Pipe clamp rubber assembling tool
By designing a pipe clamp rubber assembly tool and utilizing the clamping groove and guide slope structure, the automatic pulling and assembly of the rubber is achieved, which solves the problems of time-consuming, labor-intensive and finger wear in the existing technology and improves the assembly efficiency and effect.
Patent Information
- Application Number
- CN202422717969.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-07
- Publication Date
- 2025-10-14
- Estimated Expiration
- 2034-11-07
AI Technical Summary
In the prior art, the installation of pipe clamp rubber is time-consuming and labor-intensive, easily wears out fingers, and is inefficient, resulting in wasted labor costs and poor assembly results.
A pipe clamp rubber assembly tool is designed, which includes a base plate, a guide rail, a slider, a rubber fixing seat, a pull block and an operating lever. Through the clamping slot and guide inclined surface structure, the lever principle is used to realize the automatic opening and assembly of the rubber folding edge, reducing the labor intensity of the operator.
It greatly reduces the operator's labor intensity, avoids finger injuries, improves assembly efficiency and effect, and realizes labor-saving and convenient rubber assembly.
Smart Images

Figure CN223431577U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present disclosure relates to the technical field of pipe construction tooling, and particularly relates to a pipe clamp rubber skin assembly tool. BACKGROUND
[0002] As an installation structure for fixing pipes in corresponding application scenarios, pipe clamps are widely used to fix pipes in application scenarios such as electric locomotives. Rubber skins are installed on the pipe clamps, and the rubber skins need to be manually installed on the pipe clamps. Manual installation of the rubber skins is time-consuming and laborious and can easily cause finger abrasion. For example, an electric locomotive often has more than 100 pipe clamps, which need to be installed by three people simultaneously for more than 4 hours, resulting in serious waste of labor costs, easy finger injury of the operators, and low efficiency and poor assembly effect. CONTENT OF THE UTILITY MODEL
[0003] One main purpose of the present disclosure is to overcome at least one of the defects of the prior art, and to provide a pipe clamp rubber skin assembly tool capable of reducing the labor intensity of manual operation and avoiding finger injury of the operators.
[0004] To achieve the above-mentioned purpose, the present disclosure adopts the following technical solutions:
[0005] According to one aspect of the present disclosure, a pipe clamp rubber skin assembly tool is provided, wherein the side edges of the opposite sides of the body of the rubber skin are respectively provided with a folded edge, and the pipe clamp rubber skin assembly tool comprises a base plate, a guide rail, two sliding blocks, a rubber skin fixing seat, two pull blocks, and an operating rod; the guide rail is arranged on the base plate and extends in a first horizontal direction; the two sliding blocks are respectively arranged on the guide rail in a sliding manner; the rubber skin fixing seat is fixedly arranged relative to the guide rail and located between the two sliding blocks; the two pull blocks are respectively arranged on the two opposite sides of the two sliding blocks; the pull block is internally provided with a clamping groove for accommodating the folded edge; the clamping groove is open on the end face of the pull block facing the other pull block to form a clamping opening, and the width of the clamping opening is smaller than the width of the clamping groove; the two pull blocks are a first pull block and a second pull block, the top of the end face of the first pull block is provided with a guide inclined surface, and the guide inclined surface is inclined away from the second pull block from bottom to top; one end of the operating rod is rotatably connected to the second pull block, and a pressing piece is arranged in the middle of the operating rod, and the pressing piece can be pressed at the guide inclined surface to push the two sliding blocks to drive the two pull blocks to slide away from each other.
[0006] According to one of the embodiments of the present disclosure, the pulling block is detachably mounted on the sliding block, the bottom slot is opened on the bottom surface of the pulling block to form a bottom slot opening, and the width of the bottom slot opening is equal to the width of the clamping slot; wherein the pulling block is mounted on the sliding block from top to bottom, and the folded edge of the rubber on the rubber fixing seat enters the clamping slot through the bottom slot opening.
[0007] According to one of the embodiments of the present disclosure, the pulling block comprises an assembly plate, a vertical plate and a groove body; the assembly plate is detachably mounted on the sliding block, and the assembly plate is mounted on the sliding block from top to bottom; the vertical plate is arranged at one end of the assembly plate facing the other pulling block; the groove body is arranged at one side of the vertical plate facing the other pulling block, and the clamping slot is formed in the groove body and opened on the end surface of the groove body facing the other pulling block.
[0008] According to one of the embodiments of the present disclosure, the assembly plate is mounted on the sliding block through a threaded pin; the threaded pin is arranged in the vertical direction, and is screwed and fixed on the assembly plate; one end of the threaded pin penetrates and extends below the assembly plate, and the threaded pin can be inserted into the assembly hole arranged on the top surface of the sliding block.
