A dynamic three-dimensional display type dazzling jewelry
Through the combined design of elastic clamping parts of the front and rear covers and fixed protrusions, cages, pendants, toggles and resetting parts, the problems of traditional jewelry processing damage and insufficient display effects are solved, and stable installation and dynamic dazzling effects are achieved.
Patent Information
- Application Number
- CN202111604108.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-12-25
- Publication Date
- 2025-08-08
- Estimated Expiration
- 2041-12-25
AI Technical Summary
Traditional jewelry is prone to damage during the processing of reflected light from multiple angles, and is difficult to process and costly. The existing jewelry pendants lack dynamic display effects.
The front cover and the rear cover are fixedly connected by elastic clamping parts, combining the design of fixed protrusions, cages, pendants, toggles and reset parts to realize the movable limits and dynamic display of the gemstones.
It realizes stable installation and convenient maintenance of gemstones, enhances the dynamic and dazzling effect of jewelry, and reduces processing difficulty and cost.
Smart Images

Figure CN114081255B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of jewelry, and in particular to a dynamic three-dimensional display type dazzling jewelry. Background Art
[0002] Traditional jewelry pendants are essentially solid objects, serving only a decorative purpose. For decorative purposes, they are worn on the human body or other objects. Most jewelry moves with the wearer, and because the jewelry is relatively small, existing techniques employ multi-faceted, three-dimensional reflective designs to achieve a flashing display from all angles. This requires meticulous processing and polishing of the core components to achieve this.
[0003] During the above process, polishing and processing the core components of jewelry requires not only precise equipment but also the superb skills of the jewelry processor. This will greatly increase the processing technology and cost considerations. In addition, the jewelry itself is of high value. When cutting the surface of the jewelry, if there is an error in the processing, and the more faces to be processed, the higher the technical difficulty, it is easy to cause the entire jewelry to be scrapped. Summary of the Invention
[0004] In view of the technical problem that existing jewelry is easily damaged due to repeated polishing in order to increase the multi-angle reflection of light, the present invention proposes a dynamic three-dimensional display type dazzling jewelry.
[0005] The present invention provides a dynamic three-dimensional display type dazzling jewelry, comprising a front cover and a back cover for mounting the jewels, wherein the front cover and the back cover are fixedly connected into one body by an elastic clip;
[0006] A through hole for mounting gemstones is provided at the axis of the front cover, and a fixing protrusion is provided at the edge of the through hole near the outer end surface to prevent the gemstones from leaking out. The fixing protrusion is driven and ejected by the curve when the elastic clamping piece slides toward the outer end along the axis of the front cover.
[0007] The inner wall of the through hole located on the back end surface of the front cover is provided with a retainer to prevent the gems from leaking out, and the retainer is screwed and clamped after the gems are placed in the through hole;
[0008] The top inner wall of the center line of the back cover is rotatably connected with a pendant, the surface of the pendant is also provided with a toggle piece for toggling the gem, and the inner bottom wall of the back cover is also provided with a reset piece for resetting the pendant.
[0009] Preferably, the elastic clamping member includes a clamping groove formed on the inner end surface of the front cover, the inner top wall of the clamping groove extends to the outer surface of the front cover, and the inner bottom wall of the clamping groove is provided with an arc-shaped groove;
[0010] An L-shaped block is slidably inserted into the inner wall of the clamping groove. The front end of the L-shaped block is inserted from the outer end of the clamping groove and emerges from the top of the inner end thereof to be flush with the outer surface of the front cover.
[0011] Through the above technical solution, the front end of the L-shaped block is inserted from the outer end of the snap-fit groove, and when it reaches the inner end of the snap-fit groove, the inner end top of the L-shaped block elastically snaps in to achieve a fixed connection between the front cover and the rear cover.
[0012] Preferably, the inner walls of the multiple arc-shaped grooves are distributed in a ring-shaped row with the axis of the front cover as the center line, and the fixed protrusion is composed of three arc-shaped clamping plates. The surface of the arc-shaped clamping plate is fixedly connected to the lower surface of the L-shaped block through an arc-shaped reinforcement rib. The L-shaped block drives the arc-shaped reinforcement rib to slide and plug into the inner wall of the arc-shaped groove, and then one end of the arc-shaped reinforcement rib slides out from the outer end of the arc-shaped groove and approaches the center line of the front cover.
