Material series interface with high configuration and high expansibility

By designing highly configurable and expandable material series interfaces, the problem of unstable fixing of small and medium-sized materials in armored vehicles during transportation and airdrop was solved, achieving stable attachment and protection of materials and improving the safety of transportation and airdrop.

CN223687180UActive Publication Date: 2025-12-19CHONGQING TIEMA IND GRP
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Patent Information

Application Number
CN202423197469.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-24
Publication Date
2025-12-19
Estimated Expiration
2034-12-24

AI Technical Summary

Technical Problem

In the existing logistics support equipment for armored vehicles, small and medium-sized supplies are difficult to secure effectively during transportation and airdrop, resulting in significant damage and loss of supplies.

Method used

A set of highly configurable and expandable material series interfaces was designed, including material tethering pull ring assembly, tethering screw, tethering tightening nut and material tethering seat. Through the combined use of these components, the stable tethering and fixing of materials can be achieved.

Benefits of technology

It improves the stability of supplies during transportation and airdrop, prevents damage to supplies, meets the binding requirements of supplies of different shapes and sizes, and prevents platform corrosion and water ingress.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a set of material series interfaces with high configuration and high expansibility. The material series interfaces comprise a plurality of material mooring pull ring assemblies and a plurality of material mooring seats. The mooring device is mainly used for mooring and fixing materials in the transportation and air-drop process, the fixing stability of the materials is improved, and potential safety hazards caused by unfirm binding of the materials in the transportation and air-drop process are prevented. The seat body of the material mooring seat can meet the mooring and binding requirements of most binding ropes. According to the plane screw, attached seats or threaded holes which are not used in a platform and a system are blocked to prevent the situations of water inflow, corrosion and the like, and meanwhile the flat design connector does not affect transportation and placement and fixation of air-dropped goods and materials above the plane screw. According to the utility model, the fixed attachment seats or the threaded mounting holes are pre-embedded in a system or a platform in advance, and through a set of high-configuration and high-expansibility material mooring interfaces, optimization combination is carried out according to the specific characteristics of transportation and air-drop materials, so that the material mooring requirements are met.
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Description

TECHNICAL FIELD

[0001] The utility model relates to armored vehicle technical field, concretely relates to a set of high configuration, high expansibility material series interface. BACKGROUND

[0002] In the field of transport vehicles of the logistics support equipment in the field of armored vehicles in China, due to the variety of medium and small items, the size, shape, weight and other characteristics are different. In the logistics support transport vehicle, it is difficult to meet the fixing demand through the fixed form of the material series interface, especially if the material series interface of the air-drop material transport vehicle cannot meet the fixing needs of medium and small air-drop materials, the materials are prone to damage under the impact of the air-drop process, causing great loss. CONTENT OF THE UTILITY MODEL

[0003] The utility model aims at providing a set of high configuration, high expansibility material series interface, including: a plurality of material series stay pull ring assembly, a plurality of material series stay seat.

[0004] The material series stay pull ring assembly includes stay pull ring, stay screw, stay and tight nut.

[0005] The stay pull ring includes base and pull ring.

[0006] The pull ring is annular structure with opening.

[0007] The two sides of the base are fixedly connected with the two ends of the pull ring opening.

[0008] The base is provided with through hole in the middle, and the inner diameter of the through hole is matched with the screw rod of the stay screw.

[0009] The bottom of the base is provided with interface I.

[0010] The top of the stay screw is provided with interface I.

[0011] The stay and tight nut is matched with the screw rod of the stay screw, and the top of the stay and tight nut is provided with interface III matched with interface I.

[0012] After the screw rod of the stay screw extends into the through hole of the stay pull ring, the stay and tight nut is assembled.

[0013] The screw rod of the stay screw is fixed in the fixed additional seat or threaded mounting hole, and the stay and tight nut is tightened through the cooperation of interface I and interface III.

[0014] The material series stay seat is columnar structure, and the side surface is provided with annular groove.

[0015] The top surface center of the material series stay seat is provided with threaded rod, and the material series stay seat is fixed in the fixed additional seat or threaded mounting hole through the threaded rod.

