CN219851948U - Leak protection is riveted in taking off material formula squeeze riveter dress - Google Patents

Leak protection is riveted in taking off material formula squeeze riveter dress Download PDF

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Publication number
CN219851948U
CN219851948U CN202320897809.3U CN202320897809U CN219851948U CN 219851948 U CN219851948 U CN 219851948U CN 202320897809 U CN202320897809 U CN 202320897809U CN 219851948 U CN219851948 U CN 219851948U
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plate
pressure head
die
riveting
floating plate
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CN202320897809.3U
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Chinese (zh)
Inventor
卢晓辉
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Aimu Precision Machinery Taizhou Co ltd
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Aimu Precision Machinery Taizhou Co ltd
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Abstract

The utility model relates to a leak-proof riveting inner stripping type riveting tool, which comprises an upper die and a lower die which are matched to open and close, wherein the upper die comprises a high-strength glue and an upper pressure head which can stretch and retract along the high-strength glue, the lower die comprises a middle floating plate, a lower pressure head and a proximity sensor, the middle floating plate can elastically lift, the middle floating plate is provided with a through hole corresponding to the upper pressure head and the lower pressure head, the lower pressure head can elastically lift along the through hole, the proximity sensor can sense the lowered lower pressure head, when the upper die and the lower die are used for replacing riveting, the riveting assembly of a plurality of rivet studs on a product is carried out, when the upper die and the lower die are used for laminating films, the upper pressure head is propped against the rivet studs when being pressed down, the lower pressure head is driven to elastically descend along the through hole, whether the rivet stud is leaked or not is judged by the proximity sensor, the leak-proof is prevented by self-checking, the lower pressure head can integrally eject the product along the through hole after the die is opened, the lower pressure head is opened, the product is not deformed, the flatness and the compatibility are improved, and the labor intensity is reduced.