[0013] Through the above technical solution, the arc-shaped clamping plate is driven by the L-shaped block to be inserted into the arc-shaped groove and then extended to form an arc three-dimensional shape, which wraps the gem in the through hole.
[0014] Preferably, the retaining frame includes a limiting groove opened on the inner wall of the through hole and a ring-shaped retaining ring, the inner wall of the limiting groove is movably sleeved with a limiting ball, the surface of the limiting ball is fixedly connected to a limiting rod, and the limiting rod extends from the inner wall of the limiting groove to the interior of the through hole and is fixed to the surface of the gem.
[0015] Through the above technical solution, the diameter of the limiting ball is smaller than the maximum width of the limiting groove and larger than the minimum width of the limiting groove, so that the limiting ball can be movably stuck in the limiting groove, facilitating the movement of the gem.
[0016] Preferably, a clamping plate is hingedly connected to the outer surface of the retaining ring along its axial direction, and the inner diameter of the retaining ring is smaller than the diameter of the gemstone;
[0017] After the outer surface of the retaining ring is spirally screwed into the through hole, the clamping plate is hingedly sleeved onto the inner wall of the limiting groove to prevent the limiting ball from sliding out of the limiting groove. Then the end face of the rear cover presses the surface of the clamping plate to prevent the clamping plate from hinged outward.
[0018] Through the above technical solution, the retaining ring can clamp the gem in the through hole and can also clamp the limiting ball in the limiting groove. The retaining ring is first screwed tight, then hinged with a clamping plate and inserted into the limiting groove to achieve positioning in the circumferential direction.
[0019] Preferably, the hanging component includes an axial hole and a hanging sleeve, the axial hole is opened on the inner wall of the rear cover, a rotating shaft is slidably inserted into the inner wall of the axial hole, and the surface of the rotating shaft is fixedly sleeved with the axis of the hanging sleeve.
[0020] Through the above technical solution, the hanging cover serves as a movable pendant, which is flexible and easy to wear.
[0021] Preferably, the inner walls at both ends of the shaft hole are further provided with a movable positioning mechanism for preventing the rotating shaft from sliding left and right, and the movable positioning mechanism is composed of a snap ring and a positioning groove;
[0022] The positioning grooves are respectively opened at the inner walls at both ends of the shaft hole and the surfaces at both ends of the rotating shaft. After the clamping ring is sleeved on the positioning groove on the rotating shaft and inserted into the shaft hole, it is movably clamped with the positioning groove in the shaft hole.
[0023] Through the above technical solution, the movable positioning mechanism can fix the hanging sleeve axially to prevent the hanging sleeve from moving left and right.
[0024] Preferably, the toggle member consists of a conical column and a toggle ball, the top end of the column is fixedly connected to the surface of the toggle ball, and the bottom end of the column is fixedly connected to the outer surface of the hanging sleeve. When the hanging sleeve rotates up and down along the surface of the rotating shaft, it drives the toggle ball to toggle the surface of the gem up and down to achieve toggling.
[0025] Through the above technical solution, the up and down shaking action of the hanging sleeve drives the moving ball to move the gem up and down, further achieving the effect of dazzling display of the gem.
[0026] Preferably, the reset member is composed of an elastic component, and the elastic component is composed of any one or two of a spring, cylindrical rubber, or silicone.
[0027] Through the above technical solution, suitable elastic components can be selected for installation and use according to specific wearing or weight conditions.
[0028] Preferably, both ends of the elastic component are fixedly connected to the surface of the hanging sleeve and the inner wall of the front cover respectively, and when the hanging sleeve rotates, the elastic component elastically rotates back and forth up and down.
[0029] Through the above technical solution, on the one hand, the hanging sleeve is quickly reset, and on the other hand, the elastic force is used to further achieve the effect of reciprocating motion, thereby making the gemstone dazzle.
[0030] Preferably, a U-shaped frame can be fixedly sleeved on the surface of the rotating shaft, and a Z-shaped frame can be rotatably sleeved on the surface of the rotating shaft located in the middle groove of the U-shaped frame. One end of the Z-shaped frame is fixedly connected to the inner surface of the arc-shaped clamping plate, and the Z-shaped frame rotates at the axis of the rotating shaft to drive the gem clamped in the arc-shaped clamping plate to rotate.
[0031] Preferably, the reset member can also be a balance block fixedly mounted on the bottom end of the Z-shaped frame. When the balance block is stationary, the gem is located at the center of the fixed protrusion, and the upper surface of the U-shaped frame is also fixedly connected to a mounting rod for wearing.
