sliding hole; 75. Handle; 76. Circular hole. Detailed Implementation
[0050] The specific embodiments of the present invention will be further described in detail below with reference to the accompanying drawings and the description of the preferred embodiments.
[0051] An installation device for electromechanical pipeline installation includes a plate 2, on which a lifting device and a limiting device are provided. This invention discloses an installation device for electromechanical pipeline installation. Through the combined use of the lifting device and the limiting device, this invention facilitates the installation of air ducts and water pipes by construction personnel. The use of the limiting device allows for the restriction of air ducts and water pipes during installation, effectively reducing the inconvenience of limiting water pipes and air ducts in existing electromechanical pipeline installation ground lifting platforms, which can easily lead to unstable swaying and detachment of air ducts and water pipes, affecting construction. This, in turn, improves the overall stability of the equipment.
[0052] The installation equipment disclosed in this invention is mainly an auxiliary device, primarily used to assist personnel in positioning and limiting the installation of air ducts and water pipes.
[0053] Specifically, the installation equipment disclosed in this invention mainly includes a lifting device and a limiting device. By setting up the lifting device, the longitudinal position of the air duct and water pipe can be changed as needed. In addition, the use of the limiting device can limit the position of the air duct and water pipe, thereby ensuring the limitation of the position of the air duct and water pipe, facilitating subsequent installation, and preventing the air duct and water pipe from shaking during installation.
[0054] In addition, the lifting device described in this invention includes a lifting mechanism connected to the plate 2, and the lifting mechanism includes a lifting rod 1 connected to the plate 2. The lifting rod 1 is a prior art technology and has its own telescopic capability. Here, the lifting rod 1 can be replaced by a lifting telescopic mechanism such as a drive cylinder or an electric cylinder. The main purpose is to realize the adjustment of the longitudinal height of the plate 2.
[0055] Meanwhile, to facilitate the operation of the entire device, in this invention, the lifting rod 1 can be connected to a support frame, and a universal wheel or other structure can be installed below the support frame to facilitate the lateral movement of the entire device.
[0056] Meanwhile, the limiting device described in this invention includes a duct limiting mechanism 3 and a water pipe limiting mechanism 4; simply put, the duct limiting mechanism 3 of this invention is mainly used for limiting the duct during installation, and the water pipe limiting mechanism 4 is mainly used for limiting the water pipe.
[0057] However, in actual use, the duct limiting mechanism 3, being a horizontal rod structure, can also serve as a longitudinal limiting rod 71 for water pipes. In other words, the duct limiting mechanism 3 and the water pipe limiting mechanism 4 of this invention can be used together to better limit and fix the ducts and water pipes.
[0058] Specifically, the water pipe limiting mechanism 4 described in this invention includes a first limiting member disposed on the plate 2; the first limiting member mainly works with the plate 2 to limit and fix the water pipe, preventing the water pipe from shaking during installation.
[0059] In this invention, the duct limiting mechanism 3 includes a second limiting member disposed on the plate 2; the second limiting member includes a limiting rod 71, which is arranged laterally; in actual use, the limiting rod 71 moves longitudinally and presses against the duct, and the limiting rod 71 interacts with the plate 2 to achieve compression and fixation of the duct.
[0060] Meanwhile, in this invention, the first limiting member is in the shape of an inverted U; the use of a U-shaped first limiting member here makes the first limiting member and the plate 2 equivalent to forming a closed-loop sealing ring, thereby realizing the limiting and fixing of the water pipe.
[0061] Meanwhile, in this invention, the duct limiting mechanism 3 and the water pipe limiting mechanism 4 are respectively connected to the plate body 2 through the connecting device 5. The setting of the connecting device 5 facilitates the connection between the duct limiting mechanism 3 and the water pipe limiting mechanism 4 and the plate body 2. The connecting device 5 can adopt the structure described below, or it can adopt other structures, such as bolts, buckles, hole insertion (holes are provided on the plate body 2, and the duct limiting mechanism 3 and the water pipe limiting mechanism 4 are inserted into the corresponding holes), etc. Theoretically, as long as the connection between the duct limiting mechanism 3 and the water pipe limiting mechanism 4 and the plate body 2 can be achieved, it is acceptable.