Description

Leak protection is riveted in taking off material formula squeeze riveter dress
Technical Field
The utility model belongs to the field of assembly of pull rivet studs, and particularly relates to a leak-proof riveting inner stripping type press riveting tool.
Background
The existing rivet pulling stud is assembled by adopting a manual hand-held special tool rivet pulling machine, rivet pulling studs are installed one by one, the problems of low machining efficiency and high labor intensity of staff exist, after the products are riveted, due to the sealing requirement of the products, the top ends of all rivet pulling studs have very high flatness requirements so as to ensure that sealing covers are sealed after the sealing covers are screwed with the products, and the rivet pulling process cannot be met, therefore, if a rivet pressing process is adopted by patent CN217018435U to replace a rivet pressing tool of the rivet pulling process, products to be machined, such as a cover plate and rivet pulling studs, are placed on a lower die of the rivet pressing tool, the riveting of a plurality of rivet pulling studs is carried out at one time through the upper die and the lower die of the rivet pressing tool, the problem can be effectively improved, but the defects of the existing rivet pressing tool are that:
(1) Before press riveting, a plurality of pull riveting studs are manually placed in holes to be riveted of the cover plate, press riveting processing is performed, and due to the lack of a detection structure, workers cannot recognize the missing riveting in time after missing the pull riveting studs, and customer complaints are easily caused.
(2) When the press riveting is used for replacing the rivet riveting, the rivet pulling precision of a product with the position precision requirement is high, and simultaneously, when a plurality of rivet pulling studs are riveted, the rivet pulling studs are easy to squeeze with a tool, so that the machined product is very difficult to take out.
Disclosure of Invention
The utility model aims to solve at least one of the technical problems to a certain extent, and provides a leak-proof riveting inner stripping type riveting tool which can prevent leak riveting, prevent stripping deformation of a product, improve flatness and compatibility and reduce labor intensity when replacing riveting to perform riveting assembly of a plurality of riveting studs on the product.
The technical scheme adopted for solving the technical problems is as follows:
the utility model provides a take off material formula squeeze riveter dress in leak protection is riveted, includes the last mould and the lower mould that the cooperation was opened and shut, go up the mould and include excellent power glue and can follow excellent power glue flexible last pressure head, the lower mould includes middle floating plate, lower pressure head and proximity sensor, middle floating plate can elastic lifting, and middle floating plate is equipped with the through-hole that corresponds pressure head and lower pressure head, lower pressure head can follow through-hole elastic lifting, proximity sensor can respond to the lower pressure head that descends.
Further, the upper die comprises an upper base plate, a middle plate and an upper positioning plate, a cushion block is arranged between the upper base plate and the middle plate, the top of the upper pressing head is matched with the middle plate, the bottom of the upper pressing head penetrates through the upper positioning plate and the high-strength adhesive, and the high-strength adhesive is connected with the bottom of the upper positioning plate.
Further, the upper die comprises a plurality of guide sleeves, the lower die comprises a plurality of guide posts, and the guide posts penetrate through the middle floating plate and can be matched with the guide sleeves.
Further, the upper die comprises an upper limit, the lower die comprises a lower limit and a pressing riveting depth limit, the lower limit is connected with the middle floating plate and can be matched with the upper limit, and the pressing riveting depth limit can be matched with the descending middle floating plate.
Further, the locating plate is arranged at the top of the middle floating plate, and the through holes are positioned in the locating plate and the middle floating plate.
Further, the lower die comprises a lower locating plate, and a plurality of nitrogen springs are arranged between the middle floating plate and the lower locating plate.
Further, the lower pressure head is provided with a flange and a spring, the flange can be in limit fit with the through hole, and the spring is used for elastically supporting the lower pressure head to lift.
Further, the lower die comprises a lower locating plate and a lower backing plate, and the spring is positioned in the lower locating plate between the lower pressing head and the lower backing plate.
Further, the proximity sensor is located in a lower locating plate at the side of the spring.
Further, the automatic feeding device comprises a controller and driving equipment, wherein the controller is connected with the proximity sensor and the driving equipment, the controller is connected with an alarm device, and the driving equipment is used for driving the upper die and the lower die to open and close.
Further, the driving device includes a gas-liquid booster, an oil press, or a punch press.
Compared with the prior art, the utility model has the beneficial effects that:
(1) When the riveting is replaced to carry out press riveting assembly of a plurality of rivet bolts on a product, and an upper die and a lower die are clamped, the rivet bolts are propped against when the upper pressing head is pressed down, the lower pressing head is driven to elastically descend along the through hole, whether the rivet bolts are missed or not is judged by sensing whether the lower pressing head descends or not by a proximity sensor, and further, the self-checking is carried out to prevent the rivet missing, so that the problem that the customer complaints caused by the rivet missing cannot be timely identified in the conventional press riveting tool is solved.
