Position adjustable pipe shoe
Patent Information
- Application Number
- KR1020240121611
- Authority / Receiving Office
- KR · KR
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2024-09-06
- Publication Date
- 2026-08-05
- Estimated Expiration
- 2044-09-06
Smart Images

Figure 112024098291357-PAT00001_ABST
Abstract
Description
Technology Field
[0001] The present invention relates to a pipe shoe, and more specifically, to a position-adjustable pipe shoe that allows for easy and rapid adjustment of the vertical height of a pipe and easy and rapid adjustment of the horizontal position of a pipe. Background Technology
[0002] Generally, in semiconductor facilities, oil refining facilities, and onshore and offshore plant construction, pipe shoes are installed on the upper side of girder beams to secure pipes, and the pipes are supported by said pipe shoes.
[0003] These pipe shoes primarily adjust the height of large pipes to ensure the pipes have a constant gradient, thereby allowing fluids such as gas or liquid to flow easily into the pipes.
[0004] In addition, the pipe shoe allows for easy connection of pipes by adjusting the height when the ends of multiple pipes do not align.
[0005] However, the conventional technology described above had the following problems.
[0006] Conventional pipe shoes had the problem that adjusting the height of the pipe was relatively difficult and required a lot of time and manpower because the vertical height of the pipe had to be adjusted using a bolt and nut fastening method.
[0007] In addition, conventional pipe shoes had the function of simply adjusting the vertical height, so they could not properly adjust the horizontal position of the pipe, which caused significant inconvenience in use. Prior art literature
[0008] Registered Patent No. 2465253 "Height-adjustable pipe shoe using a lever method" (2022.11.04) The problem to be solved
[0009] Accordingly, the present invention has been devised to resolve the various problems of the prior art as described above.
[0010] The objective of the present invention is to provide a position-adjustable pipe shoe that allows for easy and rapid adjustment of the vertical height of the pipe and easy and rapid adjustment of the horizontal position of the pipe. means of solving the problem
[0011] To achieve the above objectives, the "position-adjustable pipe shoe" according to the present invention comprises: a base plate disposed on the upper surface of a girder beam; a horizontal position adjustment unit installed on the upper surface of the base plate and capable of adjusting the horizontal position by moving along the upper surface of the base plate in the longitudinal direction of the girder beam by operation of a user; a height adjustment unit installed on the upper end of the horizontal position adjustment unit and capable of adjusting the height by moving up and down by operation of a user; and a pipe support unit installed on the upper end of the height adjustment unit and supporting the lower surface of a pipe. The height adjustment unit comprises: an installation plate attached to the upper surface of the horizontal position adjustment unit; a vertical bending plate attached to the upper surface of the installation plate and formed by bending both sides vertically; a first sliding block slidably provided on the inner side of the vertical bending plate and having a first spiral hole formed to penetrate horizontally with a spiral on its inner circumference; a second sliding block slidably provided on one side of the first sliding block on the inner side of the vertical bending plate and having a second spiral hole formed to penetrate horizontally with a spiral opposite to the spiral of the first spiral hole; a pair of upper links hinge-coupled to the upper parts of the first sliding block and the second sliding block respectively with their lower ends spread open and provided symmetrically to each other; a pair of upper side plates hinge-coupled to the upper ends of the pair of upper links with their upper ends closed and their upper ends attached to the lower surface of the pipe support unit; and, one end screw-coupled to the first spiral hole and the other end screw-coupled to the second spiral hole, which rotates by user operation to move the first sliding block and the second sliding block inward or It is characterized by including a height adjustment bolt capable of adjusting the height of the pipe support by closing or spreading the upper link while moving it outward, and a rotational fixing member installed on the inner side of the vertical bending plate and rotatably fixing the central portion of the height adjustment bolt.
[0012] In addition, the upper link of the "position-adjustable pipe shoe" according to the present invention is characterized by further including interlocking teeth formed on the upper ends of a pair of upper links that are in close proximity to each other.
[0013] In addition, the height adjustment part of the "position-adjustable pipe shoe" according to the present invention is characterized by further including an interlocking gear that is provided to be engaged between at least one of the interlocking teeth and is rotatably installed on the upper side plate.
