CN217733303U - General electrophoresis tooling base - Google Patents

General electrophoresis tooling base Download PDF

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Publication number
CN217733303U
CN217733303U CN202220737519.8U CN202220737519U CN217733303U CN 217733303 U CN217733303 U CN 217733303U CN 202220737519 U CN202220737519 U CN 202220737519U CN 217733303 U CN217733303 U CN 217733303U
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China
Prior art keywords
base body
skid
base
supporting legs
electrophoresis
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CN202220737519.8U
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Chinese (zh)
Inventor
伍爱华
潘大巍
程时坚
叶有章
张振广
尹蓉
王家全
陶孝东
季希
张云虹
程凤如
李栋
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Hefei Changan Automobile Co Ltd
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Hefei Changan Automobile Co Ltd
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Priority to CN202220737519.8U priority Critical patent/CN217733303U/en
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Abstract

The utility model discloses a general formula electrophoresis frock base, the on-line screen storage device comprises a base body, set up at least two sets of skid locating holes on the base body, the skid locating hole of different groups can be installed with the operation skid locating pin cooperation of different specifications. The utility model has the advantages that: through the matching installation of the skid positioning holes of different groups and the running skid positioning pins of different specifications, the electrophoresis tooling base can be universal and compatible in different workshops.

Description

General electrophoresis tooling base
Technical Field
The utility model relates to an automobile manufacturing technical field, concretely relates to general electrophoresis fixture base.
Background
In the process of producing electrophoresis spare parts by an automobile manufacturer, the operation of the skid positioning pins is different due to the difference of process equipment in different workshops and the difference of positioning holes in production models. The yield of the old vehicle type is continuously reduced, the capacity is unsaturated, the market demand for the electrophoretic after-sales parts of the old vehicle type is high, and if the workshop for producing the old vehicle type parts specially produces the after-sales parts and starts the equipment, the energy consumption cost can be increased. Therefore, a universal base for electrophoresis tools in different workshops needs to be designed to meet the requirements of the market on electrophoresis after-sales spare parts, and meanwhile, the energy consumption loss of a factory is reduced.
SUMMERY OF THE UTILITY MODEL
The utility model discloses the technical problem that will solve lies in:
electrophoresis frock base can't general, compatible technical problem in different workshops among the prior art.
The utility model discloses a realize solving above-mentioned technical problem through following technical means:
the utility model provides a general formula electrophoresis frock base, includes base body, set up at least two sets of skid locating holes on the base body, the skid locating hole of different groups can be installed with the operation skid locating pin cooperation of different specifications.
The utility model provides a general formula electrophoresis frock base is when in-service use, place the electrophoresis frock on base body, accessible base body transports it to the skid in different workshops on, and through the skid locating hole of different groups and the cooperation installation of the operation skid locating pin of different specifications, and then realize that same base can be installed with the cooperation of the operation skid locating pin in different workshops, the commonality, compatibility is stronger, convenient different motorcycle types are sold the spare parts and can be produced in different workshops, reduce the energy consumption loss of mill simultaneously. The whole structure is simple, the universality is strong, derivative products with the same working principle can be manufactured, and the electrophoresis device is suitable for independent electrophoresis of relevant parts of various vehicle types; the simplification of the product manufacturing process can be realized; the manufacturing cost is low; the practical operation is convenient, the training cost is low, and the operation is simple and easy to operate; the design durability is good, and the operation process is stable and reliable; the maintenance cost is low; the spare parts of the product are simple to manufacture and easy to replace quickly; the safety is better, and potential safety hazards caused by staff operation are avoided; the product has no pollution to the environment when in use, and has no toxicity, noise, odor, dust and other pollution in the operation process.
Preferably, the base body comprises a rectangular frame and a first support rod, and the first support rod is located on the inner side of the rectangular frame and connected with the rectangular frame.
Preferably, the bottom of the base body is provided with supporting legs.
Preferably, fork holes are formed in the supporting legs, and the forklift arms can be inserted into the fork holes to lift the base body.
Preferably, the number of the supporting legs is four, and the four supporting legs are respectively located at the bottoms of the four corners of the base body.
Preferably, the supporting legs are symmetrically distributed on two sides of the base body in the length direction, the supporting legs are arranged obliquely, and the lower ends of the supporting legs are inclined towards the outer side of the base body in the width direction.
The supporting legs are arranged to be inclined and inclined towards the outer side of the base body in the width direction, so that the distance between the supporting points in the width direction can be prolonged as far as possible, and the stability is better.
Preferably, the support leg is provided with an avoiding space at the position below the positioning hole of the skid.
When the setting of dodging the space can avoid pedestal mounting, the supporting legs takes place to interfere with other spare parts, ensures smooth installation.
Preferably, the supporting legs comprise at least two inclined rods and connecting rods;
the upper ends of the inclined rods are connected with the base body, the lower ends of the inclined rods are connected through connecting rods, and the connecting rods are parallel to the length direction of the base body.