[0009] According to one of the embodiments of the present disclosure, the groove body comprises a plurality of groove pieces; the plurality of groove pieces are stacked along the first horizontal direction and are simultaneously fixed on the vertical plate through a connecting piece; the groove piece is provided with a notch; the notch penetrates the groove piece along the thickness direction and is opened on the bottom edge of the groove piece; wherein the groove piece comprises an outer groove piece and at least one inner groove piece; the notch width of the outer groove piece is smaller than the notch width of the inner groove piece; the notch of the outer groove piece forms the clamping opening; the notch of the outer groove piece, the notch of each inner groove piece and the side surface of the vertical plate facing the other pulling block jointly form the clamping slot.
[0010] According to one of the embodiments of the present disclosure, the top part of at least part of the inner groove piece of the first pulling block is missing, and the top part of the outer groove piece of the first pulling block is inclined and bent away from the second pulling block, so that the inclined and bent part of the outer groove piece away from the surface of the inner groove piece forms the guide inclined surface.
[0011] According to one of the embodiments of the present disclosure, two operating rods are included; one end of each of the two operating rods is respectively rotationally connected to the two sides of the second pulling block in the second horizontal direction, and the second horizontal direction is perpendicular to the first horizontal direction; the other end of each of the two operating rods is connected through a handle; the top of the end surface of the first pulling block is provided with two guide inclined surfaces, and the two guide inclined surfaces are respectively matched with the pressing pieces of the two operating rods.
[0012] According to one of the embodiments of the present disclosure, the pressing member is a pin arranged along a second horizontal direction perpendicular to the first horizontal direction; one end of the pin is fixed to the operating rod, and the other end of the pin extends through and to the side of the operating rod facing the second pull block.
[0013] According to one of the embodiments of the present disclosure, one side surface of the body is provided with a convex bead, and the folded edge is bent to the other side surface of the body; wherein the rubber fixing seat is provided with a recess for accommodating the convex bead.
[0014] According to one of the embodiments of the present disclosure, two limiting blocks are arranged on the base plate, and the two limiting blocks are respectively and alternately arranged on the two opposite sides of the two sliding blocks to limit the sliding position of the sliding blocks.
[0015] From the above technical solution, the pipe clamp rubber assembly tool provided by the present disclosure has the following advantages and positive effects:
[0016] The pipe clamp rubber assembly tool provided by the present disclosure comprises a base plate, a guide rail, two sliding blocks, a rubber fixing seat, two pull blocks, and an operating rod; the guide rail is arranged on the base plate and extends along a first horizontal direction; the two sliding blocks are respectively and slidingly arranged on the guide rail; the rubber fixing seat is fixedly arranged relative to the guide rail and located between the two sliding blocks; the two pull blocks are respectively arranged on the two opposite sides of the two sliding blocks; the pull block is internally provided with a clamping groove for accommodating the folded edge; the clamping groove is open on the end face of the pull block facing the other pull block to form a clamping opening, and the width of the clamping opening is smaller than the width of the clamping groove; the two pull blocks are a first pull block and a second pull block, and the top of the end face of the first pull block is provided with a guide inclined surface inclined away from the second pull block from bottom to top; one end of the operating rod is rotatably connected to the second pull block, and the operating rod is provided with a pressing member in the middle; the pressing member can be pressed against the guide inclined surface to push the two sliding blocks to drive the two pull blocks to slide away from each other. Through the above structural design, the two clamping grooves can accommodate the folded edge of the rubber, and the folded edge can be clamped in the clamping groove by the clamping opening with a smaller width. When the operator rotates the operating rod to press the pressing member against the guide inclined surface to make the two pull blocks slide away from each other, the two side folded edges of the rubber can be pulled apart, and then the pipe clamp is placed on the rubber, the pull blocks are moved away from the two sides of the rubber, and the folded edge can return to the bent state to wrap around the edge of the pipe clamp to realize the assembly of the pipe clamp and the rubber. Accordingly, the present disclosure can greatly reduce the labor intensity of the operator, effectively avoid the injury of the operator's fingers, and more labor-saving and convenient by using the rotating pressing method of the operating rod to realize the pulling apart of the rubber folded edge by using the lever principle. Furthermore, the present disclosure can improve the assembly efficiency and effect of the pipe clamp and the rubber. BRIEF DESCRIPTION OF DRAWINGS
[0017] The various objects, features and advantages of the present disclosure will become more apparent from the following detailed description and accompanying drawings. The drawings are diagrammatic and for clarification only and are not necessarily drawn to scale. In the drawings:
[0018] Figure 1 is a perspective structural schematic diagram of a pipe clamp rubber assembling tool according to an exemplary embodiment;
[0019] Figure 2 is a top view of Figure 1 ;
[0020] Figure 3 is a perspective structural schematic diagram of a pipe clamp rubber assembling tool according to an exemplary embodiment; Figure 1
[0021] Figure 4 is a perspective structural schematic diagram of a slot body according to an exemplary embodiment; Figure 3
[0022] Figure 5 is a planar schematic diagram of an outer slot piece according to an exemplary embodiment; Figure 4
[0023] Figure 6 is a planar schematic diagram of an inner slot piece according to an exemplary embodiment; Figure 4
[0024] Figure 7 is a perspective structural schematic diagram of a rubber fixing seat according to an exemplary embodiment;
[0025] Figure 8 is a planar schematic diagram of a rubber according to an exemplary embodiment;
[0026] Figure 9 is a side view of Figure 8 ;
[0027] Figure 10 is a planar schematic diagram of a pipe clamp according to an exemplary embodiment;
[0028] Figure 11 is a top view of Figure 10 .
