Copper pipe storage mold with stability
By fixing the copper tube with clamping bars and lifting mechanism inside the mold body, the problem of shaking and displacement of the copper tube during storage is solved, realizing the stability and convenient handling of the copper tube, and improving the overall quality and precision of the copper tube.
Patent Information
- Application Number
- CN202520217406.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-12
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2035-02-12
AI Technical Summary
Existing copper pipe storage devices are prone to shaking or shifting during placement, resulting in scratches or damage to the outer wall, affecting the overall quality and stability of the copper pipes.
The copper tube is fixed by clamping bars and lifting mechanism inside the mold body. The copper tube is fixed by the mutual proximity of the clamping bars. Combined with the lifting of the lifting plate, it is ensured that the copper tube is not easy to shake or shift during storage. Placement groove and stabilization groove are set for limiting.
It effectively prevents copper pipe from shaking and shifting, avoids scratches or damage to the outer wall, improves the overall quality and water injection stability of the copper pipe, and enhances accuracy and ease of handling.
Smart Images

Figure CN223685392U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to copper pipe storage mould technical field, concretely is a copper pipe storage mould with stability. BACKGROUND
[0002] Copper pipe is also called red copper pipe, is one kind of nonferrous metal pipe, is pressed and drawn seamless pipe, copper pipe has good electric conductivity and heat conductivity, is the main material of electronic product electrically conductive fittings and heat dissipation fittings, and becomes the first choice of modern contractor in all residential water pipeline, heating and refrigeration pipeline installation, copper pipe has poor corrosion resistance, is easy to oxidize, and has chemical reaction with some liquid substances, and is easy to micro-bend modeling.
[0003] Chinese patent discloses a kind of storage rack of capillary copper pipe, including: frame;Multiple mutually parallel horizontal plates fixed in the frame interior;Multiple mutually parallel vertical plates fixed in the frame interior, the vertical plate is perpendicular to the horizontal plate, and multiple vertical plates and multiple horizontal plates are intersected and set to form multiple storage cavities, between adjacent two horizontal plates and adjacent two vertical plates, form a storage cavity. Since multiple horizontal plates and multiple vertical plates are intersected and set to form multiple storage cavities, so capillary copper pipe can be placed directly in storage cavity, one storage cavity is placed with one specification capillary copper pipe, adjacent storage cavities are isolated by horizontal plate and vertical plate, so that capillary copper pipe is placed and does not have many capillary copper pipes stacked and extruded, to avoid the situation of capillary copper pipe extrusion deformation.
[0004] However, when the copper pipe is placed, the storage cavity formed by the horizontal plate and the vertical plate is only used to limit the copper pipe, and the copper pipe is still easy to shake or deviate inside, and the outer wall of the copper pipe may collide with the vertical plate. This collision can easily cause scratches or damage to the outer wall of the copper pipe, thereby reducing the overall quality of the copper pipe. UTILITY MODEL CONTENTS
[0005] The utility model aims at providing a copper pipe storage mould with stability to solve the problems raised in the above background.
[0006] To achieve the above-mentioned purpose, the utility model provides the following technical scheme:
[0007] A copper pipe storage mould with stability, comprising: a mould body, a plurality of mounting blocks are fixedly installed on the outer wall of the mould body, a cavity is formed in the inner part of the mould body, and a plurality of placing grooves are formed through the top surface of the mould body;
[0008] A fixing mechanism is located above the mould body, and the fixing mechanism comprises a plurality of clamping strips one and clamping strips two slidingly installed on the top surface of the mould body, and a bidirectional screw rod is arranged on one side of the clamping strip one.
[0009] The lifting mechanism is arranged inside the cavity and comprises a lifting plate slidingly installed on the inner wall of the cavity, and limit sleeves are fixedly installed on the two side faces of the lifting plate.
[0010] Preferably, a plurality of through grooves are formed in the one side face and the two side faces of the plurality of clamping strips respectively, a plurality of sliding rods are slidingly installed on the inner walls of the plurality of through grooves, fixing blocks are fixedly installed on the two ends of the sliding rods, and the bottom faces of the two fixing blocks are fixedly connected with the top face of the mold body.