[0016] Further, the series of material interfaces further comprises several flat screws.

[0017] The flat screws are fixed in fixed attachment seats or threaded mounting holes.

[0018] Further, the shanks of the flat screws and the shanks of the tethering screws are identical in diameter.

[0019] Further, the shanks of the flat screws and the shanks of the tethering screws are identical in thread.

[0020] Further, the interface I is an internal hexagonal interface.

[0021] Further, the tethering pull ring can be rotated in a 360° direction after the material tethering pull ring assembly is completely assembled.

[0022] Further, the shanks of the tethering screws and the threaded rods of the material tethering seats are identical in diameter.

[0023] Further, the shanks of the tethering screws and the threaded rods of the material tethering seats are identical in thread.

[0024] The technical effect of the utility model is self-evident, and the utility model is mainly used for the tethering and fixing of materials during transportation and air drop, improves the fixing stability of materials, and prevents safety hazards caused by insecure binding during transportation and air drop.

[0025] The seat body of the material tethering seat can meet the tethering and binding requirements of most binding ropes, the flat screw seals the unused attachment seats or threaded holes in the platform and system to prevent water ingress and corrosion, and the flat design interface does not affect the placement and fixing of the materials above the platform during transportation and air drop.

[0026] The utility model embeds the fixed attachment seats or threaded mounting holes in advance on the system or platform, optimizes the combination according to the specific characteristics of the materials during transportation and air drop, and meets the tethering requirements of the materials through a set of high-configuration and high-expandability material tethering interface. BRIEF DESCRIPTION OF DRAWINGS

[0027] Figure 1 It is a diversified material series interface combination diagram of a transportation platform I;

[0028] Figure 2 It is a diversified material series interface combination diagram of a transportation platform II;

[0029] Figure 3 It is a whole structure schematic view of a material tethering pull ring assembly;

[0030] Figure 4A schematic view of a material retention ring assembly;

[0031] Figure 5 A schematic view of a material retention seat;

[0032] Figure 6 A schematic view of a flat screw;

[0033] Figure 7 A rectangular material binding diagram of a platform diversified material series interface;

[0034] Figure 8 A spherical material binding diagram of a platform diversified material series interface;

[0035] Figure 9 A tubular material binding diagram of a platform diversified material series interface;

[0036] In the figure: material retention ring assembly 1, retention ring 2, base 201, ring 202, interface I 203, retention screw 3, interface II 301, retention and tightening nut 4, interface III 401, material retention seat 5, flat screw 6. DETAILED DESCRIPTION

[0037] The utility model will be further described below in combination with examples, but should not be understood as the above-mentioned subject range of the utility model is limited to the following examples. According to the ordinary technical knowledge and conventional means in the art, various replacements and changes are made without departing from the above-mentioned technical thought of the utility model, and all should be included in the protection scope of the utility model.

[0038] Example 1:

[0039] Referring to Figures 1 to 9 A set of high-configuration and high-expansion material series interface includes: a plurality of material retention ring assemblies 1, a plurality of material retention seats 5.

[0040] The material retention ring assembly 1 includes a retention ring 2, a retention screw 3 and a retention and tightening nut 4.

[0041] The retention ring 2 includes a base 201 and a ring 202.

[0042] The ring 202 is an annular structure with an opening.

[0043] The two sides of the base 201 are fixedly connected with the two ends of the opening of the ring 202.

[0044] The base 201 is provided with a through hole in the middle, and the inner diameter of the through hole is matched with the screw rod of the retention screw 3.

[0045] The bottom of the base 201 is provided with an interface I 203.

[0046] The top of the captive screw 3 is provided with an interface I301.

[0047] The captive nut 4 is adapted to the screw rod of the captive screw 3, and the top of the captive nut 4 is provided with an interface III401 adapted to the interface I203.

[0048] After the screw rod of the captive screw 3 extends into the through hole of the captive pull ring 2, the captive nut 4 is assembled.

[0049] The screw rod of the captive screw 3 is fixed in a fixed pedestal or a threaded mounting hole, and the captive nut 4 is tightened through the cooperation of the interface I203 and the interface III401.