[0029] The reference signs are explained as follows:
[0030] 110. base plate;
[0031] 111. limiting block;
[0032] 120. guide rail;
[0033] 130. sliding block;
[0034] 140. rubber fixing seat;
[0035] 141. recess;
[0036] 1501. first pulling block;
[0037] 1502. second pulling block;
[0038] 151. clamping slot;
[0039] 1511. clamping hole;
[0040] 1512. bottom slot;
[0041] 152. guide slope;
[0042] 153. assembly plate;
[0043] 1531. threaded pin;
[0044] 154. vertical plate;
[0045] 155. slot body;
[0046] 1551. outer slot piece;
[0047] 1552. inner slot piece;
[0048] 160. operating lever;
[0049] 161. pin;
[0050] 162. handle;
[0051] 200. rubber;
[0052] 210. body;
[0053] 211. convex rib;
[0054] 220. folded edge;
[0055] 300. pipe clamp;
[0056] X. first horizontal direction;
[0057] Y. second horizontal direction. DETAILED DESCRIPTION
[0058] The exemplary embodiments embodying the features and advantages of the present disclosure will be described in detail hereinafter. It should be understood that the present disclosure can have various changes in different embodiments, which do not depart from the scope of the present disclosure, and the description and drawings are essentially illustrative, not intended to limit the present disclosure.
[0059] In the following description of various example embodiments of the present disclosure, reference is made to the accompanying drawings, which form a part hereof, and in which are shown by way of illustration various example structures, systems, and steps in which aspects of the present disclosure can be practiced. It is understood that other specific arrangements of parts, structures, example devices, systems, and steps can be utilized and structural and functional modifications can be made without departing from the scope of the present disclosure. Also, while the terms "over," "between," "inside," "on," "under," and the like, can be used in this specification to describe relative location, such terms are placed herein merely for convenience, e.g., based at least in part on the orientation of the examples as shown in the figures. Nothing in this specification should be construed as requiring a specific three dimensional orientation of structures in order to fall within the scope of the present disclosure.
[0060] Referring to Figure 1 , a perspective view of a tube grommet assembly tool according to an embodiment of the present disclosure is shown. In this example embodiment, the tube grommet assembly tool according to the present disclosure is used to assemble a grommet 200 to a tube grommet 300 for use in a locomotive. Those skilled in the art will readily understand that various modifications, additions, substitutions, deletions, or other changes can be made to the specific embodiments described below in order to apply the concepts of the present disclosure to the assembly of a grommet 200 to a tube grommet 300 in other applications, and such changes are still within the scope of the tube grommet assembly tool according to the present disclosure.
[0061] As shown in Figure 1 , in an embodiment of the present disclosure, the tube grommet assembly tool according to the present disclosure is used to assemble a grommet 200 to a tube grommet 300. Referring to Figures 2 to 11 , Figure 2 , a top view of Figure 1 is shown; Figure 3 , a perspective view of a partial structure of the tube grommet assembly tool is shown, specifically showing the perspective view of two sliders 130, two pull blocks, and a grommet holder 140; Figure 4 , a perspective view of a slot 155 is shown, specifically showing the perspective view of the slot 155 of the second pull block 1502; Figure 5 , a plan view of an outer slot piece 1551 is shown; Figure 6 , a plan view of an inner slot piece 1552 is shown; Figure 7 , a perspective view of the grommet holder 140 is shown; Figure 8 , a plan view of the grommet 200 is shown; Figure 9 , a side view of Figure 8 is shown; Figure 10 , a plan view of the tube grommet 300 is shown;Figure 11 a top view of the Figure 10 The structure, connection mode and functional relationship of the main components of the present disclosure will be described in detail below in combination with the above-described drawings.