[0011] Preferably, a plurality of clamping strips are fixedly installed on the one top face of the plurality of clamping strips, a plurality of clamping strips are fixedly installed on the two top faces of the plurality of clamping strips, and a first connecting plate and a second connecting plate are fixedly installed on the side faces of the first fixing frame and the second fixing frame respectively.
[0012] Preferably, a T-shaped groove is formed in the top face of the mold body, a first fixing sleeve and a second fixing sleeve are fixedly installed on the bottom faces of the first connecting plate and the second connecting plate respectively, and the side faces of the first fixing sleeve and the second fixing sleeve are slidingly connected with the inner wall of the T-shaped groove.
[0013] Preferably, a groove body is formed in the inner wall of one side of the T-shaped groove, a first motor is fixedly installed on the inner wall of one side of the groove body, the output end of the first motor is fixedly connected with one end of a bidirectional screw rod, the outer wall of the bidirectional screw rod is threadedly connected with the inner walls of the first fixing sleeve and the second fixing sleeve, and the other end of the bidirectional screw rod is rotatably connected with the inner wall of one side of the T-shaped groove through a first bearing seat.
[0014] Preferably, two limiting grooves are formed in the inner wall of the cavity, the inner walls of the two limiting grooves are slidingly connected with the outer walls of the two limit sleeves respectively, and fixing plates are fixedly installed on the inner walls of the two limiting grooves respectively.
[0015] Preferably, two threaded rods are rotatably installed on the inner walls of the upper ends of the two limiting grooves through second bearing seats respectively, the lower ends of the two threaded rods are rotatably penetrated through the top faces of the two fixing plates and extend to below the fixing plates through third bearing seats respectively, and the outer walls of the two threaded rods are threadedly connected with the inner walls of the two limit sleeves respectively.
[0016] Preferably, a plurality of stabilizing grooves are formed in the top face of the lifting plate, a second motor is fixedly installed on the side face of the mold body, a rotating shaft is fixedly installed on the output end of the second motor, the other end of the rotating shaft is rotatably penetrated through the side face of the mold body and extends into the cavity, two first bevel gears are fixedly installed on the outer wall of the rotating shaft, two second bevel gears are fixedly installed on the outer walls of the lower ends of the two threaded rods respectively, and the outer walls of the two first bevel gears are meshingly connected with the outer walls of the two second bevel gears respectively.
[0017] Compared with the prior art, the utility model has the advantages of:
[0018] This invention utilizes a motor to rotate a bidirectional lead screw, which in turn drives a first and a second fixing sleeve closer together. This, in turn, drives a first and a second connecting plate closer together. Consequently, a first and a second fixing bracket drive a first and a second clamping strip closer together, securing the copper tube in place. This prevents the copper tube from shaking or shifting, ensuring that the outer wall of the copper tube is not easily scratched or damaged. This improves the overall quality of the copper tube and makes subsequent water injection more stable and accurate.
[0019] The copper tube is limited by the placement slot and stabilizing slot, making it less likely to deviate. By turning on the second motor, the rotating shaft and the first bevel gear are driven to rotate. The first bevel gear drives the second bevel gear and the threaded rod to rotate. The rotation of the threaded rod simultaneously drives the limiting sleeve and the lifting plate to rise and fall. Thus, when the copper tube is picked up, the lifting plate raises the copper tube, making it convenient and quick to pick up the copper tube from the placement slot. Attached Figure Description
[0020] Figure 1 This is a three-dimensional structural diagram of the present invention;
[0021] Figure 2 This is an exploded three-dimensional view of the present invention.
[0022] Figure 3 This is a schematic cross-sectional view of the three-dimensional structure of the mold body of this utility model;
[0023] Figure 4 This is a three-dimensional structural diagram of the lifting plate of this utility model.
[0024] In the picture:
[0025] 1. Mold body; 101. Mounting block; 102. Cavity; 103. Placement slot;
[0026] 2. Fixing mechanism; 201. Clamping bar one; 202. Clamping bar two; 203. Slide rod; 204. Fixing block; 205. Fixing frame one; 206. Fixing frame two; 207. Connecting plate one; 208. Connecting plate two; 209. Fixing sleeve one; 210. Fixing sleeve two; 211. T-slot; 212. Slot body; 213. Motor one; 214. Bidirectional lead screw;
[0027] 3. Lifting mechanism; 301. Limiting groove; 302. Fixing plate; 303. Threaded rod; 304. Limiting sleeve; 305. Lifting plate; 306. Stabilizing groove; 307. Motor II; 308. Rotating shaft; 309. Bevel gear I; 310. Bevel gear II. Detailed Implementation
[0028] It should be noted that the embodiments in the present application and the features in the embodiments can be combined with each other without conflict. The technical solutions in the embodiments of the present application will be described in detail below with reference to the drawings and in combination with the embodiments.