[0014] In addition, the height adjustment part of the "position-adjustable pipe shoe" according to the present invention is characterized by further including a guide groove formed horizontally on both sides of the first sliding block and the second sliding block, and a guide projection mounted on the vertical bending plate and slidably fitted into the guide groove.
[0015] In addition, the base plate of the "position-adjustable pipe shoe" according to the present invention further comprises a plurality of guide projections formed spaced apart from each other on both sides of the upper surface of the base plate, and the horizontal position adjustment part comprises a sliding member slidably disposed on the upper surface of the base plate and having its upper surface attached to the upper surface of the installation plate, a sliding projection formed to protrude horizontally on both sides of the lower end of the sliding member and slidably disposed inside the guide projection, a spiral member attached to the inside of the sliding member and having a spiral through hole formed by penetrating horizontally, a horizontal adjustment bolt with its rear end screw-coupled to the spiral through hole, and a rotary mounting part attached to the upper surface of the base plate (10) and having the front end of the horizontal adjustment bolt rotatably mounted.
[0016] In addition, the pipe support portion of the "position-adjustable pipe shoe" according to the present invention is characterized by including a support member attached to the upper surface of the upper side plate and an arc-shaped support plate attached to the upper end of the support member and formed in an arc shape to support the lower surface of the pipe.
[0017] In addition, the "position-adjustable pipe shoe" according to the present invention is characterized by further including a vibration-damping pad provided on the lower surface of the base plate, formed of synthetic rubber material, and in close contact with the upper surface of the girder beam. Effects of the invention
[0018] As described above, the present invention allows for easy and rapid adjustment of the vertical height of the pipe and easy and rapid adjustment of the horizontal position of the pipe. Consequently, installation of the pipe on the upper part of the girder beam is achieved easily and quickly, thereby having the effect of significantly reducing the time and manpower required for the construction and installation of the pipe. Brief explanation of the drawing
[0019] FIG. 1 is a schematic perspective view of a pipe shoe according to the present invention, FIG. 2 is a schematic exploded perspective view of a pipe shoe according to the present invention. FIG. 3 is a schematic side view of a pipe shoe according to the present invention, FIG. 4 is a schematic front view of a pipe shoe according to the present invention, FIG. 5 is a schematic side cross-sectional view of a pipe shoe according to the present invention, FIG. 6 is a schematic cross-sectional view of a pipe shoe according to the present invention, FIG. 7 is a schematic perspective view showing the installed state of a pipe shoe according to the present invention. FIG. 8 is a schematic side view showing the installation state of a pipe shoe according to the present invention. FIGS. 9 and FIGS. 10 are schematic side views showing the operating state of a pipe shoe according to the present invention. FIG. 11 is a schematic side cross-sectional view of a pipe shoe according to another embodiment of the present invention. Specific details for implementing the invention
[0020] Preferred embodiments of the present invention are described in more detail below with reference to the accompanying drawings. However, it should be understood that the present invention may be implemented in a number of different forms and is not limited to the described embodiments.
[0021] FIGS. 1 to 10 are schematic drawings of a pipe shoe according to the present invention. As illustrated herein, the position-adjustable pipe shoe according to the present invention comprises a base plate (10) installed on the upper surface of a girder beam (B), a horizontal position adjustment part (20) installed on the upper surface of the base plate (10) and capable of adjusting the horizontal position by moving left and right, a height adjustment part (30) installed on the upper end of the horizontal position adjustment part (20) and capable of adjusting the height up and down, and a pipe support part (40) installed on the upper end of the height adjustment part (30) and supporting a pipe (P).
[0022] The base plate (10) is positioned on the upper surface of the girder beam (B) and serves to support the pipe (P) and the equipment including the horizontal position adjustment unit (20) while providing a place for the horizontal position adjustment unit (20) to be installed.
[0023] The above-described base plate (10) further includes a plurality of guide projections (11) formed on both sides of its upper surface at mutually spaced intervals. The guide projections (11) serve to guide the horizontal movement of the horizontal position adjustment unit (20).