The connection mode between base body, sloping pole, the connecting rod can form hollow frame shape structure, when can providing stable support for the base, its frame shape structure that forms still can form fork truck arm male space, in addition, when the setting of skid locating hole is in frame shape structure top, the space in the frame shape structure can avoid taking place to interfere with other spare parts, the smooth installation of base when ensureing practical application.
Preferably, the skid positioning holes are arranged in two groups, each group comprises four skid positioning holes, and the four skid positioning holes in each group are symmetrically distributed on two sides of the base body in the length direction.
Preferably, a support is arranged above one end of the base body, two second support rods are arranged on the support, and each second support rod is provided with a skid positioning hole.
The utility model has the advantages of:
1. the utility model provides a general formula electrophoresis frock base is when in-service use, place the electrophoresis frock on base body, accessible base body transports it to the skid in different workshops on, and through the skid locating hole of different groups and the cooperation installation of the operation skid locating pin of different specifications, and then realize that same base can be installed with the cooperation of the operation skid locating pin in different workshops, the commonality, compatibility is stronger, convenient different motorcycle types are sold the spare parts and can be produced in different workshops, reduce the energy consumption loss of mill simultaneously. The whole structure is simple, the universality is strong, derivative products with the same working principle can be manufactured, and the electrophoresis device is suitable for independent electrophoresis of relevant parts of various vehicle types; the simplification of the product manufacturing process can be realized; the manufacturing cost is low; the practical operation is convenient, the training cost is low, and the operation is simple and easy to operate; the design durability is good, and the operation process is stable and reliable; the maintenance cost is low; the spare parts of the product are simple to manufacture and easy to replace quickly; the safety is better, and potential safety hazards in staff operation are avoided; the product has no pollution to the environment when in use, and has no toxicity, noise, odor, dust and other pollution in the operation process.
2. The supporting legs are arranged to be inclined and inclined towards the outer side of the base body in the width direction, so that the distance between the supporting points in the width direction can be prolonged as far as possible, and the stability is better.
When the setting of dodging the space can avoid pedestal mounting, the supporting legs takes place to interfere with other spare parts, ensures smooth installation.
3. The connection mode between base body, sloping pole, the connecting rod can form hollow frame shape structure, when can providing stable support for the base, its frame shape structure that forms still can form fork truck arm male space, in addition, when the setting of skid locating hole is in frame shape structure top, the space in the frame shape structure can avoid taking place to interfere with other spare parts, the smooth installation of base when ensureing practical application.
Drawings
Fig. 1 to 6 are a perspective view, a front view, a left view, a right view, a top view and a bottom view of the universal electrophoresis tool base in the embodiment of the present invention;
wherein,
a base body-1; a rectangular frame-11; a first support bar-12; supporting legs-13; a support-14; a second support bar-15; a fork hole-131; an avoidance space-132; -133, an inclined bar; a connecting rod-134;
positioning holes-2 of the skid.
Detailed Description
To make the purpose, technical solution and advantages of the embodiments of the present invention clearer, the embodiments of the present invention are combined to clearly and completely describe the technical solution in the embodiments of the present invention, and obviously, the described embodiments are some embodiments of the present invention, not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by a person skilled in the art without making creative efforts belong to the protection scope of the present invention.
As shown in fig. 1, a general electrophoresis tooling base includes a base body 1 and a skid positioning hole 2.
The base body 1 is provided with at least two groups of skid positioning holes 2, and the skid positioning holes 2 in different groups can be installed in a matching way with the running skid positioning pins in different specifications.
As shown in fig. 5 and 6, in the present embodiment, the base body 1 includes a rectangular frame 11, and a first supporting rod 12, where the first supporting rod 12 is located inside the rectangular frame 11 and connected to the rectangular frame 11. The number of the first supporting rods 12 is two, and the base body 1 is in a shape like a Chinese character 'mu'.
As shown in fig. 1 and 2, the bottom of the base body 1 is provided with a supporting leg 13. The supporting legs 13 are provided with fork holes 131, and the forklift arms can be inserted into the fork holes 131 to lift the base body 1. The four supporting legs 13 are respectively positioned at the bottoms of the four corners of the base body 1.
As shown in fig. 3 and 4, the supporting legs 13 are symmetrically distributed on two sides of the base body 1 in the length direction, the supporting legs 13 are obliquely arranged, and the lower ends of the supporting legs 13 are inclined to the outer side of the base body 1 in the width direction. An avoidance space 132 is arranged at the part of the supporting leg 13 below the skid positioning hole 2.
As shown in fig. 1, the supporting feet 13 comprise at least two inclined bars 133, in this embodiment, each supporting foot 13 comprises three inclined bars 133; also included are connecting rods 134; the upper end of the inclined rod 133 is connected to the base body 1.
Base body 1 adopts square pipe welding to make, as shown in fig. 3, 4, slope 133 bar platelike structure, it is wide narrow down on it, and the upper end sets up the right angle opening for cooperate and weld with base body 1's square pipe, the three slope 133 parallel arrangement of every supporting legs 13, through connecting rod 134 welded connection between the lower extreme of each slope 133, connecting rod 134 is on a parallel with base body 1's length direction.
As shown in fig. 1 and 2, the space between the two inclined bars 133 near the middle of each supporting foot 13 forms the fork hole 131 in the front-rear direction.