(2) When the upper die and the lower die are assembled, the excellent force glue contacts with the product to ensure the flatness after compaction, the upper pressing head and the lower pressing head extrude the pull riveting stud in the through hole, so that the pull riveting stud is deformed and riveted on the product, after the upper die and the lower die are opened, the lower pressing head elastically rises along the through hole to form an inner stripping structure, the pull riveting stud after riveting and the product are integrally ejected out and separated from the lower die, the problem that the product is deformed and scrapped due to stripping of the existing drag hook is solved, the product is not deformed, and the compatibility of the processable product is improved.
(3) The frock is through last spacing and spacing cooperation down, and the middle floating plate of drive descends, presses the cooperation of riveting degree of depth limit ability and the middle floating plate of descending, and the pressure head height control presses the riveting degree of depth in cooperation makes all steps height unanimity after the riveting, further satisfies the plane degree demand.
(4) The tool can be matched with a gas-liquid booster, an oil press and a punch press, the riveting stud is placed in a hole to be riveted of a product only by manual work, the tool can be started to rivet successfully, and the labor intensity of staff can be reduced.
Drawings
The foregoing and/or additional aspects and advantages of the utility model will become apparent and may be better understood from the following description of embodiments taken in conjunction with the accompanying drawings in which:
FIG. 1 is a schematic diagram of an embodiment of the present utility model;
FIG. 2 is a side view of an embodiment of the present utility model;
FIG. 3 is a front view of an embodiment of the present utility model;
FIG. 4 is an exploded view of one embodiment of the present utility model;
FIG. 5 is a diagram of a proximity sensor detection location in accordance with one embodiment of the present utility model;
fig. 6 is a schematic application diagram of an embodiment of the present utility model.
The marks in the figure: the upper die 1, the excellent adhesive 101, the upper pressing head 102, the upper base plate 103, the middle plate 104, the upper positioning plate 105, the cushion block 106, the guide sleeve 107 and the upper limit 108;
lower die 2, middle floating plate 201, through hole 2011, lower pressure head 202, flange 2021, proximity sensor 203, guide pillar 204, lower limit 205, press riveting depth limit 206, lower positioning plate 207, positioning plate 208, nitrogen spring 209, spring 210, lower backing plate 211;
cover plate 3, to-be-riveted hole 301, and rivet stud 4.
Detailed Description
Embodiments of the present utility model are described in detail below, examples of which are illustrated in the accompanying drawings, wherein like or similar reference numerals refer to like or similar elements or elements having like or similar functions throughout. The embodiments described below by referring to the drawings are illustrative and intended to explain the present utility model and should not be construed as limiting the utility model.
In the description of the present utility model, it should be understood that the terms "center," "longitudinal," "transverse," "length," "width," "thickness," "upper," "lower," "axial," "radial," "vertical," "horizontal," "inner," "outer," and the like indicate orientations or positional relationships based on the orientation or positional relationships shown in the drawings, merely to facilitate describing the present utility model and simplify the description, and do not indicate or imply that the devices or elements referred to must have a specific orientation, be configured and operated in a specific orientation, and therefore should not be construed as limiting the present utility model. Furthermore, the terms "first," "second," and the like, are used for descriptive purposes only and are not to be construed as indicating or implying a relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defining "a first" or "a second" may explicitly or implicitly include one or more such feature. In the description of the present utility model, the meaning of "a plurality" or "a number" means two or more, unless specifically defined otherwise.
In the present utility model, unless explicitly specified and limited otherwise, the terms "mounted," "connected," "secured," and the like are to be construed broadly and may be, for example, fixedly connected, detachably connected, or integrally connected; can be mechanically or electrically connected; can be directly connected or indirectly connected through an intermediate medium, and can be communication between two elements. The specific meaning of the above terms in the present utility model can be understood by those of ordinary skill in the art according to the specific circumstances.
As shown in fig. 1-6, a preferred embodiment of the leak-proof riveting inner stripping type squeeze riveting tool according to the present utility model includes an upper die 1 and a lower die 2 that are opened and closed in a matching manner, the upper die 1 includes a high-strength glue 101 and an upper ram 102 that can stretch along the high-strength glue 101, the lower die 2 includes a middle floating plate 201, a lower ram 202 and a proximity sensor 203, the middle floating plate 201 can elastically lift, the middle floating plate 201 is provided with a through hole 2011 corresponding to the upper ram 102 and the lower ram 202, the lower ram 202 can elastically lift along the through hole 2011, and the proximity sensor 203 can sense the lowered lower ram 202.