[0062] As shown in Figures 8 to 11 The opposite sides of the body 210 of the rubber 200 each have a folded edge 220. When the rubber 200 is assembled with the pipe clamp 300, the body 210 of the rubber 200 needs to be attached to the pipe clamp 300, and the folded edge 220 needs to be wrapped around the edge of the pipe clamp 300. Since the rubber 200 is made of rubber material and has a certain hardness, the existing manual installation method requires the operator to use force to pry open the folded edge 220 with fingers in order to fit into the pipe clamp 300, which is time-consuming and laborious, and is easy to cause finger abrasion.
[0063] As shown in Figures 1 to 7As shown, in an embodiment of the present disclosure, the pipe clamp rubber assembling tool comprises a base plate 110, a guide rail 120, two sliders 130, a rubber fixing seat 140, two pulling blocks and an operating lever 160. Specifically, the guide rail 120 is arranged on the base plate 110, and the guide rail 120 extends along the first horizontal direction X. The two sliders 130 are respectively arranged on the guide rail 120 in a sliding manner. The rubber fixing seat 140 is fixedly arranged relative to the guide rail 120, and the rubber fixing seat 140 is located between the two sliders 130, and the rubber fixing seat 140 is used for arranging the rubber 200. The two pulling blocks are respectively arranged on two opposite sides of the two sliders 130. The pulling block is internally provided with a clamping groove 151 for accommodating the folded edge 220. The clamping groove 151 is open at the end face of the pulling block facing the other pulling block to form a clamping opening 1511, and the width of the clamping opening 1511 is smaller than the width of the clamping groove 151. Accordingly, when the folded edge 220 is accommodated in the clamping groove 151, it will be limited by the clamping opening 1511 and cannot move out of the clamping groove 151 along the first horizontal direction X, so that the folded edge 220 can be pulled open by moving the pulling block along the first horizontal direction X. Among them, the two pulling blocks are respectively a first pulling block 1501 and a second pulling block 1502. The top of the end face of the first pulling block 1501 is provided with a guide inclined surface 152 which is inclined away from the second pulling block 1502 from bottom to top. One end of the operating lever 160 is rotatably connected to the second pulling block 1502, and a pressing member (such as a pin 161 described below) is arranged in the middle of the operating lever 160. The pressing member can be pressed at the guide inclined surface 152 to push the two sliders 130 to drive the two pulling blocks to slide away from each other by rotating the operating lever 160. Through the above structural design, the pipe clamp rubber assembling tool can accommodate the folded edge 220 of the rubber 200 by using two clamping grooves 151, and can clamp the folded edge 220 in the clamping groove 151 by using the slot with smaller width. When the operator rotates the operating lever 160 to press the pressing member against the guide inclined surface 152 to make the two pulling blocks slide away from each other, the two side folded edges 220 of the rubber 200 can be pulled open. Then, the pipe clamp 300 is placed at the rubber 200, the pulling blocks are moved away from the two sides of the rubber 200, and the folded edges 220 can return to the folded state to wrap around the edge of the pipe clamp 300, realizing the assembly of the pipe clamp 300 and the rubber 200. Accordingly, the pipe clamp rubber assembling tool can greatly reduce the labor intensity of the operator, effectively avoid the injury of the operator's fingers, and realize the pulling open of the folded edge 220 of the rubber 200 by using the rotating pressing mode of the operating lever 160, which is more labor-saving and convenient. Furthermore, the pipe clamp rubber assembling tool can improve the assembly efficiency and assembly effect of the pipe clamp 300 and the rubber 200.
[0064] As Figure 3 and Figure 4As shown, in an embodiment of the present disclosure, the pull block is detachably mounted on the sliding block 130, and the bottom slot 151 is opened on the bottom surface of the pull block to form a bottom slot 1512, and the width of the bottom slot 1512 is equal to the width of the clamping slot 151. On this basis, the pull block is mounted on the sliding block 130 from top to bottom, and the folded edge 220 of the rubber 200 on the rubber fixing seat 140 enters the clamping slot 151 through the bottom slot 1512. For example, the assembly direction of the pull block and the sliding block 130 can be vertical, that is, the pull block above the sliding block 130 is mounted on the sliding block 130 from top to bottom, and during the mounting process, the folded edge 220 of the rubber 200 enters the clamping slot 151 through the bottom slot 1512. Through the above structural design, the present disclosure can realize the detachable assembly of the pull block and the sliding block 130, and facilitate the operation of the folded edge 220 of the rubber 200 clamped into the clamping slot 151.