[0032] The beneficial effects of the present invention are:
[0033] 1. By providing elastic clamping parts, the front cover and the back cover can be plugged and fixed in the axial direction to form an integral whole, which can prevent loosening on the one hand and facilitate the installation of gemstones and subsequent maintenance and disassembly on the other hand.
[0034] 2. By setting a fixed protrusion, the gem can be movable limited at the front end of the front cover, and at the same time, the gem can be exposed to the outside to the greatest extent for easy display.
[0035] 3. By setting a retainer, the effect of limiting the movement of the gemstone at the thick end of the front cover can be achieved, so that the gemstone always moves in the through hole of the front cover.
[0036] 4. By setting the pendant, it is convenient to wear the entire jewelry. After wearing it, as the person walks, the front cover and the back cover are connected as one. By utilizing the gravity of the front cover and the back cover and the pendant to form a small rotation, the gem can be shaken slightly in the through hole of the front cover, which has a dynamic display effect.
[0037] 5. By setting a toggle part, when the human body walks, the hanging sleeve is driven to rotate up and down slightly. By utilizing this action, the toggle ball is rotated up and down to hit the surface of the gem, thereby having the effect of toggling the gem to shake slightly, further enhancing the dazzling effect.
[0038] 6. By setting a reset part, it can achieve the effect of being able to reset by shaking up and down after each shaking. BRIEF DESCRIPTION OF THE DRAWINGS
[0039] Figure 1 This is a schematic diagram of a dynamic three-dimensional display type dazzling jewelry proposed by the present invention;
[0040] Figure 2 This is an exploded view of a holder for dynamic three-dimensional display-type dazzling jewelry proposed by the present invention;
[0041] Figure 3 This is an assembly diagram of a holder for dynamic three-dimensional display-type dazzling jewelry proposed by the present invention;
[0042] Figure 4 This is a three-dimensional diagram of the movable positioning mechanism of a dynamic three-dimensional display type dazzling jewelry proposed by the present invention;
[0043] Figure 5This is a three-dimensional diagram of the front cover structure of a dynamic three-dimensional display type dazzling jewelry proposed by the present invention;
[0044] Figure 6 This is a three-dimensional assembly diagram of a dynamic three-dimensional display type dazzling jewelry proposed by the present invention;
[0045] Figure 7 This is a three-dimensional diagram of the appearance of Example 2 of a dynamic three-dimensional display type dazzling jewelry proposed by the present invention;
[0046] Figure 8 This is a front view of the Z-shaped frame structure in Example 2 of the dynamic three-dimensional display-type dazzling jewelry proposed by the present invention.
[0047] In the figure: 1. Gem; 2. Front cover; 3. Back cover; 4. Elastic clamping part; 41. Clamping groove; 42. Arc groove; 43. L-shaped block; 5. Fixed protrusion; 51. Arc clamping plate; 52. Arc reinforcing rib; 6. Retaining frame; 61. Limiting groove; 62. Retaining ring; 63. Limiting ball; 64. Clamping plate; 7. Hanging part; 71. Shaft hole; 72. Hanging sleeve; 73. Rotating shaft; 74. Movable positioning mechanism; 741. Retaining ring; 742. Positioning groove; 75. U-shaped frame; 76. Z-shaped frame; 77. Mounting rod; 8. Toggle member; 81. Toggle ball; 9. Reset member; 91. Spring; 92. Balance block. DETAILED DESCRIPTION
[0048] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.
[0049] Example 1
[0050] Reference Figure 1-6 , a dynamic three-dimensional display type dazzling jewelry, including a front cover 2 and a back cover 3 for mounting a gem 1.
[0051] In order to realize the integral connection between the front cover 2 and the rear cover 3, the front cover 2 and the rear cover 3 are fixedly connected into one piece by an elastic clamping member 4;
[0052] Furthermore, the elastic clamping member 4 includes a clamping groove 41 formed on the inner end surface of the front cover 2. The inner top wall of the clamping groove 41 extends to the outer surface of the front cover 2. The inner bottom wall of the clamping groove 41 is provided with an arc-shaped groove 42.
[0053] An L-shaped block 43 is slidably inserted into the inner wall of the snap-in slot 41. The height of the snap-in slot 41 is greater than that of the L-shaped block 43, so that the front end of the L-shaped block 43 can be inserted from the outer end of the snap-in slot 41 and then emerge from the top of its inner end to be flush with the outer surface of the front cover 2.
