Supporting connecting block of radiating pipe
By designing the support connecting block of the heat sink pipe, the combination of the pipe support block and the positioning and support mechanism is adopted, the problem of the heat sink pipe not being tightly fixed and lack of shock absorption is solved, stable connection and shock absorption protection is achieved, and the reliability of the use of the radiator is improved.
Patent Information
- Application Number
- CN202421989469.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-16
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2034-08-16
AI Technical Summary
The existing heat dissipation pipes and support connecting blocks are not tightly fixed, which can easily lead to fall off and lack effective shock absorption protection, which can easily be damaged by extrusion of external hard objects.
A support connecting block of a heat dissipation pipe is designed, including a tube support block, a positioning mechanism and a support mechanism. The positioning mechanism composed of an outer through hole, an inner groove, a fastener, a U-shaped rubber pad, a slot, a convex ball block, etc. is achieved tight fixation, and the combination of a U-shaped rubber pad and a barrier rubber strip is provided to provide shock absorption protection.
The radiator pipe is stable, and the heat sink is prevented from falling off, and the external hard objects are squeezed and damaged through the shock absorber, improving the reliability and durability of the radiator.
Smart Images

Figure CN223122026U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of radiators, in particular to a support connection block for a heat dissipation pipe. Background Art
[0002] A radiator is an essential component of an automotive cooling system. The radiator in its engine water cooling system is usually in a square box shape and consists of a water inlet chamber, a water outlet chamber, a cooling fin, and heat dissipation pipes with a flat tubular shape. During assembly, the cooling fins and the heat dissipation pipes are arranged alternately one by one, and at the same time, the connection and fixation of the two ends of the cooling fins and the heat dissipation pipes are realized by fixing plates arranged at both ends thereof.
[0003] Most of the existing heat dissipation pipes are directly located on the upper part of the support connection block. Sometimes, they cannot be tightly connected and fixed to the heat dissipation pipes during fixation, which easily causes the radiator and the support connection block to fall off. Therefore, unnecessary problems will occur during use. In view of the above problems, it is necessary to improve the existing radiator support structure. Summary of the Invention
[0004] The purpose of the utility model is to provide a support connection block for a heat dissipation pipe to solve the above-mentioned defects in the prior art.
[0005] The support connection block for a heat dissipation pipe includes a pipe support block. Outer through holes are symmetrically penetrated on the outer side of the pipe support block. A positioning mechanism is arranged on the outer side of the pipe support block. The positioning mechanism wraps the outer side of the heat dissipation pipe and locks the pipe support block and the wall to facilitate the positioning of the heat dissipation pipe. A support mechanism is arranged directly above the pipe support block. The support mechanism provides shock absorption protection for the other side of the heat dissipation pipe to prevent hard objects from directly squeezing the heat dissipation pipe and causing damage to the heat dissipation pipe.
[0006] Preferably, the positioning mechanism includes an inner groove, a fastener, a U-shaped rubber pad, a card slot, and a convex spherical block. The inner groove is opened at the bottom end of the pipe support block. The fastener is penetrated and connected to the outside of the inner groove. A U-shaped rubber pad is arranged directly above the pipe support block. A card slot is opened on one side of the U-shaped rubber pad. A convex spherical block is arranged on the outside of the U-shaped rubber pad.
[0007] Preferably, the U-shaped rubber pad is connected by the card slot opened at one end and the convex spherical block at the other end of the U-shaped rubber pad.
[0008] Preferably, the support mechanism includes a U-shaped rubber pad, a barrier rubber strip, stress through holes, fastening holes, and a transverse rubber strip. A transverse rubber strip is arranged directly above the U-shaped rubber pad. A barrier rubber strip is arranged directly above the transverse rubber strip. Stress through holes are symmetrically penetrated on the outside of the barrier rubber strip. A fastening hole is penetrated at the top end of the barrier rubber strip.
[0009] Preferably, the U-shaped rubber pad is thermally press-fitted and connected to the barrier rubber strip through a transverse rubber strip provided at the top end.
[0010] Preferably, a flat tube through-hole is formed in the middle of the U-shaped rubber pad.
