Sliding conduit installation punch
By using a sliding conduit installation drilling device, which combines a frame and guide components, the problem of insufficient drilling accuracy for water and electricity pipes is solved, achieving efficient and stable drilling results. It is suitable for water and electricity renovation in building decoration.
Patent Information
- Application Number
- CN202010989704.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2020-09-18
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2040-09-18
AI Technical Summary
During the interior decoration process of buildings, existing technology cannot guarantee the accuracy and consistency of drilling holes for water and electricity pipes, resulting in the problem that expansion bolts cannot be inserted.
The sliding conduit installation drilling device includes a frame, a carriage, and a guide. The drill bit angle is precisely adjusted through the guide channel and horizontal bubble to ensure that the drilling follows the direction of the conduit layout. The clamping component increases stability and it is suitable for different site conditions.
It improved the accuracy and consistency of drilling, reduced hole deviation, simplified the pipeline fixing process, and improved construction efficiency.
Smart Images

Figure CN111976024B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application belongs to the field of building technology, and particularly relates to a sliding type line pipe installation punching device. BACKGROUND
[0002] When building indoor decoration, the pipeline needs to be redesigned, that is, water and electricity transformation. Specifically, according to the decoration configuration, family population, living habits, aesthetic concept, the water circuit and the circuit used by the original developer are completely replaced. Water and electricity transformation is divided into water circuit transformation and circuit transformation.
[0003] Generally, the water and electricity pipeline design can be walked on the top or on the ground according to different places. When designing the water pipe, the cold and hot water outlets must be horizontal, and the pipeline laying needs to be horizontal and straight, and the layout direction should be safe and reasonable. The pipe clamp position and the pipe slope should meet the specification requirements. The installation of various valves should be correct and flat, which is convenient for use and maintenance. When the water and electricity wiring, the wiring distance should be shortened as much as possible to reduce unnecessary waste, and the bending should be reduced as much as possible. When the length of the straight line segment of the line is more than 20m or the right angle bend is more than three, an intermediate junction box should be added to ensure future maintenance.
[0004] In the pipeline laying construction, first, the positioning points are determined in the corresponding area according to the design drawing, and then the pipeline is laid. The horse clamp needs to be fixed by expanding bolt in the cement mortar layer or concrete layer, so that the pipeline is more regular and meets the construction requirement that the pipelines need to maintain a certain distance. However, the expanding bolt needs to be fixed in the cement mortar layer or concrete layer by drilling a hole in advance.
[0005] The cement mortar layer or cement layer needs to be impacted by the impact drill to drill a hole, so it is difficult to ensure the direction of the hole during the drilling process, and needs to rely on the skill of the construction master. Once the drilling is deviated, it is easy to cause the problem that the expanding bolt cannot be inserted, and the original positioning clamp point needs to be adjusted, which is time-consuming and laborious. SUMMARY
[0006] In order to solve the problems existing in the prior art, the present application provides a punching auxiliary device which can guide the horse clamp drilling operation of the pipeline within a certain length, thereby improving the hole turning precision.
[0007] The technical scheme adopted by the present application is:
[0008] A sliding type line pipe installation punching device, comprising:
[0009] A frame body standing on the ground for fixing a sliding rail;
[0010] A sliding carriage sliding on the sliding rail;
[0011] The guide has a guide channel to orient the drill inserted through the guide to move along the direction of the guide channel, and the guide is movably connected with the slide to enable the drill to adjust the spatial drilling angle relative to the ground.
[0012] Since the drilling is needed for fixing the horse shoe clamp within a certain range, the pipeline is generally arranged in a straight line to avoid the bending pipe or inclined arrangement as much as possible. The slide limiting stroke is provided by the frame structure, and the frame is only needed to be arranged in parallel with the pipeline arrangement direction to limit the reciprocating slide of the slide along the pipeline direction.
[0013] The guide has a guide channel which is a through hole structure penetrating through the guide completely or partially. The guide has a certain length to limit the movement of the drill in a fixed direction. The guide channel is generally penetrated through the longest position of the guide to reduce the volume of the guide as much as possible under the premise of better guiding effect.