[0024] The above horizontal position adjustment unit (20) is installed on the upper surface of the base plate (10) and allows the horizontal position of the pipe (P) to be adjusted by moving left and right along the upper surface of the base plate (10) in the longitudinal direction of the girder beam (B), that is, in a direction perpendicular to the pipe (P), by operation of the user.
[0025] The above-mentioned horizontal position adjustment unit (20) comprises a sliding member (21) that is slidably disposed on the upper surface of the base plate (10) and whose upper surface is attached to the upper surface of the installation plate (31); a sliding projection (22) formed to protrude horizontally on both lower sides of the sliding member (21) and slidably disposed inside the guide projection (11); a spiral member (23) that is attached to the inside of the sliding member (21) and horizontally penetrates to form a spiral through hole (231); a horizontal adjustment bolt (24) whose rear end is screw-coupled to the spiral through hole (231); and a rotational mounting unit (25) that is attached to the upper surface of the base plate (10) and to which the front end of the horizontal adjustment bolt (24) is rotatably mounted.
[0026] The above sliding member (21) is configured to move horizontally left and right along the upper surface of the base plate (10) in the longitudinal direction of the girder beam (B) to adjust the horizontal position of the height adjustment part (30) and the pipe support part (40) (see FIG. 10).
[0027] The sliding jaw (22) is slidably fitted onto the guide jaw (11) and serves to guide the horizontal movement of the sliding member (21). The spiral member (23) serves to provide a portion where the spiral through-hole (231) is formed, allowing it to be attached to the inner side of the sliding member (21). The spiral through-hole (231) serves to provide a portion where the horizontal adjustment bolt (24) is screw-coupled.
[0028] The horizontal adjustment bolt (24) is rotatably mounted on the rotary mounting part (25), and when the user rotates the head portion with a tool such as a wrench, the spiral member (23) is moved to one side or the other through spiral movement with the spiral through hole (231), thereby causing the sliding member (21) to move horizontally to one side or the other, so that the horizontal position of the pipe support part (40) can be adjusted together with the height adjustment part (30).
[0029] The above-mentioned rotating mounting part (25) is attached to the upper surface of the base plate (10) and serves to rotatably mount the tip of the horizontal adjustment bolt (24).
[0030] The horizontal position adjustment unit (20) configured in this manner allows the user to rotate the head of the horizontal adjustment bolt (24) in the forward direction using a tool such as a wrench, thereby moving the spiral member (23) to one side and causing the sliding member (21) to slide to one side on the upper surface of the base plate (10) and move horizontally to one side.
[0031] Conversely, if the user reverses the head of the horizontal adjustment bolt (24) using a tool such as a wrench, the horizontal adjustment bolt (24) is reversed, causing the spiral member (23) to move to the other side, and the sliding member (21) slides horizontally to the other side on the upper surface of the base plate (10).
[0032] By rotating the horizontal adjustment bolt (24) as described above, the pipe support (40) is moved horizontally in a position where the pipe (P) is placed, thereby allowing the horizontal position of the pipe (P) to be adjusted easily and quickly.
[0033] The height adjustment unit (30) is installed on the upper part of the horizontal position adjustment unit (20) and is moved up and down by user operation to adjust the upper and lower height of the pipe (P).
[0034] The height adjustment unit (30) described above comprises an installation plate (31) attached to the upper surface of the horizontal position adjustment unit (20), a vertical bending plate (32) attached to the upper surface of the installation plate (31) and formed by bending both sides vertically, a first sliding block (33) slidably provided on the inner side of the vertical bending plate (32) and having a first spiral hole (331) formed to penetrate horizontally through the inner circumference having a spiral, a second sliding block (34) slidably provided on the inner side of the vertical bending plate (32) on one side of the first sliding block (33) and having a second spiral hole (341) formed to penetrate horizontally through the upper side having a spiral opposite to the spiral of the first spiral hole (331), a pair of upper links (35) hinge-coupled to the upper parts of the first sliding block (33) and the second sliding block (34) respectively with their lower ends spread open and provided symmetrically to each other, and a pair of upper links (35). It includes a pair of upper side plates (36) that are hinged in a closed state and have their upper ends attached to the lower surface of the pipe support member (40); a height adjustment bolt (37) that has one end screw-coupled to the first spiral hole (331) and the other end screw-coupled to the second spiral hole (341), and can adjust the height of the pipe support member (40) by rotating it by user operation to move the first sliding block (33) and the second sliding block (34) inward or outward while closing or opening the upper link (35); and a rotational fixing member (38) that is installed on the inner side of the vertical bending plate (32) and rotatably fixes the central part of the height adjustment bolt (37).