As shown in fig. 1, 5, and 6, in each of the support legs 13, the space between the two inclined rods 133 located on both sides of the ski positioning hole 2 forms the escape space 132 in the up-down direction.
In this embodiment, the plurality of the sled positioning holes 2 are two sets, each set includes four sled positioning holes 2, and the four sled positioning holes 2 in each set are symmetrically distributed on two sides of the base body 1 in the length direction. As shown in fig. 1, in the present embodiment, the sled positioning holes 2 are stepped holes with large top and small bottom, and the sled positioning holes 2 are formed on the corresponding positioning plates.
The distribution condition of the first group of skid positioning holes 2 is as follows:
as shown in fig. 1 and 5, a support 14 is welded above the left end of the base body 1, the support 14 includes two upright posts connected with the base body 1 and a cross rod connected between the top ends of the two upright posts, two second support rods 15 are arranged on the support 14, a positioning plate is welded on each second support rod 15, and the skid positioning holes 2 are arranged on the corresponding positioning plates. As shown in fig. 1 and 5, the other two skid positioning holes 2 in the first group are distributed at the right end of the base body 1, the positioning plates are welded at the front and rear sides of the base body 1, and the two skid positioning holes 2 are arranged on the two positioning plates.
The second group of the skid positioning holes 2 are distributed:
as shown in fig. 1 and 5, the second set of four skid positioning holes 2 are located inside the first set of skid positioning holes 2, and are all welded at two ends of the base body 1 through positioning plates, and are formed by forming holes on the positioning plates. Wherein two locating plates that are located the left end weld through between two risers and the 1 left end bottom of base body respectively.
The utility model provides a general formula electrophoresis frock base is in the in-service use time, place the electrophoresis frock on base body 1, accessible base body 1 transports it to the skid in different workshops on, and through the operation skid locating pin cooperation installation of the skid locating hole 2 of different groups and different specifications, and then realize that same base can be installed with the operation skid locating pin cooperation in different workshops, the commonality, compatibility is stronger, convenient different motorcycle types after-sale spare parts can be produced in different workshops, reduce the energy consumption loss of mill simultaneously. The whole structure is simple, the universality is strong, derivative products with the same working principle can be manufactured, and the electrophoresis device is suitable for independent electrophoresis of relevant parts of various vehicle types; the simplification of the product manufacturing process can be realized; the manufacturing cost is low; the practical operation is convenient, the training cost is low, and the operation is simple and easy to operate; the design durability is good, and the operation process is stable and reliable; the maintenance cost is low; the spare parts of the product are simple to manufacture and easy to replace quickly; the safety is better, and potential safety hazards caused by staff operation are avoided; the product has no pollution to the environment when in use, and has no toxicity, noise, odor, dust and other pollution in the operation process.
The support legs 13 are inclined and inclined to the outside in the width direction of the base body 1, so that the distance between the fulcrums in the width direction can be extended as much as possible, and the stability is better.
Avoiding the space 132 can avoid interference between the supporting legs 13 and other parts during installation of the base, thereby ensuring smooth installation.
The connection mode between base body 1, slope pole 133, the connecting rod 134 can form hollow frame shape structure, can provide stable support for the base while, the frame shape structure that it formed still can form fork truck arm male space, in addition, when skid locating hole 2 sets up above frame shape structure, the space in the frame shape structure can avoid taking place to interfere with other spare parts, guarantees the smooth installation of base when practical application.
The actual use process is as follows:
the method comprises the following steps that a forklift extends a forklift arm into a supporting foot frame, the whole electrophoresis tool and a workpiece are lifted from the ground and placed on a workshop welding skid, and a first group of skid positioning holes are accurately installed with front and rear skid positioning pins respectively;
the electrophoresis tool and the workpiece enter coating, the coating skid is converted from a welding skid, and the electrophoresis and electrophoresis drying process before coating is carried out;
after the procedures are completed, the forklift extends the forklift arm into the supporting foot frame, the whole electrophoresis tool and the electrophoresis workpiece are lifted from the coating skid and placed on the ground;
removing the electrophoresis piece from the electrophoresis tool and putting the electrophoresis piece on a container;
the forklift extends a forklift arm into the supporting foot frame, lifts the whole electrophoresis tool and the workpiece from the ground, and puts the electrophoresis tool and the workpiece on a two-car welding skid, and the second group of skid positioning holes are accurately installed with the front and rear skid positioning pins respectively;
the electrophoresis tool and the workpiece enter coating, the coating skid is converted by a welding skid, and the electrophoresis and electrophoresis drying processes before coating are carried out;
after the procedures are completed, the forklift extends the forklift arm into the supporting foot frame, the whole electrophoresis tool and the electrophoresis workpiece are lifted from the coating skid and placed on the ground;
removing the electrophoresis piece from the electrophoresis tool and putting the electrophoresis piece on a container;
and finishing all the steps, repeating the actions and recovering the original state.
The above embodiments are only used to illustrate the technical solution of the present invention, and not to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, it should be understood by those skilled in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some technical features may be equivalently replaced; such modifications and substitutions do not depart from the spirit and scope of the present invention in its corresponding aspects.