Further, the upper die 1 comprises an upper base plate 103, a middle plate 104 and an upper positioning plate 105, a cushion block 106 is arranged between the upper base plate 103 and the middle plate 104, the top of the upper pressing head 102 is matched with the middle plate 104, the bottom of the upper pressing head 102 penetrates through the upper positioning plate 105 and the high-strength adhesive 101, and the high-strength adhesive 101 is connected with the bottom of the upper positioning plate 105.
After the upper base plate 103 and the middle plate 104 are connected through the cushion block 106, the upper base plate 103 can be connected with a gas-liquid booster, an oil press and a pressure driving of a punch press, and is used for driving the upper die 1 to lift, so that the upper die 1 and the lower die 2 are opened and closed, the top of the upper pressure head 102 can be in limit fit with the upper positioning plate 105, after the upper pressure head 102 and the excellent adhesive 101 are installed, the upper pressure head 102 can be contracted inside the excellent adhesive 101 in a natural state, the excellent adhesive 101 can be in contact with the top plane of a product when being pressed, the flatness after being pressed is guaranteed, the excellent adhesive 101 is elastically compressed when being pressed, the upper pressure head 102 can extend out of the excellent adhesive 101, the upper pressure head 102 can stretch relative to the excellent adhesive 101, and the installation of the upper die 1 can be further facilitated.
Further, the upper die 1 comprises a plurality of guide sleeves 107, the lower die 2 comprises a plurality of guide posts 204, the guide posts 204 penetrate through the middle floating plate 201 and can be matched with the guide sleeves 107, the guide sleeves 107 can be arranged between the middle plate 104 and the upper positioning plate 105, the guide posts 204 can penetrate through the middle plate 104, and when the upper die 1 and the lower die 2 are opened and closed, the guide posts 204 can be guided in a lifting sliding manner through the guide sleeves 107, so that the stability of the tooling is further improved.
Further, the upper die 1 comprises an upper limit 108, the lower die 2 comprises a lower limit 205, a riveting depth limit 206 and a lower positioning plate 207, the lower limit 205 is connected with the middle floating plate 201 and can be matched with the upper limit 108, the upper die 1 can drive the middle floating plate 201 to descend through the contact of the upper limit 108 and the lower limit 205 when descending, the riveting depth limit 206 can be matched with the descending middle floating plate 201, the riveting depth limit 206 can be arranged on the lower positioning plate 207, the middle floating plate 201 can be contacted and limited through the bottom and the riveting depth limit 206 when descending, the riveting depth is controlled by the height of the upper pressing head 202 in a matched manner, all steps after riveting are consistent in height, the stability and the riveting reliability of the tool are further improved, and the flatness requirement is met.
Further, the positioning plate 208 provided at the top of the middle floating plate 201, the through hole 2011 is located in the positioning plate 208 and the middle floating plate 201, the top of the positioning plate 208 may be profiled and positioned with the bottom of the product, which further assists the correspondence between the product to be riveted hole 301 and the through hole 2011, so as to facilitate quick placement of the blind rivet stud 4, and the through hole 2011 may be a stepped hole, so as to facilitate abdication of the deformation area of the blind rivet stud 4.
Further, the lower die 2 includes a lower positioning plate 207, a plurality of nitrogen springs 209 are disposed between the middle floating plate 201 and the lower positioning plate 207, and the middle floating plate 201 can be elastically supported by the plurality of nitrogen springs 209, so that the middle floating plate 201 can be lifted relative to the lower positioning plate 207, and the lower die 2 is further convenient to install.
Further, the lower pressing head 202 is provided with a flange 2021 and a spring 210, the flange 2021 can be in limit fit with the through hole 2011, the spring 210 is used for elastically supporting the lower pressing head 202 to lift, the lower pressing head 202 is lifted along the through hole 2011 under the elastic support of the spring 210, the lifting stroke of the lower pressing head 202 can be controlled through limit fit of the flange 2021 and the through hole 2011 during lifting, the spring 210 can be compressed when the lower pressing head 202 is pressed down, and further the lower pressing head 202 can elastically stretch and lift relative to the through hole 2011, so that the lower die 2 is further convenient to install.
Further, the lower die 2 includes a lower positioning plate 207 and a lower backing plate 211, and the spring 210 is located in the lower positioning plate 207 between the lower pressing head 202 and the lower backing plate 211, and the spring 210 is further positioned and installed in the lower positioning plate 207.
Further, the proximity sensor 203 is located in the lower locating plate 207 at the side of the spring 210, the proximity sensor 203 can detect the bottom of the lower pressure head 202 approaching, and the installation of the proximity sensor in the lower locating plate 207 is further convenient for locating and installing the proximity sensor.
Further, the automatic riveting machine comprises a controller and driving equipment, wherein the controller is connected with the proximity sensor 203 and the driving equipment, the controller is connected with an alarm device, the driving equipment is used for driving the opening and closing of the upper die 1 and the lower die 2, when the driving equipment acts, the proximity sensor 203 does not detect a proximity signal as a riveting leakage signal of the controller, the alarm device is controlled to alarm, the riveting leakage alarm is timely obtained, and meanwhile, the controller controls the driving equipment to stop processing.