[0029] In order for those skilled in the art to better understand the present application, the technical solutions in the embodiments of the present application will be described in detail below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, not all. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor should belong to the scope of protection of the present application.
[0030] As shown in Figures 1-4 The present application provides a copper pipe storage mold with stability, which comprises a mold body 1, a plurality of mounting blocks 101 are fixedly installed on the outer wall of the mold body 1, a cavity 102 is formed in the inside of the mold body 1, and a plurality of placing grooves 103 are formed through the top surface of the mold body 1.
[0031] A fixing mechanism 2 is located above the mold body 1, the fixing mechanism 2 comprises a plurality of clamping bars one 201 and clamping bars two 202 slidingly installed on the top surface of the mold body 1, and a bidirectional screw rod 214 is arranged on one side of the clamping bar one 201.
[0032] Specifically, as shown in Figures 1-2 A plurality of through grooves are formed through the side surfaces of the plurality of clamping bars one 201 and the plurality of clamping bars two 202, respectively, a sliding rod 203 is slidingly installed on the inner wall of the plurality of through grooves, fixed blocks 204 are fixedly installed at both ends of the sliding rod 203, and the bottom surfaces of the two fixed blocks 204 are fixedly connected with the top surface of the mold body 1.
[0033] In the embodiment, the clamping bar one 201 and the clamping bar two 202 are arranged to fix the copper pipe, so that the copper pipe is more stable, and the sliding rod 203 is arranged to limit the clamping bar one 201 and the clamping bar two 202.
[0034] Specifically, as shown in Figures 1-2 A plurality of fixed frames one 205 are fixedly installed on the top surfaces of the plurality of clamping bars one 201, a plurality of fixed frames two 206 are fixedly installed on the top surfaces of the plurality of clamping bars two 202, and a connecting plate one 207 and a connecting plate two 208 are fixedly installed on the side surfaces of the fixed frame one 205 and the fixed frame two 206, respectively.
[0035] In the embodiment, the connecting plate one 207 and the connecting plate two 208 are arranged to drive the fixed frame one 205 and the fixed frame two 206 to move.
[0036] Specifically, as shown in Figures 1-2As shown, the top surface of the mold body 1 is provided with a T-shaped groove 211, the bottom surface of the connecting plate one 207 and the bottom surface of the connecting plate two 208 are respectively fixedly provided with a fixed sleeve one 209 and a fixed sleeve two 210, and the side surface of the fixed sleeve one 209 and the side surface of the fixed sleeve two 210 are in sliding connection with the inner wall of the T-shaped groove 211.
[0037] In this embodiment: through the setting of the T-shaped groove 211, the fixed sleeve one 209 and the fixed sleeve two 210 are limited, so that the fixed sleeve one 209 and the fixed sleeve two 210 move more stably.
[0038] The lifting mechanism 3 is arranged in the cavity 102, and the lifting mechanism 3 comprises a lifting plate 305 slidingly arranged on the inner wall of the cavity 102, and a limiting sleeve 304 fixedly arranged on the two side surfaces of the lifting plate 305, and the lifting mechanism 3 is used for driving the copper pipe to lift.
[0039] Specifically, as shown in the figure, Figures 1-4 The inner wall of one side of the T-shaped groove 211 is provided with a groove body 212, the inner wall of one side of the groove body 212 is fixedly provided with a motor one 213, the output end of the motor one 213 is fixedly connected with one end of a bidirectional screw rod 214, the outer wall of the bidirectional screw rod 214 is in threaded connection with the inner wall of the fixed sleeve one 209 and the inner wall of the fixed sleeve two 210, and the other end of the bidirectional screw rod 214 is in rotary connection with the inner wall of one side of the T-shaped groove 211 through a first bearing seat.