[0065] As shown in Figures 1 to 4 , based on the structure design that the pull block is detachably mounted on the sliding block 130, in an embodiment of the present disclosure, the pull block can include an assembly plate 153, a vertical plate 154 and a groove body 155. Specifically, the assembly plate 153 is detachably mounted on the sliding block 130, and the assembly plate 153 is mounted on the sliding block 130 from top to bottom. The vertical plate 154 is arranged at one end of the assembly plate 153 facing the other pull block. The groove body 155 is arranged at one side of the vertical plate 154 facing the other pull block, and the clamping slot 151 is formed in the groove body 155 and opened on the end surface of the groove body 155 facing the other pull block.
[0066] As shown in Figure 2 and Figure 3 , based on the structure design that the pull block includes the assembly plate 153 and is detachably mounted on the sliding block 130 through the assembly plate 153, in an embodiment of the present disclosure, the assembly plate 153 can be mounted on the sliding block 130 through a threaded pin 1531. Specifically, the threaded pin 1531 is arranged in the vertical direction, one end of which is screwed and fixed to the assembly plate 153, and the other end extends below the assembly plate 153, and the threaded pin 1531 can be inserted into the assembly hole arranged on the top surface of the sliding block 130. Through the above structural design, the present disclosure can realize the detachable mounting of the assembly plate 153 and the sliding block 130 by using the plug-in cooperation of the threaded pin 1531 and the assembly hole, which is simple in structure and convenient in operation, and can enable the operator to realize the operation of detaching and assembling the pull block and the sliding block 130 with one hand. In addition, since the threaded pin 1531 extends in the vertical direction, it can ensure that the sliding of the sliding block 130 along the guide rail 120 can be fully transmitted to the pull block, and ensure the synchronization of the movement of the sliding block 130 and the pull block in the first horizontal direction X. In some embodiments, the assembly plate 153 and the sliding block 130 can also be detachably mounted by using other structures, such as buckles, and are not limited to the present embodiment.
[0067] As shown in Figures 4 to 6As shown, in an embodiment of the present disclosure, the groove body 155 can include a plurality of groove pieces stacked along the first horizontal direction X and fixed to the vertical plate 154 via a connecting member (e.g., a screw). The groove piece is provided with a notch penetrating through the groove piece along the thickness direction and opening at the bottom edge of the groove piece. On this basis, the groove piece can include an outer groove piece 1551 and at least one inner groove piece 1552, the notch width of the outer groove piece 1551 being smaller than that of the inner groove piece 1552. Accordingly, when the plurality of groove pieces are stacked and fixed to the vertical plate 154, the notch of the outer groove piece 1551 forms the above-mentioned clamping opening 1511, and the notch of the outer groove piece 1551 and the inner groove pieces 1552 and the side surface of the vertical plate 154 facing the other side of the pull block collectively form the above-mentioned clamping groove 151. Through the above-mentioned structural design, the present disclosure can adjust the size of the clamping groove 151 in the first horizontal direction X by selecting different numbers of inner groove pieces 1552 to form the groove body 155, thereby adapting to the assembly needs of pipe clamps 300 and rubber hoses 200 of different specifications. Furthermore, the present disclosure can reduce the processing difficulty of the groove body 155 by using the structural design of the plurality of groove pieces, and more easily realize the above-mentioned special-shaped (i.e., the width of the clamping opening 1511 is smaller than the width of the clamping groove 151) groove structure. In some embodiments, the groove body 155 can also adopt an integrated structure, or can include an outer groove piece 1551 and an integrated inner groove body, without being limited to the present embodiment.
[0068] As shown, Figure 3 As shown, based on the structural design that the groove body 155 includes the outer groove piece 1551 and the inner groove piece 1552, in an embodiment of the present disclosure, the top portion of at least part of the inner groove piece 1552 of the first pull block 1501 is missing, and the top portion of the outer groove piece 1551 of the first pull block 1501 is inclined and bent away from the second pull block 1502, so that the inclined and bent portion of the outer groove piece 1551 forms a guide slope 152 away from the surface of the inner groove piece 1552. Through the above-mentioned structural design, the present disclosure can form the guide slope 152 by using the local deformation of the outer groove piece 1551 and part of the inner groove piece 1552, without the need for additional structures to constitute the guide slope 152, which is beneficial to reducing the number of parts and the structural complexity. In some embodiments, a separate slope structure can also be provided on the side of the groove body 155, e.g., fixed to the groove body 155 or the vertical plate 154, to form the guide slope 152, without being limited to the present embodiment.