[0011] Compared with the prior art, the utility model has the following advantages:
[0012] 1. By pulling the U-shaped rubber pad, the card slot provided at one end of the U-shaped rubber pad comes into contact with the convex spherical block provided at one end of the U-shaped rubber pad, which is convenient for the card slot connection of the flat pipe fittings. At the same time, the setting of the elastic protrusions also makes the positioning and clamping of the U-shaped rubber pad more stable, making the connection between the flat pipe and the U-shaped rubber pad tighter and not easily coming off.
[0013] 2. Through the barrier rubber strip provided on the outside, the side of the pipe support block is buffered to prevent hard objects in the outside world from directly contacting the square pipe during the use of the radiator, thereby avoiding the deformation of the heat dissipation square pipe caused by extrusion. The stress through-hole increases the structural strength of the surface of the barrier rubber strip, and the pipe support block positions the pipe fittings and the heat dissipation belt through the flat pipe through-hole and the outer through-hole. Description of the Drawings
[0014] Figure 1 It is a front view structural diagram of the pipe support block of the utility model.
[0015] Figure 2 It is an overall three-dimensional structural diagram of the utility model.
[0016] Figure 3 It is a top view structural diagram of the pipe support block of the utility model.
[0017] Figure 4 It is a side view structural diagram of the pipe support block of the utility model.
[0018] Among them:
[0019] 1. Pipe support block; 2. Outer through-hole; 3. Inner groove; 4. Fastener; 5. Positioning mechanism; 6. U-shaped rubber pad; 7. Card slot; 8. Convex spherical block; 9. Support mechanism; 10. Barrier rubber strip; 11. Stress through-hole; 12. Fastening hole; 13. Transverse rubber strip; 14. Flat pipe through-hole. Detailed Embodiment
[0020] In order to make the technical means, creative features, achieved purposes and effects of the utility model easy to understand, the following combines specific
[0021] embodiment modes to further elaborate the utility model.
[0022] Such as Figures 1 to 4As shown, the support connection block of the heat dissipation pipe includes a pipe support block 1. Through holes 2 are symmetrically and penetratingly opened on the outer side of the pipe support block 1. A positioning mechanism 5 is arranged on the outer side of the pipe support block 1. The positioning mechanism 5 wraps the outer side of the heat dissipation pipe and locks the pipe support block 1 and the wall, facilitating the positioning of the heat dissipation pipe. A support mechanism 9 is arranged directly above the pipe support block 1. The support mechanism 9 provides shock absorption protection for the other side of the heat dissipation pipe, preventing hard objects from directly squeezing the heat dissipation pipe and causing damage to the heat dissipation pipe.
[0023] In this embodiment, the positioning mechanism 5 includes an inner groove 3, a fastener 4, a U-shaped rubber pad 6, a card slot 7, and a convex ball block 8. The inner groove 3 is opened at the bottom end of the pipe support block 1. The outer side of the inner groove 3 is connected through the fastener 4. A U-shaped rubber pad 6 is arranged directly above the pipe support block 1. A card slot 7 is opened on one side of the U-shaped rubber pad 6. A convex ball block 8 is arranged on the outer side of the U-shaped rubber pad 6. According to the requirements of the disassembly and replacement of the square pipe, one side of the U-shaped rubber pad 6 is opened and closed.
[0024] In this embodiment, the U-shaped rubber pad 6 is connected to the convex ball block 8 at the other end through the card slot 7 opened at one end. The square pipe is wrapped and positioned through the card slot 7 opened on the outer side of the U-shaped rubber pad 6.
[0025] In this embodiment, the support mechanism 9 includes a U-shaped rubber pad 6, a barrier rubber strip 10, stress through holes 11, fastening holes 12, and a transverse rubber strip 13. A transverse rubber strip 13 is arranged directly above the U-shaped rubber pad 6. A barrier rubber strip 10 is arranged directly above the transverse rubber strip 13. Stress through holes 11 are symmetrically and penetratingly opened on the outer side of the barrier rubber strip 10. A fastening hole 12 is penetratingly opened at the top end of the barrier rubber strip 10. The contact force on one side of the pipe is increased through the barrier rubber strip 10, preventing the square pipe from deforming under external force extrusion.
[0026] In this embodiment, the U-shaped rubber pad 6 is thermally press-fitted and connected to the barrier rubber strip 10 through the transverse rubber strip 13 arranged at the top end. The bottom ends of the transverse rubber strip 13 and the barrier rubber strip 10 are connected to improve the convenience of the assembly and positioning of the barrier rubber strip 10.