[0062] Furthermore, in this invention, the connecting device 5 includes a hollow sleeve 51 disposed on the plate 2; in actual use, the hollow sleeve 51 not only acts as a connector but also as an external component. The first limiting component or the second limiting component is connected to the plate 2 through the hollow sleeve 51. Specifically, in this invention, the hollow sleeve 51 includes a sleeve body, on which a recess is provided; the hollow sleeve 51 is connected to the first limiting component or the second limiting component through a connecting mechanism; the connecting mechanism includes an assembly disposed on the hollow sleeve 51. Block 52, the first limiting member or the second limiting member is inserted into the placement groove of the hollow sleeve 51 through the assembly block 52; the placement groove of the present invention not only facilitates the placement of the assembly block 52, but also facilitates the limiting and guiding of the assembly block 52 when it moves, ensuring that the first limiting member or the second limiting member is perpendicular to the plate 2, and at the same time requires that the assembly block 52 is a rectangular block, and the side of the rectangular block fits against the side of the placement groove; such a setting can prevent the first limiting member or the second limiting member from shaking during subsequent use.
[0063] Furthermore, in this invention, the hollow sleeve 51 is provided with a limiting mechanism 6. The limiting mechanism 6 includes a movable plate 61 disposed on the hollow sleeve 51, and the movable plate 61 is provided with multiple slots 63. The side of the hollow sleeve 51 is provided with a through groove, and the assembly block 52 is provided with a round rod 62. The round rod 62 passes through the through groove and is engaged in the slots 63 of the movable plate 61. This invention, through the setting of the limiting mechanism 6, facilitates the limitation of the position of each assembly block 52. Specifically, the assembly block 52 is provided with a round rod 62, and the hollow sleeve 51 is also provided with a round rod 62. The round rod 62 passes through the through groove, which avoids installation interference. The through groove extends along the length of the hollow sleeve 51 and is an oblong groove. This design prevents the round rod 62 from interfering with the hollow sleeve 51 when the assembly block 52 moves in the placement trough. In addition, the moving plate 61 is provided with a locking groove 63 for subsequent use. When the assembly block 52 moves to the set position, the round rod 62 is locked into the corresponding locking groove 63. Based on this design, the assembly block 52 can be locked and limited, thereby ensuring the stable placement of the assembly block 52 in the placement trough.
[0064] Furthermore, in this invention, the movable plate 61 is connected to the hollow sleeve 51 via an adjustment mechanism. The adjustment mechanism includes a hollow seat 64 disposed on the movable plate 61, and the movable plate 61 is connected to the hollow seat 64 via a threaded rod 65. The adjustment mechanism facilitates the locking of the movable plate 61 onto the round rod 62, thereby achieving the locking of the duct limiting mechanism 3 and the water pipe limiting mechanism 4. In actual installation and use, the movable plate 61 is connected to the hollow sleeve 51 via the adjustment mechanism, and the threaded rod 65 on the adjustment mechanism can move within the hollow seat 64, thereby changing the longitudinal position of the movable plate 61 and thus achieving the compression and fixation of the round rod 62.
[0065] Furthermore, in this invention, the assembly block 52 is connected to the first or second limiting member via a bridging mechanism. The bridging mechanism facilitates the connection between the first or second limiting member and the assembly block 52. This bridging mechanism primarily includes an insertion slot on the assembly block 52 and a placement member 54 on the first or second limiting member. The first or second limiting member is inserted into the insertion slot of the corresponding assembly block 52 via the placement member 54. The placement member 54, inserted into the insertion slot, connects the first and second limiting members to the assembly block 52. In actual design, the insertion slot is rectangular, and the lower end of the placement member 54 is a rectangular block. This design prevents the placement member 54 from rotating within the insertion slot, thus limiting the orientation of the first and second limiting members.
