Cumulative volume = OKModels is ready for prototyping on CNC and 3D printing
Category: 3D Print Models
Premium & 3D Print models ready to be 3d printed. 3D Print Models and Free 3D Print Models are available for download in several formats including .STL, .3DM, .OBJ, .3DS, .DAE, .SKP, .BLEND, .DWG, .DXF, .STEP and much more. If you’re in search of high-quality 3D printed assets, we have a huge library of 3d print models for any of your needs. Also you can visit 3D Models and All 3D Models category.
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Womens Ring-RW-74 3D Model
Cumulative volume = OKModels is ready for prototyping on CNC and 3D printing
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Womens Ring-RW-75 3D Model
Cumulative volume = OKModels is ready for prototyping on CNC and 3D printing
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Womens Ring-RW-76 3D Model
Cumulative volume = OKModels is ready for prototyping on CNC and 3D printing
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Womens Ring-RW-77 3D Model
Cumulative volume = OKModels is ready for prototyping on CNC and 3D printing
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Womens Ring-RW-78 3D Model
Cumulative volume = OKModels is ready for prototyping on CNC and 3D printing
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Womens Ring-RW-79 3D Model
Cumulative volume = OKModels is ready for prototyping on CNC and 3D printing
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Womens Ring-RW-57 3D Model
Cumulative volume = OKModels is ready for prototiping on CNC and 3D printing
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Womens Ring-RW-58 3D Model
Cumulative volume = OKModels is ready for prototiping on CNC and 3D printing
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Womens Ring-RW-59 3D Model
Cumulative volume = OKModels is ready for prototiping on CNC and 3D printing
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Womens Ring-RW-60 3D Model
Cumulative volume = OKModels is ready for prototiping on CNC and 3D printing
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Womens Ring-RW62 3D Model
Cumulative volume = OKModels is ready for prototiping on CNC and 3D printing
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Womens Ring-RW-63 3D Model
Cumulative volume = OKModels is ready for prototiping on CNC and 3D printing
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Womens Ring-RW-64 3D Model
Cumulative volume = OKModels is ready for prototyping on CNC and 3D printing
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Womens Ring-RW-65 3D Model
Cumulative volume = OKModels is ready for prototyping on CNC and 3D printing
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Womens Ring-RW-66 3D Model
Cumulative volume = OKModels is ready for prototyping on CNC and 3D printing
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Womens Ring-RW-67 3D Model
Cumulative volume = OKModels is ready for prototyping on CNC and 3D printing
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Womens Ring-RW-68 3D Model
Cumulative volume = OKModels is ready for prototyping on CNC and 3D printing
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Womens Ring-RW-39 3D Model
Cumulative volume = OKModels is ready for prototiping on CNC and 3D printing
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Womens Ring-RW-41 3D Model
Cumulative volume = OKModels is ready for prototiping on CNC and 3D printing
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Womens Ring-RW-42 3D Model
Cumulative volume = OKModels is ready for prototiping on CNC and 3D printing
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Womens Ring-RW-43 3D Model
Cumulative volume = OKModels is ready for prototiping on CNC and 3D printing
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Womens Ring-RW-44 3D Model
Cumulative volume = OKModels is ready for prototiping on CNC and 3D printing
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Womens Ring-RW-45 3D Model
Cumulative volume = OKModels is ready for prototiping on CNC and 3D printing
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Womens Ring-RW-46 3D Model
Cumulative volume = OKModels is ready for prototiping on CNC and 3D printing
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Womens Ring-RW-47 3D Model
Cumulative volume = OKModels is ready for prototiping on CNC and 3D printing
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Womens Ring-RW-49 3D Model
Cumulative volume = OKModels is ready for prototiping on CNC and 3D printing
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Womens Ring-RW-50 3D Model
Cumulative volume = OKModels is ready for prototiping on CNC and 3D printing
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Womens Ring-RW-51 3D Model
Cumulative volume = OKModels is ready for prototiping on CNC and 3D printing
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Womens Ring-RW-52 3D Model
Cumulative volume = OKModels is ready for prototiping on CNC and 3D printing
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Womens Ring-RW-54 3D Model
Cumulative volume = OKModels is ready for prototiping on CNC and 3D printing
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Womens Ring-RW-55 3D Model
Cumulative volume = OKModels is ready for prototiping on CNC and 3D printing
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Womens Ring-RW-56 3D Model
umulative volume = OKModels is ready for prototiping on CNC and 3D printing
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Womens Ring-RW-38 3D Model
Cumulative volume = OKModels is ready for prototiping on CNC and 3D printing
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Womens Ring-RW-23 3D Model
Cumulative volume = OKModels is ready for prototiping on CNC and 3D printing
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Womens Ring-RW-24 3D Model
Cumulative volume = OKModels is ready for prototiping on CNC and 3D printing
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Womens Ring-RW-25 3D Model
Cumulative volume = OKModels is ready for prototiping on CNC and 3D printing
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Womens Ring-RW-26 3D Model
Cumulative volume = OKModels is ready for prototiping on CNC and 3D printing
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Womens Ring-RW-27 3D Model
Cumulative volume = OKModels is ready for prototiping on CNC and 3D printing
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Womens Ring-RW-28 3D Model
Cumulative volume = OKModels is ready for prototiping on CNC and 3D printing
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Womens Ring-RW-29 3D Model
Cumulative volume = OKModels is ready for prototiping on CNC and 3D printing
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Womens Ring-RW-30 3D Model
Cumulative volume = OKModels is ready for prototiping on CNC and 3D printing
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Womens Ring-RW-31 3D Model
Cumulative volume = OKModels is ready for prototiping on CNC and 3D printing
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Womens Ring-RW-32 3D Model
Cumulative volume = OKModels is ready for prototiping on CNC and 3D printing
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Womens Ring-RW-33 3D Model
Cumulative volume = OKModels is ready for prototiping on CNC and 3D printing
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Womens Ring-RW-35 3D Model
Cumulative volume = OKModels is ready for prototiping on CNC and 3D printing
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Womens Ring-RW-36 3D Model
Cumulative volume = OKModels is ready for prototiping on CNC and 3D printing
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Womens Ring-RW-37 3D Model
Cumulative volume = OKModels is ready for prototiping on CNC and 3D printing
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Womens Ring-RW-15 3D Model
Cumulative volume = YesModels is ready for prototiping on CNC and 3D printing
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Womens Ring-RW-16 3D Model
Cumulative volume = YesModels is ready for prototiping on CNC and 3D printing
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Womens Ring-RW-17 3D Model
Cumulative volume = YesModels is ready for prototiping on CNC and 3D printing
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Womens Ring-RW-18 3D Model
Cumulative volume = YesModels is ready for prototiping on CNC and 3D printing
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Womens Ring-RW-19 3D Model
Cumulative volume = YesModels is ready for prototiping on CNC and 3D printing
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Womens Ring-RW-20 3D Model
Cumulative volume = YesModels is ready for prototiping on CNC and 3D printing
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Womens Ring-RW-21 3D Model
Cumulative volume = OKModels is ready for prototiping on CNC and 3D printing
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Womens Ring-RW-22 3D Model
Cumulative volume = OKModels is ready for prototiping on CNC and 3D printing
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ESP8266 Platform 3D Print Model
Summary
ESP8266 PCB Platform that I use to mount ESP8266 12E PCB in box. Posts on platform are high enough to allow programming board when mounted. I used silicon to mount platform in box, it seems to work well -