[0050] The material captive seat 5 is a columnar structure, and the side surface is provided with an annular groove.

[0051] The top surface of the material captive seat 5 is provided with a threaded rod, and the material captive seat 5 is fixed in a fixed pedestal or a threaded mounting hole through the threaded rod.

[0052] Embodiment 2:

[0053] A set of high-configuration and high-expansion material series interfaces, the main technical content is seen in embodiment 1, further, the material series interface further includes a plurality of flat screws 6.

[0054] The flat screw 6 is fixed in a fixed pedestal or a threaded mounting hole.

[0055] Embodiment 3:

[0056] A set of high-configuration and high-expansion material series interfaces, the main technical content is seen in any one of embodiments 1 to 2, further, the screw rod of the flat screw 6 and the screw rod of the captive screw 3 are consistent in diameter.

[0057] Embodiment 4:

[0058] A set of high-configuration and high-expansion material series interfaces, the main technical content is seen in any one of embodiments 1 to 3, further, the screw rod of the flat screw 6 and the screw rod of the captive screw 3 are consistent in thread.

[0059] Embodiment 5:

[0060] A set of high-configuration and high-expansion material series interfaces, the main technical content is seen in any one of embodiments 1 to 4, further, the interface I301 is an internal hexagonal interface.

[0061] Embodiment 6:

[0062] A set of high configurability, high expansibility of material series interface, the main technical content is seen in any one of embodiments 1 to 5, further, the tethering pull ring 2 can be rotated in 360° direction after the completion of assembly of the material tethering pull ring assembly 1.

[0063] Embodiment 7:

[0064] A set of high configurability, high expansibility of material series interface, the main technical content is seen in any one of embodiments 1 to 6, further, the diameter of the screw rod of the tethering screw 3 and the threaded rod of the material tethering seat 5 is consistent.

[0065] Embodiment 8:

[0066] A set of high configurability, high expansibility of material series interface, the main technical content is seen in any one of embodiments 1 to 7, further, the thread of the screw rod of the tethering screw 3 and the threaded rod of the material tethering seat 5 is consistent.

[0067] Embodiment 9:

[0068] See Figures 1 to 9 A set of high configurability, high expansibility of material series interface, comprising: a plurality of material tethering pull ring assemblies 1, a plurality of material tethering seats 5.

[0069] The material tethering pull ring assembly 1 comprises a tethering pull ring 2, a tethering screw 3, and a tethering and tightening nut 4.

[0070] The tethering pull ring 2 comprises a base 201 and a pull ring 202.

[0071] The pull ring 202 is an annular structure with an opening.

[0072] The two sides of the base 201 are fixedly connected with the two ends of the opening of the pull ring 202.

[0073] The base 201 is provided with a through hole in the middle, and the inner diameter of the through hole is matched with the screw rod of the tethering screw 3.

[0074] The bottom of the base 201 is provided with an interface I203.

[0075] The top of the tethering screw 3 is provided with an interface I301.

[0076] The tethering and tightening nut 4 is matched with the screw rod of the tethering screw 3, and the top of the tethering and tightening nut 4 is provided with an interface III401 matched with the interface I203.

[0077] After the screw rod of the tethering screw 3 extends into the through hole of the tethering pull ring 2, the tethering and tightening nut 4 is assembled.

[0078] The screw rod of the captive screw 3 is fixed in a fixed seat or a threaded mounting hole, and is tightened by the cooperation of the interface I203 and the interface III401.

[0079] The material captive seat 5 is a columnar structure, and is provided with an annular groove on the side surface.

[0080] The seat body of the material captive seat 5 can meet the requirements of most binding rope captive.

[0081] The top surface of the material captive seat 5 is provided with a threaded rod, and the material captive seat 5 is fixed in a fixed seat or a threaded mounting hole through the threaded rod.

[0082] In the use process of the material captive pull ring assembly 1, after the captive screw 3 is installed to the position of the captive nut 4 through the seat or the threaded hole, the captive pull ring 2 is cooperated with the captive nut 4, and the captive function of the captive nut 4 is realized by rotating the captive pull ring 2, so that the captive pull ring 2 of the material captive pull ring assembly 1 can still rotate in any direction at 360° after the seat or the threaded hole is fastened, and the requirements of captive in each direction are met.