[0069] As shown, Figures 1 to 3As shown in the embodiment of the present disclosure, the tube and rubber assembling tool provided by the present disclosure can include two operating rods 160. One end of each of the two operating rods 160 is rotatably connected to the two sides of the second horizontal direction Y of the second pull block 1502, and the second horizontal direction Y is perpendicular to the first horizontal direction X. The other end of each of the two operating rods 160 is connected via a handle 162. Correspondingly, the top of the end surface of the first pull block 1501 is provided with two guide inclined surfaces 152, and the two guide inclined surfaces 152 are matched with the pressing members of the two operating rods 160, respectively. Through the above structural design, the present disclosure forms a handle structure by using the two operating rods 160 and the handle 162, and the operator only needs to operate the handle 162 to realize the synchronous rotation of the two operating rods 160, which is more labor-saving, and the synchronous rotation of the two operating rods 160 can make the pressing action more uniform.
[0070] As shown in the embodiment of the present disclosure, Figure 3 In the embodiment of the present disclosure, the pressing member can be a pin 161 arranged along the second horizontal direction Y. One end of the pin 161 is fixed to the operating rod 160, and the other end of the pin 161 penetrates and extends to the side of the operating rod 160 facing the second pull block 1502. In some embodiments, the pressing member can also use other structures instead of the pin 161 to realize the pressing cooperation with the guide inclined surface 152. For example, the pressing member can be a pin shaft, and further, a roller can be sleeved on the pin shaft. Accordingly, the roller is used to realize the rolling pressing cooperation with the guide inclined surface 152, so as to further reduce the friction, make the operator more labor-saving, and be beneficial to prolong the service life of the parts.
[0071] As shown in the embodiment of the present disclosure, Figures 7 to 9 In the embodiment of the present disclosure, one side surface of the body 210 can be provided with a convex rib 211, and the folded edge 220 is bent to the other side surface of the body 210. On this basis, the rubber fixing seat 140 can be provided with a recess 141 for accommodating the convex rib 211. Through the above structural design, when the rubber 200 is placed on the rubber fixing seat 140, the present disclosure can limit the convex rib 211 by using the recess 141, that is, realize the fixation of the freedom degree of the rubber 200 in the first horizontal direction X, so as to avoid the rubber 200 from shaking in the first horizontal direction X during the assembling process, and further improve the assembling effect.
[0072] As shown in the embodiment of the present disclosure, Figure 7As shown in the embodiment of the present disclosure, the rubber fixing seat 140 can be approximately in a cylindrical structure, and in the assembly process, the rubber 200 is bent into a cylindrical shape. On this basis, the cross section of the clamping groove 151 and the clamping opening 1511 can be circular, and the width (i.e. the inner diameter) of the clamping groove 151 can be equal to or slightly larger than the outer diameter of the folded edge 220 of the rubber 200 when bent into a cylindrical shape, so that the clamping groove 151 and the clamping opening 1511 can be used to fix the freedom of the rubber 200 in the vertical direction and the second horizontal direction Y.
[0073] As shown in the embodiment of the present disclosure, the substrate 110 can be provided with two limiting blocks 111, which are respectively located at the opposite sides of the two sliding blocks 130, for limiting the sliding position of the sliding block 130. Figure 2
[0074] Based on the above detailed description of the several exemplary embodiments of the pipe rubber fixing tool of the present disclosure, the assembly process of the pipe clamp 300 and the rubber 200 using the present disclosure will be briefly described below.