[0027] In this embodiment, a flat pipe through hole 14 is opened in the middle of the U-shaped rubber pad 6. The outer side of the heat dissipation pipe is wrapped through the flat pipe through hole 14, and the outer side of the pipe fitting is positioned through the U-shaped rubber pad 6.
[0028] When this support connection block of the heat dissipation pipe is actually applied, it includes the following working contents:
[0029] Step 1: The operator first inserts the heat dissipation belts into the outside of the symmetrically arranged outer through holes 2 in sequence, wraps the outside of the heat dissipation belts with the pipe support block 1, then contacts one side of the pipe support block 1 with the equipment or the vehicle chassis, and sequentially penetrates the vehicle chassis and the inner groove 3 with the fastener 4 to lock the pipe support block 1 and the vehicle, and wraps the two groups of heat dissipation belts with the pipe support block 1;
[0030] Step 2: When it is necessary to wrap the square pipe, the operator can pull the U-shaped rubber pad 6, place the square pipe into the inside of the flat pipe through hole 14 at the notch opened on one side of the U-shaped rubber pad 6, and make the convex ball block 8 provided at one end of the U-shaped rubber pad 6 contact the card slot 7 provided at the other end of the U-shaped rubber pad 6 to complete the notch snap-fit positioning of the U-shaped rubber pad 6, thereby completing the connection between the square pipe and the pipe support block 1.
[0031] Therefore, the above-disclosed implementation schemes are illustrative in all aspects and not exclusive. All changes within the scope of the present invention or equivalent to the present invention are encompassed by the present invention.
Claims
1. Support connection block of heat dissipation pipe, characterized in that: It includes a pipe support block (1). Outer through holes (2) are symmetrically and penetratingly formed on the outer side of the pipe support block (1). A positioning mechanism (5) is arranged on the outer side of the pipe support block (1). The positioning mechanism (5) wraps the outer side of the heat dissipation pipe and locks the pipe support block (1) with the wall, facilitating the positioning of the heat dissipation pipe. A support mechanism (9) is arranged directly above the pipe support block (1). The support mechanism (9) provides shock absorption protection for the other side of the heat dissipation pipe, preventing hard objects in the external environment from directly squeezing the heat dissipation pipe and causing damage to the heat dissipation pipe.
2. The support connection block of the heat dissipation pipe according to claim 1, wherein: The positioning mechanism (5) includes an inner groove (3), a fastener (4), a U-shaped rubber pad (6), a card slot (7) and a convex spherical block (8). The inner groove (3) is formed at the bottom end of the pipe support block (1). The outer side of the inner groove (3) is penetratingly connected with the fastener (4). A U-shaped rubber pad (6) is arranged directly above the pipe support block (1). A card slot (7) is formed on one side of the U-shaped rubber pad (6). A convex spherical block (8) is arranged on the outer side of the U-shaped rubber pad (6).
3. The support connection block of the heat dissipation pipe according to claim 2, characterized in that: The U-shaped rubber pad (6) is connected to the convex spherical block (8) at the other end of the U-shaped rubber pad (6) through the card slot (7) formed at one end.
4. The support connection block of the heat dissipation pipe according to claim 1, characterized in that: The support mechanism (9) includes a U-shaped rubber pad (6), a barrier rubber strip (10), a stress through hole (11), a fastening hole (12) and a transverse rubber strip (13). A transverse rubber strip (13) is arranged directly above the U-shaped rubber pad (6). A barrier rubber strip (10) is arranged directly above the transverse rubber strip (13). Stress through holes (11) are symmetrically and penetratingly formed on the outer side of the barrier rubber strip (10). A fastening hole (12) is formed at the top end of the barrier rubber strip (10).
5. The support connection block of the heat dissipation pipe according to claim 4, characterized in that: The U-shaped rubber pad (6) is thermally press-fitted and connected to the barrier rubber strip (10) through the transverse rubber strip (13) arranged at the top end.
6. The support connection block of the heat dissipation pipe according to claim 4, characterized in that: A flat pipe through hole (14) is formed in the middle of the U-shaped rubber pad (6).