[0083] The rectangular material is bound by using the platform diversified material series interface, as shown in Figure 7 One end of the rope is tied to the material captive seat 5 installed on one side of the platform, and the other end of the rope is tied to the material captive seat 5 installed on the other side of the platform after crossing the goods.

[0084] The spherical material is bound by using the platform diversified material series interface, as shown in Figure 8 A plurality of material captive pull ring assemblies 1 are installed on the platform, two ends of two ropes are tied to the material captive pull ring assemblies 1 on the two sides of the spherical material, one end of four ropes is tied to the spherical material, the other end of the four ropes is tied to the material captive pull ring assembly 1, and two ends of another rope are tied to the material captive pull ring assemblies 1 on the two sides of the rectangular box.

[0085] The tubular material is bound by using the platform diversified material series interface, as shown in Figure 9 The tubular material is installed in the container, a plurality of material captive pull ring assemblies 1 and material captive seats 5 are installed on the platform, one end of the rope is tied to the container, and the other end of the rope is tied to the material captive pull ring assembly 1 or the material captive seat 5.

[0086] Embodiment 10:

[0087] A set of high-configuration and high-expansion material series interface, the main technical content is shown in embodiment 9, further, the material series interface further comprises a plurality of plane screws 6.

[0088] The plane screw 6 is fixed in a fixed seat or a threaded mounting hole.

[0089] The flat screw 6 plugs the platform and the attachment or threaded hole not used in the system to prevent water, corrosion and other conditions, while the flat interface design does not affect the transportation, placement and fixation of air-dropped materials above it.

[0090] Embodiment 11:

[0091] A set of high-configuration and high-expansion material series interfaces, the main technical content of which is any one of embodiments 9 to 10, further, the diameter of the screw rod of the flat screw 6 and the screw rod of the tethering screw 3 is consistent.

[0092] Embodiment 12:

[0093] A set of high-configuration and high-expansion material series interfaces, the main technical content of which is any one of embodiments 9 to 11, further, the thread of the screw rod of the flat screw 6 and the screw rod of the tethering screw 3 is consistent.

[0094] Embodiment 13:

[0095] A set of high-configuration and high-expansion material series interfaces, the main technical content of which is any one of embodiments 9 to 12, further, the interface I301 is an internal hexagonal interface.

[0096] Embodiment 14:

[0097] A set of high-configuration and high-expansion material series interfaces, the main technical content of which is any one of embodiments 9 to 13, further, the tethering pull ring 2 can rotate in 360° direction after the completion of assembly of the material tethering pull ring assembly 1.

[0098] Embodiment 15:

[0099] A set of high-configuration and high-expansion material series interfaces, the main technical content of which is any one of embodiments 9 to 14, further, the diameter of the screw rod of the tethering screw 3 and the threaded rod of the material tethering seat 5 is consistent.

[0100] Embodiment 16:

[0101] A set of high-configuration and high-expansion material series interfaces, the main technical content of which is any one of embodiments 9 to 15, further, the thread of the screw rod of the tethering screw 3 and the threaded rod of the material tethering seat 5 is consistent.

[0102] Embodiment 17:

[0103] See Figures 1 to 9 A set of high-configuration and high-expansion material series interfaces, the main technical content of which includes:

[0104] The material tethering pull ring assembly 1, the material tethering seat 5, and the flat screw 6 form a set of series ground military material and air-drop military material tethering interfaces. The material tethering pull ring assembly 1, the material tethering seat 5, and the flat screw 6 are fixed in a set system, and the threads are consistent, facilitating diversified combination and installation, and realizing various medium and small item transportation and air-drop requirements.