[0066] Furthermore, in this invention, the assembly block 52 includes a block body with a hollow interior forming a placement cavity. The placement cavity facilitates the subsequent placement of the insertion rod 53 within the assembly block 52, enabling the insertion and fixing of the placement component 54. Simultaneously, in this invention, the insertion slot communicates with the placement cavity, allowing the placement component 54 to enter the cavity and thus enabling the insertion rod 53 to be inserted into the insertion hole of the placement component 54 during use. Specifically, in this invention, the assembly block 52 is provided with an insertion mechanism, which includes an insertion rod 53 and an insertion hole on the placement component 54. The insertion rod 53 cooperates with the insertion hole. The cooperation between the insertion hole and the insertion rod 53 provides excellent lateral limiting, preventing the placement component 54 from longitudinally disengaging from the insertion slot.
[0067] Furthermore, in this invention, the insertion rod 53 is connected to a pushing mechanism. This pushing mechanism facilitates control of the position of the insertion rod 53 during subsequent use, ensuring it mates with the insertion hole on the placement member 54. The pushing mechanism includes a control member 55, which is connected to the insertion rod 53 via a connecting rod. This connection facilitates the control member 55's control of the insertion rod 53's movement, while the connecting rod provides a good bridging effect, simplifying the connection between the control member 55 and the insertion rod 53. Additionally, the assembly block 52 has a sliding hole 59, with the connecting rod positioned within it. This arrangement allows the control member 55 and the insertion rod 53 to be positioned on the inner and outer sides of the assembly block 52, facilitating not only longitudinal positioning of the placement member 54 inserted into the assembly block 52 but also simplifying actual control. Specifically, the control member 55 is connected to the insertion rod 53 via a connecting rod passing through the sliding hole 59.
[0068] Meanwhile, the control component 55 in this invention is provided with a positioning mechanism. This positioning mechanism facilitates the limiting of the position of the insertion rod 53, preventing it from dislodging from the insertion hole. Specifically, the positioning mechanism includes a positioning rod 56 on the control component 55; a positioning hole 58 is provided on the assembly block 52; the positioning rod 56 passes through the control component 55 and connects to the positioning hole 58 on the assembly block 52; in this invention, the positioning rod 56 passes through the control rod and connects to the positioning hole 58, and the control rod is connected to the insertion rod 53. Because the positioning hole 58 is located on the assembly component, when the positioning rod 56 is inserted into the positioning hole 58, it can achieve the positioning of the control component 53. The lateral movement of rod 53 is limited, thereby restricting the lateral position of the insertion rod 53. Ultimately, the position of the insertion rod 53 can be controlled as needed, facilitating subsequent use. Simultaneously, a return spring 57 is provided on the positioning rod 56 in this invention. One end of the return spring 57 is connected to the control component 55, and the other end is connected to the positioning rod 56. Through the setting of the return spring 57, this invention ensures that the positioning rod 56 can be stably inserted into the positioning hole 58 without external force, preventing the positioning rod 56 from dislodging from the positioning hole 58. In other words, the setting of the return spring 57 better guarantees the stability of the insertion rod 53's position during use.
[0069] In addition, as a further optimization, the horizontal projected area of the insertion slot is required to be larger than the horizontal projected area of the placement member 54 in this invention. At the same time, the insertion rod 53 is required to pass through the placement member 54. This setting allows the placement member 54 to have a certain floating (shaking) ability on the insertion rod 53, which facilitates more precise fine-tuning of the lateral position of the water pipe or air duct, while avoiding the fixed position being too rigid, which would increase the difficulty of subsequent water pipe or air duct installation.