[0035] The above-mentioned mounting plate (31) serves to provide a place where the vertical bending plate (32) is installed on the upper surface of the above-mentioned sliding member (21), and the above-mentioned vertical bending plate (32) serves to provide a part where the first sliding block (33) and the second sliding block (34) slide horizontally.
[0036] The first sliding block (33) is configured to move horizontally along the vertical bending plate (32) by rotation of the height adjustment bolt (37), and the first spiral hole (331) is screw-coupled with the height adjustment bolt (37) so that when the height adjustment bolt (37) is rotated in the forward direction, the first sliding block (33) moves inward, and conversely, when the height adjustment bolt (37) is rotated in the reverse direction, the first sliding block (33) moves outward.
[0037] The second sliding block (34) is configured to move horizontally along the vertical bending plate (32) by rotation of the height adjustment bolt (37), and the second spiral hole (341) is screw-coupled with the height adjustment bolt (37) so that when the height adjustment bolt (37) is rotated in the forward direction, the second sliding block (34) moves inward, and conversely, when the height adjustment bolt (37) is rotated in the reverse direction, the second sliding block (34) moves outward.
[0038] The upper link (35) is provided in pairs, with the lower ends hinged to the first sliding block (33) and the second sliding block (34) respectively. When the first sliding block (33) and the second sliding block (34) move inward simultaneously, the lower ends contract to raise the upper side plate (36), and conversely, when the first sliding block (33) and the second sliding block (34) move outward simultaneously, the lower ends open to lower the upper side plate (36).
[0039] The upper link (35) described above further includes interlocking teeth (351) formed on the upper ends of a pair of upper links (35) that are in close proximity to each other. The interlocking teeth (351) allow the upper ends of the pair of upper links (35) to interlock with each other, thereby ensuring more stable operation of the upper links (35) and supporting high loads appropriately, which further improves the durability of the upper links (35).
[0040] The height adjustment bolt (37) is rotatably fixed by the rotational fixing member (38), and when the user rotates the head portion with a tool such as a wrench, the first sliding block (33) and the second sliding block (34) are horizontally moved inward or outward through spiral movement in the first spiral hole (331) and the second spiral hole (341), thereby causing the upper link (35) to contract or expand, so that the pipe (P) can be raised or lowered together with the pipe support member (40) to adjust the height of the pipe (P).
[0041] That is, the height adjustment bolt (37) has a left-hand screw and a right-hand screw formed on its outer surface with different screw directions, that is, a left-hand screw is formed on a part of the outer surface and a right-hand screw is formed on another part, so that the first sliding block (33) and the second sliding block (34) are brought together inward or spread outward by forward or reverse rotation, and accordingly, the upper link (35) is brought together or spread outward to raise or lower the pipe.
[0042] The above-mentioned rotating fixing member (38) is installed on the upper surface of the above-mentioned vertical bending plate (32) and serves to rotatably fix the tip of the above-mentioned height adjustment bolt (37).
[0043] The height adjustment member (30) described above further includes a guide groove (39) formed horizontally on both sides of the first sliding block (33) and the second sliding block (34), and a guide projection (39a) mounted on the vertical bending plate (32) and slidably fitted into the guide groove (39).
[0044] The guide groove (39) serves to guide the horizontal movement of the first sliding block (33) and the second sliding block (34) while being guided by the guide projection (39a).