Pumpkin_CandyDish 3D Print Model
Summary
As a FYI There is a License agreement with this Download and If you do download these STL file you are agreeing to the license.
Another TinkerCad object. Print with supports. I did have to sand the pin since it was really small. Scale to the size you want but, for now its small (the inner bowl is 1.3/4 inch Diameter X 3/4 inch Deep) for those who just want to print for fun.
General size if printed @:
200% (3 1/2 inch Diameter X 1 1/2 inch deep)
300% (5 1/4 inch Diameter X 2 1/4 inch deep)
400% (7 inch Diameter X 3 inch deep) -

Helping Hands Base/Workbench PSU 3D Print Model
Summary
This is a “Helping Hands Base” with built in Workbench Power Supply. It is still in beta, I have not printed it yet. The helping hands will be attached with holes in the top(I have not figured out placement yet). Attached to two of the helping hands will be a 80mm fan for soldering fumes. Please check it out and let me know what you think or improvements. Keep in mind, this is my first design ever using a Design Software. All self taught and Youtube videos.
Print Settings
Printer:
Tevo Tarantula Rafts:
No Supports:
Yes Resolution:
.2 Infill:
20% Triangular(for strength) Notes:
For the top I will be using 4 top and bottom layers for strength. Also, recommend Supports for the base. -

Hand Hanger (reupload) 3D Print Model
Summary
Reuploaded from https://pinshape.com/items/23952-3d-printed-hand-hanger-2-modified-from-danowalls-design
Not my design! -

Super Mario Question Block 3D Print Model
Summary
I made this a while ago and figured I’d upload it. It’s measures out to 2in x 2in x 1/8in. Feel free to make it a keychain or something, would be nice. -
t800 3D Print Model
Summary
t800 remix not printed -

Kreg Router Table Metric Fine Adjustment Gauge 3D Print Model
Summary
While the Kreg Router Table can be supplied with metric units on the flat tapes, the fine adjustment dial is still in imperial. Here is my replacement for this.
It needs to be printed as two part, but they press fit together. A small amount of CA glue can be used.
3D printing in white is recommended so that the numbers can be easly highlighted with a black sharpie. -