[0014] Since the guide is movably connected with the slide and has a certain degree of freedom, the drill is provided with a certain range of angle adjustment space. The angle is a spatial angle, not only an angle adjustment in a single plane, but also a free rotation around a fixed point or a fixed shaft in a certain spherical region. There are various limiting methods. In order to align the drilling mark point as much as possible, the fixed point or the fixed shaft is as close as possible to the position of the drilling mark point, so that the movement range of the end of the drill is small.
[0015] It is worth noting that since the hole is mainly used to fix the horse shoe clamp structure, most of the ground or wall theoretically has a cement leveling layer, or a horizontally extending grooving bottom surface. After the frame is fixed, the guide is kept perpendicular to the length direction of the frame. On this basis, only a small range of angle adjustment is needed to achieve the best drilling angle.
[0016] It is also worth noting that the drill of the impact drill has a certain length, and the part of the head with the spiral knife groove is in parallel relationship with the inner wall of the guide channel when it rotates at high speed. Therefore, even if it rotates at high speed, it will not damage the inner wall. At the same time, since the size of the guide channel is slightly larger than the size of the drill, the gap between the drill and the inner wall of the channel is small, and the blade angle cannot be changed by swinging, so as to avoid the influence.
[0017] Further, the guide includes at least two horizontal bubbles arranged on the guide and in perpendicular directions to each other, and the spatial drilling angle is accurately adjusted by referring to the horizontal bubble.
[0018] When drilling on pipeline route, the frame is used to control the route trend to ensure that the drilled holes are along the pipeline layout direction. Since the sliding route is determined, the drilling angle only needs to be adjusted from two perpendicular directions to determine the spatial angle, and the plane formed by the two directions is perpendicular to the length direction of the frame.
[0019] The two horizontal bubbles are indicated by obvious color features. The user can first use any bubble as a reference to adjust the plane angle, and then use the other bubble as a reference to adjust the plane angle after adjusting to the middle position. When both bubbles are in the middle position, the guide is in the best drilling angle.
[0020] Further, the sliding frame is provided with a pressing member, which increases the resistance of relative movement between the guide and the sliding frame by controlling the pressing member.
[0021] After positioning the guide through the two horizontal bubbles, in order to maintain the stability of the entire guide and continuously guide the drilling of the drill bit, the guide needs to be stable during sliding or drilling. During use, the horizontal bubble can be adjusted according to real-time observation, but in order to improve stability, a larger movement damping is provided by the pressing member, so that the guide will not be deflected when no other external force is applied during drilling or sliding the sliding frame.
[0022] The so-called pressing member is essentially a movable part that can be locked or has a force amplification structure. It has two stages of release and locking, and provides sliding friction by moving the pressing member to directly adhere its end to the surface of the guide.
[0023] Further, the sliding frame is provided with a through hole, and a spherical bulging cavity is formed in the through hole;
[0024] The guide is provided with a ball pin that cooperates with the spherical bulging cavity to realize spatial rotation.
[0025] Further, the guide channel is a hole structure that penetrates the guide;
[0026] The hole structure passes through the ball center of the ball pin, and one side of the hole structure is provided on the surface of the ball pin.
[0027] Further, the guide further includes a limiting section provided on the ball pin, the limiting section is a pipe structure and its axis passes through the ball center of the ball pin;
[0028] The guide channel is a hole structure that penetrates the entire guide along the axis direction of the limiting section;
[0029] One end of the guide channel is open and provided on the end surface of the limiting section, and the other end is open and provided on the surface of the ball pin.
[0030] Further, the frame body comprises a horizontal frame and vertical frames arranged at both ends of the horizontal frame.
[0031] The bottom of the vertical frame is provided with a base which is placed on the ground and can adjust the relative position between the vertical frame.
[0032] Further, the frame body comprises two horizontal frames arranged in parallel, and a middle frame arranged in the middle of the horizontal frame.