[0045] The height adjustment unit (30) configured in this manner allows the user to rotate the head of the height adjustment bolt (37) in the forward direction using a tool such as a wrench, thereby rotating the height adjustment bolt (37) in the forward direction and moving the first sliding block (33) and the second sliding block (34) inward through the spiral movement of the first spiral hole (331) and the second spiral hole (341), causing the upper link (35) to contract and raise the pipe support unit (40) and the pipe (P) placed thereon (see FIG. 9).
[0046] Conversely, when the user reverses the head of the height adjustment bolt (37) using a tool such as a wrench, the height adjustment bolt (37) is reversed, and the spiral movement of the first spiral hole (331) and the second spiral hole (341) causes the first sliding block (33) and the second sliding block (34) to move outward, thereby spreading the upper link (35) and lowering the pipe support part (40) and the pipe (P) placed thereon.
[0047] By rotating the height adjustment bolt (37) as described above, the pipe support (40) is raised or lowered while the pipe (P) is positioned, thereby allowing the upper and lower height of the pipe (P) to be adjusted easily and quickly.
[0048] The pipe support member (40) is installed at the top of the height adjustment member (30) and serves to support the lower surface of the pipe (P).
[0049] The above pipe support member (40) includes a support member (41) attached to the upper surface of the upper side plate (36) and an arc-shaped support plate (42) attached to the upper end of the support member (41) and formed in an arc shape to support the lower surface of the pipe.
[0050] The above support member (41) serves to support the lower surface of the arc-shaped support plate (42) and provides a place to which the arc-shaped support plate (42) is attached. The above arc-shaped support plate (42) supports the lower surface of the pipe (P) and provides a place to which the pipe (P) is placed.
[0051] The pipe shoe further includes a vibration damping pad (50) provided on the lower surface of the base plate (10), formed of synthetic rubber material, and in close contact with the upper surface of the girder beam (B). The vibration damping pad (50) is positioned between the base plate (10) and the girder beam (B) and serves to offset or reduce vibrations transmitted through the girder beam (B) by external forces through the elasticity and cushioning force of the rubber.
[0052] The pipe shoe configured in this manner is a groundbreaking invention that enables simple and rapid adjustment of the pipe's vertical height and also allows simple and rapid adjustment of the pipe's horizontal position.
[0053] FIG. 11 is a schematic cross-sectional view of a pipe shoe according to another embodiment of the present invention. As illustrated herein, the height adjustment portion (30) of the position-adjustable pipe shoe according to another embodiment of the present invention further includes an engagement gear (31a) which is provided to engage at least one between the engagement teeth (351) and is rotatably installed on the upper side plate (36).
[0054] The above-mentioned meshing gear (31a) rotates while meshing with the above-mentioned meshing teeth (351) to improve the durability of the above-mentioned upper link (35), and expands the gap between the above-mentioned first sliding block (33) and the second sliding block (34), thereby expanding the above-mentioned support member (41) and arc-shaped support plate (42) so that a pipe with a larger diameter can be properly supported.
[0055] Although preferred embodiments of the present invention have been described above, the present invention may use various variations, modifications, and equivalents. It is clear that the present invention can be applied in the same way by appropriately modifying the above embodiments. Therefore, the above description does not limit the scope of the present invention, which is defined by the limitations of the following claims.