[0070] Furthermore, in this invention, the limiting rod 71 is connected to the placement member 54 via a limiting member. In this invention, the limiting member is a connector, facilitating the arrangement of the limiting rod 71 on the placement member 54. Simultaneously, in this invention, the limiting member is arranged longitudinally, forming an inverted L-shaped structure with the limiting rod 71, facilitating the pressing and fixing of the duct. Also, in this invention, the limiting rod 71 is connected to the limiting member via an adjusting part 7. The adjusting part 7 allows for adjustment of the longitudinal position of the limiting rod 71. Specifically, in this invention, the adjusting part 7 includes a sliding hole 74 and an adjusting rod 73 disposed on the limiting member. One end of the adjusting rod 73 is inserted into the sliding hole 74, and the other end extends to the outside of the limiting member. The limiting rod 71 is sleeved on the adjusting rod 73; the end of the limiting rod 71 is inserted into the sliding hole 74; the cooperation between the adjusting rod 73 and the sliding hole 74 in this invention enables the longitudinal movement of the limiting rod 71. In this invention, the sliding hole 74 is a through groove, and the width of the sliding hole 74 is adapted to the width of the limiting rod 71. In actual use, by rotating the adjusting rod 73, the adjusting rod 73 should theoretically rotate with the limiting rod 71. However, due to the restriction of the sliding hole 74, the limiting rod 71 can only move linearly on the adjusting rod 73, thereby realizing the longitudinal position adjustment of the limiting rod 71. In summary, it can be seen that the setting of the sliding hole 74 in this invention can not only realize the movement of the limiting rod 71, but also ensure the linearity of the movement of the limiting rod 71.
[0071] Furthermore, in this invention, both ends of the plate are provided with duct limiting mechanisms 3 and water pipe limiting mechanisms 4. Based on this arrangement, the positions of both ends of each duct and water pipe are limited, preventing the duct or water pipe from warping on the plate 2. At the same time, in this invention, the first limiting member in each water pipe limiting mechanism 4 is connected to the hollow sleeve 51 at both ends by a connecting mechanism. Based on this arrangement, the water pipe can be better limited, because in this invention, the water pipe is generally a cylindrical structure and the vertical cross-section of the duct is rectangular. Therefore, in order to avoid the water pipe from rolling, the first limiting member needs to limit both sides of the water pipe.
[0072] In addition, the duct limiting mechanism 3 and the water pipe limiting mechanism 4 are arranged on the same side of the plate 2 in this invention; the duct limiting mechanism 3 is arranged close to the edge of the plate 2; the limiting component of the duct limiting mechanism 3 in this invention also acts as a lateral blocking component to prevent the water pipe or duct from falling off the side of the plate 2. The main purpose of the above arrangement in this invention is to achieve the synergistic effect of the duct limiting mechanism 3 and the water pipe limiting mechanism 4; the synergy here is mainly reflected in the fact that the duct limiting mechanism 3 and the water pipe limiting mechanism 4 can be used together to better limit the water pipe or duct; in actual use, because the limiting rod 71 is arranged horizontally, in order to connect to the plate 2, a longitudinal rod must be set, that is, the above-mentioned limiting component. If the duct limiting mechanism 3 is arranged in the central area of the plate 2, it will occupy a large space and affect the arrangement of the limiting mechanism 6 on the plate; Meanwhile, although the duct limiting mechanism 3 of this invention is named risk limiting mechanism 6, it does not simply limit the duct. In actual use, by adjusting the position of the limiting rod 71, the limiting rod 71 can also press against the water pipe. Even if the water pipe has been limited by the water pipe limiting mechanism 4 in subsequent use, the duct limiting mechanism 3 can be used for longitudinal compression, thereby better ensuring the stability of the water pipe's longitudinal position. Similarly, because the duct adjustment mechanism only blocks the duct on two sides, it needs to be combined with the plate to block the duct on three sides. In actual use, the side of the water pipe limiting mechanism 4 can be pressed against the other side of the duct to be installed. Through the cooperation of the plate 2, the water pipe limiting mechanism 4 and the duct limiting mechanism 3, the position of the duct on all four sides can be limited, thereby better ensuring the stability of the duct position.
[0073] A method of using the installation equipment for electromechanical pipeline installation, the method comprising the following steps:
[0074] Step 1: Assemble and install the equipment; and select the first and second limiting components of appropriate size;
[0075] Step 2: After completing Step 1, identify the parts to be installed:
[0076] When the part to be installed is a water pipe;
[0077] The water pipe to be installed must be placed on plate 2, and the water pipe must pass through the first limiting member.
[0078] When the part to be installed is a duct:
[0079] The duct to be installed must be placed on plate 2, and the duct must be positioned directly below the limiting rod 71 in the second limiting member.
[0080] After completing the above steps, proceed to the next step.