[0033] Further, the slide rail is at least two parallel rods, which are fixed on the vertical frame through the track clamp seat arranged at both ends of the slide rail.
[0034] Further, a track support is arranged in the middle of the slide rail to provide support effect.
[0035] The beneficial effects of the present application are:
[0036] (1) The present application cooperates with the slide frame and guide through the arrangement, under the limiting effect of the guide with a certain spatial freedom, so that the cooperating drill bit can drill at a certain angle, avoiding the premise that the construction ground is not flat or other conditions are not met, and the drilling angle of the drill hole can be as uniform as possible, which is convenient for installing the impact bolt.
[0037] (2) The present application is suitable for different site conditions through the arrangement of the detachable frame structure, and according to the corresponding pipe length, the number of horizontal frames and middle frames can be increased to realize the sliding stroke of longer span, so as to assist the user to carry out stable drilling operation in the process of water and electricity transformation or other pipe arrangement. BRIEF DESCRIPTION OF DRAWINGS
[0038] Figure 1 is the overall front view of the present application;
[0039] Figure 2 is the overall axial side view of the present application;
[0040] Figure 3 is the overall side view of the present application;
[0041] Figure 4 is the front view of the slide frame and guide assembly of the present application;
[0042] Figure 5 is the axial side view of the slide frame and guide assembly of the present application;
[0043] Figure 6 is another axial side view of the bottom perspective view of the slide frame and guide assembly of the present application;
[0044] Figure 7 is the split structure schematic view of the guide and pressing part of the present application;
[0045] Figure 8 is the upper axonometric view of the guide after the guide is rotated at an angle when the carriage and the guide are assembled according to the present application;
[0046] Figure 9 is the bottom axonometric view of the guide after the guide is rotated at an angle when the carriage and the guide are assembled according to the present application.
[0047] In the figure: 1-cross frame, 2-stand, 3-base, 4-middle frame, 4.1-rail support, 5-carriage, 5.1-pressing part, 6-guide, 6.1-side plate, 6.2-ball pin, 6.3-horizontal bubble, 6.4-limiting section, 7-rail clamp seat, 8-rail, 9-drill bit. DETAILED DESCRIPTION
[0048] The present application will be further illustrated below in conjunction with the accompanying drawings and specific embodiments.
[0049] In order to make the purpose, technical solutions and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be described clearly and completely below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, rather than all the embodiments. The components of the embodiments of the present application described and shown in the accompanying drawings can be arranged and designed in various different configurations.
[0050] Therefore, the following detailed description of the embodiments of the present application provided in the accompanying drawings is not intended to limit the scope of the claimed present application, but only represents selected embodiments of the present application. All other embodiments obtained by those of ordinary skill in the art based on the embodiments in the present application without making creative efforts fall within the scope of the present application.
[0051] It should be noted that: similar reference numbers and letters represent similar items in the following drawings, therefore, once an item is defined in one drawing, it does not need to be further defined and explained in the subsequent drawings.
[0052] In the description of the present application, it should be noted that if the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and the like indicating the orientation or positional relationship are based on the orientation or positional relationship shown in the drawings, or the orientation or positional relationship when the product of the present application is usually placed, which is only for the convenience of describing the present application and simplifying the description, and is not intended to indicate or imply that the indicated device or element must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application. In addition, if the terms "first", "second" and the like appear in the description of the present application, they are only used to distinguish the description and cannot be understood as indicating or implying relative importance.
[0053] In addition, in the description of the present application, the terms "horizontal", "vertical" and the like do not mean that the components must be absolutely horizontal or vertical, but can be slightly inclined. For example, "horizontal" only means that it is more horizontal than "vertical", and does not mean that the structure must be completely horizontal, but can be slightly inclined.
[0054] In the description of the present application, it should be noted that, unless otherwise specified and limited, if the terms "arrangement", "installation", "connection", "connection" appear, they should be understood broadly, for example, they can be fixedly connected, or can be detachably connected, or integrally connected; can be mechanically connected, or can be electrically connected; can be directly connected, or can be indirectly connected through an intermediate medium; can be the communication inside two elements. For those skilled in the art, the specific meanings of the above terms in the present application can be understood according to the specific circumstances.