[0105] The material tethering pull ring assembly 1 comprises a tethering pull ring 2, a tethering screw 3, and a tethering and tightening nut 4. The top of the tethering screw 3 is an internal hexagonal interface, and the screw rod of the tethering screw 3 is a threaded structure. The inner diameter of the tethering pull ring 2 is greater than the screw rod of the tethering screw 3, and the lower part is a mounting interface matched with the tethering and tightening nut 4. The inner diameter of the tethering and tightening nut 4 is a thread matched with the screw rod of the tethering screw 3, and the upper part is a mounting interface matched with the tethering pull ring 2. During use of the material tethering pull ring assembly 1, the tethering screw 3 is mounted to the position of the tethering and tightening nut 4 through an attached seat or a threaded hole, and then the tethering pull ring 2 is matched with the tethering and tightening nut 4, and the tightening function of the tethering and tightening nut 4 is realized by rotating the tethering pull ring 2, so that the tethering pull ring 2 of the material tethering pull ring assembly 1 can still rotate in any direction at 360° after completing the fastening of the attached seat or the threaded hole, satisfying the tethering requirements in various directions.

[0106] The threaded rod diameter of the lower part of the material tethering seat 5 is consistent with that of the material tethering pull ring assembly, and the seat body of the material tethering seat 5 can satisfy most of the bundling rope tethering and bundling requirements.

[0107] The threaded rod diameter of the lower part of the flat screw 6 is consistent with that of the material tethering pull ring assembly 1 and the material tethering seat 5. The flat screw 6 is used to plug the attached seats or threaded holes not used in the platform and system, to prevent water from entering and corrosion from occurring. Meanwhile, the flat design interface of the flat screw 6 does not affect the placement and fixation of the transported and air-dropped materials above it.

Claims

1. A set of high-configurability, high-expandability material series interfaces, characterized in that, The utility model relates to a material series interface, including: A plurality of material retention ring assemblies (1), a plurality of material retention seats (5); The material retention ring assembly (1) includes a retention ring (2), a retention screw (3) and a retention and tightening nut (4); The retention ring (2) includes a base (201) and a ring (202); The ring (202) is a ring structure with an opening; The base (201) is fixedly connected to both ends of the ring (202) opening; The base (201) is provided with a through hole in the middle, and the inner diameter of the through hole is matched with the screw rod of the retention screw (3); The bottom of the base (201) is provided with an interface I (203); The top of the retention screw (3) is provided with an interface II (301); The retention and tightening nut (4) is matched with the screw rod of the retention screw (3), and the top of the retention and tightening nut (4) is provided with an interface III (401) matched with the interface I (203); After the screw rod of the retention screw (3) extends into the through hole of the retention ring (2), the retention and tightening nut (4) is assembled; The screw rod of the retention screw (3) is fixed in a fixed pedestal or a threaded mounting hole, and the retention and tightening nut (4) is tightened through the cooperation of the interface I (203) and the interface III (401); The material retention seat (5) is a columnar structure, and the side surface is provided with an annular groove; The top surface of the material retention seat (5) is provided with a threaded rod, and the material retention seat (5) is fixed in a fixed pedestal or a threaded mounting hole through the threaded rod.

2. The set of high-configurability, high-expandability material series interfaces of claim 1, wherein, The material series interface further includes a plurality of flat screws (6); The flat screw (6) is fixed in a fixed pedestal or a threaded mounting hole.

3. The set of high-configurability, high-expandability commodity series interfaces of claim 2, wherein, The screw rod of the flat screw (6) and the screw rod of the retention screw (3) are consistent in diameter.

4. The set of high-configurability, high-expandability commodity series interfaces of claim 2, wherein, The screw rod of the flat screw (6) and the screw rod of the retention screw (3) are consistent in thread.

5. The set of high-configurability, high-expandability commodity series interfaces of claim 1, wherein, The interface II (301) is an internal hexagonal interface.

6. The set of high-configurability, high-expandability commodity series interfaces of claim 1, wherein, The retention ring (2) can rotate in 360 degrees after the material retention ring assembly (1) is assembled.

7. The set of high-configurability, high-expandability commodity series interfaces of claim 1, wherein, The screw rod of the retention screw (3) and the threaded rod of the material retention seat (5) are consistent in diameter.

8. The set of high-configurability, high-expandability commodity series interfaces of claim 1, wherein, The screw rod of the retention screw (3) and the threaded rod of the material retention seat (5) are consistent in thread.