[0054] The front end of the L-shaped block 43 is inserted from the outer end of the snap-fit groove 41 , and when it reaches the inner end of the snap-fit groove 41 , the inner end top of the L-shaped block 43 is elastically snapped in, thereby achieving a fixed connection between the front cover 2 and the rear cover 3 .
[0055] By providing the elastic clamping member 4, the front cover 2 and the back cover 3 can be plugged and fixed in the axial direction to form an integral whole, which prevents loosening on the one hand and facilitates the installation of the gem 1 and subsequent maintenance and disassembly on the other hand.
[0056] In order to prevent the gem 1 from leaking out after installation, a through hole for installing the gem 1 is opened at the axis of the front cover 2. A fixing protrusion 5 is provided at the edge of the through hole near the outer end surface to prevent the gem 1 from leaking out. The fixing protrusion 5 is pushed out by the curve when it is slid toward the outer end along the axis of the front cover 2 through the elastic clamping member 4;
[0057] Furthermore, the inner walls of the plurality of arcuate grooves 42 are arranged in a ring-shaped array with the axis of the front cover 2 as the center line, and the fixed protrusion 5 is composed of three arcuate clamping plates 51. The inner surface of the arcuate clamping plate 51 is in an arc shape and has the same arc diameter as the gem 1. The three numbers can achieve the effect of leak prevention and can display the gem 1 to the greatest extent. The arcuate clamping plate 51 is conical and concave inward, reducing the obstruction area and displaying the appearance of the gem 1 to the greatest extent.
[0058] The surface of the arc-shaped clamping plate 51 is fixedly connected to the lower surface of the L-shaped block 43 through the arc-shaped reinforcement rib 52. The L-shaped block 43 drives the arc-shaped reinforcement rib 52 to slide and plug into the inner wall of the arc-shaped groove 42. Then, one end of the arc-shaped reinforcement rib 52 slides out from the outer end of the arc-shaped groove 42 and approaches the center line of the front cover 2.
[0059] The arc-shaped clamping plate 51 is driven by the L-shaped block 43 to be inserted into the arc-shaped groove 42 and then extended to form an arc three-dimensional shape, thereby movably wrapping the gemstone 1 in the through hole.
[0060] By providing the fixed protrusion 5, the gemstone 1 can be movably limited at the front end of the front cover 2, and at the same time, the gemstone 1 can be exposed to the outside to the greatest extent for easy display.
[0061] In order to prevent the gem 1 from leaking out of the rear end of the front cover 2, a retainer 6 is provided on the inner wall of the through hole located at the back end face of the front cover 2 to prevent the gem 1 from leaking out. The retainer 6 is screwed and clamped after the gem 1 is placed in the through hole.
[0062] Furthermore, the retaining frame 6 includes a limiting groove 61 opened on the inner wall of the through hole and a ring-shaped retaining ring 62. The inner wall of the limiting groove 61 is movably sleeved with a limiting ball 63. The surface of the limiting ball 63 is fixedly connected to the limiting rod. The limiting rod extends from the inner wall of the limiting groove 61 to the inside of the through hole and is fixed to the surface of the gem 1.
[0063] The diameter of the limiting ball 63 is smaller than the maximum width of the limiting groove 61 and larger than the minimum width of the limiting groove 61 , so that the limiting ball 63 can be movably stuck in the limiting groove 61 , facilitating the movement of the gemstone 1 .
[0064] Furthermore, a clamping plate 64 is hingedly connected to the outer surface of the retaining ring 62 along its axial direction, and the inner diameter of the retaining ring 62 is smaller than the diameter of the gemstone 1;
[0065] After the outer surface of the retaining ring 62 is spirally screwed into the through hole, its clamping plate 64 is hingedly sleeved onto the inner wall of the limiting groove 61 to prevent the limiting ball 63 from sliding out of the limiting groove 61. Then the end face of the rear cover 3 presses the surface of the clamping plate 64 to prevent the clamping plate 64 from hinged outward.
[0066] The retaining ring 62 can clamp the gem 1 in the through hole and can also clamp the limiting ball 63 in the limiting groove 61. The retaining ring 62 is first screwed tight, then hinged with the clamping plate 64 and inserted into the limiting groove 61 to achieve positioning in the circumferential direction.