[0055] Embodiment 1:
[0056] In indoor decoration construction, especially in the layout of pipes on the ground, due to the need for drilling within a certain range of pipeline horse clamp fixing, the pipeline is generally arranged in a straight line, and the bending pipe or inclined arrangement is avoided as much as possible. Horse refers to being fixed on the ground by bolts and pressing the pipeline tightly to prevent it from being twisted. However, due to the need for slotting on the ground and punching according to the design, the conventional punching method may cause the problem of hole deviation on the long-distance pipeline stroke, and these problems are often ignored during decoration, resulting in inaccurate pipeline positioning, affecting subsequent construction and use.
[0057] The embodiment specifically discloses a sliding type pipe installation and punching device, which comprises: a frame body which is vertically arranged on the ground to fix a sliding rail 8; a sliding frame 5 which slides on the sliding rail 8; and a guide 6 which has a guide channel to enable a drill bit 9 inserted through the guide 6 to move in the direction of the guide channel, and the guide 6 is movably connected with the sliding frame 5 to enable the drill bit 9 to adjust a space drilling angle relative to the ground to drill a hole.
[0058] The frame body structure can provide a sliding limit of a certain stroke, and the frame body only needs to be arranged in parallel according to the pipeline layout direction, so that the sliding frame 5 can reciprocatingly slide along the pipeline direction. The guide 6 has a guide channel, which is a through hole structure that penetrates the guide 6 completely or penetrates one side of the guide 6.
[0059] The guide 6 has a certain length for limiting the drill bit 9 to move in a fixed direction. Generally, the guide channel is penetrated along the longest position of the guide 6, so as to reduce the volume of the guide 6 as much as possible under the premise of having good guiding effect. Since the guide 6 is movably connected with the sliding frame 5 and has a certain degree of freedom, the drill bit 9 is provided with a certain range of angle adjustment space. The angle is a spatial angle, not only an angle adjustment in a single plane, but a free rotation around a fixed point or a fixed shaft in a certain spherical region. There are various limiting methods. In order to align the drilling mark point as much as possible, the fixed point or the fixed shaft is as close as possible to the position of the drilling mark point, so that the movement range of the end of the drill bit 9 is small.
[0060] The guide 6 includes at least two horizontal bubbles 6.3 arranged on the guide 6 and in mutually perpendicular directions, and the spatial drilling angle is accurately adjusted by referring to the horizontal bubbles 6.3. When drilling is performed on a pipeline route, the frame is arranged to control the route trend, so as to ensure that the drilled holes are in the laying direction of the pipeline. Since the sliding route is determined, the drilling angle only needs to be adjusted from two mutually perpendicular directions to determine the spatial angle, and the plane formed by the two directions is perpendicular to the length direction of the frame. The two horizontal bubbles 6.3 are indicated by obvious color features. The user can first use any bubble as a reference to adjust the plane angle, and then use the other bubble as a reference to adjust the plane angle after adjusting it to the middle position. After the two bubbles are in the middle position, it indicates that the guide 6 is in the best drilling angle.
[0061] Embodiment 2:
[0062] The embodiment discloses a sliding type pipe installation and drilling device, which comprises a frame body, a sliding rail 8, a sliding frame 5, a guide 6, and a drill bit 9. The frame body is arranged on the ground to fix the sliding rail 8. The sliding frame 5 is arranged on the sliding rail 8. The guide 6 has a guide channel, so that the drill bit 9 inserted through the guide 6 moves in the direction of the guide channel. The guide 6 is movably connected with the sliding frame 5, so that the drill bit 9 can adjust the spatial drilling angle relative to the ground to drill holes. The sliding frame 5 is provided with a pressing member 5.1. The pressing member 5.1 is controlled to increase the resistance of relative movement between the guide 6 and the sliding frame 5.