[0081] Step 3: Control the lifting rod 1 to make the plate 2 move, thereby transporting the air duct or water pipe to the installation position;
[0082] Once the air ducts and / or water pipes are delivered to the installation location, the air ducts and / or water pipes will be installed and secured.
[0083] The present invention, through the above-described method of use, can assist operators in installing and fixing air ducts or water pipes.
[0084] specific:
[0085] Please see Figure 1-9 As shown, this invention discloses an installation device for electromechanical pipeline installation: it mainly includes a lifting rod 1, with a plate 2 fixedly connected to the upper end of the lifting rod 1. Four sets of duct limiting mechanisms 3 and water pipe limiting mechanisms 4 are respectively arranged above the plate 2. A connecting device 5 is provided on the surface of the plate 2, and the connecting device 5 includes two hollow sleeves 51, which are fixedly connected to the two side surfaces of the plate 2 respectively. Multiple assembly blocks 52 are slidably connected to the inner wall of the hollow sleeves 51. Placement components 54 are fixedly connected to the surfaces of the duct limiting mechanisms 3 and the water pipe limiting mechanisms 4. The placement component 54 includes a cylindrical rod and a square block; the lateral dimension of the cylindrical rod is smaller than the size of the square block. This design allows the cylindrical rod to have a certain elevating effect, preventing installation interference between the first or second limiting member and the control member 55 and the assembly block 52. Furthermore, the assembly block 52 in this invention has a slot on its surface, and the placement member 54 is inserted into the inner wall of the slot. The inner wall of the assembly block 52 has two sliding holes 59, and a rod 53 is slidably connected to the inner wall of each sliding hole 59. The surface of the placement member 54 has two insertion holes, and the rod 53 is inserted into the inner wall of each insertion hole. By setting the rod 53, the placement member 54 can be confined in the slot on the assembly block 52, facilitating the assembly of the duct limiting mechanism 3 and the water pipe limiting mechanism 4, thus enabling the limiting of the water pipe and the duct.
[0086] according to Figure 6 As shown, specifically, control components 55 are fixedly connected to the surfaces of the two insertion rods 53. The control components 55 are slidably connected to the inner wall of the sliding hole 59 on the surface of the assembly block 52. By setting the control components 55, it is convenient to control the two insertion rods 53.
[0087] according to Figure 6 As shown, specifically, the surface of the control component 55 has a circular hole, and the inner wall of the circular hole is slidably connected to a positioning rod 56. The surface of the assembly block 52 has two positioning holes 58. The positioning rod 56 is inserted into the inner wall of the positioning hole 58. By cooperating with the two positioning holes 58 on the surface of the assembly block 52, the control component 55 and the insertion rod 53 can be positioned and restricted at different positions.
[0088] according to Figure 6 As shown, specifically, a return spring 57 is sleeved on the surface of the positioning rod 56. The two ends of the return spring 57 are fixedly connected to the surfaces of the positioning rod 56 and the control component 55, respectively. By setting the return spring 57, it is easy to control the positioning rod 56 to reset, and at the same time, the binding effect and stability of the positioning rod 56 are improved.
[0089] according to Figure 3-4 As shown, specifically, the surface of the hollow sleeve 51 is provided with a through groove, and a round rod 62 is provided on the assembly block 52. The round rod 62 is fixedly connected to the surface of the assembly block 52. A through groove is opened on one side surface of the hollow sleeve 51 for the round rod 62 to pass through. A fixing rod 67 is fixedly connected to the surface of the hollow sleeve 51. A moving plate 61 is slidably connected to the surface of the fixing rod 67. A plurality of equally spaced slots 63 are opened on the surface of the moving plate 61. The round rod 62 is engaged with the inner wall of the slots 63. By setting the round rod 62 to cooperate with the plurality of slots 63 on the surface of the moving plate 61, the position of the assembly block 52 can be adjusted in the hollow sleeve 51, thereby restricting the air duct of the same size and the water pipes in different positions.