[0067] By providing the retaining frame 6, the effect of limiting the movement of the gemstone 1 at the thick end of the front cover 2 can be achieved, so that the gemstone 1 always moves in the through hole of the front cover.
[0068] For easy wearing, a pendant 7 is rotatably connected to the top inner wall of the diameter center line of the back cover 3. The surface of the pendant 7 is also provided with a toggle member 8 for toggling the gem 1. The inner bottom wall of the back cover 3 is also provided with a reset member 9 for resetting the pendant 7.
[0069] Furthermore, the hanging member 7 includes an axis hole 71 and a hanging sleeve 72. The axis hole 71 is formed on the inner wall of the back cover 3. A rotating shaft 73 is slidably inserted into the inner wall of the axis hole 71. The surface of the rotating shaft 73 is fixedly connected to the axis of the hanging sleeve 72. The hanging sleeve 72 serves as a movable hanging member 7, is flexible, and is easy to wear.
[0070] Furthermore, the inner walls at both ends of the shaft hole 71 are provided with movable positioning mechanisms 74 to prevent the rotating shaft 73 from sliding left and right. The movable positioning mechanisms 74 are composed of a snap ring 741 and a positioning groove 742.
[0071] Positioning grooves 742 are respectively provided on the inner walls of the shaft hole 71 at both ends and on the surfaces of the rotating shaft 73 at both ends. The snap ring 741 is sleeved over the positioning grooves 742 on the rotating shaft 73 and inserted into the shaft hole 71 to engage with the positioning grooves 742 in the shaft hole 71. The movable positioning mechanism 74 can fix the hanging sleeve 72 axially to prevent the hanging sleeve 72 from moving left or right.
[0072] By setting the pendant 7, it is convenient to wear the entire jewelry. After wearing, as the person walks, the front cover 2 and the back cover 3 are connected as a whole, and a small rotation is formed between the self-gravity of the front cover 2 and the back cover 3 and the hanging sleeve 72, so that the gem 1 can achieve a small swing in the through hole of the front cover 2, with a dynamic display and dazzling effect.
[0073] To further achieve the dazzling effect of gemstone 1, the toggle member 8 consists of a conical column and a toggle ball 81. The top of the column is fixedly connected to the surface of the toggle ball 81, and the bottom of the column is fixedly connected to the outer surface of the hanging sleeve 72. When the hanging sleeve 72 rotates up and down along the surface of the rotating shaft 73, it drives the toggle ball 81 to move the surface of the gemstone 1 up and down to achieve the toggle effect. The up and down movement of the hanging sleeve 72 drives the toggle ball 81 to move the gemstone 1 up and down, further achieving the dazzling effect of the gemstone 1.
[0074] By setting up the toggle member 8, when the human body walks, the hanging sleeve 72 is driven to rotate slightly up and down. By utilizing this action, the toggle ball 81 is rotated up and down to hit the surface of the gem 1, thereby having the effect of toggling the gem to shake slightly, further enhancing the dazzling effect.
[0075] In order to realize that the hanging sleeve 72 can be reset, the reset member 9 is composed of an elastic component, and the elastic component is composed of any one or two of a spring 91 or a cylindrical rubber or a silica gel. Suitable elastic components can be selected for installation and use according to specific wearing or weight conditions.
[0076] By providing the reset member 9, the reset effect of shaking up and down after each shaking can be achieved.
[0077] Furthermore, the two ends of the elastic component are fixedly connected to the surface of the hanging sleeve 72 and the inner wall of the front cover 2 respectively. When the hanging sleeve 72 rotates, the elastic component elastically rotates it back and forth. On the one hand, it quickly resets the hanging sleeve 72, and on the other hand, it further uses the elastic force to achieve the effect of reciprocating motion, thereby making the gem 1 dazzle.
[0078] Example 2
[0079] Reference Figure 4 and Figure 7-8 A dynamic three-dimensional display type dazzling jewelry includes a back cover 3 with a through hole, and a fixed protrusion 5 is provided at the edge of the through hole near the outer end surface to prevent the gem 1 from leaking out. The fixed protrusion 5 is composed of three arc-shaped clamping plates 51.
[0080] By providing a fixed protrusion, the gem can be movably limited at the front end of the front cover, and at the same time the gem can be exposed to the outside to the greatest extent for easy display.