Claims (8)

1. The utility model provides a general formula electrophoresis frock base which characterized in that: the skid positioning device comprises a base body (1), wherein at least two groups of skid positioning holes (2) are formed in the base body (1), and different groups of skid positioning holes (2) can be installed in a matched manner with running skid positioning pins of different specifications;
the skid positioning holes (2) are arranged in two groups, each group comprises four skid positioning holes (2), and the four skid positioning holes (2) in each group are symmetrically distributed on two sides of the length direction of the base body (1);
a support (14) is arranged above one end of the base body (1), two second support rods (15) are arranged on the support (14), and each second support rod (15) is provided with a skid positioning hole (2).
2. The universal electrophoresis tool base of claim 1, wherein: the base body (1) comprises a rectangular frame (11) and a first supporting rod (12), wherein the first supporting rod (12) is located on the inner side of the rectangular frame (11) and connected with the rectangular frame (11).
3. The universal electrophoresis tool base of claim 1, wherein: the bottom of the base body (1) is provided with supporting legs (13).
4. The universal electrophoresis tool base of claim 3, wherein: fork holes (131) are formed in the supporting legs (13), and forklift arms can be inserted into the fork holes (131) to lift the base body (1).
5. The universal electrophoresis tool base of claim 3, wherein: the four supporting legs (13) are arranged and are respectively positioned at the bottoms of the four corners of the base body (1).
6. The universal electrophoresis tool base of claim 5, wherein: the supporting legs (13) are symmetrically distributed on two sides of the base body (1) in the length direction, the supporting legs (13) are obliquely arranged, and the lower ends of the supporting legs (13) are inclined towards the outer side of the base body (1) in the width direction.
7. The universal electrophoresis tool base of claim 6, wherein: the supporting legs (13) are arranged at positions below the skid positioning holes (2) and are provided with avoidance spaces (132).
8. The universal electrophoresis tool base of claim 6, wherein: the supporting feet (13) comprise at least two inclined rods (133) and also comprise connecting rods (134);
the upper ends of the inclined rods (133) are connected with the base body (1), the lower ends of the inclined rods (133) are connected through connecting rods (134), and the connecting rods (134) are parallel to the length direction of the base body (1).
CN202220737519.8U 2022-03-31 2022-03-31 General electrophoresis tooling base Active CN217733303U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220737519.8U CN217733303U (en) 2022-03-31 2022-03-31 General electrophoresis tooling base

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220737519.8U CN217733303U (en) 2022-03-31 2022-03-31 General electrophoresis tooling base

Publications (1)

Publication Number Publication Date
CN217733303U true CN217733303U (en) 2022-11-04

Family

ID=83815365

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220737519.8U Active CN217733303U (en) 2022-03-31 2022-03-31 General electrophoresis tooling base

Country Status (1)

Country Link
CN (1) CN217733303U (en)

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