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Shane Diesel Dual Density Dildo - - Realistic Dildos
Shane Diesel Dual Density Dildo - - Realistic Dildos
Shane Diesel Dual Density Dildo - - Realistic Dildos

Shane Diesel Dual Density Dildo

$184.99
$184.99

Shane Diesel Dual Density Dildo with 27.5cm total length and dual-density silicone construction

Key Features:

Massive 27.5 cm total length with realistic dual-density construction

Premium silicone material with firm inner core

Precisely engineered anatomical shape

Substantial 1.2 kg weight for commanding presence

Advanced user-focused design for intense stimulation

Vendor: NS Novelties
SKU: WD-652-NOATTRIBUTES-SHOP-NONE-70337
Availability: Out Of Stock
Product Type: Realistic Dildos
Please hurry! Only 0 left in stock

Frequently Asked Questions

What is the Shane Diesel Dual Density Dildo?
A premium silicone dildo by NS Novelties featuring a massive 27.5 cm total length with 21.3 cm insertable shaft. Dual-density construction provides realistic sensation for intense penetration and deep stimulation.
Should users consider this massive dildo for advanced play?
Experienced users seeking significant size and realistic feel will appreciate this dildo's substantial 1.2 kg weight and carefully engineered dual-density silicone construction designed for intense internal stimulation.
Will the Shane Diesel Dildo provide realistic sensations?
The dual-density silicone mimics natural tissue dynamics, with a firm inner core and soft external layer that creates an incredibly realistic penetrative experience for maximum physical pleasure.
Does this dildo offer precise anatomical targeting?
The carefully sculpted shape specifically targets sensitive internal zones, delivering strategic stimulation through its meticulously engineered design and proportions optimized for maximum physical response.
How can this dildo be incorporated into BDSM play?
Its substantial weight and commanding presence make this dildo ideal for dominant scenarios, allowing precise control and intense sensory experiences during advanced bondage and penetrative interactions.

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