Further, the driving device comprises a gas-liquid booster, an oil press or a punch press, the controller can adopt a PLC (programmable logic controller) connected with the gas-liquid booster, the oil press and the punch press under the pressure driving, the PLC is electrically connected with the proximity sensor 203, and the PLC is in communication connection with the driving device, so that the automation efficiency can be further improved.
The working principle of the tool is as follows:
taking a product as a cover plate 3 as an example, a plurality of holes 301 to be riveted are formed in the cover plate 3, initially, the upper die 1 and the lower die 2 are opened, the middle floating plate 201 is elastically supported by the nitrogen spring 209, the cover plate 3 is placed above the positioning plate 208, the holes 301 to be riveted correspond to the through holes 2011, and as shown in fig. 6a, a plurality of rivet bolts 4 are respectively inserted into the cover plate 3 and the through holes 2011 from the corresponding holes 301 to be riveted and are elastically supported by the lower pressure head 202 through the springs 210.
The upper die 1 is driven to integrally press by starting pressure, firstly, the high-strength glue 101 is contacted with the top surface of the cover plate 3, the flatness of the cover plate 3 after pressing is guaranteed, when the upper die 1 continues to press, the guide pillar 204 is matched with the guide sleeve 107 for guiding, the upper press head 102 stretches out along the high-strength glue 101 and is contacted with the top surface of the blind rivet stud 4, the blind rivet stud 4 is pressed with the cover plate 3, meanwhile, the upper limit 108 is contacted with the lower limit 205, the middle floating plate 201 connected with the lower limit 205 is driven to press, meanwhile, the bottom of the blind rivet stud 4 drives the lower press head 202 to press together, and the lower press head 202 compresses the spring 210 until the bottom of the lower press head 202 is contacted with the bottom of the lower positioning plate 207.
The proximity sensor 203 senses the bottom of the lower pressure head 202 and sends a signal to the PLC, the pull riveting stud 4 is judged to be not leaked, if the pull riveting stud 4 is leaked, the lower pressure head 202 is driven to be downwards pressed by the lower pressure head 202 without the pull riveting stud 4 during downwards pressing, the proximity sensor 203 senses the descending lower pressure head 202, the proximity sensor 203 does not detect the proximity signal as a leakage riveting signal of the controller, the PLC judges that the leakage riveting is performed, the PLC starts an alarm device, and meanwhile, the driving equipment stops to act, so that the leakage riveting condition can be timely known.
If riveting is not performed, as the upper die 1 continues to press down, the contact between the lower press head 202 and the lower positioning plate 207 cannot continue to press down, as shown in fig. 6b, the blind rivet stud 4 starts to be pressed down by the upper press head 102 and the lower press head 202, deformation starts in the through hole 2011, the blind rivet is riveted on the cover plate 3, the middle floating plate 201 contacts with the riveting depth limit 206, the deformation of the blind rivet stud 4 reaches the set requirement, and the upper die 1 stops pressing down.
Subsequently, the upper die 1 is driven to ascend, the upper pressure head 102 is separated from the blind rivet stud 4, the upper limit 108 is separated from the lower limit 205, the middle floating plate 201 is ascended back through the nitrogen spring 209, the eupower glue 101 is separated from the cover plate 3, the spring 210 drives the lower pressure head 202 to ascend along the through hole 2011, as shown in fig. 6c, the blind rivet stud 4 after riveting is ejected, the cover plate 3 connected with the blind rivet stud 4 is integrally separated from the upper positioning plate 105, and a worker can directly take out the blind rivet 3 after riveting; and similarly, repeating the operation to perform the next press riveting processing.
When the fixture adopts a squeeze riveting process to replace a rivet pulling process, and a plurality of rivet pulling studs 4 are riveted on the cover plate 3 at one time, the rivet pulling studs 4 can be propped against when the upper pressure head 102 is pressed down, the lower pressure head 202 is driven to elastically shrink and descend along the through hole 2011, whether the rivet pulling studs 4 are leaked or not is judged by sensing whether the lower pressure head 202 descends or not by the proximity sensor 203, and further, the rivet leakage is prevented by self-checking; the upper pressure head 102 and the lower pressure head 202 extrude the blind rivet stud 4 in the through hole 2011 to rivet, after the blind rivet is pressed, the lower pressure head 202 rises elastically along the through hole 2011 to form an inner stripping structure, the blind rivet stud 4 after the blind rivet is pressed and integrally ejected from the cover plate 3, the lower die 2 is separated, the cover plate 3 is prevented from being deformed and scrapped when the existing drag hook structure strips materials, the cover plate 3 is ensured to deform, all types of cover plates 3 are compatible, the blind rivet precision of the cover plate 3 with the position precision requirement is high, the efficiency is several times that of a traditional hand-held blind rivet machine, the blind rivet stud 4 is placed in a hole 301 to be riveted of a product manually, the riveting can be successfully performed by starting a tool, the labor intensity of staff is reduced, and the leak-proof riveting function and the compatibility of a processable product are better than those of the existing blind rivet pressing tool.
The above list of detailed descriptions is only specific to practical embodiments of the present utility model, and they are not intended to limit the scope of the present utility model, and all equivalent embodiments or modifications that do not depart from the spirit of the present utility model should be included in the scope of the present utility model.