[0081] The top inner wall of the diameter center line of the rear cover 3 is rotatably connected with a hanger 7, and the hanger 7 includes an axis hole 71, which is opened on the inner wall of the rear cover 3, and a rotating shaft 73 is slidably inserted into the inner wall of the axis hole 71.
[0082] The inner walls at both ends of the shaft hole 71 are further provided with movable positioning mechanisms 74 for preventing the rotating shaft 73 from sliding left and right. The movable positioning mechanism 74 is composed of a snap ring 741 and a positioning groove 742 .
[0083] The positioning grooves 742 are respectively opened on the inner walls at both ends of the shaft hole 71 and the surfaces at both ends of the rotating shaft 73. After the retaining ring 741 is sleeved on the positioning grooves 742 on the rotating shaft 73 and inserted into the shaft hole 71, it is movably engaged with the positioning grooves 742 in the shaft hole 71.
[0084] A U-shaped frame 75 can also be fixedly sleeved on the surface of the rotating shaft 73, and a Z-shaped frame 76 can be rotatably sleeved on the surface of the rotating shaft 73 located in the middle groove of the U-shaped frame 75. The Z-shaped frame 76 is the center point of the entire gem 1 bracket.
[0085] One end of the Z-shaped frame 76 is fixedly connected to the inner surface of the arc-shaped clamping plate 51 . The Z-shaped frame 76 rotates at the axis of the rotating shaft 73 to drive the gemstone 1 clamped in the arc-shaped clamping plate 51 to rotate.
[0086] By setting the hanging 7, it is convenient to wear the entire jewelry. After wearing it, as the person walks, the gem 1 can shake slightly in the through hole of the back cover 3, which has a dynamic display effect.
[0087] The inner bottom wall of the back cover 3 is also provided with a reset member 9 for resetting the hanger 7. The reset member 9 can also be a balance block 92 fixedly mounted on the bottom end of the Z-shaped frame 76. The balance block 92 can achieve the symmetry of weight balance by physically calculating the weight, and has the effect of mechanical balance.
[0088] When the balancing block 92 is stationary, the gemstone 1 is located at the center of the fixed protrusion 5 , and a mounting rod 77 for wearing is fixedly connected to the upper surface of the U-shaped frame 75 .
[0089] By providing the reset member 9, the reset effect of being able to shake back and forth after each shaking can be achieved.
[0090] The above description is only a preferred specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any technician familiar with the technical field, within the technical scope disclosed by the present invention, who makes equivalent replacements or changes based on the technical solution and inventive concept of the present invention, should be covered by the scope of protection of the present invention.
Claims
1. A dynamic three-dimensional display type dazzling jewelry, comprising a back cover (3) with a through hole, characterized in that: It also includes a front cover (2) for mounting the gemstone (1), and a fixing protrusion (5) is provided at the edge of the through hole near the outer end surface to prevent the gemstone (1) from leaking out; The fixed protrusion (5) is composed of three arc-shaped clamping plates (51); The top inner wall of the rear cover (3) is rotatably connected to a hanging piece (7); The hanging member (7) comprises an axial hole (71) and a hanging sleeve (72), wherein the axial hole (71) is provided on the inner wall of the rear cover (3), a rotating shaft (73) is slidably inserted into the inner wall of the axial hole (71), and the surface of the rotating shaft (73) is fixedly sleeved with the axis of the hanging sleeve (72); The inner bottom wall of the rear cover (3) is further provided with a reset member (9) for resetting the hanging member (7); The reset member (9) is composed of an elastic component, and the elastic component is composed of any one or two of a spring (91) or cylindrical rubber or silicone; The two ends of the elastic component are fixedly connected to the surface of the hanging sleeve (72) and the inner wall of the front cover (2), respectively. When the hanging sleeve (72) rotates, the elastic component will elastically reciprocate up and down. A U-shaped frame (75) is fixedly sleeved on the surface of the rotating shaft (73), and a Z-shaped frame (76) is rotatably sleeved on the surface of the rotating shaft (73) located in the middle groove of the U-shaped frame (75). One end of the Z-shaped frame (76) is fixedly connected to the inner surface of the arc-shaped clamping plate (51), and the Z-shaped frame (76) drives the gem (1) clamped in the arc-shaped clamping plate (51) to rotate with the axis of the rotating shaft (73) as the rotation center; The reset member (9) further comprises a balancing block (92) fixedly mounted on the bottom end of the Z-shaped frame (76). When the balancing block (92) is stationary, the gemstone (1) is located at the center of the fixed protrusion (5). The upper surface of the U-shaped frame (75) is further fixedly connected to a mounting rod (77) for wearing.