[0040] In this embodiment: through the setting of the motor one 213, the bidirectional screw rod 214 is driven to rotate, and the fixed sleeve one 209 and the fixed sleeve two 210 are driven to move relatively.
[0041] Specifically, as shown in the figure, Figures 1-4 The inner wall of the cavity 102 is provided with two limiting grooves 301, the inner walls of the two limiting grooves 301 are in sliding connection with the outer walls of two limiting sleeves 304 respectively, and the inner walls of the two limiting grooves 301 are fixedly provided with fixed plates 302 respectively.
[0042] In this embodiment: through the setting of the limiting groove 301, the limiting sleeve 304 is limited, so that the limiting sleeve 304 moves more stably.
[0043] Specifically, as shown in the figure, Figures 1-4 The upper ends of the two limiting grooves 301 are rotatably provided with threaded rods 303 through second bearing seats respectively, the lower ends of the two threaded rods 303 are rotatably penetrated through the top surfaces of the two fixed plates 302 and extend below the fixed plates 302 through third bearing seats respectively, and the outer walls of the two threaded rods 303 are in threaded connection with the inner walls of the two limiting sleeves 304 respectively.
[0044] In this embodiment: through the setting of the threaded rod 303, the limiting sleeve 304 is driven to move, and the limiting sleeve 304 drives the lifting plate 305 to move.
[0045] Specifically, as shown in Figures 1-4 The top surface of the lifting plate 305 is provided with a plurality of stabilizing grooves 306, a second motor 307 is fixedly installed on the side surface of the mold body 1, a rotating shaft 308 is fixedly installed at the output end of the second motor 307, the other end of the rotating shaft 308 penetrates through the side surface of the mold body 1 and extends into the cavity 102, two bevel gears one 309 are fixedly installed on the outer wall of the rotating shaft 308, two bevel gears two 310 are fixedly installed on the outer walls of the lower ends of the two threaded rods 303, and the outer walls of the two bevel gears one 309 are respectively meshed and connected with the outer walls of the two bevel gears two 310.
[0046] In this embodiment: the second motor 307 is arranged to drive the rotating shaft 308 and the bevel gear one 309 to rotate, and the bevel gear one 309 drives the bevel gear two 310 and the threaded rod 303 to rotate.
[0047] The specific scheme is: the copper pipe is placed in the placing groove 103, the lower end of the copper pipe falls into the stabilizing groove 306, the second motor 307 is turned on to drive the rotating shaft 308 and the bevel gear one 309 to rotate, the bevel gear one 309 drives the bevel gear two 310 and the threaded rod 303 to rotate, the threaded rod 303 rotates to drive the limiting sleeve 304 and the lifting plate 305 to descend to an appropriate height, the first motor 213 is turned on to drive the bidirectional screw rod 214 to rotate, the bidirectional screw rod 214 drives the fixed sleeve one 209 and the fixed sleeve two 210 to move close to each other, so as to drive the connecting plate one 207 and the connecting plate two 208 to move close to each other, so as to drive the clamping strip one 201 and the clamping strip two 202 to move close to each other through the fixed frame one 205 and the fixed frame two 206, the clamping strip one 201 and the clamping strip two 202 fix the copper pipe, so that the copper pipe is not easy to shake and deviate, and the outer wall of the copper pipe is not easy to be scratched or damaged, thereby improving the overall quality of the copper pipe and the subsequent water injection is more stable, improving the precision, when the copper pipe is taken, the first motor 213 is reversely turned on, the clamping strip one 201 and the clamping strip two 202 no longer clamp the copper pipe, and the second motor 307 is reversely turned on to drive the lifting plate 305 and the copper pipe to rise, so that the copper pipe is conveniently taken at the placing groove 103, which is more convenient and fast.
[0048] Those skilled in the art will understand that the discussion of any of the above embodiments is merely exemplary; under the concept of the present application, the technical features of the above embodiments or different embodiments can also be combined, the steps can be implemented in any order, and there are many other changes of different aspects of the present application as described above, which are not provided in detail.
[0049] The present application is intended to cover all such alternatives, modifications and variations as fall within the broad scope of the appended claims. Accordingly, any and all such alternatives, modifications and variations should be included within the scope of the present application.