Extruder mounting Plate with adjustable height ver.2 3D Print Model
Summary
【 Slide-type Extruder mounting Plate with adjustable height / KODAMA TRINUS 】
先日作成した【Extruder mounting Plate with adjustable height】が強度的に弱くて、使用しているうちに変形してきたので各部を補強したバージョンを作りました。
オリジナルのExtruder mounting Plateをこれに変えれば、ホットエンドの高さ調整が一度で決まり、微調整も簡単に出来ます。
(ヒートベッドの水平の調整が完了している前提です)
ホットエンドをホームポジションからヒートベッドの真ん中に移動してから、紙を挟んで高さ調整用のネジで適度な摩擦になるように調整して側面の固定ネジを締めるだけで、ホットエンドの高さ調整が完了です。
【 別に用意するもの 】
プリントしたスライド式エクストルーダー用マウンター
M3の25~30mm以上のネジ×1
上側のネジ穴には、M3で25〜30mmのネジを使いエクストルーダーの高さを調整します。
M3の8~10mmのネジ×1
側面のネジ穴には、M3で8~10mmのネジを使います。
このネジはホットエンドとヒートベッドのクリアランス調整をした後、エクストルーダーを固定します。
(このネジの長さが長すぎたり、ネジの頭が大き過ぎるとエクストルーダーが右端に移動した時にスライダーのフレームに当たります。)
【 ホットエンドとヒートベッドのクリアランス調整の手順 】
1.まずヒートベッドの水平をしっかり調整します。
2.オリジナルのエクストルーダー用マウンターを外して、スライド式エクストルーダー用マウンターに取り替えます。
取り付けネジは元のネジ(4本)を使ってください。
この時、完全に固定せずにプレートがスムーズにスライドできる程度にネジを軽く締めます。
3.マウンターの2本の調整用ネジは仮止め程度に締めてください。
4.エクストルーダーを元のネジ(2本)を使ってスライド範囲の上端に取り付けて上部の高さ調整用のネジで落ちないように調整します。
(2のマウンターの取り付けネジが緩めでもエクストルーダーによって押えられるので外れることはありません)
5.エクストルーダーをホームポジションにセットしてから、ヒートベッドの真ん中付近に移動します。
6.適当な厚みの紙(コピー用紙等)をヒートベッドに置いて、上部の高さ調整用のネジを緩めてエクストルーダーを下げ、ホットエンドのノズルが紙の上に軽く乗るようにします。
7.ホットエンドのノズルとヒートベッドに挟んだ紙が適度な抵抗で動くように、上部の高さ調整のネジで高さを調整します。
8.マウンター横の固定ネジを締めて、紙を外したらクリアランスの調整は完了です。
最後に確認のため【 First Layer Calibration 100 x 100 x 0.1mm 】を印刷します。
綺麗に印刷できたら高さ調整は完了です。
詳しくはこちらの【 ブログ 】を参考にしてください。
【 印刷のパラメーター 】
printer:Kodama TRINUS 3DPRINTER
nozzle:0.4mm
layer height: 0.15mm
ExtruderTemp:225℃
HeatedBedTemp:105℃
PrintingSpeed:30mm/s
FillPattern:Rectilinear
Infill:100%
rafts:Yes
supports:Yes
Single outline corkscrew mode:No
filament : I use ABS 1.75mm
Print Settings
Printer:
KODAMA TRINUS3D Rafts:
Doesn’t Matter Supports:
Yes Resolution:
0.15 Infill:
100% Notes:
ガタが出ないように要所々のマージンが少ないので、削ったりの修正が必要かもしれません。 -

1:10 Rc car snow tire 3D Print Model
Summary
These tires are designed for use on any 1:10 rc car. It should help a lot with traction in the snow. If you would like these for a larger scale vehicle, message me with the shaft dimensions and I can get that made up. -

Minolta MD Camera Body Cap 3D Print Model
Summary
I needed a body cap for one of my camera bodies that I was selling. I have seen a few but really wanted one that didn’t need supports. I designed the first one, the “CAM”, design that uses some cams on the inside to lock into the body. That worked fine but it could still fall out so I went ahead and designed one with a “BAYONET” and added supports. It printed fine and the supports easily came off. -

Bitcoin – gold 3D print model 3D Model
Bitcoin – gold 3D print modelBitcoin – in gold colorWidth – 47 mmLength – 363 mmHeight – 363 mm(The size can be changed to suit your taste)You can see the model here (compressed type):
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Battery section cover of Aerodynamic composite case for quadcopter DJI F450 3D Model
Repair part for “Aerodynamic composite case for quadcopter DJI F450”.- dji_f450_case_cover (battery section cover), 24.3 cm3































