Storage device for titanium three-way pipe finished products
The titanium three-way pipe storage system addresses misalignment and instability issues by using adjustable supports and positioning elements, ensuring stable and damage-free storage and handling.
Patent Information
- Application Number
- CN202422292646.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-20
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-09-20
AI Technical Summary
Titanium tee pipes are prone to misalignment and deflection during storage, resulting in surface damage, affecting stability and safety of packaging and transportation.
A storage device including a base, a support rod and a positioning member is designed, and a flexible support ring and a continuous sliding support guide rod are provided on the support rod to stabilize the position of the pipe body through the positioning member and the support member to prevent dislocation and deflection.
It improves the storage and storage stability of titanium tee pipes, prevents surface wear, and enhances transportation safety and convenience.
Smart Images

Figure CN223101429U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of titanium tee pipe storage, and in particular to a storage device for finished titanium tee pipes. Background Art
[0002] A tee is a pipe joint with three openings. Its structure usually includes one inlet and two outlets, or two inlets and one outlet. It is mainly used to change the direction of the fluid. This pipe fitting is widely used in many engineering fields such as chemical industry, construction, water conservancy, energy, etc. Figure 1 As shown, it is widely used) and Y-shaped, with both equal-diameter and different-diameter nozzles, which can be selected according to actual needs. The material can be divided into metal materials (such as carbon steel, stainless steel, alloy steel, etc.) and non-metallic materials (such as PVC, UPVC, PPR, etc.). It is widely used in water pipelines, oil pipelines and various liquid chemical material pipelines. It plays an important role in engineering fields such as water conservancy (such as water-saving irrigation, water supply and drainage), energy (such as oil, natural gas, nuclear industry), and construction. Metal pipe bodies are usually widely used in industrial fields such as chemical industry and energy, and the media transported in such fields are usually corrosive to a certain extent, and titanium metal has good corrosion resistance, so the titanium tee pipe made is widely used.
[0003] At present, when enterprises produce titanium tees, the processing quantity is large, and they usually need to be stored after processing and forming. The storage method is as shown in the attached manual. Figure 13 As shown in the figure, they are placed side by side on the ground or on a platform, and then stacked vertically. Since the processed tee pipes have the same specifications and the wall thickness of the pipe body is small, after vertical multi-layer stacking, the upper pipe body is prone to left-right misalignment with the lower pipe body, such as Figure 4 As shown, there is a problem of the side tube falling off. Figure 5 The staggered arrangement shown in the figure, that is, the upper tube body is in contact with the two lower tube bodies at the same time, can improve the stability of the upper tube body. And because the tube body is a hollow structure, the bottom edge of the upper tube body will be embedded in the upper port of the lower tube body, such as Figure 6 As shown, the upper pipe body is deflected, affecting the stability of the overall three-way pipe placement. When the three-way pipe is packaged and shipped, the mutually supporting and contacting pipe bodies will also be affected by the removal of a single pipe body, causing the overall stacking to collapse and damage the pipe body surface. Summary of the invention
[0004] In response to the above-mentioned problems, the present application aims to provide a storage device for finished titanium tee pipes, which can store a large number of pipe bodies and solve the problem that the pipe bodies are easily misplaced and deflected after stacking, causing damage to the surface of the pipe bodies by stably positioning the pipe bodies.
[0005] To achieve the above object, the technical solution adopted in this application is as follows: A storage device for finished titanium three-way pipes, characterized in that: the storage device includes a base, on which support rods for passing through the three-way pipes are arranged at long intervals, and on each of the support rods, a positioning member connected to each of the three-way pipes is arranged, and a plurality of the bases are arranged side by side, and an inter-support member is arranged between adjacent bases.
[0006] Preferably, the positioning member includes flexible support rings vertically spaced on the support rod and abutting against the inner wall of each three-way pipe.
[0007] Preferably, arc chamfers are provided on both the upper and lower sides of the flexible support ring.
[0008] Preferably, the inter-support member is a support guide rod continuously slidably passing through each base.
[0009] The beneficial effect of this application is that: the storage device can store a relatively large number of pipes through a plurality of bases, a plurality of support rods on each base, and a plurality of pipe bodies that can be sleeved on each support rod, and by positioning and stabilizing the pipe bodies, the problem that the pipe bodies are prone to misalignment and skew after stacking, resulting in damage to the surface of the pipe bodies, is solved. Description of the Drawings
[0010] Figure 1 It is a structural diagram of a titanium three-way pipe.
[0011] Figure 2 It is a side view of the current stacking of titanium three-way pipes.
[0012] Figure 3 It is a front view of the current stacking of titanium three-way pipes.
[0013] Figure 4 For Figure 3 It is a diagram showing the left and right misalignment of the upper and lower layers of the stacked pipes.
[0014] Figure 5 It is a diagram showing the current left and right misaligned placement of the upper and lower layers.
[0015] Figure 6 For Figure 5 It is a diagram showing the upper and lower layers skewed after placement.
[0016] Figure 7 It is a structural diagram of the storage device of this application.
[0017] Figure 8 It is a diagram showing a three-way pipe sleeved on the storage device of this application.
[0018] Figure 9 It is a diagram showing a three-way pipe sleeved and positioned on each support rod of this application.
[0019] Figure 10 This is a diagram showing multiple three-way pipes sleeved on a single strut of this application.
[0020] Figure 11 This is a diagram showing the sleeving and removal of the three-way pipe of this application.
[0021] Figure 12 This is a top view structural diagram of the storage device of this application.