2. The dynamic three-dimensional display jewelry according to claim 1, characterized in that: The front cover (2) and the rear cover (3) are fixedly connected into one piece via an elastic clamping piece (4); A through hole for mounting the gemstone (1) is provided at the axis of the front cover (2). When the fixed protrusion (5) is slid and inserted toward the outer end along the axis of the front cover (2), the fixed protrusion (5) is driven out by the elastic clamping member (4) in a curved line. The inner wall of the through hole located on the back end surface of the front cover (2) is provided with a retaining frame (6) for preventing the gem (1) from leaking out, and the retaining frame (6) is screwed and tightened to clamp the gem (1) after the gem (1) is placed in the through hole; The surface of the pendant (7) is further provided with a toggle member (8) for toggling the gemstone (1); The elastic clamping member (4) comprises a clamping groove (41) formed on the inner end surface of the front cover (2), the inner top wall of the clamping groove (41) extends to the outer surface of the front cover (2), and the inner bottom wall of the clamping groove (41) is provided with an arc-shaped groove (42); An L-shaped block (43) is slidably inserted into the inner wall of the clamping groove (41), and the front end of the L-shaped block (43) is inserted into the outer end of the clamping groove (41) and emerges to be flush with the outer surface of the front cover (2).
3. The dynamic three-dimensional display jewelry according to claim 2, characterized in that: The inner walls of the plurality of arc-shaped grooves (42) are arranged in a ring-shaped array with the axis of the front cover (2) as the center line. The surface of the arc-shaped clamping plate (51) is fixedly connected to the lower surface of the L-shaped block (43) through the arc-shaped reinforcing rib (52). The L-shaped block (43) drives the arc-shaped reinforcing rib (52) to slide and plug into the inner wall of the arc-shaped groove (42). Then, one end of the arc-shaped reinforcing rib (52) slides out from the outer end of the arc-shaped groove (42) and approaches the center line of the front cover (2).
4. The dynamic three-dimensional display jewelry according to claim 3, characterized in that: The retaining frame (6) includes a limiting groove (61) provided on the inner wall of the through hole and a ring-shaped retaining ring (62), the inner wall of the limiting groove (61) is movably sleeved with a limiting ball (63), the surface of the limiting ball (63) is fixedly connected to a limiting rod, and the limiting rod extends from the inner wall of the limiting groove (61) to the inside of the through hole and is fixed to the surface of the gemstone (1); A clamping plate (64) is hingedly connected to the outer surface of the retaining ring (62) along the axial direction, and the inner diameter of the retaining ring (62) is smaller than the diameter of the gemstone (1); After the outer surface of the retaining ring (62) is screwed into the through hole, the clamping plate (64) is hinged to the inner wall of the limiting groove (61) to prevent the limiting ball (63) from sliding out of the limiting groove (61), and then the end surface of the rear cover (3) presses the surface of the clamping plate (64).
5. The dynamic three-dimensional display jewelry according to claim 4, characterized in that: The inner walls at both ends of the shaft hole (71) are further provided with a movable positioning mechanism (74) for preventing the rotating shaft (73) from sliding left and right, and the movable positioning mechanism (74) is composed of a snap ring (741) and a positioning groove (742); The positioning grooves (742) are respectively provided on the inner walls at both ends of the shaft hole (71) and on the surfaces at both ends of the rotating shaft (73). When the snap ring (741) is sleeved onto the positioning grooves (742) on the rotating shaft (73) and then inserted into the shaft hole (71), the snap ring (741) is movably engaged with the positioning grooves (742) in the shaft hole (71).
6. The dynamic three-dimensional display jewelry according to claim 5, characterized in that: The toggle member (8) is composed of a cone-shaped column and a toggle ball (81), the top end of the column is fixedly connected to the surface of the toggle ball (81), and the bottom end of the column is fixedly connected to the outer surface of the hanging sleeve (72). When the hanging sleeve (72) rotates up and down along the surface of the rotating shaft (73), it drives the toggle ball (81) to toggle the surface of the gem (1) up and down to achieve the action of toggling the gem (1).
Citation Information
Patent Citations
Dynamic three-dimensional display type dazzling jewelry
CN218682504U