[0063] After the guide 6 is positioned by the two horizontal bubbles 6.3, in order to keep the whole guide 6 stable and can continuously guide the drill bit 9 to perform multiple drilling operations, it is necessary to keep stable during sliding or drilling. During use, the horizontal bubbles 6.3 can be adjusted according to real-time observation. In order to improve stability, a larger movement damping is provided by the pressing member 5.1, so that the guide 6 does not deviate when the sliding frame 5 is drilled or moved without other external force.
[0064] The sliding frame 5 is provided with a through hole and a spherical expansion cavity is formed in the through hole; the guide 6 is provided with a ball pin 6.2 which cooperates with the spherical expansion cavity to realize spatial rotation.
[0065] The guide channel is a hole structure which penetrates the guide 6; the hole structure passes through the ball center of the ball pin 6.2 and one side port of the hole structure is arranged on the surface of the ball pin 6.2.
[0066] The guide 6 further comprises a limiting section 6.4 arranged on the ball pin 6.2; the limiting section 6.4 is a pipe structure and its axis passes through the ball center of the ball pin 6.2; the guide channel is a hole structure which penetrates the entire guide 6 along the axis direction of the limiting section 6.4; one end of the guide channel is arranged in the end face of the limiting section 6.4 and the other end is arranged on the surface of the ball pin 6.2.
[0067] The frame body comprises the cross frame 1 and the stand 2 arranged at both ends of the cross frame 1; the bottom of the stand 2 is provided with the base 3 which is placed on the ground and can adjust the relative position between the stand 2 and the base 3.
[0068] The frame body comprises two parallel cross frames 1 and the middle frame 4 arranged in the middle of the cross frame 1.
[0069] The slide rail 8 is at least two parallel rods which are fixed on the stand 2 through the track clamp seat 7 arranged at both ends of the slide rail 8; the track support 4.1 for providing support effect is arranged in the middle of the slide rail 8.
[0070] Embodiment 3:
[0071] When water and electricity are transformed, pipeline laying needs to be carried out on the ground or wall surface; the laying principle is to reduce the total length of pipeline laying as much as possible and reduce the use rate of elbow pipe; therefore, a longer straight line arrangement is generally adopted.
[0072] Through grooving in the cement layer or cement mortar leveling layer, the pipeline is buried in the inside; due to the longer stroke, in order to fix, the pipeline is fixed in the groove through the metal or plastic horse clamp or other clamping ring structure.
[0073] In the prior art, the percussion drill is directly used to drill holes in the ground or wall surface; however, the hole position needs to be marked when drilling and a level and other tools are used to assist drilling to avoid the deviation of the hole angle from leading to the failure of inserting the expansion bolt.
[0074] The embodiment discloses a drilling auxiliary device, in particular to a sliding type pipe installation and drilling device, as shown in the drawings. Figures 1-3 The three drawings show the structure of the entire device, including the frame body and the sliding frame 5 sliding on the frame body.
[0075] The frame consists of two parallel horizontal frames 1 with a certain length, which are fixed at both ends by vertical frames 2. To increase structural strength and improve stability, at least one central frame 4 is provided in the middle of the horizontal frames 1.
[0076] The diagram shows that the horizontal frame 1, vertical frame 2, and central frame 4 all use aluminum profiles with the same cross-sectional shape and size, which have high structural strength and are lightweight, making them suitable for the frame construction of industrial equipment.
[0077] As can be seen, the middle frame 4 is fixedly connected to the horizontal frame 1 through triangular connectors provided on one or both sides. Similarly, the vertical frame 2 is also fixedly connected to the horizontal frame 1 through triangular connectors.
[0078] Each horizontal frame 1 is equipped with a corresponding rod-shaped slide rail structure 8. The figure shows two rods with a circular cross-section, which are arranged in parallel on the horizontal frame 1 to form the slide rail structure 8. Track clamps 7 are provided on the two vertical frames 2, which are fixed by two L-shaped legs that are fastened with bolts. Track supports 4.1 are provided on the middle frame 4. Since the force direction of the slide rail 8 is the same as the length direction of the vertical frame 2, whether the equipment is fixed on the ground or the ceiling, at least one side of the rod is the main load-bearing body.