Claims
1. A copper tube storage mold having stability, comprising: The utility model relates to a mold body (1), a plurality of mounting blocks (101) are fixedly installed on the outer wall of mold body (1), a cavity (102) is set up inside mold body (1), a plurality of placing grooves (103) are set up through the top surface of mold body (1), characterized by, Fixing mechanism (2), the fixing mechanism (2) is located above mold body (1), the fixing mechanism (2) includes a plurality of clamping strip one (201) and clamping strip two (202) slidingly installed on the top surface of mold body (1), one side of clamping strip one (201) is provided with bidirectional screw rod (214), Lifting mechanism (3) is set up inside cavity (102), the lifting mechanism (3) includes lifting plate (305) slidingly installed on the inner wall of cavity (102), the both sides of lifting plate (305) are fixedly installed with limiting sleeve (304), and the lifting mechanism (3) is used to drive copper pipe lifting.
2. The copper pipe storage mold with stability according to claim 1, wherein, A plurality of clamping strip one (201) side and a plurality of clamping strip two (202) side are set up through the groove respectively, a plurality of sliding rods (203) are slidingly installed in the inner wall of groove, the both ends of sliding rod (203) are fixedly installed with fixed block (204), and the bottom surface of two fixed blocks (204) is fixedly connected with the top surface of mold body (1).
3. The copper pipe storage mold with stability according to claim 2, wherein, A plurality of clamping strip one (201) top surface is fixedly installed with fixed frame one (205), a plurality of clamping strip two (202) top surface is fixedly installed with fixed frame two (206), and the side of fixed frame one (205) and the side of fixed frame two (206) are fixedly installed with connecting plate one (207) and connecting plate two (208) respectively.
4. The copper pipe storage mold with stability according to claim 3, wherein, The top surface of mold body (1) is provided with T-shaped groove (211), the bottom surface of connecting plate one (207) and the bottom surface of connecting plate two (208) are fixedly installed with fixed sleeve one (209) and fixed sleeve two (210) respectively, and the side of fixed sleeve one (209) and the side of fixed sleeve two (210) are slidingly connected with the inner wall of T-shaped groove (211).
5. The copper pipe storage mold with stability according to claim 4, wherein, The inner wall of one side of T-shaped groove (211) is provided with groove body (212), the inner wall of one side of groove body (212) is fixedly installed with motor one (213), the output end of motor one (213) is fixedly connected with one end of bidirectional screw rod (214), the outer wall of bidirectional screw rod (214) is threadedly connected with the inner wall of fixed sleeve one (209) and the inner wall of fixed sleeve two (210), and the other end of bidirectional screw rod (214) is rotatably connected with the inner wall of one side of T-shaped groove (211) through first bearing seat.
6. The copper pipe storage mold with stability according to claim 1, wherein, The inner wall of cavity (102) is provided with two limiting grooves (301), the inner wall of two limiting grooves (301) is slidingly connected with the outer wall of two limiting sleeves (304) respectively, and the inner wall of two limiting grooves (301) is fixedly installed with fixed plate (302) respectively.
7. The copper pipe storage mold with stability according to claim 6, wherein, Two inner walls on top of the limiting grooves 301 are respectively provided with threaded rods 303 through second bearing seats, lower ends of the two threaded rods 303 are respectively penetrated through top surfaces of the two fixed plates 302 and extended to below the fixed plates 302 through third bearing seats, and outer walls of the two threaded rods 303 are respectively screwed with inner walls of two limiting sleeves 304.
8. The copper pipe storage mold with stability according to claim 7, wherein, A plurality of stable grooves 306 are formed in the top surface of the lifting plate 305, a second motor 307 is fixedly installed on the side surface of the mold body 1, a rotating shaft 308 is fixedly installed on the output end of the second motor 307, the other end of the rotating shaft 308 is rotatably penetrated through the side surface of the mold body 1 and extended into the cavity 102, two bevel gears 309 are fixedly installed on the outer wall of the rotating shaft 308, two bevel gears 310 are respectively fixedly installed on the outer walls of the lower ends of the two threaded rods 303, and outer walls of the two bevel gears 309 are respectively meshed with outer walls of the two bevel gears 310.
Citation Information
Patent Citations
Capillary copper tube storage rack
CN203818125U