[0090] according to Figure 3-4 As shown, specifically, two adjustment mechanisms are fixedly connected to one side surface of the hollow sleeve 51. Each adjustment mechanism includes a hollow seat 64 set on the hollow sleeve 51. A threaded rod 65 is rotatably connected to the inner wall of the hollow seat 64. A threaded hole is opened on the surface of the moving plate 61. The threaded rod 65 is threadedly connected to the threaded hole. A knob 66 is fixedly connected to one end of the threaded rod 65. By rotating the knob 66 in conjunction with the threaded rod 65, the moving plate 61 can be moved and adjusted, thereby improving the restriction of the slot 63 on the round rod 62.
[0091] according to Figure 3-4 As shown, specifically, the slot 63 on the surface of the movable plate 61 is U-shaped, and the inner wall of the U-shaped slot 63 fits against the surface of the round rod 62. By setting the U-shaped slot 63, it is easy to adapt to the round rod 62.
[0092] according to Figure 9 As shown, specifically, the duct limiting mechanism 3 also includes a limiting member. A limiting rod 71 is connected to the limiting member. The limiting member is provided with an adjustment part 7. The limiting rod 71 is connected to the limiting member through the adjustment part 7. The adjustment part 7 includes a sliding hole 74 provided on the limiting member. The limiting rod 71 is slidably connected to the inner wall of the sliding hole 74. A circular hole 76 is opened on the surface of the limiting member. An adjustment rod 73 is rotatably connected to the inner wall of the circular hole 76. An adjustment hole is opened on the surface of the limiting rod 71. The adjustment rod 73 is threadedly connected to the inner wall of the adjustment hole. By rotating the threaded rod 65, it is easy to control the movement of the limiting member, so that the limiting member can restrict the duct and prevent the duct from jumping when it is vibrated.
[0093] according to Figure 9As shown, specifically, the upper end of the adjusting rod 73 is fixedly connected to a handle 75, which is composed of a disc and four protruding rods. A protective pad 72 is fixedly connected to one side surface of the limiting rod 71. The protective pad 72 is rectangular. By setting the protective pad 72, damage to the air duct by the limiting rod 71 can be reduced.
[0094] Construction method for electromechanical pipelines based on the above-mentioned installation equipment;
[0095] The specific steps are as follows:
[0096] Step 1: The plate 2 can be raised by lifting rod 1. Connecting device 5 is set up. When the equipment is needed, the placement part 54 is inserted into the insertion groove on the surface of the assembly block 52. Pulling the positioning rod 56 causes the return spring 57 to be stressed. The positioning rod 56 loses its restraint on a set of positioning holes 58. Pushing the control part 55 and the insertion rod 53 causes the insertion rod 53 to be inserted into the insertion hole on the surface of the placement part 54. Releasing the insertion rod 53 causes the return spring 57 to release its elasticity, causing the insertion rod 53 to be inserted into the corresponding positioning hole 58 on the surface of the assembly block 52. This allows the air duct limiting mechanism 3 and the water pipe limiting mechanism 4 to be placed and the air duct and water pipe to be limited.
[0097] Step 2: When the equipment needs to be used, slide the assembly block 52 and the round rod 62 in the hollow sleeve 51. When rotated to the adjustment position, rotate the knob 66 and the threaded rod 65. The threaded rod 65 drives the moving plate 61 to move closer to the round rod 62 in the fixed rod 67. When it moves to the moving position, the U-shaped groove 63 on the surface of the moving plate 61 is inserted into the round rod 62 to restrict the round rod 62, thus completing the adjustment of the equipment.
[0098] Step 3: When the equipment needs to be used, turn the handle 75 and the adjusting rod 73. The adjusting rod 73 drives the limiting rod 71 to move in the sliding hole 74 on the surface of the duct limiting mechanism 3. When the limiting rod 71 and the protective pad 72 are in contact with the surface of the duct, stop turning the handle 75. The protective pad 72 can reduce the wear on the duct.