[0079] Because of its large span, the track support 4.1 on the middle frame 4 is not fixedly connected to any of the rods of the slide rail 8, but rather supports and contacts the rods. Specifically, since the main external force on the two rods constituting the slide rail 8 is in the inward compressive direction, which tends to reduce the distance between the two rods, a support is provided between the two rods to provide support without affecting the sliding of the carriage 5.
[0080] Carriage 5 Figures 4-6 As shown, it includes two parts. One side is a gantry frame structure that slides in conjunction with the slide rail 8. It has two oppositely arranged circular slots on the side near the slide rail 8, and a raised reinforcing structure in the middle. It also has an opening to facilitate the avoidance of the middle track support 4.1.
[0081] On the other side is a platform vertically connected to the gantry frame, on which a ball seat is provided, and inside the ball seat is a guide member 6. The guide member 6 is provided with a ball pin 6.2 structure that cooperates with the ball seat and has a certain degree of freedom, and also includes a limiting section 6.4 connected to the ball pin 6.2 and set at the upper end.
[0082] An opening is provided on one side of the limiting section 6.4, and the opening contains a guide channel that runs through the entire guide member 6. Figure 6 and Figure 9It can be seen that the direction of the lower opening of the guide 6 will change after the direction of the guide 6 is adjusted, but the change range is small, and the size of the ball pin 6.2 can be designed according to the specific use condition in actual use, so as to minimize the movement range of the lower end opening.
[0083] The drill bit 9 shown in the figure is only a display structure, and a conventional impact drill bit 9 with a certain length is generally used.
[0084] A pressing member 5.1 which is screwed with the sliding frame 5 is arranged outside the ball seat, and the pressing member 5.1 includes a screw handle which is matched with the screw hole on the ball seat, and at the same time, a Figure 7 It can be seen that one end of the screw handle has an enlarged end, which is in a rotating connection relationship with the screw handle. The inner side of the enlarged end is a concave curved surface which is matched with the inner wall of the ball seat. By rotating the screw handle to make it axially move, it can be completely accommodated in the inner wall of the ball seat, and in this state, it will not affect the rotation of the ball pin 6.2; it can also extend out of the inner wall of the ball seat and press tightly on the surface of the ball pin 6.2, so as to provide sliding resistance through the contact of the multiple damping blocks with large friction coefficient arranged on the surface.
[0085] Two side plates 6.1 are arranged at the opening position of the limiting section 6.4, and the length directions of the two side plates 6.1 are perpendicular to each other. A horizontal bubble 6.3 is arranged on each side plate 6.1 for assisting the horizontal keeping when the limiting member rotates. A triangular support body is arranged at the lower part of each side plate 6.1.
[0086] Usage: First, assemble the frame structure with appropriate span according to the length of the laid pipe, for example, arrange three stands 2, arrange two cross frames 1 between every two stands 2, and arrange one middle frame 4 between the cross frames 1. After assembly, arrange the base 3 on the same side of each stand 2, including arranging on the ground and the ceiling, which can be directly placed on the ground, and if drilling holes on the ceiling is needed, the stand 2 needs to be fixed through expansion bolts or other suspension mechanisms.
[0087] After the frame is fixed, the sliding rail 8 is assembled, the rail bracket 4.1 and the rail clamp seat 7 are installed first, then two rod members are inserted, and at the same time, the sliding frame 5 is sleeved on the rod members, and then the rail clamp seat 7 is fixed.
[0088] The guide 6 has been installed on the sliding frame 5, and when used, the sliding frame 5 is moved to the corresponding drilling position, and then the guide 6 is moved first by referring to one side horizontal bubble 6.3, so that the bubble in the horizontal bubble 6.3 moves to the middle, and then the other horizontal bubble 6.3 is referred to, so as to adjust the guide 6 to the best drilling angle, avoiding the influence of the unevenness of the fixed ground or wall surface on the drilling precision.