[0075] First, the two pull blocks are removed from the two sliding blocks 130. The rubber 200 is placed on the rubber fixing seat 140, and the convex ridge 211 of the rubber 200 can be accommodated in the recess 141 of the rubber fixing seat 140, so as to limit the rubber 200 in the first horizontal direction X. As shown in the embodiment of the present disclosure, Figure 8 As shown in the embodiment of the present disclosure, since the rubber 200 is long and narrow, the operator can apply force to bend it to fit the outer periphery of the rubber fixing seat 140, and the rubber 200 remains in the same approximate cylindrical shape as the rubber fixing seat 140. Then, the two pull blocks are respectively assembled from top to bottom on the two sliding blocks 130, and in the assembly process, the folded edges 220 on both sides of the rubber 200 are respectively relatively moved from bottom to top into the clamping grooves 151, and are respectively clamped by the clamping openings 1511 of the two clamping grooves 151. The operator rotates the operating rod 160 from the second pull block 1502 to the first pull block 1501, and the abutting member is rotated and abuts against the guide inclined surface 152. Continue to rotate the operating rod 160, and the abutting member continues to move along the guide inclined surface 152 until it abuts against the vertical end surface of the first pull block 1501 facing the second end surface, so as to realize the opposite sliding of the two pull blocks, that is, the two folded edges 220 of the rubber 200 are pulled apart. Then, the pipe clamp 300 is placed on the rubber 200, and the two pull blocks are respectively moved away from both sides of the rubber 200, and the folded edges 220 can return to the bent state and wrap around the edge of the pipe clamp 300. Accordingly, the assembly of the pipe clamp 300 and the rubber 200 is completed.
[0076] It should be noted that the tube gasket assembling tool shown in the drawings and described in the specification is only a few examples of many tube gasket assembling tools that can employ the principles of the present disclosure. It should be clearly understood that the principles of the present disclosure are by no means limited to any details or any components of the tube gasket assembling tool shown in the drawings or described in the specification.
[0077] In summary, the tube gasket assembling tool provided by the present disclosure includes a base plate 110, a guide rail 120, two sliders 130, a gasket fixing seat 140, two pull blocks, and an operating lever 160. The guide rail 120 is arranged on the base plate 110 and extends along a first horizontal direction X. The two sliders 130 are respectively arranged on the guide rail 120 in a sliding manner. The gasket fixing seat 140 is fixedly arranged relative to the guide rail 120 and located between the two sliders 130. The two pull blocks are respectively arranged on two opposite sides of the two sliders 130. A clamping groove 151 is arranged inside each pull block for accommodating a folded edge 220. The clamping groove 151 is open at an end face of the pull block facing the other pull block to form a clamping opening 1511, and the width of the clamping opening 1511 is smaller than that of the clamping groove 151. The two pull blocks are a first pull block 1501 and a second pull block 1502. A guide inclined surface 152 is arranged on the top of the end face of the first pull block 1501 and inclined away from the second pull block 1502 from bottom to top. One end of the operating lever 160 is rotatably connected to the second pull block 1502, and a pressing member is arranged in the middle of the operating lever 160. The pressing member can press against the guide inclined surface 152 to push the two sliders 130 and drive the two pull blocks to slide away from each other when the operating lever 160 is rotated. Through the above structural design, the present disclosure can accommodate the folded edge 220 of the gasket 200 by using the two clamping grooves 151, and clamp the folded edge 220 in the clamping groove 151 by using the slot with smaller width. When the operator rotates the operating lever 160 to press the pressing member against the guide inclined surface 152 to make the two pull blocks slide away from each other, the two folded edges 220 of the gasket 200 can be pulled apart, then the pull blocks are moved away from the two sides of the gasket 200, and the folded edges 220 can return to the folded state to wrap around the edges of the tube clamp 300, thereby realizing the assembly of the tube clamp 300 and the gasket 200. Accordingly, the present disclosure can greatly reduce the labor intensity of the operator and effectively avoid finger injury. Moreover, the present disclosure can improve the assembly efficiency and effect of the tube clamp 300 and the gasket 200 by using the rotating pressing method of the operating lever 160 to pull apart the folded edges 220 of the gasket 200 by using the principle of leverage.
[0078] The exemplary embodiments of the tube and bead assembly tool presented by the present disclosure are described and / or illustrated above in detail. The embodiments of this present disclosure are not limited to the specific embodiments described herein, but include any alternatives, modifications, permutations, and equivalents thereof. It is intended that the following claims encompass all such alternatives, modifications, permutations, and equivalents. Each of the steps of each embodiment can also be used in combination with other steps of other embodiments. As the elements / components / etc. described and / or illustrated herein are introduced, the words "one" and "an" are used, in a disclosure setting, to mean that there is one or more of the elements / components / etc. The terms "comprising," "including," and "having" are used in the detailed description and / or claims to mean that the elements / components / etc. listed are present, but not excluding the presence of one or more other elements / components / etc. Furthermore, the terms "first," "second," and the like, herein do not denote any ordinal, chronological, or spatial relationship, but are used just to distinguish one element / component / etc. from another.
[0079] While the tube and bead assembly tool presented by the present disclosure has been described in terms of various specific embodiments, those skilled in the art will recognize that the embodiments of the present disclosure can be practiced with modifications within the spirit and scope of the claims.