[0099] The overall effect of the mechanism is as follows: the lifting rod 1 can raise the plate 2, and the connecting device 5 is set up. When the equipment needs to be used, the placement part 54 is inserted into the insertion groove on the surface of the assembly block 52. Pulling the positioning rod 56 causes the return spring 57 to be stressed, and the positioning rod 56 loses its restraint on a set of positioning holes 58. This pushes the control part 55 and the insertion rod 53, so that the insertion rod 53 is inserted into the insertion hole on the surface of the placement part 54. Releasing the insertion rod 53 causes the return spring 57 to release its elasticity, and the insertion rod 53 is inserted into the corresponding positioning hole 58 on the surface of the assembly block 52. This allows the air duct limiting mechanism 3 and the water pipe limiting mechanism 4 to be placed and limited. By setting up the connecting device 5, it is convenient for the equipment to limit the air duct and water pipe. This effectively reduces the problem that existing electromechanical pipeline installation ground lifting platforms are not convenient for limiting water pipes and air ducts during use, which can easily lead to unstable shaking of air ducts and water pipes, causing them to fall off and affecting construction. This improves the overall stability of the equipment.
[0100] By setting a limiting mechanism 6 and an adjusting mechanism, when the equipment needs to be used, the corresponding assembly block 52 and the round rod 62 are slidably assembled in the hollow sleeve 51. When rotated to the adjusting position, the knob 66 and the threaded rod 65 are rotated. The threaded rod 65 drives the moving plate 61 to move closer to the round rod 62 in the fixed rod 67. When it moves to the moving position, the U-shaped groove 63 on the surface of the moving plate 61 is inserted into the round rod 62 to restrict the round rod 62, thus completing the adjustment of the equipment. By setting the adjusting device 6, it is convenient for the equipment to restrict water pipes and air pipes of different positions and sizes. This reduces the situation where the equipment cannot be adjusted and restricted according to water pipes of different positions and air pipes of different sizes during use, resulting in a small range of use for the equipment, thereby improving the overall practicality of the equipment.
[0101] By setting the adjustment part 7, when the equipment needs to be used, the handle 75 and the adjustment rod 73 are turned. The adjustment rod 73 drives the limit rod 71 to move in the sliding hole 74 on the surface of the duct limiting mechanism 3. When the limit rod 71 and the protective pad 72 are in contact with the surface of the duct, the handle 75 is stopped. The protective pad 72 can reduce the wear on the duct. By setting the auxiliary device 7, it is convenient to use the auxiliary equipment. It can effectively reduce the phenomenon that the duct is easily vibrated and jumps during the process of limiting the duct, reduce the friction damage of the duct, and thus improve the overall usability of the equipment.
[0102] The purpose of this invention is to provide an installation device for electromechanical pipeline installation. The device involves inserting a placement component 54 into a slot on the surface of an assembly block 52, pulling a positioning rod 56, causing a return spring 57 to be stressed, and releasing the positioning rod 56 from its constraint on a set of positioning holes 58. This pushes the control component 55 and the insertion rod 53, causing the insertion rod 53 to be inserted into a hole on the surface of the placement component 54. Releasing the insertion rod 53 releases the return spring 57, causing the insertion rod 53 to be inserted into the corresponding positioning hole 58 on the surface of the assembly block 52. This allows for the placement of the water pipe limiting mechanism 4 and the air duct limiting mechanism 3, limiting the air duct and water pipe to achieve the aforementioned purpose.
[0103] Obviously, the specific implementation of this invention is not limited to the above-described methods. Any non-substantial improvements made using the inventive concept and technical solution of this invention are within the protection scope of this invention.