[0022] Figure 13 This is a current diagram showing the stacking of three-way pipes.
[0023] In the figure: 5 - Titanium three-way pipe. Specific embodiments
[0024] In order to enable those of ordinary skill in the art to better understand the technical solution of this application, the technical solution of this application will be further described below in combination with the accompanying drawings and embodiments.
[0025] Refer to Figures 1 to 12 A storage device for finished titanium three-way pipes as shown. The storage device includes a base 1, and struts 2 for passing through the three-way pipes are arranged at equal intervals on the base 1. The three-way pipes are sleeved on each strut 2, and the position of the three-way pipes is restricted by the struts 2, thereby solving the problems of misalignment, skew, etc. in the current stacking of upper and lower layers, and effectively protecting the stored three-way pipes, and reducing the cost of surface damage.
[0026] After the three-way pipe is sleeved on the strut 2 again, due to the sleeving gap, the sleeved pipe body will be skewed left and right, and then contact with the pipe bodies on adjacent struts 2, resulting in wear. Therefore, to solve this problem, as Figure 7 shown, a positioning member connected to each three-way pipe is arranged on each strut 2. Through this positioning member, each three-way pipe can be relatively positioned with the strut 2, thus avoiding the problem of contact wear with the pipe bodies sleeved on adjacent struts 2 after sleeving.
[0027] To increase the storage quantity of the three-way pipes, as Figure 12 shown, multiple bases 1 are arranged side by side. Each base 1 has multiple struts 2, and multiple pipes can be stacked up and down on each strut 2. Therefore, the storage quantity of the pipes can be effectively increased through multiple bases 1. And setting the base into a single-row structure facilitates the stacking and removal of the pipes on the middle base 1 without being affected by the outer base 1. If the base 1 is set into an integral structure, when stacking and removing the pipes on the middle strut 2, it will be blocked and interfered by the outer struts 2, making the operation inconvenient.
[0028] The single-row structure base 1 has multiple support rods 2, and multiple tubes can be vertically stacked on each support rod 2. If an external force is applied, the base 1 may easily fall over as a whole, causing damage to the tubes. Therefore, in order to solve this problem, Figure 12 As shown, mutually supporting members are provided between adjacent bases 1. Adjacent bases 1 are connected by the mutually supporting members to form an integral structure, which can effectively avoid the problem of a single base 1 tipping over. At the same time, adjacent bases 1 can move relative to each other without affecting the stacking and removal of the tube body.
[0029] Specifically, Figures 7 - 10 As shown, the positioning component includes a flexible support ring 3 which is arranged at vertical intervals on the support rod 2 and abuts against the inner wall of each of the three-way pipes. The flexible support ring 3 is preferably made of rubber. The tube body is sleeved on the flexible support ring 3, and the tube body is positioned by mutual pressure force. Therefore, after the tube body is sleeved on each support rod 2, it will not be affected by contact with the tube body on the adjacent support rod 2, thereby improving the stability of the tube body after being sleeved and stacked.
[0030] In order to facilitate the stacking and removal of the tube body, Figure 11 As shown, preferably, the upper and lower sides of the flexible support ring 3 are both provided with arc chamfers 3a. The arc chamfers 3a make the upper and lower end diameters of the flexible support ring 3 smaller than the inner diameter of the tube body, so that the tube body does not contact the end face corners of the flexible support ring 3 during the sleeve installation and removal process to cause a blocking effect.
[0031] To achieve the connection support of adjacent bases 1, as Figure 12 As shown, the mutual supporting member is a support guide rod 4 that is continuously slidably penetrated in each base 1. The support guide rod 4 can realize the connection between adjacent bases 1, thereby avoiding the problem of tipping after multiple tubes are sleeved on a single base 1. At the same time, when taking and placing the tube, each base 1 is slid on the support guide rod 4 to increase the distance between the adjacent bases 1, thereby facilitating the sleeve and taking and placing operations of the tube.
[0032] The principle of the present application is: when stacking tee pipes through the storage device, each base 1 is slid along the support guide rod 4 to increase the distance between the adjacent bases 1, and then the pipe body is sleeved on each support rod 2, and the pipe body is pressed against the flexible support ring 3 for positioning. Through multiple bases 1, multiple support rods 2 on each base 1, and multiple pipe bodies sleeved on each support rod 2, the storage device can store a large number of pipe bodies, and by stabilizing the positioning of the pipe bodies, the problem that the pipe bodies are easily misplaced and deflected after being stacked, causing damage to the surface of the pipe bodies, is solved.
[0033] The basic principles, main features and advantages of the present application have been shown and described above. Without departing from the spirit and scope of the present application, the present application will also have various changes and improvements, and all these changes and improvements fall within the scope of the present application claimed.
Claims
1. A storage device for finished titanium three-way pipes, characterized in that: The storage device includes a base (1), on which there are support rods (2) arranged at a long spacing and passing through three-way pipes, and a positioning member connected to each of the three-way pipes is arranged on each of the support rods (2); a plurality of the bases (1) are arranged side by side, and an inter-support member is arranged between adjacent bases (1).
2. The storage device according to claim 1, wherein: The positioning member includes flexible support rings (3) arranged at a vertical spacing on the support rods (2) and abutted against the inner walls of each of the three-way pipes.
3. The storage device according to claim 2, wherein: Arc chamfers (3a) are arranged on both the upper and lower sides of the flexible support rings (3).
4. The storage device according to claim 3, wherein: The inter-support member is a support guide rod (4) continuously sliding through each of the bases (1).