Claims
1. A pipe clamp rubber assembly tool, characterized in that: Used to assemble the rubber and the pipe clamp, the side edges of the rubber body on opposite sides are respectively provided with folded edges, and the pipe clamp rubber assembly tool includes: substrate; a guide rail disposed on the base plate and extending along a first horizontal direction; Two sliders, the two sliders are respectively slidably arranged on the guide rails; A rubber fixing seat, which is fixed relative to the guide rail and located between the two sliders; Two pulling blocks, each of which is disposed on opposite sides of the two sliders; a slot is disposed inside the pulling block for accommodating the folded edge; the slot opens at the end surface of the pulling block facing the other pulling block to form a bayonet, and the width of the bayonet is smaller than the width of the slot; the two pulling blocks are a first pulling block and a second pulling block, the top of the end surface of the first pulling block is provided with a guide slope, and the guide slope is inclined from bottom to top away from the second pulling block; and An operating rod has one end rotatably connected to the second pull block. A pressing piece is provided in the middle of the operating rod. The pressing piece can press against the guide slope as the operating rod rotates to push the two sliders and drive the two pull blocks to slide back to each other.
2. The pipe clamp rubber assembly tool according to claim 1, characterized in that: The pulling block is detachably mounted on the slider, and the slot is opened on the bottom surface of the pulling block to form a bottom slot opening, and the width of the bottom slot opening is equal to the width of the slot; wherein, the pulling block is mounted on the slider from top to bottom, and the folded edge of the rubber on the rubber fixing seat enters the slot through the bottom slot opening.
3. The pipe clamp rubber assembly tool according to claim 2, characterized in that: The pulling block includes an assembly plate, a vertical plate and a groove body; the assembly plate is detachably mounted on the slider, and the assembly plate is mounted on the slider from top to bottom; the vertical plate is arranged at one end of the assembly plate facing the other pulling block; the groove body is arranged on the side of the vertical plate facing the other pulling block, and the card slot is formed in the groove body and opens at the end surface of the groove body facing the other pulling block.
4. The pipe clamp rubber assembly tool according to claim 3, characterized in that: The assembly plate is mounted on the slider via a threaded pin; the threaded pin is arranged in a vertical direction and is screwed to the assembly plate. One end of the threaded pin passes through and extends to the bottom of the assembly plate, and the threaded pin can be inserted into the assembly hole set on the top surface of the slider.
5. The pipe clamp rubber assembly tool according to claim 3, characterized in that: The slot body includes a plurality of slot sheets, which are stacked along the first horizontal direction and fixed to the vertical plate at the same time via connecting pieces. The slot sheets are provided with notches, which penetrate the slot sheets along the thickness direction and open at the bottom edge of the slot sheets. The slot sheets include an outer slot sheet and at least one inner slot sheet, the notch width of the outer slot sheet is smaller than the notch width of the inner slot sheet, the notch of the outer slot sheet forms the snap-in, and the outer slot sheet, the notches of each inner slot sheet and the side surface of the vertical plate facing the other pull block together form the snap-in slot.
6. The pipe clamp rubber assembly tool according to claim 5, characterized in that: At least part of the top portion of the inner groove piece of the first pulling block is missing, and the top portion of the outer groove piece of the first pulling block is bent obliquely toward the second pulling block, so that the obliquely bent portion of the outer groove piece faces away from the surface of the inner groove piece to form the guiding slope.
7. The pipe clamp rubber assembly tool according to claim 1, characterized in that: It comprises two operating rods; one end of each of the two operating rods is rotatably connected to both sides of the second pull block in the second horizontal direction, and the second horizontal direction is perpendicular to the first horizontal direction; the other ends of the two operating rods are connected via a handle; the top of the end surface of the first pull block is provided with two guide inclined surfaces, and the two guide inclined surfaces respectively cooperate with the pressing parts of the two operating rods.
8. The pipe clamp rubber assembly tool according to claim 1, characterized in that: The pressing member is a pin, which is arranged along a second horizontal direction perpendicular to the first horizontal direction; one end of the pin is fixed to the operating rod, and the other end passes through and extends to a side of the operating rod facing the second pull block.
9. The pipe clamp rubber assembly tool according to claim 1, characterized in that: A convex ridge is provided on one side surface of the body, and the folded edge is bent to the other side surface of the body; wherein the rubber fixing seat is provided with a recess for accommodating the convex ridge.
10. The pipe clamp rubber assembly tool according to claim 1, characterized in that: Two limit blocks are provided on the base plate. The two limit blocks are located at opposite sides of the two sliders at intervals and are used to limit the sliding positions of the sliders.