Claims (10)

1. The utility model provides a take off material formula and press riveting frock in leak protection is riveted, its characterized in that, last mould (1) and lower mould (2) including the cooperation opening and shutting, go up mould (1) and including excellent power glue (101) and can follow flexible last pressure head (102) of excellent power glue (101), lower mould (2) include middle floating plate (201), lower pressure head (202) and proximity sensor (203), middle floating plate (201) can elastic lifting, and middle floating plate (201) are equipped with through-hole (2011) that correspond pressure head (102) and lower pressure head (202), lower pressure head (202) can follow through-hole (2011) elastic lifting, proximity sensor (203) can respond to descending lower pressure head (202).
2. The anti-leakage riveting inner stripping type riveting tool according to claim 1, wherein the upper die (1) comprises an upper base plate (103), a middle plate (104) and an upper positioning plate (105), a cushion block (106) is arranged between the upper base plate (103) and the middle plate (104), the top of the upper pressing head (102) is matched with the middle plate (104), the bottom of the upper pressing head (102) penetrates through the upper positioning plate (105) and the high-strength adhesive (101), and the high-strength adhesive (101) is connected with the bottom of the upper positioning plate (105).
3. The anti-leakage internal stripping type press riveting tool as claimed in claim 1, wherein the upper die (1) comprises a plurality of guide sleeves (107), the lower die (2) comprises a plurality of guide posts (204), and the guide posts (204) penetrate through the middle floating plate (201) and can be matched with the guide sleeves (107).
4. The anti-leakage internal stripping type press riveting tool as claimed in claim 1, wherein the upper die (1) comprises an upper limit (108), the lower die (2) comprises a lower limit (205) and a press riveting depth limit (206), the lower limit (205) is connected with the middle floating plate (201) and can be matched with the upper limit (108), and the press riveting depth limit (206) can be matched with the descending middle floating plate (201).
5. The anti-leakage internal stripping type press riveting tool as claimed in claim 1, wherein the positioning plate (208) is arranged at the top of the middle floating plate (201), and the through hole (2011) is positioned in the positioning plate (208) and the middle floating plate (201).
6. The anti-leakage internal stripping type press riveting tool as claimed in claim 1, wherein the lower die (2) comprises a lower positioning plate (207), and a plurality of nitrogen springs (209) are arranged between the middle floating plate (201) and the lower positioning plate (207).
7. The anti-leakage internal stripping type press riveting tool as claimed in claim 1, wherein the lower press head (202) is provided with a flange (2021) and a spring (210), the flange (2021) can be in limit fit with the through hole (2011), and the spring (210) is used for elastically supporting the lower press head (202) to lift.
8. The anti-leakage internal stripping type press riveting tool as claimed in claim 7, wherein the lower die (2) comprises a lower locating plate (207) and a lower base plate (211), and the spring (210) is positioned in the lower locating plate (207) between the lower pressing head (202) and the lower base plate (211).
9. The tool as claimed in claim 8, wherein the proximity sensor (203) is located in a lower locating plate (207) at the side of the spring (210).
10. The leak-proof riveting inner stripping type press riveting tool as claimed in any one of claims 1-9, comprising a controller and a driving device, wherein the controller is connected with a proximity sensor (203) and the driving device, the controller is connected with an alarm device, and the driving device is used for driving the upper die (1) and the lower die (2) to open and close.
CN202320897809.3U 2023-04-20 2023-04-20 Leak protection is riveted in taking off material formula squeeze riveter dress Active CN219851948U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320897809.3U CN219851948U (en) 2023-04-20 2023-04-20 Leak protection is riveted in taking off material formula squeeze riveter dress

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320897809.3U CN219851948U (en) 2023-04-20 2023-04-20 Leak protection is riveted in taking off material formula squeeze riveter dress

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CN219851948U true CN219851948U (en) 2023-10-20

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117961515A (en) * 2024-03-08 2024-05-03 深圳市益百通科技有限公司 Press riveting device and press riveting method

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117961515A (en) * 2024-03-08 2024-05-03 深圳市益百通科技有限公司 Press riveting device and press riveting method

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Date Code Title Description
GR01 Patent grant
GR01 Patent grant
PE01 Entry into force of the registration of the contract for pledge of patent right
PE01 Entry into force of the registration of the contract for pledge of patent right

Denomination of utility model: A leak proof riveting internal detachment type riveting fixture

Granted publication date: 20231020

Pledgee: Jiangyan Jiangsu rural commercial bank Limited by Share Ltd.

Pledgor: AIMU PRECISION MACHINERY TAIZHOU CO.,LTD.

Registration number: Y2024980016735