Claims
1. An installation device for electromechanical pipeline installation, characterized in that, Includes a plate body, on which a lifting device and a limiting device are provided; The lifting device includes a lifting mechanism connected to the plate, and the lifting mechanism includes a lifting rod connected to the plate; The limiting device includes an air duct limiting mechanism and a water pipe limiting mechanism; The water pipe limiting mechanism includes a first limiting member disposed on the plate; The duct limiting mechanism includes a second limiting component disposed on the plate; The first limiting member is in the shape of an inverted U; The second limiting member includes a limiting rod, which is arranged laterally; the limiting rod is connected to the placement member through the limiting member; The air duct limiting mechanism and the water pipe limiting mechanism are respectively connected to the plate body through connecting devices; The connecting device includes a hollow sleeve disposed on the plate; the hollow sleeve includes a sleeve body, and the sleeve body is provided with a placement groove; the hollow sleeve is connected to a first limiting member or a second limiting member through a connecting mechanism; the connecting mechanism includes an assembly block disposed on the hollow sleeve, and the first limiting member or the second limiting member is inserted into the placement groove of the hollow sleeve through the assembly block; The hollow sleeve is provided with a limiting mechanism, which includes a movable plate disposed on the hollow sleeve and a plurality of slots on the movable plate; the side of the hollow sleeve is provided with a through groove, and the assembly block is provided with a round rod, which passes through the through groove and is engaged in the slot of the movable plate. The movable plate is connected to the hollow sleeve through an adjustment mechanism. The adjustment mechanism includes a hollow seat disposed on the movable plate, and the movable plate is connected to the hollow seat through a threaded rod. The assembly block is connected to the first limiting member or the second limiting member through a bridging mechanism; the bridging mechanism includes an insertion slot provided on the assembly block and a placement member provided on the first limiting member or the second limiting member; the first limiting member or the second limiting member is respectively inserted into the insertion slot of the corresponding assembly block through the placement member. The assembly block includes a block body, the interior of which is hollow to form a placement cavity; the insertion slot is connected to the placement cavity; the assembly block is provided with an insertion mechanism, the insertion mechanism including an insertion rod and an insertion hole provided on the placement component, the insertion rod and the insertion hole are used in conjunction; The horizontal projected area of the insertion slot is larger than the horizontal projected area of the placement component. The insertion rod is connected to a pushing mechanism, which includes a control component connected to the insertion rod via a connecting rod. The assembly block has a sliding hole, through which the control component is connected to the insertion rod via a connecting rod. The control component has a positioning mechanism, including a positioning rod. The assembly block has a positioning hole, through which the positioning rod passes and connects to the positioning hole on the assembly block. The positioning rod has a return spring, one end of which is connected to the control component, and the other end to the positioning rod. The limiting rod is connected to the limiting member through an adjusting part. The adjusting part includes a sliding hole and an adjusting rod provided on the limiting member. One end of the adjusting rod is inserted into the sliding hole, and the other end extends to the outside of the limiting member. The limiting rod is sleeved on the adjusting rod. The end of the limiting rod is inserted into the sliding hole. Both ends of the plate are provided with duct limiting mechanisms and water pipe limiting mechanisms; the first limiting member in each water pipe limiting mechanism is connected to the hollow sleeve at both ends by a connecting mechanism; the duct limiting mechanism and water pipe limiting mechanism are arranged on the same side of the plate; the duct limiting mechanism is arranged close to the edge of the plate. The limiting component of the duct limiting mechanism acts as a lateral blocking component to prevent water pipes or air ducts from falling off the side of the panel. The duct limiting mechanism is used in conjunction with the water pipe limiting mechanism; In use, by adjusting the position of the limiting rod, the limiting rod can press against the water pipe. The duct adjustment mechanism, together with the plate, can block the three sides of the duct to be installed. It is required that the side of the water pipe limiting mechanism be pressed against the other side of the duct to be installed. Through the cooperation of the plate, the water pipe limiting mechanism and the duct limiting mechanism, the position of the duct to be installed on all four sides can be limited.
2. A method of using the installation equipment for electromechanical pipeline installation as described in claim 1, characterized in that; The method of use includes the following steps: Step 1: Assemble and install the equipment; and select the first and second limiting components of appropriate size; Step 2: After completing Step 1, identify the parts to be installed: When the part to be installed is a water pipe; The water pipe to be installed must be placed on the plate, and the water pipe must pass through the first limiting member. When the part to be installed is a duct: The duct to be installed must be placed on the panel, and the duct must be positioned directly below the limiting rod in the second limiting component. After completing the above steps; Proceed to the next step; Step 3: Control the lifting rod to make the plate move, thereby transporting the air duct or water pipe to the installation position; Once the air ducts and / or water pipes are delivered to the installation location, the air ducts and / or water pipes will be installed and secured.
Citation Information
Patent Citations
Pipeline anti-seismic support convenient to install
CN218670932U
Pipe module and construction method thereof
KR1020170000275A