[0056] Meanwhile, although specific embodiments have been described in the detailed description of the present invention, it will be obvious to those skilled in the art that various modifications are possible within the scope of the present invention. Explanation of the symbols
[0057] 10 : Base plate 11 : Guide jaw 20 : Horizontal position adjustment unit 21 : Sliding member 22 : Sliding jaw 23 : Spiral member 231 : Spiral penetration hole 24: Leveling bolt 25: Rotating mounting part 30 : Height adjustment part 31 : Installation plate 32 : Vertical bending plate 33 : 1st Sliding Block 331 : 1st Spiral Hole 34 : 2nd Sliding Block 341 : 2nd Spiral Hole 35 : Upper link 351 : Interlocking teeth 36 : Upper side plate 37 : Height adjustment bolt 38 : Rotating fixing member 39 : Guide groove 39a : Guide jaw 31a : Meshing gear 40 : Pipe support 41: Support member 42: Arc-shaped support plate 50 : Anti-vibration pad B: Girder beam P : Pipe
Claims
Claim 1 A base plate (10) disposed on the upper surface of a girder beam; a horizontal position adjustment unit (20) installed on the upper surface of the base plate (10) and capable of adjusting the horizontal position by moving along the upper surface of the base plate (10) in the longitudinal direction of the girder beam by user operation; a height adjustment unit (30) installed on the upper end of the horizontal position adjustment unit (20) and capable of adjusting the height by moving up and down by user operation; and a pipe support unit (40) installed on the upper end of the height adjustment unit (30) and supporting the lower surface of a pipe;The height adjustment unit (30) comprises: an installation plate (31) attached to the upper surface of the horizontal position adjustment unit (20); a vertical bending plate (32) attached to the upper surface of the installation plate (31) and formed by bending both sides vertically; a first sliding block (33) slidably provided on the inner side of the vertical bending plate (32) and formed to penetrate horizontally through a first spiral hole (331) having a spiral on its inner circumference; a second sliding block (34) slidably provided on the inner side of the vertical bending plate (32) on one side of the first sliding block (33) and formed to penetrate horizontally through a second spiral hole (341) having a spiral opposite to the spiral of the first spiral hole (331); a pair of upper links (35) hinge-coupled to the upper parts of the first sliding block (33) and the second sliding block (34) respectively with their lower ends spread open and provided symmetrically to each other; and a pair of A pair of upper side plates (36) having their upper ends attached to the lower surface of the pipe support (40) and hinged to the upper end of the upper link (35) in a closed state, and a height adjustment bolt (37) having one end screw-coupled to the first spiral hole (331) and the other end screw-coupled to the second spiral hole (341), which can adjust the height of the pipe support (40) by closing or opening the upper link (35) while rotating by user operation to move the first sliding block (33) and the second sliding block (34) inward or outward, and a rotation fixing member (38) installed on the inner side of the vertical bending plate (32) and rotatably fixing the central part of the height adjustment bolt (37), wherein the upper link (35) further includes interlocking teeth (351) formed to interlock with each other on the upper ends of a pair of upper links (35) that are in close proximity to each other, and The height adjustment unit (30) further includes an interlocking gear (31a) which is provided to be engaged between at least one of the interlocking teeth (351) and is rotatably installed on the upper side plate (36), and a vibration damping pad (50) which is provided on the lower surface of the base plate (10), formed of synthetic rubber material, and adheres to the upper surface of the girder beam;Position-adjustable pipe shoe characterized by including additional features.; Claim 2 delete Claim 3 delete Claim 4 A position-adjustable pipe shoe according to claim 1, wherein the height adjustment part (30) further comprises a guide groove (39) formed horizontally on both sides of the first sliding block (33) and the second sliding block (34), and a guide projection (39a) mounted on the vertical bending plate (32) and slidably fitted into the guide groove (39). Claim 5 In claim 1, the base plate (10) further comprises a plurality of guide ridges (11) formed spaced apart from each other on both sides of the upper surface of the base plate (10), and the horizontal position adjustment unit (20) comprises a sliding member (21) slidably disposed on the upper surface of the base plate (10) and having its upper surface attached to the upper surface of the installation plate (31), a sliding ridge (22) formed to protrude horizontally on both sides of the lower end of the sliding member (21) and slidably disposed inside the guide ridges (11), a spiral member (23) attached to the inside of the sliding member (21) and having a spiral through hole (231) formed by penetrating horizontally, a horizontal adjustment bolt (24) having its rear end screw-coupled to the spiral through hole (231), and a rotational mounting unit (25) attached to the upper surface of the base plate (10) and having the front end of the horizontal adjustment bolt (24) rotatably mounted. Pipe shoe. Claim 6 A position-adjustable pipe shoe according to claim 1, wherein the pipe support member (40) comprises a support member (41) attached to the upper surface of the upper side plate (36) and an arc-shaped support plate (42) attached to the upper end of the support member (41) and formed in an arc shape to support the lower surface of the pipe. Claim 7 delete
Citation Information
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