[0089] At this time, the guide 6 is fixed by twisting the pressing member 5.1, and then the drill bit 9 of the impact drill is inserted into the guide passage to perform drilling, and after the drilling is completed, the carriage 5 is moved to the next drilling position to perform drilling.
[0090] The original guide 6 and the carriage 5 and the slide rail 8 have certain sliding damping.
[0091] The present application is not limited to the above-mentioned optional embodiments, and anyone can derive other various forms of products under the inspiration of the present application. The above specific embodiments should not be understood as limiting the protection scope of the present application, and the protection scope of the present application should be defined by the claims, and the specification can be used to explain the claims.
Claims
1. A sliding conduit installation piercing device, characterized in that, The utility model relates to a kind of drilling frame structures, including: Frame body, stand on ground for fixing slide rail (8); And Slide carriage (5), slide on the slide rail (8); And Guide (6) has guide channel, so that drill bit (9) inserted through guide (6) is oriented movement along guide channel direction, guide (6) is movably connected with slide carriage (5) so that drill bit (9) can adjust the space drilling angle relative to ground to drill hole; The guide (6) includes at least two horizontal bubbles (6.3) arranged on the guide (6) and in the perpendicular direction of each other, and the space drilling angle is accurately adjusted by referring to the horizontal bubble (6.3); The frame body includes a crossbar (1) and a stand (2) arranged at both ends of the crossbar (1); The bottom of the stand (2) is provided with a base (3) placed on the ground and adjustable relative position between the stand (2); The frame body includes two parallelly arranged crossbars (1), and a middle frame (4) is arranged in the middle of the crossbar (1); According to the length of the laid pipe, the frame structure of appropriate span is assembled, a plurality of stands (2) are arranged, two crossbars (1) are arranged between every two stands (2), and a middle frame (4) is arranged between the crossbars (1); After assembly, the base (3) is arranged on the same side of each stand (2), including being arranged on the ground and the ceiling, and being directly placed on the ground, if drilling hole is carried out on the ceiling, the stand (2) is fixed by expansion bolt or other suspension mechanism; The slide rail (8) is at least two parallelly arranged rod members, and the track clamp seat (7) arranged at both ends of the slide rail (8) is fixed on the stand (2); A track support (4.1) for providing support effect is arranged in the middle of the slide rail (8), and the track support (4.1) is in contact with the rod members in a supporting manner, the main external force direction of the two rod members constituting the slide rail (8) is inward extrusion direction, and the two rod members have the trend of reducing the spacing, and the support is arranged between the two rod members to provide support force.
2. A sliding conduit mounting and punching device according to claim 1, wherein The slide carriage (5) is provided with a pressing member (5.1), and the resistance of relative movement between the guide (6) and the slide carriage (5) is increased by controlling the pressing member (5.1).
3. A sliding conduit mounting and punching device according to claim 2, wherein The slide carriage (5) is provided with a through hole, and a spherical bulging cavity is formed in the through hole; The guide (6) is provided with a ball pin (6.2) matched with the spherical bulging cavity to realize spatial rotation.
4. A sliding conduit mounting and punching apparatus according to claim 3, wherein The guide channel is a hole structure penetrating through the guide (6); The hole structure penetrates through the ball center of the ball pin (6.2), and one side port of the hole structure is arranged on the surface of the ball pin (6.2).
5. A sliding cable tray installation and punching device according to claim 3, wherein, The guide (6) further includes a limiting section (6.4) arranged on the ball pin (6.2), the limiting section (6.4) is a pipeline structure, and the axis thereof penetrates through the ball center of the ball pin (6.2); The guide channel is a hole structure penetrating through the entire guide (6) along the axis direction of the limiting section (6.4); One end opening of the guide channel is arranged on the end face of the limiting section (6.4), and the other end opening is arranged on the surface of the ball pin (6.2).
Citation Information
Patent Citations
Horizontally-stabilized automatic stress measurement drilling machine and working method thereof
CN105415094A
Punching device convenient for punching angle adjustment
CN110153470A
Board drilling machine
CN205167107U
Sliding type line pipe installation perforating device
CN212445834U